Medical support device, medical support method, and program
The medical business support device optimizes endoscope and accessory allocation by calculating required numbers based on procedure and cleaning times, addressing inefficiencies in endoscopic examination systems.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-11-12
- Publication Date
- 2026-03-25
AI Technical Summary
Existing endoscopic examination systems lack efficient management of endoscope allocation, cleaning schedules, and waiting times, leading to inefficiencies in medical procedures.
A medical business support device and method that calculates the required number of endoscopes and accessories based on standard procedure, waiting, and cleaning times, using a processor and memory system to optimize resource allocation.
Enhances the efficiency of endoscopic procedures by optimizing the use of endoscopes and accessories, reducing waiting times, and streamlining cleaning processes.
Smart Images

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Abstract
Description
Technical Field
[0001] The technology of the present disclosure relates to a medical service support device, a medical service support method, and a program.
Background Art
[0002] Patent Document 1 discloses an endoscopic examination operation support system including an examination room where an endoscopic examination is performed, an examination schedule management unit that manages examination schedules of a plurality of endoscopic examinations including examination start scheduled time information, examination end scheduled time information, and examination type information regarding the examination content of the endoscopic examination, a first allocation processing unit that allocates an endoscope to be used from among a plurality of endoscopes for each endoscopic examination managed by the examination schedule management unit, a second allocation processing unit that allocates a cleaning machine for cleaning the endoscope used in each endoscopic examination from among a plurality of cleaning machines, a cleaning machine, and a cleaning schedule management unit that manages cleaning schedules of a plurality of endoscopes including cleaning start scheduled time information and cleaning end scheduled time information.
[0003] The endoscopic examination operation support system described in Patent Document 1 further includes a situation information acquisition unit that acquires situation information regarding the situation of the examination, and a rescheduling processing unit that determines, based on the situation information, that it is necessary to change the examination schedule and / or the cleaning schedule. The rescheduling processing unit instructs at least one of the examination schedule management unit or the cleaning schedule management unit to change elements included in the examination schedule and / or the cleaning schedule.
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Summary of the Invention
[0005] One embodiment of the technology relating to the present disclosure provides a medical work support device, a medical work support method, and a program that can support the efficient performance of endoscopic procedures. [Means for solving the problem]
[0006] A first aspect of the technology of this disclosure is a medical business support device comprising a processor and memory connected to or built into the processor, wherein the processor is a natural number and, based on the standard procedure time from the start to the end of the first endoscopic procedure, which is the Nth endoscopic procedure performed by an information processing device used together with the endoscope, the standard waiting time from the end of the first endoscopic procedure until the start of the second endoscopic procedure, which is the N+1th endoscopic procedure performed by the information processing device, and the standard cleaning time from the end of the first endoscopic procedure until the cleaning of the endoscope is completed, the device derives the required number of endoscopes and outputs medical business support information based on the required number.
[0007] A second aspect of the technology of this disclosure is a medical business support device comprising a processor and memory connected to or built into the processor, wherein the processor is a natural number, and based on the standard procedure time from the start to the end of the first medical procedure, which is the Nth medical procedure performed by the information processing device, the standard waiting time from the end of the first medical procedure to the start of the second medical procedure, which is the N+1th medical procedure performed by the information processing device, and the standard cleaning time from the end of the first medical procedure to the end of cleaning of the medical accessory detachably connected to the information processing device, the device derives the required number of medical accessories and outputs medical business support information based on the required number.
[0008] A third aspect of the technology of this disclosure is a medical work support method that includes deriving the required number of endoscopes based on the standard procedure time from the start to the end of the first endoscopic procedure, which is the Nth endoscopic procedure performed by an information processing device used together with the endoscope, the standard waiting time from the end of the first endoscopic procedure until the start of the second endoscopic procedure, which is the N+1th endoscopic procedure performed by the information processing device, and the standard cleaning time from the end of the first endoscopic procedure until the cleaning of the endoscope is completed, with N being a natural number, and outputting medical work support information based on the required number.
[0009] A fourth aspect of the technology of this disclosure is a program for causing a computer to perform a process that includes deriving the required number of endoscopes based on the standard procedure time from the start to the end of the first endoscopic procedure, which is the Nth endoscopic procedure performed by an information processing device used together with the endoscope, the standard waiting time from the end of the first endoscopic procedure until the start of the second endoscopic procedure, which is the N+1th endoscopic procedure performed by the information processing device, and the standard cleaning time from the end of the first endoscopic procedure until the cleaning of the endoscope is completed, where N is a natural number, and outputting medical work support information based on the required number. [Brief explanation of the drawing]
[0010] [Figure 1] This is a conceptual diagram showing the general configuration of a medical business support system. [Figure 2] This flowchart shows an example of the workflow for handling endoscopes. [Figure 3] This block diagram shows an example of the electrical hardware configuration of an endoscopy department management system. [Figure 4] This block diagram shows an example of the CPU functions and storage contents within the endoscopy department management device. [Figure 5] This is a conceptual diagram illustrating an example of the contents of an endoscopic examination management database. [Figure 6]This is a conceptual diagram showing an example of the contents of a washing machine management database. [Figure 7] This block diagram shows an example of the electrical hardware configuration of a support management server. [Figure 8] This block diagram shows an example of the CPU functions and storage contents within the support management server. [Figure 9] This is a block diagram showing an example of the contents stored in a management information storage device. [Figure 10] This flowchart shows an example of the control process flow for a management device. [Figure 11] This is a flowchart showing an example of the flow of medical business support processing according to the embodiment. [Figure 12] This is a screen diagram showing an example of a medical business support screen according to the embodiment. [Figure 13] This flowchart shows a modified example of the medical business support processing flow according to the embodiment. [Figure 14] This is a screen diagram showing a modified example of the medical business support screen according to the embodiment. [Figure 15] This block diagram shows an example of the process for generating medical support information, including information based on the required scopes and the number of scopes currently in use, and transmitting it to the endoscopy department management system. [Figure 16] This block diagram shows an example of the process for generating medical support information, including information based on the required scope and the number of scopes used, and transmitting it to the endoscopy department management system. [Figure 17] This block diagram shows an example of the process for generating medical support information, including scope identification information that needs updating, and transmitting it to the endoscopy department management system. [Modes for carrying out the invention]
[0011] An example of an embodiment of a medical business support device, a medical business support method, and a program relating to the technology of this disclosure will be described in accordance with the attached drawings.
[0012] As an example, as shown in FIG. 1, the medical operation support system 10 includes an endoscope department management device 12, a plurality of examination room facilities 14, a manual washing facility 16, an automatic washing facility 18, and a medical operation support device 20. Here, the medical operation support device 20 is an example of the "medical operation support device" according to the technology of the present disclosure.
[0013] The medical operation support system 10 is a system that supports endoscope handling operations. In the present embodiment, the endoscope handling operation refers to, for example, the operations performed by a person (hereinafter also referred to as an "endoscope examiner") who is engaged in an examination using an endoscope scope 24 (hereinafter also referred to as an "endoscope examination") in a medical facility (e.g., a hospital). The endoscope handling operation includes an endoscope examination, a manual washing operation, and an automatic washing operation. The endoscope examination is an example of the "endoscope procedure operation" according to the technology of the present disclosure.
[0014] The medical facility has a plurality of endoscope scopes 24, and in each of the plurality of examination room facilities 14, an endoscope scope 24 of a type corresponding to the examination item is used. Examples of the type of the endoscope scope 24 include an upper gastrointestinal endoscope, a pancreatic endoscope, a bile duct endoscope, a duodenal endoscope, a colon endoscope, an intracranial endoscope, an otolaryngology endoscope, and a bronchial endoscope.
[0015] The endoscope scope 24 includes an insertion portion 24A, an imaging portion 24B, an operation portion 24C, and a universal cord 24D. The insertion portion 24A is inserted into the subject.
[0016] The imaging portion 24B is provided at the distal end portion of the insertion portion 24A. The imaging portion 24B has a CMOS (complementary metal oxide semiconductor) type imaging element. Note that a CCD (charge coupled device) type imaging element may be used instead of the CMOS type imaging element.
[0017] The operating unit 24C is connected to the proximal end of the insertion unit 24A and is grasped by the physician to perform various operations. When the operating unit 24C is operated, the insertion unit 24A bends or the imaging unit 24B performs imaging.
[0018] The universal cord 24D is connected to the control unit 24C. The universal cord 24D contains a light guide (not shown), a fluid tube (not shown), and a signal cable (not shown). Connectors 26 and 28 are provided at the ends of the universal cord 24D. Connector 28 branches off from connector 26.
[0019] Multiple examination room facilities 14 are installed within the medical facility, and each examination room facility 14 is equipped with an examination room 30, a light source device 31, an endoscope processor device 32, a display 34, and an information processing device 36. The light source device 31, the endoscope processor device 32, the display 34, and the information processing device 36 are installed in the examination room 30.
[0020] Multiple information processing devices 36 exist and are installed in each of the multiple medical facilities where endoscopy procedures are performed. In this embodiment, one information processing device 36 is assigned to each of the examination rooms 30.
[0021] The information processing device 36 is an example of an "information processing device" relating to the technology of this disclosure and is used together with the endoscope scope 24 in an endoscopic examination. The information processing device 36 is activated each time an endoscopic examination is performed on a patient in each examination room 30. The information processing device 36 operates continuously while an endoscopic examination is being performed on a patient. In other words, the period from when the information processing device 36 starts operating until when it stops operating corresponds to the period during which an endoscopic examination is performed on a patient.
[0022] Connector 26 is connected to the light source device 31. When connector 26 is connected to the light source device 31, the light guide and fluid tube in the universal cord 24D are inserted into the light source device 31. The light source device 31 supplies illumination light, water, and gas to the endoscope scope 24 via the light guide and fluid tube. As a result, illumination light is irradiated from the illumination window (not shown) on the tip surface of the insertion section 24A toward the area to be observed. In addition, water and gas are sprayed from the nozzle (not shown) on the tip surface of the insertion section 24A toward the observation window in response to operations performed on the operation section 24C. Here, an example of a configuration in which the light source device 31 supplies water and gas to the endoscope scope 24 has been described, but this is merely one example, and at least one of the water and gas may be supplied to the endoscope scope 24 from a device other than the light source device.
[0023] Connector 28 is connected to the endoscope processor device 32. When connector 28 is connected to the endoscope processor device 32, the signal cable in the universal code 24D is electrically connected to the endoscope processor device 32. The endoscope processor device 32 controls the operation of the endoscope scope 24 by supplying control signals to the endoscope scope 24 via the signal cable. The endoscope scope 24 also outputs imaging signals obtained by having the imaging unit 24B image the area to be observed to the endoscope processor device 32 via the signal cable.
[0024] The endoscope processor device 32 generates a moving image as an image showing the area under observation, based on the imaging signal input from the endoscope scope 24. The frame rate of the moving image is, for example, 30 fps (frames per second). The endoscope processor device 32 also generates a still image as an image showing the area under observation, in response to operations performed on the control unit 24C. The endoscope processor device 32 is connected to the display 34 and displays the images generated based on the imaging signal on the display 34.
[0025] In this embodiment, the light source device 31 and the endoscope processor device 32 are separate from the information processing device 36. However, this is merely one example, and at least one of the light source device 31 and the endoscope processor device 32 may be integrated with the information processing device 36.
[0026] The information processing device 36 comprises an information processing device main unit 38 and a barcode reader 40. The information processing device main unit 38 is composed of a computer having a processor and a memory device. An example of the processor is a CPU (Central Processing Unit). An example of the memory device is a combination of non-volatile memory such as EEPROM (Electrically Erasable and Programmable Read Only Memory), SSD (Solid State Drive), and / or HDD (Hard Disk Drive), and volatile memory such as RAM (Random Access Memory).
[0027] The information processing unit 38 is equipped with an examination start button 38A. The examination start button 38A is an alternate-type push button. The examination start button 38A is turned on when the endoscopic examination for a subject begins and turned off when the endoscopic examination for a subject ends. When the examination start button 38A is turned on, the information processing unit 38 starts operating, and when the examination start button 38A is turned off, the information processing unit 38 stops operating.
[0028] The endoscopy department management device 12 is connected to the information processing device unit 38. The information processing device unit 38 is assigned an information processing device ID, which is an ID (identification) that can identify the information processing device unit 38, and the endoscopy department management device 12 centrally manages each information processing device unit 38 installed in each of the examination rooms 30 using the information processing device ID.
[0029] Furthermore, an endoscope processor unit 32 is connected to the main information processing unit 38. In other words, the endoscope scope 24 is connected to the main information processing unit 38 via the endoscope processor unit 32. In addition, a barcode reader 40 is also connected to the main information processing unit 38.
[0030] The information processing unit 38 operates under the control of the endoscopy department management device 12 and controls the operation of the endoscopy processor device 32 and the barcode reader 40. The information processing unit 38 acquires images generated by the endoscopy processor device 32 based on the imaging signal and outputs the acquired images to the endoscopy department management device 12.
[0031] The endoscope scope 24 is equipped with a barcode 42. In the example shown in Figure 1, the barcode 42 is provided on the control unit 24C. The barcode 42 is encrypted information containing an endoscope ID that uniquely identifies the endoscope scope 24. The barcode 42 is read by the barcode reader 40 when an endoscopic examination is started. The barcode reader 40 outputs the endoscope ID obtained by reading the barcode 42 to the information processing device main unit 38.
[0032] The barcode reader 40 can also read a barcode (not shown) uniquely assigned to the subject. The barcode assigned to the subject (hereinafter also referred to as the "subject barcode") is encrypted information containing a subject ID that uniquely identifies the subject, and is attached, for example, to a band (e.g., a wristband) attached to the subject's wrist. The subject barcode is read by the barcode reader 40 at the time the endoscopic examination is started.
[0033] The information processing unit 38 outputs endoscopic examination information 44, which associates various information about the patient identified by the patient ID with the various IDs, to the endoscopy department management device 12. Here, the various IDs refer to the endoscopy ID obtained by reading the barcode 42 with the barcode reader 40, and the patient ID obtained by reading the patient barcode with the barcode reader 40. Here, the various IDs are exemplified as endoscopy ID and patient ID, but the technology of this disclosure is not limited to these, and may consist only of endoscopy ID.
[0034] Furthermore, various pieces of information concerning the subject include, for example, images generated by the endoscope processor device 32, the start time of the examination, and the end time of the examination. The information processing device main unit 38 has a clock (for example, a real-time clock) and obtains the start time of the examination and the end time of the examination from the clock. For example, the start time of the examination is the time when the start button 38A is turned ON, and the end time of the examination is the time when the start button 38A is turned OFF.
[0035] The manual cleaning facility 16 includes a manual cleaning room 46 and a sink 48. The sink 48 is installed inside the manual cleaning room 46, and manual cleaning of the endoscope scope 24 is performed in the sink 48. Here, manual cleaning refers to the process by which an endoscopist physically removes dirt from the endoscope scope 24 by hand using cleaning agents, brushes, sponges, etc.
[0036] The automatic cleaning equipment 18 comprises a cleaning room 50, multiple cleaning machines 52, and a cleaning machine management device 54. The multiple cleaning machines 52 and the cleaning machine management device 54 are installed in the cleaning room 50. The cleaning machines 52 are devices that mechanically clean endoscope scopes 24 that have been manually cleaned. The multiple cleaning machines 52 include single-scope cleaning machines capable of cleaning only one endoscope scope 24, and double-scope cleaning machines capable of cleaning two endoscope scopes 24 at once. The single-scope cleaning machines are conventionally also called single-scope cleaning machines, and the double-scope cleaning machines are conventionally also called double-scope cleaning machines.
[0037] A single-scope washing machine has only one washing tank into which one endoscope scope 24 is inserted, whereas a double-scope washing machine has a first washing tank 56 and a second washing tank 58. One endoscope scope 24 is inserted into the first washing tank 56 and the second washing tank 58, respectively. Hereafter, unless it is necessary to distinguish between the washing tanks of the single-scope washing machine, the first washing tank 56, and the second washing tank 58, they will be referred to simply as "washing tanks" without any reference numerals.
[0038] The cleaning machine 52 is equipped with a reception device 60. The reception device 60 has a plurality of buttons and a dial. The plurality of buttons include a cleaning start button 60A. The cleaning start button 60A is a button that receives an instruction to the cleaning machine 52 to start cleaning the endoscope scope 24 in the cleaning tank. When the cleaning start button 60A is turned on, the cleaning machine 52 starts operating. When the cleaning machine 52 is operating, the cleaning machine 52 sequentially cleans, rinses, and dewaters the endoscope scope 24 in the cleaning tank with a cleaning agent according to a predetermined program.
[0039] The cleaning time by the washing machine 52, that is, the operating time of the washing machine 52, is specified by operating the dial included in the reception device 60. Once the time specified by operating the dial has elapsed, the washing machine 52 stops operating.
[0040] The washing machine management device 54 comprises a washing machine management device main unit 62 and a barcode reader 64. The washing machine management device main unit 62 is composed of a computer having a processor and a memory device. An example of the processor is a CPU. An example of the memory device is a combination of non-volatile memory such as EEPROM, SSD, and / or HDD and volatile memory such as RAM.
[0041] Multiple washing machines 52 are connected to the washing machine management device main unit 62, and the washing machine management device main unit 62 centrally manages the multiple washing machines 52. For example, the washing machine management device main unit 62 has a clock, and from the clock, it obtains the washing start time and washing end time for each of the multiple washing machines 52. The washing start time is the time when the washing start button 60A of the washing machine 52 is turned on, and the washing end time is the time when the operation of the washing machine 52 stops (for example, the time when the washing of the endoscope scope 24 in the washing tank is completed).
[0042] Here, we have described an example in which multiple washing machines 52 are centrally managed by a washing machine management device 54. However, this is merely one example, and it is also possible for each of the multiple washing machine management devices 54 to manage multiple washing machines 52 individually, or for one washing machine management device 54 to centrally manage multiple washing machines 52. Reason You may do so.
[0043] Furthermore, while the cleaning start time is exemplified here as the time when the cleaning start button 60A is turned on, this is merely an example. For example, the cleaning start time may be determined according to instructions given to devices other than the cleaning machine management device 54, such as the endoscopy department management device 12. Moreover, while the cleaning end time is exemplified here as the time when the cleaning machine 52 stops operating, this is merely an example. The cleaning end time may be the time when the timer managing the cleaning time has finished measuring, or it may be the time when the cleaning start button 60A is turned off.
[0044] Each of the multiple washing machines 52 is assigned a washing machine ID, which is an ID that can identify the washing machine 52, and the washing machine management device 62 centrally manages the multiple washing machines 52 using the washing machine ID.
[0045] A barcode reader 64 is connected to the main unit 62 of the washing machine management device. The endoscopy department management device 12 is connected to the main unit 62 of the washing machine management device, and the main unit 62 of the washing machine management device 12 operates under the control of the endoscopy department management device 12, controlling the operation of multiple washing machines 52 and the barcode reader 64.
[0046] The barcode 42 of the endoscope scope 24 that has been manually cleaned is read by the barcode reader 64. The barcode reader 64 outputs the endoscope ID obtained by reading the barcode 42 to the cleaning machine management device main unit 62.
[0047] The cleaning machine management device 62 outputs cleaning information 66 to the endoscope department management device 12, which is a combination of various information about the cleaning machine 52 and the endoscope ID corresponding to the endoscope scope 24 cleaned by the cleaning machine 52. Here, the various information about the cleaning machine 52 includes, for example, the cleaning machine ID, the cleaning start time, and the cleaning end time.
[0048] The endoscope scope 24, the information processing device 36, and the cleaning machine 52 are all medical devices used in endoscope handling operations. For the sake of clarity, in the following explanation, when it is not necessary to distinguish between the endoscope scope 24, the information processing device 36, and the cleaning machine 52, they will also be referred to as "medical devices" without any designations.
[0049] The endoscopy department management device 12 is a device for managing the department (endoscopy department) responsible for endoscopy handling operations within a medical facility. The endoscopy department management device 12 comprises an endoscopy department management device main unit 68, a reception device 70, and a display 72. The display 72 is an example of a "presentation device" related to the technology of this disclosure.
[0050] As will be described in more detail later, the endoscopy department management system main unit 68 is a device that includes a computer. A reception device 70 is connected to the endoscopy department management system main unit 68. The reception device 70 has a keyboard, mouse, and / or touch panel, etc., and receives instructions from users of the endoscopy department management system 12. A display 72 is connected to the endoscopy department management system main unit 68. The display 72 displays various information under the control of the endoscopy department management system main unit 68. Examples of displays 72 include EL (Electro-Luminescence) displays and liquid crystal displays.
[0051] The endoscopy department management device main unit 68 acquires endoscopic examination information 44 output from the information processing device main unit 38 and cleaning information 66 output from the cleaning machine management device main unit 62, and performs processing using the acquired endoscopic examination information 44 and cleaning information 66. For the sake of explanation, in the following, when it is not necessary to distinguish between endoscopic examination information 44 and cleaning information 66, they will be referred to as "managed information" without any symbols.
[0052] In this embodiment, the endoscopy department management device 12 is connected to the medical operations support device 20 via a network 22. The network 22 is, for example, the internet. Note that the network 22 is not limited to the internet, but may also be a WAN (Wide Area Network) and / or a LAN (Local Area Network) such as an intranet. Furthermore, the endoscopy department management device 12 and the medical operations support device 20 may be integrally formed, and the medical operations support device 20 may have at least some of the functions of the endoscopy department management device 12.
[0053] The endoscopy department management device 68 exchanges information with the medical operations support device 20 via the network 22. The medical operations support device 20 is implemented using cloud computing. While cloud computing is used as an example here, this is merely one example; for instance, the medical operations support device 20 may be implemented using a mainframe, or network computing such as fog computing, edge computing, or grid computing.
[0054] The medical support device 20 includes a support management server 74 and a management information storage device 76. The management information storage device 76 is connected to the support management server 74.
[0055] The support management server 74 is connected to the endoscopy department management device main unit 68 via the network 22, and processes requests from the endoscopy department management device main unit 68 and provides the processing results to the endoscopy department management device main unit 68.
[0056] The endoscopy department management device 68 anonymizes the endoscopic examination information 44 and transmits the anonymized endoscopic examination information 44 and cleaning information 66 to the support management server 74. Anonymization of the endoscopic examination information 44 means anonymizing the patient who would otherwise be identified from the patient ID contained in the endoscopic examination information 44.
[0057] The support management server 74 receives endoscopic examination information 44 and cleaning information 66, and stores the received endoscopic examination information 44 and cleaning information 66 in the management information storage device 76. The support management server 74 selectively retrieves the endoscopic examination information 44 and cleaning information 66 from the management information storage device 76 as needed, and performs processing using the retrieved information.
[0058] Figure 2 shows an example of the workflow for handling endoscopes performed by an endoscopy technician. For the sake of explanation, the following description assumes that a usable endoscope scope 24 (for example, an endoscope scope 24 that has been cleaned by a cleaning machine 52) is stored by an endoscopy technician in a storage room (not shown) within the medical facility.
[0059] In the endoscope handling procedure shown in Figure 2, first, in step ST10, the endoscope scope 24 is taken out of the storage room by the endoscopy examination personnel and transported into one of the multiple examination rooms 30.
[0060] In the next step, ST12, the endoscope scope 24 is connected to the information processing device 36 in the examination room 30 via the light source device 31 and the endoscope processor device 32.
[0061] In the next step, ST14, the barcode 42 of the endoscope scope 24 is read by the barcode reader 40 in the examination room 30. As a result, the endoscope ID of the endoscope scope 24 is obtained by the information processing device 36.
[0062] In the next step, ST16, the examination start button 38A of the information processing device 36 is turned on. The endoscope processor device 32 also has an examination start button (not shown), and the examination start button of the endoscope processor device 32 is turned on. This starts the endoscopic examination. Here, as an example, the processing of step ST14 is shown to be performed before the processing of step ST16, but this is only an example, and the processing of step ST16 may be performed before the processing of step ST14. In other words, the order of steps ST14 and ST16 may be reversed.
[0063] For the sake of explanation, the following description assumes that the endoscopic examination is initiated only when the examination start button 38A is turned on, but the technology of this disclosure is not limited to this. For example, the endoscope processor device 32 may also have an examination start button similar to the examination start button 38A of the information processing device 36, and the endoscopic examination may be initiated only when the examination start button 38A of the information processing device 36 is turned on, and the examination start button of the endoscope processor device 32 is also turned on. In this case, the endoscope processor device 32 and the information processing device 36 are examples of "information processing devices" related to the technology of this disclosure.
[0064] In the next step, ST18, an examination using the endoscope 24 (such as imaging of the area to be observed by the imaging unit 24B of the endoscope 24) is performed by a physician or other medical professional. As a result, the information processing device 36 generates an image based on the imaging signal obtained by the imaging unit 24B.
[0065] In the next step, ST20, the examination start button 38A on the information processing device 36 is turned off. The examination start button on the endoscope processor device 32 is also turned off. This ends the endoscopic examination. The time the information processing device 36 is operating is the time from when the examination start button 38A is turned on in step ST16 until when the examination start button 38A is turned off in step ST20, and corresponds to the time the endoscopic examination is being performed (hereinafter also referred to as "examination time").
[0066] For the sake of explanation, the following description assumes that the endoscopic examination is terminated when the examination start button 38A is turned off, but the technology of this disclosure is not limited to this. For example, the endoscopic examination may be terminated when both the examination start button 38A of the information processing device 36 and the examination start button of the endoscope processor device 32 are turned off.
[0067] In the next step, ST22, the endoscope scope 24 used in step ST18 is manually cleaned. In the next step, ST24, the barcode 42 of the manually cleaned endoscope scope 24 is read by the barcode reader 64 in the cleaning machine room 50. As a result, the endoscope ID of the endoscope scope 24 is obtained by the cleaning machine management device 54.
[0068] In the next step, ST26, the endoscope scope 24 is placed into the washing tank of the washing machine 52. In the next step, ST28, the washing start button 60A is turned on.
[0069] The time between the endoscopy examination being completed and the cleaning machine 52 starting to clean the endoscope scope 24, that is, the time from when the examination start button 38A is turned off in step ST20 until the cleaning start button 60A is turned on in step ST28, is the cleaning waiting time before the cleaning machine 52 starts cleaning the endoscope scope 24. The cleaning waiting time is also the time during which manual cleaning of the endoscope scope 24 is performed. For the sake of explanation, the cleaning waiting time, that is, the time during which manual cleaning of the endoscope scope 24 is performed, will also be referred to as the "manual cleaning time" below.
[0070] In the next step, ST30, the cleaning of the endoscope scope 24, which was placed in the cleaning tank in step ST26, by the cleaning machine 52 begins. In the next step, ST32, after the specified time has elapsed since the cleaning start button 60A was turned on in step ST28, the cleaning of the endoscope scope 24, which was placed in the cleaning tank in step ST26, by the cleaning machine 52 is completed, and one endoscope handling operation is finished.
[0071] The time from when the cleaning start button 60A is turned on in step ST28 until the cleaning of the endoscope scope 24 by the cleaning machine 52 is completed in step ST32 is the time equivalent to the time it takes for the endoscope scope 24 to be cleaned by the cleaning machine 52 (hereinafter also referred to as the "automatic cleaning time").
[0072] In the next step, ST34, the endoscope scope 24 is removed from the washing machine 52 and stored in the storage room.
[0073] When N is a natural number, the time required in a specific examination room 30 from the time the Nth endoscopic examination is completed (when the examination start button 38A is turned off in step ST20 included in the Nth endoscopic handling operation) to the time the N+1th endoscopic examination is started (when the examination start button 38A is turned on in step ST16 included in the N+1th endoscopic handling operation) is the time that is waiting for an endoscopic examination in the specific examination room 30 (hereinafter also referred to as "examination waiting time"). Here, the Nth endoscopic examination is an example of the "first endoscopic procedure operation which is the Nth endoscopic procedure operation" related to the technology of this disclosure, and the N+1th endoscopic examination is an example of the "second endoscopic procedure operation which is the N+1th endoscopic procedure operation" related to the technology of this disclosure.
[0074] As an example, as shown in Figure 3, the endoscopy department management device main unit 68 is equipped with a CPU 78, storage 80, memory 82, a communication interface 84 for support devices, a communication interface 86 for multiple examination rooms, and a communication interface 88 for the washing machine. The CPU 78, storage 80, memory 82, communication interface 84 for support devices, communication interface 86 for multiple examination rooms, and communication interface 88 for the washing machine are connected to a bus 90.
[0075] The CPU 78 controls the entire endoscopy department management system 68. The storage 80 is a non-volatile memory device that stores various programs and parameters. Examples of storage 80 include EEPROM, SSD, and / or HDD. The memory 82 is a memory that temporarily stores information and is used as work memory by the CPU 78. Examples of memory 82 include RAM.
[0076] The support device communication interface 84 is connected to the network 22 and is responsible for the exchange of information between the CPU 78 and the support management server 74. For example, the support device communication interface 84 transmits information requested by the CPU 78 to the support management server 74 via the network 22, receives information transmitted from the support management server 74, and outputs the received information to the CPU 78.
[0077] A laboratory communication interface (I / F) 86 is provided for each laboratory 30 and is connected to the information processing unit 38 within the laboratory 30. The laboratory communication interface 86 is responsible for the exchange of information between the CPU 78 and the information processing unit 38. For example, the laboratory communication interface 86 transmits information requested by the CPU 78 to one of the multiple information processing unit 38 designated by the CPU 78. The laboratory communication interface 86 also acquires endoscopic examination information 44 from the information processing unit 38 and outputs the acquired endoscopic examination information 44 to the CPU 78.
[0078] The washing machine communication interface 88 is connected to the washing machine management unit 62 and is responsible for the exchange of information between the CPU 78 and the washing machine management unit 62. For example, the washing machine communication interface 88 transmits information to the washing machine management unit 62 in response to a request from the CPU 78. The washing machine communication interface 88 also acquires washing information 66 from the washing machine management unit 62 and outputs the acquired washing information 66 to the CPU 78.
[0079] As an example, as shown in Figure 4, in the endoscopy department management device main unit 68, the storage 80 stores the management device control program 92. The CPU 78 reads the management device control program 92 from the storage 80 and executes the read management device control program 92 on the memory 82 to perform management device control processing (see Figure 10). Management device control processing is realized by the CPU 78 operating as a receiving unit 78A, a transmitting unit 78B, a memory control unit 78C, and a display control unit 78D according to the management device control program 92. The specific processing details by the receiving unit 78A, the transmitting unit 78B, the memory control unit 78C, and the display control unit 78D will be described later with reference to Figure 10.
[0080] The storage 80 contains an endoscopy examination management database 94 and a washing machine management database 96. The memory control unit 78C acquires endoscopy examination information 44 (see Figures 1 and 3) via the examination room communication interface 86 (see Figure 3) and stores the acquired endoscopy examination information 44 in the endoscopy examination management database 94. The memory control unit 78C also acquires washing information 66 (see Figures 1 and 3) via the washing machine communication interface 88 (see Figure 3) and stores the acquired washing information 66 in the washing machine management database 96. For the sake of explanation, in the following, when it is not necessary to distinguish between the endoscopy examination management database 94 and the washing machine management database 96, they will also be referred to as the "medical facility-side management database."
[0081] As an example, as shown in Figure 5, the endoscopic examination management database 94 stores endoscopic examination information 44 acquired by the memory control unit 78C from each information processing unit 38 installed in each of the multiple examination rooms 30. In the endoscopic examination management database 94, the examination start time and examination end time are associated with each endoscope ID and each information processing unit ID. In addition, the patient ID is associated with the examination start time or examination end time (not shown).
[0082] As an example, as shown in Figure 6, the cleaning machine management database 96 stores cleaning information 66 acquired by the memory control unit 78C from the cleaning machine management device main unit 62. In the cleaning machine management database 96, the cleaning start time and cleaning end time are associated with each endoscope ID and each cleaning machine ID.
[0083] As an example, as shown in Figure 7, the support management server 74 includes a CPU 98, storage 100, memory 102, and communication I / F 104. The CPU 98 is an example of a "processor" related to the technology of this disclosure, and the memory 102 is an example of a "memory" related to the technology of this disclosure.
[0084] The CPU 98, storage 100, memory 102, and communication interface 104 are connected to the bus 106. A management information storage device 76 is also connected to the bus 106. Examples of management information storage devices 76 include EEPROM, SSD, and / or HDD. The management information storage device 76 stores anonymized management information.
[0085] The CPU 98 controls the entire support management server 74. The storage 100 is a non-volatile memory device that stores various programs and parameters. Examples of storage 100 include EEPROM, SSD, and / or HDD. The memory 102 is a memory that temporarily stores information and is used as work memory by the CPU 98. Examples of memory 102 include RAM.
[0086] The communication interface 104 is connected to the endoscopy department management system main unit 68 via the network 22 and is responsible for the exchange of information between the CPU 98 and the endoscopy department management system main unit 68. For example, the communication interface 104 receives information transmitted from the endoscopy department management system main unit 68 and outputs the received information to the CPU 78. The communication interface 104 also transmits information to the endoscopy department management system main unit 68 via the network 22 in response to requests from the CPU 98.
[0087] As an example, as shown in Figure 8, in the support management server 74, the storage 100 stores the medical business support processing program 108. The support management server 74 is an example of a "computer" related to the technology of this disclosure, and the medical business support processing program 108 is an example of a "program" related to the technology of this disclosure.
[0088] The CPU 98 reads the medical business support processing program 108 from the storage 100 and executes the read medical business support processing program 108 on the memory 102 to perform medical business support processing (see Figure 11). Medical business support processing is realized by the CPU 98 operating as a receiving unit 98A, a transmitting unit 98B, an acquisition unit 98C, a memory control unit 98D, an output unit 98E, a generation unit 98F, and a specific unit 98G according to the medical business support processing program 108. The specific processing details by the receiving unit 98A, the transmitting unit 98B, the acquisition unit 98C, the memory control unit 98D, the output unit 98E, the generation unit 98F, and the specific unit 98G will be described later with reference to Figure 11.
[0089] The CPU98 performs medical business support processing to derive the required number of endoscope scopes 24 (hereinafter also simply referred to as "required number of scopes") based on the examination cycle and scope cycle, and outputs medical business support information based on the derived required number of scopes.
[0090] Here, the examination cycle refers to the sum of the average examination time required for the endoscopic examination and the shortest waiting time selected as the shortest waiting time for the examination (see Figure 2). The scope cycle refers to the sum of the average examination time required for the endoscopic examination and the average cleaning time from the end of the endoscopic examination until the cleaning of the endoscope scope 24 is completed. Here, the average cleaning time from the end of the endoscopic examination until the cleaning of the endoscope scope 24 is completed is the sum of the average manual cleaning time (see Figure 2) and the average automatic cleaning time (see Figure 2). For the sake of explanation, below, the average examination time required for the endoscopic examination will be simply referred to as the "average examination time," the average cleaning time from the end of the endoscopic examination until the cleaning of the endoscope scope 24 will be simply referred to as the "average cleaning time," the average manual cleaning time will be simply referred to as the "average manual cleaning time," and the average automatic cleaning time will be simply referred to as the "average automatic cleaning time."
[0091] The average inspection time is an example of the "standard procedure time" related to the technology disclosed herein, the shortest waiting time is an example of the "standard waiting time" related to the technology disclosed herein, and the average cleaning time is an example of the "standard cleaning time" related to the technology disclosed herein. In addition, the average manual cleaning time is an example of the "first cleaning time" related to the technology disclosed herein, and the average automated cleaning time is an example of the "second cleaning time" related to the technology disclosed herein.
[0092] As will be explained in more detail later, medical support information includes information that allows for the identification of the required number of scopes. Medical support information includes screen information showing medical support screen 114 (see Figure 12), which contains information that allows for the identification of the required number of scopes.
[0093] As an example, as shown in Figure 9, a support device management database 113 is constructed in the management information storage device 76. The support device management database 113 includes an endoscopy examination management database 110 and a washing machine management database 112. The endoscopy examination management database 110 stores anonymized endoscopy examination information 44, and the washing machine management database 112 stores washing information 66.
[0094] The memory control unit 98D acquires anonymized endoscopic examination information 44 from the endoscopy department management device main unit 68 via the communication interface 104 (see Figure 7) and stores the acquired endoscopic examination information 44 in the endoscopic examination management database 110. The memory control unit 98D acquires cleaning information 66 (see Figure 6) from the endoscopy department management device main unit 68 via the communication interface 104 (see Figure 7) and stores the acquired cleaning information 66 in the cleaning machine management database 112.
[0095] Next, we will explain how the medical support system works.
[0096] Figure 10 shows an example of the flow of control processing performed by the CPU 78 of the endoscopy department management device 12. In this embodiment, the information processing device 36 will be used as an example of a medical device in the following description.
[0097] In the control device control process shown in Figure 10, first, in step ST100, the receiving unit 78A determines whether or not the managed information has been received via the laboratory communication I / F 86 (see Figure 3) or the washing machine communication I / F 88 (see Figure 3). If, in step ST100, the managed information has not been received via the laboratory communication I / F 86 or the washing machine communication I / F 88, the determination is denied, and the control device control process proceeds to step ST114. If, in step ST100, the managed information has been received via the laboratory communication I / F 86 or the washing machine communication I / F 88, the determination is affirmed, and the control device control process proceeds to step ST102.
[0098] In step ST102, the memory control unit 78C stores the management information received in step ST100 via the laboratory communication I / F 86 or the washing machine communication I / F 88 in the medical facility's management database. Specifically, the endoscopic examination information 44 is stored in the endoscopic examination management database 94 (see Figures 4 and 5), and the washing information 66 is stored in the washing machine management database 96 (see Figures 4 and 6). After the processing in step ST102 is completed, the management device control processing moves to step ST104.
[0099] In step ST104, the transmission unit 78B transmits the management information received in step ST100 to the support management server 74 via the support device communication interface 84 (see Figure 3). After the processing in step ST104 is completed, the management device control processing proceeds to step ST106.
[0100] In step ST106, the transmission unit 78B determines whether the support screen display conditions, which are the conditions for displaying the medical business support screen 114 (see Figure 12) on the display 72 (see Figures 1 and 3), have been satisfied. A first example of the support screen display conditions is that the reception device 70 (see Figures 1 and 3) has received an instruction to display the medical business support screen 114 on the display 72. A second example of the support screen display conditions is that a predetermined time (for example, 10pm) has arrived. Furthermore, a third example of the support screen display conditions is that the amount of managed information stored in the medical facility management database has reached a predetermined amount.
[0101] In step ST106, if the support screen display conditions are not met, the determination is denied, and the management device control process proceeds to step ST114. In step ST106, if the support screen display conditions are met, the determination is affirmed, and the management device control process proceeds to step ST108.
[0102] In step ST108, the transmitting unit 78B requests the support management server 74 to transmit medical business support information via the support device communication I / F 84 (see Figure 3). After the processing in step ST108 is completed, the management device control processing proceeds to step ST110.
[0103] When step ST108 is executed, steps ST206 to ST222, which are included in the medical business support process shown in Figure 11, are executed by the support management server 74, and when step ST220 is executed, medical business support information is transmitted from the support management server 74 to the endoscopy department management device 12 via the network 22.
[0104] In step ST110, the receiving unit 78A determines whether or not the medical business support information transmitted from the support management server 74 has been received by the support device communication interface 84 (see Figure 3). If the medical business support information has not been received by the support device communication interface 84 in step ST110, the determination is denied, and the determination in step ST110 is repeated. If the medical business support information has been received by the support device communication interface 84 in step ST110, the determination is affirmed, and the management device control process proceeds to step ST112.
[0105] In step ST112, the display control unit 78D performs step S T110 generates a medical business support screen 114 (see Figure 12) using medical business support information received via the support device communication I / F 84, and displays the medical business support screen 114 on the display 72 (see Figures 1 and 3) (see Figure 12). After the processing in step ST112 is executed, the management device control processing moves to step ST114.
[0106] In step ST114, the display control unit 78D determines whether the conditions for terminating the management device control process (hereinafter referred to as "management device control process termination conditions") have been met. Examples of management device control process termination conditions include the condition that an instruction to terminate the management device control process has been received by the receiving device 70 (see Figures 1 and 3).
[0107] In step ST114, if the conditions for terminating the control device processing are not met, the determination is rejected, and the control device processing proceeds to step ST100. In step ST114, if the conditions for terminating the control device processing are met, the control device processing terminates.
[0108] Figure 11 shows an example of the flow of medical business support processing performed by the CPU 98 of the support management server 74.
[0109] In the medical business support process shown in Figure 11, first, in step ST200, the receiving unit 98A determines whether the managed information transmitted by the execution of the process in step ST100, which is included in the management device control process shown in Figure 10, has been received by the communication I / F 104 (see Figure 7). If the managed information has not been received by the communication I / F 104 in step ST200, the determination is denied, and the medical business support process proceeds to step ST222. If the managed information has been received by the communication I / F 104 in step ST200, the determination is affirmed, and the medical business support process proceeds to step ST202.
[0110] In step ST202, the memory control unit 98D stores the managed information received by the communication I / F 104 in step ST200 in the support device management database 113. Specifically, the endoscopic examination information 44 is stored in the endoscopic examination management database 110 (see Figure 9), and the cleaning information 66 is stored in the cleaning machine management database 112 (see Figure 9). After the processing in step ST202 is completed, the medical business support processing moves to step ST204.
[0111] In step ST204, the receiving unit 98A determines whether or not the endoscopy department management device 12 has requested the transmission of medical support information by executing the process in step ST108, which is included in the management device control process shown in Figure 10. If the endoscopy department management device 12 has not requested the transmission of medical support information in step ST204, the determination is denied, and the medical support process proceeds to step ST222. If the endoscopy department management device 12 has requested the transmission of medical support information in step ST204, the determination is affirmed, and the medical support process proceeds to step ST206.
[0112] In step ST206, the identification unit 98G refers to the endoscopy examination management database 110 (see Figure 9) to identify the day when the medical device is operating at its peak (hereinafter also referred to as the "peak operating day"), and also identifies the examination time period when the medical device is operating at its peak on the peak operating day (hereinafter also referred to as the "peak operating time period").
[0113] In this embodiment, the peak operating day refers to the day when the operating status of all information processing devices 36 (hereinafter also referred to as "all information processing devices 36") installed in all examination rooms 30 is at its peak within a pre-specified period (for example, a period specified by the user, etc.). In this embodiment, the peak operating time period refers to the examination time period on the peak operating day when the operating status of all information processing devices 36 is at its peak. Hereinafter, for the sake of explanation, the peak operating day and peak operating time period will also be referred to as the "peak operating date and time." The peak operating date and time is an example of "a period when the degree of operation of medical devices used in endoscopic handling operations, including endoscopic procedures, is above a standard level" related to the technology of this disclosure. The degree of operation of medical devices refers to information indicating the percentage of medical device operation that can be obtained by the medical work support device, and is shown, for example, as a value based on the number of endoscopic examinations. The value based on the number of endoscopic examinations refers, for example, to the number of endoscopic examinations per day or per hour, or per predetermined period. Furthermore, the value based on the number of endoscopic examinations indicates the total number of endoscopic examinations performed by multiple medical devices over a predetermined period, if the medical support device can acquire data from multiple medical devices. The value based on the number of endoscopic examinations may also be obtained by referring to the endoscopic examination management database and using information on the start and end times of each endoscopic examination. The standard degree is a standard value. More specifically, it is a standard value for determining periods in which endoscopic examinations are concentrated, such as peak operating days or peak operating hours. The standard value may be a pre-set fixed value or a variable value that changes according to user input. The standard value may also be a variable value calculated based on the number of endoscopic examinations performed in the past. The standard value may be, for example, the average number of endoscopic examinations performed in the past, the maximum number of endoscopic examinations performed in the past, or the maximum value plus or multiplied by a predetermined value. Furthermore, if the degree of medical device operation indicates the number of endoscopic examinations per first period (e.g., one day), the largest value among the number of endoscopic examinations per first period in a second period (e.g., one week) that is longer than the first period may be used as the standard value.
[0114] Here, the day with the highest number of endoscopic examinations is defined as the peak operating day. Furthermore, the examination time period during which the average operating time of all information processing devices 36 is highest on the peak operating day is defined as the peak operating time period. The peak operating date and time obtained in this way is an example of a "period where the value based on the number of endoscopic procedures exceeds the standard value" related to the technology disclosed herein. Also, while peak operating days and peak operating times are given as examples here, this is merely one example, and the peak operating time period is not necessarily the highest. day In addition, instead of peak operating times, a date or time specified by the user may be used.
[0115] The day on which an endoscopic examination was performed can be identified from the start time or end time of the examination in the endoscopic examination information 44 stored in the endoscopic examination management database 110. Therefore, in step ST206, the day with the highest number of endoscopic examinations is identified by the identification unit 98G from the start time or end time of the examination in the endoscopic examination information 44 contained in the endoscopic examination management database 110. In addition, the operating time of all information processing devices 36 can also be identified from the start time and end time of the examination in the endoscopic examination information 44 stored in the endoscopic examination management database 110. Therefore, in step ST206, the peak operating time is identified by the identification unit 98G from the start time and end time of the examination in the endoscopic examination information 44 contained in the endoscopic examination management database 110.
[0116] The peak operating days may be determined from all periods that can be identified from the endoscopic examination information 44 stored in the endoscopic examination management database 110, or they may be specified from the endoscopic examination information 44 stored in the endoscopic examination management database 110 (for example, a specified number of years, a specified number of months, or a specified number of days). The period is specified, for example, by a user via the reception device 70 of the endoscopy department management device 12 (see Figures 1 and 3).
[0117] Furthermore, the peak operating time is not limited to the average operating time of all information processing devices 36, but may also be the inspection time when the number of operating information processing devices 36 is highest, or the inspection time when the median operating time of the information processing devices 36 is highest, or any inspection time selected based on statistical values of the number and / or operating time of the information processing devices 36.
[0118] Furthermore, while peak operating times are given as examples here, these are merely examples, and you may apply peak operating days instead of peak operating times.
[0119] In the next step, ST208, the derivation unit 98E refers to the support device management database 113 (see Figure 9) and calculates the scope cycle for the peak operating date and time identified in step ST206. After the processing in step ST208 is completed, the medical business support processing moves to step ST210.
[0120] The scope cycle calculated in step ST208 is the sum of the average inspection time during the peak operating time period identified in step ST206, the average manual washing time during the peak operating time period identified in step ST206, and the average automatic washing time during the peak operating time period identified in step ST206.
[0121] In step ST208, the average examination time included in the scope cycle is the average value of all examination times corresponding to all endoscope scopes 24 used during the peak operating time identified in step ST206. The examination time corresponding to the endoscope scope 24 used during the peak operating time identified in step ST206 is calculated by the derivation unit 98E from the examination start time and examination end time associated with the endoscope ID for the endoscope scope 24 used during the peak operating time identified in step ST206, among all examination start times and all examination end times included in the endoscope examination information 44 (see Figure 5) stored in the endoscope examination management database 110.
[0122] In step ST208, the average manual cleaning time included in the scope cycle is the average value of all manual cleaning times corresponding to all endoscope scopes 24 used during the peak operating time identified in step ST206. The manual cleaning time corresponding to the endoscope scopes 24 used during the peak operating time identified in step ST206 is calculated by the derivation unit 98E from the examination end time and the cleaning start time. The examination end time used to calculate the manual cleaning time is the examination end time associated with the endoscope ID for the endoscope scope 24 used during the peak operating time identified in step ST206, from among all examination end times included in the endoscope examination information 44 (see Figure 5) stored in the endoscope examination management database 110. The cleaning start time used to calculate the manual cleaning time is the cleaning start time associated with the endoscope ID for the endoscope scope 24 used during the peak operating time identified in step ST206, from among all cleaning start times included in the cleaning information 66 (see Figure 6) stored in the cleaning machine management database 112.
[0123] In step ST208, the average automatic cleaning time included in the scope cycle is the average value of all automatic cleaning times corresponding to all endoscope scopes 24 used during the peak operating time identified in step ST206. The automatic cleaning time corresponding to the endoscope scope 24 used during the peak operating time identified in step ST206 is calculated by the derivation unit 98E from the cleaning start time and cleaning end time associated with the endoscope ID for the endoscope scope 24 used during the peak operating time identified in step ST206, among all cleaning start and cleaning end times included in the cleaning information 66 (see Figure 6) stored in the cleaning machine management database 112.
[0124] Here, the sum of the average inspection time, average manual washing time, and average automatic washing time is given as an example of a scope cycle. However, the technology of this disclosure is not limited to this, and the scope cycle may be the sum of the average inspection time, average manual washing time, average automatic washing time, and minimum waiting time.
[0125] In step ST210, the output unit 98E refers to the endoscopy examination management database 110 (see Figure 9) and calculates the examination cycle for the peak operating date and time identified in step ST206. After the processing in step ST210 is completed, the medical business support processing moves to step ST212.
[0126] The inspection cycle calculated in step ST210 is the sum of the average inspection time for the peak operating time identified in step ST206 and the shortest waiting time for the peak operating time identified in step ST206.
[0127] In step ST210, the average inspection time included in the inspection cycle is the same as the average inspection time included in the scope cycle in step ST208.
[0128] In step ST210, the shortest waiting time included in the examination cycle is calculated by the derivation unit 98E from all examination start times and examination end times corresponding to all endoscope IDs included in the endoscopic examination information 44 (see Figure 5) stored in the endoscopic examination management database 110. That is, the shortest time from the end time of the Nth endoscopic examination to the start time of the N+1th endoscopic examination for all endoscope scopes 24 is used as the shortest waiting time included in the examination cycle.
[0129] In step ST212, the identification unit 98G identifies the number of examination rooms 30 where endoscopic examinations are performed during the peak operating time identified in step ST206 (hereinafter also referred to as "number of examination rooms"), and also identifies the type of endoscopic examination performed during the peak operating time identified in step ST206 (hereinafter also referred to as "type of examination"). After the processing in step ST212 is executed, the medical business support processing moves to step ST214.
[0130] In step ST212, the number of examination rooms matches the number of information processing devices 36 operating during the peak operating time identified in step ST206. This is because one information processing device 36 is installed for each examination room 30. Therefore, the identification unit 98G identifies the number of examination rooms by identifying the number of information processing device IDs corresponding to the peak operating time identified in step ST206 from the endoscopic examination information 44 stored in the endoscopic examination management database 110. In other words, the number of information processing device IDs is recognized by the identification unit 98G as the number of examination rooms.
[0131] In step ST212, the examination type is derived by the identification unit 98G from, for example, an examination type derivation table (not shown). For example, the examination type derivation table is a table in which endoscope IDs and endoscopic examination type information are associated. Endoscopic examination type information refers to information indicating the type of endoscopic examination in which the endoscope scope 24 identified from the endoscope ID is used. The type of endoscopic examination refers to, for example, the use of the endoscope scope 24. Examples of endoscopic examination types include upper gastrointestinal examination, pancreatic duct examination, bile duct examination, duodenal examination, colon examination, intracerebral examination, otolaryngological examination, bronchial examination, oral endoscopy, and transnasal endoscopy.
[0132] The specific unit 98G derives endoscopic examination type information corresponding to the endoscope ID associated with the peak operating date and time identified in step ST206 from the examination type derivation table, thereby identifying the type of endoscopic examination being performed at the peak operating date and time identified in step ST206.
[0133] Here, an example is given in which the identification unit 98G identifies the type of endoscopic examination using an examination type derivation table. However, this is merely one example, and the identification unit 98G may also identify the type of endoscopic examination from the endoscopic examination information 44. In this case, for example, the endoscopic examination type information can be associated with the examination start time and / or examination end time of the endoscopic examination information 44 by the endoscopic department management device 12 or the information processing device 36. This makes it possible for the identification unit 98G to identify the type of endoscopic examination from the endoscopic examination type information associated with the examination start time and / or examination end time corresponding to the peak operating date and time identified in step ST206.
[0134] In step ST214, the derivation unit 98E calculates the required number of scopes based on the scope cycle calculated in step ST208, the examination cycle calculated in step ST210, and the number of examination rooms identified in step ST212. After the processing in step ST214 is completed, the medical business support processing proceeds to step ST216.
[0135] In step ST214, the required number of scopes is derived by the derivation unit 98E based on the ratio of scope cycles to examination cycles. Specifically, the required number of scopes is calculated using the formula "{(scope cycles) / (examination cycles)} × number of examination rooms". That is, the required number of scopes is the value obtained by multiplying the ratio of scope cycles calculated in step ST208 to examination cycles calculated in step ST210 by the number of examination rooms identified in step ST212. In step ST214, the number of examination rooms is an example of the "number of medical facilities where endoscopic procedures are performed" related to the technology of this disclosure.
[0136] Furthermore, in step ST214, the ratio of the scope cycle calculated in step ST208 to the inspection cycle calculated in step ST210 was given as an example. At least one of the inspection cycle and scope cycle used here may have a fine-tuning time added to it, subtracted from it, or multiplied by a fine-tuning coefficient.
[0137] In step ST216, the generation unit 98F generates notification information indicating the required number of scopes calculated in step ST214. This notification information is visualized and displayed on the medical support screen 114 (see Figure 12). After the processing in step ST216 is completed, the medical support process moves to step ST218.
[0138] In step ST218, the generation unit 98F generates medical business support information based on the required number of scopes calculated in step ST214. After the processing in step ST218 is completed, the medical business support processing proceeds to step ST220.
[0139] In step ST218, the medical operations support information includes peak operating time, number of laboratory units, type of test, scope cycle, test cycle, average test time, average manual cleaning time, average automated cleaning time, shortest waiting time, and notification information.
[0140] Medical support information is information that can be represented by a display device (in this case, a display 72 as an example) in the form of comments, figures, and tables, and includes screen information showing the medical support screen 114 (see Figure 12). While this example shows the screen information being generated by the medical support device 20, this is merely an example; for example, the screen information may be generated by another device, such as the endoscopy department management device 12.
[0141] In step ST220, the transmission unit 98B transmits the medical support information generated in step ST218 to the endoscopy department management device main unit 68 via the communication interface 104 (see Figure 7). After the processing in step ST220 is completed, the medical support processing proceeds to step ST222.
[0142] In step ST222, the transmission unit 98B determines whether the conditions for terminating the medical support processing (hereinafter referred to as "medical support processing termination conditions") have been met. Examples of medical support processing termination conditions include the condition that an instruction to terminate the medical support processing has been received by the receiving device (not shown).
[0143] If the medical support processing termination conditions are not met in step ST222, the determination is denied, and the medical support processing proceeds to step ST200. If the medical support processing termination conditions are met in step ST222, the determination is affirmed, and the medical support processing terminates.
[0144] When the medical support information is transmitted by the execution of the process in step ST220, the medical support information is received by the support device communication I / F 84 of the endoscopy department management device 12, as described above (see step ST110 shown in Figure 10). Then, as shown in step ST112 shown in Figure 10, the display control unit 78D of the endoscopy department management device 12 generates a medical support screen 114 (see Figure 12) based on the medical support information, and the generated medical support screen 114 is displayed on the display 72 (see Figure 12).
[0145] As an example, as shown in Figure 12, the medical operations support screen 114 displays the screen title display field 114A, the date for calculating the required number of scopes display field 114B, the average examination time display field 114C, the average manual washing time display field 114D, the average automatic washing time display field 114E, the shortest waiting time display field 114F, the required number of scopes display field 114G, the reference information display field 114H, the caution information display field 114I, the examination type display field 114J, and the examination support comment display field 114K.
[0146] The screen title display area 114A displays a title that makes it clear that the medical support screen 114 is a screen that shows the estimation of the required number of scopes. In the example shown in Figure 12, the screen title display area 114A displays "Estimation of Required Number of Scopes".
[0147] The required scope count calculation target date display field 114B shows the peak operating date and time identified in step ST206 shown in Figure 11. In the example shown in Figure 12, the peak operating date and time is expressed in terms of year, month, day, day of the week, and time zone, such as "Target date: 20XX / 2 / 10 (Mon) 11:00s".
[0148] The average inspection time display field 114C shows the average inspection time used in calculating the scope cycle for step ST208 and the inspection cycle for step ST210, as shown in Figure 11. The average manual washing time display field 114D shows the average manual washing time used in calculating the scope cycle for step ST208, as shown in Figure 11. The average automatic washing time display field 114E shows the average automatic washing time used in calculating the scope cycle for step ST208, as shown in Figure 11. The shortest waiting time display field 114F shows the shortest waiting time used in calculating the inspection cycle for step ST210, as shown in Figure 11.
[0149] The required number of scopes display field 114G shows the required number of scopes calculated in step ST214 shown in Figure 11. The required number of scopes display field 114G also displays the formula used to calculate the required number of scopes, the scope cycle, the inspection cycle, and the number of inspection rooms.
[0150] Reference information is displayed in the reference information display area 114H. In the example shown in Figure 12, examples of reference information include the method for calculating the scope cycle (in the example shown in Figure 12, "scope cycle = average inspection time + average manual washing time + average automatic washing time") and the method for calculating the inspection cycle (in the example shown in Figure 12, "inspection cycle = average inspection time + minimum waiting time").
[0151] Warning information is displayed in the warning information display area 114I. In the example shown in Figure 12, as an example of warning information, a comment is displayed in the required number of scopes display area 114G indicating that the required number of scopes is a simulated value and not a guaranteed value.
[0152] The examination type display section 114J shows information for each examination room 30 indicating the type of examination identified in step ST212 shown in Figure 11, that is, the type of endoscopic examination performed in each examination room 30 during peak operating hours.
[0153] The examination support comment display area 114K displays comments regarding the number of endoscopes required, calculated based on the examination cycle and scope cycle. In the example shown in Figure 12, the examination support comment display area 114K displays the comment, "Based on the examination cycle and scope cycle, approximately 8 endoscopes may be required."
[0154] As described above, in the medical work support device 20 according to this embodiment, the required number of scopes is derived based on the average examination time, average manual washing time, average automatic washing time, and shortest waiting time (steps shown in Figure 11). ST(See 214). The medical work support device 20 then transmits medical work support information based on the derived number of required scopes to the endoscopy department management device 12 (see step ST220 shown in Figure 11). The endoscopy department management device 12 generates a medical work support screen 114 based on the medical work support information and displays it on the display 72 (see step ST112 shown in Figure 10). The medical work support screen 114 presents the medical work support information to the user in a visualized state, so the user can grasp the number of required scopes. Therefore, this configuration can support the efficient execution of endoscopic procedures.
[0155] Furthermore, the required number of endoscopes is calculated based on the number of examination rooms, average examination time, average manual cleaning time, average automatic cleaning time, and minimum waiting time. Therefore, this configuration allows users to determine the required number of endoscopes 24 with greater accuracy compared to cases where users are asked to predict the required number of endoscopes 24 based only on the average examination time, average manual cleaning time, and average automatic cleaning time.
[0156] Furthermore, the required number of scopes is calculated based on the ratio of the scope cycle to the examination cycle, that is, the ratio of the sum of the average examination time, average manual cleaning time, and average automatic cleaning time to the sum of the average examination time and minimum waiting time. Therefore, with this configuration, compared to having the user determine the required number of endoscope scopes 24 based only on the examination cycle or scope cycle, it is possible to allow the user to determine the required number of endoscope scopes 24 with higher accuracy.
[0157] Furthermore, the scope cycle includes the average manual cleaning time and the average automatic cleaning time. Therefore, with this configuration, it is possible to obtain the required number of scopes with higher accuracy compared to cases where at least one of the average manual cleaning time and the average automatic cleaning time is not included in the scope cycle.
[0158] Furthermore, medical support information is visualized and presented as a medical support screen 114 via the display 72. Therefore, this configuration allows users to visually grasp the medical support information.
[0159] Furthermore, the medical support information includes notification information that informs the number of required scopes. The medical support information is visualized and presented as a medical support screen 114 via the display 72, and the number of required scopes is notified to the user via the medical support screen 114. Therefore, with this configuration, the user can be made aware of the number of required scopes.
[0160] Furthermore, the medical operations support device 20 derives the required number of scopes for peak operating times. The endoscopy department management device 12 then displays the required number of scopes for peak operating times on the medical operations support screen 114. Therefore, this configuration allows users to understand the required number of scopes for peak operating times.
[0161] Furthermore, the peak operating day is the day with the highest number of endoscopic examinations performed, and the peak operating time is the examination time period during which the average operating time of all information processing devices 36 on the peak operating day is the highest. Therefore, with this configuration, the number of endoscopes required during the examination time period on the day with the highest number of endoscopic examinations performed, where the average operating time of all information processing devices 36 is the highest, can be made known to the user.
[0162] In the above embodiment, regardless of the type of endoscopic examination, medical care is based on the number of scopes required during peak operating hours. business Although the explanation has described an example of how support information is generated and output by the CPU 98 of the support management server 74, the technology of this disclosure is not limited thereto. For example, the CPU 98 of the support management server 74 may acquire the examination cycle and scope cycle for each type of endoscopic examination, derive the required number of scopes based on the examination cycle and scope cycle for each type of endoscopic examination, and output medical support information based on the required number of scopes for each type of endoscopic examination.
[0163] In this case, for example, the medical business support processing shown in Figure 13 is performed by CPU 98. The flowchart shown in Figure 14 differs from the flowchart shown in Figure 11 in that it has steps ST206A to ST220A instead of steps ST206 to ST220.
[0164] In step ST206A shown in Figure 13, the identification unit 98G refers to the endoscopic examination management database 110 (see Figure 9) to identify the peak operating time for each type of examination. The method for identifying the type of examination is the same as the method used in step ST212A shown in Figure 11.
[0165] In step ST208A, the derivation unit 98E refers to the support device management database 113 (see Figure 9) and calculates the scope cycle for each inspection type for the peak operating date and time identified in step ST206A.
[0166] In step ST210A, the output unit 98E refers to the endoscopic examination management database 110 (see Figure 9) and calculates the examination cycle for each examination type for the peak operating date and time identified in step ST206A.
[0167] In step ST212A, the identification unit 98G identifies the number of inspection rooms for each type of inspection for the peak operating date and time identified in step ST206A.
[0168] In step ST214A, the derivation unit 98E calculates the required number of scopes for each type of inspection based on the scope cycle calculated in step ST208A, the inspection cycle calculated in step ST210A, and the number of inspection rooms identified in step ST212A.
[0169] In step ST216A, the generation unit 98F generates notification information for each inspection type, indicating the required number of scopes calculated in step ST214A.
[0170] In step ST218A, the generation unit 98F generates medical support information for each type of examination based on the required number of scopes calculated in step ST214A.
[0171] In step ST220A, the transmission unit 98B transmits the medical support information generated in step ST218A to the endoscopy department management device main unit 68 via the communication I / F 104 (see Figure 7) for each type of examination.
[0172] When medical support information is transmitted for each examination type by the execution of step ST220A shown in Figure 13, in step ST110 shown in Figure 10, the medical support information is received for each examination type by the support device communication I / F84 of the endoscopy department management device 12. Then, in step ST112 shown in Figure 10, the display control unit 78D of the endoscopy department management device 12 generates a medical support screen 116 (see Figure 14) for each examination type based on the medical support information, and the generated medical support screen 116 is displayed on the display 72 for each examination type (see Figure 14). In this case, for example, the medical support screen 116 for each examination type is displayed on the display 72 on a page-by-page basis.
[0173] Figure 14 shows an example of a medical support screen 116 when the type of endoscopic examination is an upper gastrointestinal examination.
[0174] It should be noted that the medical support screen 116 for upper gastrointestinal examinations is merely an example, and other types of medical support screens 116 for other types of endoscopic examinations also exist. When switching the display content of the medical support screen 116 to display content related to other types of endoscopic examinations, for example, the display control unit 78D (see Figure 4) switches the display content of the medical support screen 116 to display content related to other types of endoscopic examinations in accordance with instructions received by the reception device 70 (see Figures 1 and 3).
[0175] As an example, as shown in Figure 14, the medical operations support screen 116 displays the screen title display field 116A, the date for calculating the required number of scopes display field 116B, the average examination time display field 116C, the average manual washing time display field 116D, the average automatic washing time display field 116E, the shortest waiting time display field 116F, the required number of scopes display field 116G, the reference information display field 116H, the caution information display field 116I, the examination type display field 116J, and the examination support comment display field 116K.
[0176] The screen title display area 116A displays a title that makes it clear that the medical support screen 116 is a screen that shows an estimate of the number of scopes required for a specific type of endoscopic examination (in this case, upper gastrointestinal examination). In the example shown in Figure 14, the screen title display area 116A displays "Estimate of the number of scopes required for upper gastrointestinal examination".
[0177] The display column 116B for the date range used to calculate the required number of scopes shows the peak operating dates and times for upper gastrointestinal examinations, as identified in step ST206A shown in Figure 13.
[0178] The average examination time display field 116C shows the average examination time used in calculating the scope cycle in step ST208A and the examination cycle in step ST210A, as shown in Figure 13, for upper gastrointestinal examinations. The average manual washing time display field 116D shows the average manual washing time used in calculating the scope cycle in step ST208A, as shown in Figure 13, for upper gastrointestinal examinations. The average automatic washing time display field 116E shows the average automatic washing time used in calculating the scope cycle in step ST208A, as shown in Figure 13, for upper gastrointestinal examinations. The shortest waiting time display field 116F shows the shortest waiting time used in calculating the examination cycle in step ST210A, as shown in Figure 13, for upper gastrointestinal examinations.
[0179] The required number of scopes display section 116G shows the required number of scopes for upper gastrointestinal examinations, calculated in step ST214A as shown in Figure 13. The required number of scopes display section 116G also displays the formula used to calculate the required number of scopes, the scope cycle, the examination cycle, and the number of examination rooms for upper gastrointestinal examinations.
[0180] Reference information is displayed in the reference information display area 116H. In the example shown in Figure 14, examples of reference information include the method for calculating the scope cycle for upper gastrointestinal examinations (in the example shown in Figure 12, "scope cycle = average examination time + average manual washing time + average automatic washing time") and the method for calculating the examination cycle for upper gastrointestinal examinations (in the example shown in Figure 12, "examination cycle = average examination time + minimum waiting time").
[0181] Warning information is displayed in the warning information display area 116I. In the example shown in Figure 12, as an example of warning information, a comment is displayed in the required number of scopes display area 116G indicating that the required number of scopes for upper gastrointestinal examination is a simulated value and not a guaranteed value.
[0182] The examination type display section 116J shows information for each examination room 30 indicating the type of endoscopic examination performed in that room during peak operating hours (in this case, upper gastrointestinal examination as an example).
[0183] In the examination support comment display area 116K, comments regarding the required number of scopes calculated based on the examination cycle and scope cycle for upper gastrointestinal examinations are displayed.
[0184] In the example shown in Figure 13, the required number of scopes is derived for each type of inspection based on the average inspection time, average manual cleaning time, average automated cleaning time, and minimum waiting time (steps shown in Figure 13). ST(See 214A). Then, medical support information based on the derived required number of scopes is transmitted to the endoscopy department management device 12 for each type of examination (see step ST220A shown in Figure 13). The endoscopy department management device 12 also generates a medical support screen 116 based on the medical support information and displays it on the display 72. The medical support screen 116 presents the medical support information according to the type of examination to the user in a visualized state, so that the user can grasp the required number of scopes according to the type of examination. Therefore, this configuration can support the efficient execution of endoscopic procedures for each type of examination. In addition, since the medical support information according to the type of examination is displayed on the medical support screen 116, the user can recognize the required number of scopes according to the type of examination.
[0185] In the above embodiment, an example of how medical support information based on the required number of scopes is generated was described, but the technology of this disclosure is not limited thereto. For example, the CPU 98 of the support management server 74 may acquire the number of existing endoscope scopes 24 and output information including the required number of scopes and information based on the number of existing scopes as medical support information.
[0186] In this case, as shown in Figure 15 as an example, the generation unit 98F obtains the number of existing endoscopes 24 from the number of endoscope IDs included in the endoscope examination information 44 (see Figure 5) stored in the endoscope examination management database 110. Here, the number of endoscope IDs included in the endoscope examination information 44 stored in the endoscope examination management database 110 is considered to be the number of existing endoscopes 24, but the technology of this disclosure is not limited to this, and the actual number of endoscopes 24 that the medical facility possesses may be considered as the number of existing endoscopes 24.
[0187] The generation unit 98F obtains the required number of scopes from the derivation unit 98E. The generation unit 98F then generates medical business support information that includes information based on the required number of scopes and the existing number of scopes (hereinafter also referred to as "first number-related information"). The first number-related information is, for example, information that shows the degree of difference between the required number of scopes and the existing number of scopes (for example, the difference between the required number of scopes and the existing number of scopes, and / or the magnitude relationship between the required number of scopes and the existing number of scopes).
[0188] The transmitting unit 98B transmits medical support information, including the first number-related information, to the endoscopy department management device 12. When the medical support information, including the first number-related information, is transmitted to the endoscopy department management device 12, the medical support information, including the first number-related information, is received by the support device communication I / F 84 of the endoscopy department management device 12. In step ST112 shown in Figure 10, the display control unit 78D of the endoscopy department management device 12 generates a medical support screen with the first number-related information based on the medical support information, and the generated medical support screen with the first number-related information is displayed on the display 72.
[0189] The first medical support screen with related information differs from medical support screens 114 and 116 in that it displays information indicating the difference between the required number of scoped devices and the currently available number of devices in the form of comments (for example, comments expressing the difference between the required number of scoped devices and the currently available number of devices), figures (for example, graphs that allow comparison between the required number of scoped devices and the currently available number of devices), and / or tables (for example, tables that allow comparison between the required number of scoped devices and the currently available number of devices).
[0190] As shown in the example in Figure 15, the CPU 98 of the support management server 74 acquires the current number of endoscope scopes 24, and medical work support information, including first-order number-related information based on the required number of scopes and the current number of scopes, is transmitted to the endoscopy department management device 12. Then, a medical work support screen with the first-order number-related information is displayed on the display 72. Therefore, information based on the required number of scopes and the current number of scopes can be made known to users, etc. Moreover, since the information based on the required number of scopes and the current number of scopes indicates the degree of difference between the required number of scopes and the current number of scopes, users, etc. can be made aware of how much the required number of scopes and the current number of scopes deviate from each other.
[0191] Furthermore, the first number-related information may be generated for each type of examination, transmitted to the endoscopy department management device 12 for each type of examination, and a medical work support screen with the first number-related information may be displayed on the display 72 for each type of examination.
[0192] In the example shown in Figure 15, the number of existing units is illustrated, but the technology of this disclosure is not limited to this. For example, the CPU 98 of the support management server 74 may acquire the number of endoscope scopes 24 used within a predetermined period and output information based on the required number of scopes and the number of endoscope scopes 24 used within the predetermined period as medical business support information.
[0193] In this case, as shown in Figure 16 as an example, the generation unit 98F refers to the endoscopic examination management database 110 to obtain the number of endoscopic scopes 24 that have been used within a predetermined period (hereinafter also simply referred to as "number of uses"). An example of a predetermined period is the peak operating time. In addition to the peak operating time, it may also be the peak operating day. Furthermore, the predetermined period refers to a period determined according to instructions received by the reception device 70 (see Figures 1 and 3). The predetermined period can be defined in units of years, months, days, days of the week, hours, minutes, and / or seconds, and may be a fixed period or a variable period that is changed when instructions given by the user or when specific conditions (for example, when a specified time has arrived) are met.
[0194] The generation unit 98F obtains the required number of scopes from the derivation unit 98E. The generation unit 98F then generates medical business support information that includes information based on the required number of scopes and the number of scopes used (hereinafter also referred to as "second number-related information"). The second number-related information is, for example, information that shows the degree of difference between the required number of scopes and the number of scopes used (for example, the difference between the required number of scopes and the number of scopes used, and / or the magnitude relationship between the required number of scopes and the number of scopes used).
[0195] The transmitting unit 98B transmits medical support information, including second-number-related information, to the endoscopy department management device 12. When the medical support information, including second-number-related information, is transmitted to the endoscopy department management device 12, the medical support information, including second-number-related information, is received by the support device communication I / F 84 of the endoscopy department management device 12. In step ST112 shown in Figure 10, the display control unit 78D of the endoscopy department management device 12 generates a medical support screen with second-number-related information based on the medical support information, and the generated medical support screen with second-number-related information is displayed on the display 72.
[0196] The second medical support screen with related information differs from medical support screens 114 and 116 in that it displays information indicating the degree of difference between the required number of scopes and the number of scopes used in comments (for example, comments expressing the degree of difference between the required number of scopes and the number of scopes used), figures (for example, graphs that allow comparison between the required number of scopes and the number of scopes used), and / or tables (for example, tables that allow comparison between the required number of scopes and the number of scopes used).
[0197] As shown in the example in Figure 16, the CPU 98 of the support management server 74 acquires the number of endoscope scopes used, and medical work support information, including second-order number-related information based on the required number of scopes and the number of scopes used, is transmitted to the endoscopy department management device 12. Then, a medical work support screen with the second-order number-related information is displayed on the display 72. Therefore, information based on the required number of scopes and the number of scopes used can be made known to users, etc. Moreover, since the information based on the required number of scopes and the number of scopes used indicates the degree of difference between the required number of scopes and the number of scopes used, users, etc. can be made aware of how much the required number of scopes and the number of scopes used differ.
[0198] Furthermore, the second set of related information may be generated for each type of examination, transmitted to the endoscopy department management device 12 for each type of examination, and a medical work support screen with the second set of related information may be displayed on the display 72 for each type of examination.
[0199] In the above embodiment, an example was described in which medical business support information is generated by the generation unit 98F regardless of whether or not the endoscope scope 24 needs to be updated (e.g., replaced). However, the technology of this disclosure is not limited thereto. For example, the types of endoscope scopes 24 may be classified into types that do not require updating and types that do require updating, and the CPU 98 of the support management server 74 may output specific information that can identify the type that requires updating based on the attributes of the endoscope scope 24.
[0200] In this case, as shown in Figure 17 as an example... ,vinegarThe corp attribute database 118 stores multiple endoscope IDs for all endoscope scopes 24 owned by a medical facility, along with attribute information indicating the attributes of each endoscope scope 24, in an associated manner.
[0201] Here, the attribute of the endoscope scope 24 refers to, for example, the cumulative number of uses. However, the cumulative number of uses is merely an example, and the attributes of the endoscope scope 24 may also include cumulative operating time, frequency of use, repair history, number of repairs, repair frequency, failure rate, repair cost, purchase price, and / or medical fees.
[0202] The generation unit 98F obtains endoscope IDs from the endoscopy examination management database 110 for endoscope scopes 24 that have been used during peak operating times, and obtains attribute information corresponding to the obtained endoscope IDs from the scope attribute database 118.
[0203] The generation unit 98F refers to attribute information obtained from the endoscopy management database 110 and determines whether the endoscope scope 24 identified from the endoscope ID obtained from the endoscopy management database 110 is an endoscope scope 24 that needs updating. For example, if the attribute information is the cumulative number of uses, it is determined that updating is necessary if the cumulative number of uses exceeds a threshold (for example, 10,000 times). The threshold compared with the cumulative number of uses may be, for example, a value guaranteed by the manufacturer of the endoscope scope 24, or a value specified by the user.
[0204] If the generation unit 98F determines that an endoscope scope 24 identified from the endoscope ID obtained from the endoscope examination management database 110 is an endoscope scope 24 that requires updating, it generates update-required scope identification information that can identify the endoscope scope 24 that requires updating. The update-required scope identification information includes the endoscope ID related to the endoscope scope 24 that has been determined to require updating.
[0205] The generation unit 98F generates medical support information including scope identification information that needs updating. The transmission unit 98B transmits the medical support information including scope identification information that needs updating to the endoscopy department management device 12. When the medical support information including scope identification information that needs updating is transmitted to the endoscopy department management device 12, the medical support information including scope identification information that needs updating is received by the support device communication I / F 84 of the endoscopy department management device 12. In step ST112 shown in Figure 10, the display control unit 78D of the endoscopy department management device 12 generates a medical support screen with scope identification information that needs updating based on the medical support information including scope identification information that needs updating, and the generated medical support screen with scope identification information that needs updating is displayed on the display 72.
[0206] The medical support screen with information identifying endoscopes that need updating differs from medical support screens 114 and 116 in that it displays information that identifies the endoscope 24 that has been determined to need updating, in the form of comments, diagrams, and / or tables. Furthermore, the medical support screen with information identifying endoscopes that need updating may also display comments or other information that encourage the user to update (for example, replace) the endoscope 24, linked to the information that identifies the endoscope 24 that has been determined to need updating, or a screen introducing the latest endoscope 24 may be displayed on display 72.
[0207] As shown in the example in Figure 17, the CPU 98 of the support management server 74 transmits information identifying the endoscope scopes that need updating to the endoscope department management device 12, based on attribute information. Then, a medical work support screen with the information identifying the endoscope scopes that need updating is displayed on the display 72. Thus, users can be made aware of the endoscope scopes 24 that have been determined to need updating.
[0208] In the above embodiment, an example was given in which the day with the most endoscopic examinations performed was defined as the peak operating day, but the technology of this disclosure is not limited to this. For example, the peak operating day may be a day in which the number of times the examination waiting time (see Figure 2) falls below a threshold (e.g., 3 minutes) is equal to or greater than a standard number. In this case, the peak operating day can be identified even if the number of endoscopic examinations performed cannot be determined. The threshold and standard number may be fixed values or variable values that can be changed by the user, etc. In other words, the degree of operation of the medical device may be indicated by a value based on the number of times the examination waiting time falls below a threshold, and the standard degree may be indicated by a standard number. The number of times the examination waiting time falls below a threshold refers to, for example, the number of times the examination waiting time falls below the threshold for each predetermined period, such as every day or every hour. Furthermore, if there are multiple medical devices that the medical support device can acquire, the number of times the examination waiting time falls below the threshold refers to the total number of times the examination waiting time falls below the threshold for multiple medical devices. The threshold, which corresponds to the preparation period required between the end of an endoscopic examination and the start of the next endoscopic examination at a medical facility, may be a fixed value or a variable value set or changed by the user. The threshold may also be a variable value calculated based on the waiting time for past endoscopic procedures. For example, it may be the average waiting time for past endoscopic procedures, the minimum waiting time for past endoscopic procedures, or the minimum value plus or multiplied by a predetermined value. The reference number corresponding to the standard degree is a default value. More specifically, it is a default value for identifying periods when endoscopic examinations are concentrated, such as peak days or peak hours. The default value may be a pre-set fixed value or a variable value changed according to user input. Furthermore, the default value may be a variable value calculated based on the number of times past waiting times fell below the threshold. For example, the default value may be the average value of the number of times the past test waiting time fell below the threshold, or a variable value calculated based on the number of times the past test waiting time fell below the threshold, such as the maximum value of the number of times the past test waiting time fell below the threshold, or the value obtained by adding or multiplying the maximum value by a predetermined value.Furthermore, if the degree of medical device operation is indicated by the number of times the waiting time for testing in each first period (e.g., one day) falls below a threshold, the largest value among the number of times the waiting time for testing in each first period falls below the threshold in a second period (e.g., one week) that is longer than the first period may be used as the default value.
[0209] In the above embodiment, a peak operating day was used as an example, but the technology of this disclosure is not limited thereto, and the peak operating period may be defined in time units other than days, such as a peak operating month or peak operating year.
[0210] In the above embodiment, the peak operating date and time is exemplified as the date and time when the operating status of all information processing devices 36 is at its peak, but the technology of this disclosure is not limited thereto. For example, the peak operating date and time may be the date and time when the operating status of all endoscope scopes 24 is at its peak, or the peak operating date and time may be the date and time when the operating status of all washing machines 52 is at its peak.
[0211] In the above embodiment, the average cleaning time was given as an example of the standard cleaning time, but the technology of this disclosure is not limited thereto. Instead of the average cleaning time, statistical values such as the median, mode, maximum, minimum, or percentile of the cleaning time over a predetermined period (e.g., peak operating time) may be used, as long as it is a time derived as a standard time required from the end of the endoscopic examination until the cleaning of the endoscope scope 24 is completed. In the above embodiment, the average manual cleaning time was used as an example for the first cleaning time. However, the technology of this disclosure is not limited thereto. Instead of the average manual cleaning time, statistical values such as the median, mode, maximum, minimum, or percentile of the manual cleaning time over a predetermined period (e.g., peak operating time) may be used, as long as it is a time derived as a standard time required for manual cleaning of the endoscope scope 24.
[0212] In the above embodiment, the average automatic cleaning time was used as an example for the second cleaning time. However, the technology of this disclosure is not limited thereto. Instead of the average automatic cleaning time, statistical values such as the median, mode, maximum, minimum, or percentile of the automatic cleaning time over a predetermined period (e.g., peak operating time) may be used. Any time derived as a standard time required for cleaning the endoscope scope 24 by the cleaning machine 52 is acceptable.
[0213] In the above embodiment, the shortest waiting time was given as an example of the standard waiting time, but the technology of this disclosure is not limited thereto, and may also be statistical values such as the median, mode, maximum, minimum, or percentile of the examination waiting time over a predetermined period (e.g., peak operating time), as long as it is the time derived as the standard time required from the completion of the Nth endoscopic examination until the start of the N+1th endoscopic examination.
[0214] In the above embodiment, the average examination time was used as an example of the standard procedure time, but the technology of this disclosure is not limited thereto. It may also be statistical values such as the median, mode, maximum, minimum, or percentile of the examination time over a predetermined period (e.g., peak operating time), as long as it is a time derived as the standard time required from the start to the end of the Nth endoscopic examination.
[0215] In the above embodiment, an example was described in which the operation of the information processing device 36 is started when the inspection start button 38A is turned ON and the operation of the information processing device 36 is stopped when the inspection start button 38A is turned OFF. However, the technology of this disclosure is not limited to this. The operation of the information processing device 36 may be started on the condition that the barcode 42 is read by the barcode reader 40, and the operation of the information processing device 36 may be stopped on the condition that the barcode 42 is read again by the barcode reader 40. The same applies to the start and stop of the operation of the washing machine 52.
[0216] The example given illustrates how the operation of the information processing device 36 can be started and stopped by pressing the inspection start button 38A, but this is merely one example. The inspection start button 38A is not limited to a physical button; it may also be configured such that the operation of the information processing device 36 is started or stopped by detecting proximity to at least one soft key displayed on a touch panel, such as a touch panel display. Furthermore, the operation of the information processing device 36 may be controlled by voice input and / or gesture input. In addition, a non-contact human presence sensor may be provided in a predetermined area of the inspection room 30 or on the information processing device 36, and the operation of the information processing device 36 may be started or stopped when a human body is detected by the non-contact human presence sensor. The same applies to the control of starting and stopping the operation of the washing machine 52 using the washing start button 60A.
[0217] In the above embodiment, an example of how medical support information is generated based on the required number of scopes was described for use in an endoscopy department. However, the technology of this disclosure is not limited thereto, and medical support information may be generated based on the required number of scopes when endoscopic examinations are performed at the departmental level (e.g., internal medicine or surgery) or medical institution level (e.g., clinic or general hospital).
[0218] In the above embodiment, an examination room 30 was used as an example, but it does not necessarily have to be a single room; it may be a space obtained by dividing a single room with curtains and / or partitions.
[0219] In the above embodiment, the endoscope processor device 32 and the information processing device 36 are separate components, but the technology of this disclosure is not limited thereto, and the endoscope processor device 32 and the information processing device 36 may be integrated. In this case, for example, a device equivalent to the information processing device 36 may be incorporated into the endoscope processor device 32, or a device equivalent to the endoscope processor device 32 may be incorporated into the information processing device body 38.
[0220] In the above embodiment, an example was described in which medical support information is visualized and presented to the user by displaying medical support screens 114 and 116 on the display 72. However, the technology of this disclosure is not limited to this. For example, instead of, or in conjunction with, the visible presentation by the display 72 described above, the medical support information may be output as audio by an audio playback device, or the medical support information may be printed on a recording medium (e.g., paper) by a printer.
[0221] In the embodiments described above, an example of "endoscopic procedure work" relating to the technology of this disclosure was described as endoscopic handling work including endoscopic examination. However, the technology of this disclosure is not limited thereto and may include medical device handling work including medical device procedure work other than endoscopic examination. For example, endoscopic procedure work may include work including endoscopic surgery and / or endoscopic treatment. Examples of endoscopic surgery include surgery and / or treatment using a laparoscope, surgery and / or treatment using a thoracoscope, surgery and / or treatment using a cystoscope, surgery and / or treatment using a cholangioscopy, spinal endoscopy and / or treatment, surgery and / or treatment using an intravascular endoscope, and surgery and / or treatment using an epidural endoscope.
[0222] In the above embodiment, an endoscope 24, an information processing device 36, and a washing machine 52 were given as examples of medical devices, but the technology of this disclosure is not limited thereto, and the medical devices may be other medical devices besides the endoscope 24, the information processing device 36, and the washing machine 52. Examples of medical devices other than the endoscope 24, the information processing device 36, and the washing machine 52 include a medical management device equivalent to the information processing device 36 (for example, a device having a processor and memory), medical accessories that are detachably connected to the medical management device in the same way that the endoscope 24 is detachably connected to the information processing device 36 (for example, interchangeable ultrasound probes and / or interchangeable treatment instruments used in dental treatment), and a washing machine that cleans medical accessories in the same way as the washing machine 52 that cleans the endoscope 24.
[0223] In the above embodiment, barcode 42 and subject barcode were exemplified, but at least one of barcode 42 and subject barcode may be replaced with other two-dimensional codes such as QR (Quick Response) code (registered trademark), or with a contactless storage medium using RFID (Radio Frequency Identification) technology. In this case, instead of barcode readers 40 and 64, a device that can acquire information that can identify the endoscope scope 24 or the subject by recognizing these two-dimensional codes and / or contactless storage medium may be applied.
[0224] In the above embodiment, a medical operations support device 20 was used as an example, but instead of the medical operations support device 20, the medical operations support processing program 108 (see Figure 8) may be executed on a computer used on-premise together with the endoscopy department management device 12. Furthermore, the management information storage device 76 may also be used on-premise together with the endoscopy department management device 12.
[0225] Furthermore, although the above embodiment described an example in which the medical business support processing program 108 is stored in storage 100, the medical business support processing program 108 may also be stored in any portable storage medium such as an SSD or USB (Universal Serial Bus) memory, and the medical business support processing program 108 only needs to be stored in a non-temporary storage medium. The medical business support processing program 108 stored in a non-temporary storage medium is installed, for example, in a support management server 74.
[0226] Furthermore, although the above embodiment illustrates a support management server 74 including a CPU 98, storage 100, and memory 102, the technology of this disclosure is not limited thereto, and devices including ASICs (Application Specific Integrated Circuits), FPGAs (Field-Programmable Gate Arrays), and / or PLDs (Programmable Logic Devices) may be used instead of, or together with, the support management server 74.
[0227] The hardware resources used to perform the medical support processing described in the above embodiment include the following types of processors. Examples of processors include a CPU, which is a general-purpose processor that functions as a hardware resource for performing medical support processing by executing software, i.e., a program. Other examples of processors include dedicated electrical circuits, which are processors with circuit configurations specifically designed to perform particular processing, such as FPGAs, PLDs, or ASICs. Each processor has built-in or connected memory, and each processor uses memory to perform terminal-side processing.
[0228] The hardware resources that perform medical support processing may consist of one of these various processors, or a combination of two or more processors of the same or different types (for example, a combination of multiple FPGAs, or a combination of a CPU and an FPGA). Alternatively, the hardware resources that perform medical support processing may consist of a single processor.
[0229] Examples of configurations using a single processor include, firstly, a configuration in which one or more CPUs and software are combined to form a single processor, and this processor functions as a hardware resource that executes medical support processing. Secondly, there is a configuration using a processor that realizes the functions of the entire system, including multiple hardware resources that execute medical support processing, on a single IC chip, such as SoC (System-on-a-chip). In this way, medical support processing is realized using one or more of the above types of processors as hardware resources.
[0230] Furthermore, the hardware structure of these various processors can more specifically utilize electrical circuits that combine circuit elements such as semiconductor devices. Also, the terminal-side processing described above is merely an example. Therefore, it goes without saying that unnecessary steps can be deleted, new steps added, or the processing order rearranged, as long as it does not deviate from the main purpose.
[0231] The descriptions and illustrations presented above are detailed explanations of the technical aspects of this disclosure and are merely examples of the technical aspects. For example, the above descriptions of the structure, function, operation, and effect are examples of the structure, function, operation, and effect of the technical aspects of this disclosure. Therefore, it goes without saying that you may delete unnecessary parts, add new elements, or replace elements in the descriptions and illustrations presented above, as long as you do not deviate from the essence of the technical aspects of this disclosure. Furthermore, in order to avoid confusion and facilitate understanding of the technical aspects of this disclosure, explanations of common technical knowledge and the like that do not require special explanation to enable the implementation of the technical aspects of this disclosure have been omitted from the descriptions and illustrations presented above.
[0232] In this specification, "A and / or B" is synonymous with "at least one of A and B." That is, "A and / or B" means that it may be A alone, or B alone, or a combination of A and B. Furthermore, in this specification, the same concept as "A and / or B" applies when expressing three or more things linked by "and / or."
[0233] All documents, patent applications, and technical standards described herein are incorporated by reference to the same extent as if each individual document, patent application, and technical standard were specifically and individually noted as being incorporated by reference. [Explanation of symbols]
[0234] 10. Medical Business Support System 12 Endoscopy Department Management Equipment 14 Laboratory Equipment 16 Hand washing facilities 18 Automatic cleaning equipment 20 Medical Business Support Devices 22 Networks 24 Endoscope 24A Insertion section 24B Imaging Unit 24C Control unit 24D Universal Cord 26, 28 Connectors 30 Laboratory 31 Light source device 32 Endoscope Processor Device 34.72 displays 36 Information Processing Devices 38. Information Processing Device Main Unit 38A Start Inspection Button 40 barcode readers 42 barcodes 44 Endoscopy Information 46 Manual cleaning room 48 sinks 50 Washing machine room 52 Washing machine 54 Washing machine management device 56 First Washing Tank 58 Second Washing Tank 60, 70 Reception devices 60A Start Wash Button 62 Washing machine management device main unit 64 barcode readers 66 Cleaning Information 68 Endoscopy Department Management System Main Unit 74 Support Management Server 76 Management information storage device 78.98 CPU 78A, 98A Receiver 78B, 98B Transmitter 78C, 98D Memory Control Unit 78D Display Control Unit 80,100 storage 82,102 memory 84 Communication I / F for support equipment 86 Test communication interface 88 Communication interface for washing machine 90,106 buses 92 Control device control program 94,110 Endoscopy Examination Management Database 96,112 Washing Machine Management Database 98C Acquisition Department 98E Derivation section 98F generation section 98G Specific part 104 Communication I / F 108 Medical Business Support Processing Program 113 Support Device Management Database 114,116 Medical Business Support Screen 114A, 116A Screen title display area 114B, 116B Required scope number and time calculation target day display field 114C, 116C Average inspection time display field 114D,116D Average manual cleaning time display field 114E, 116E Average automatic cleaning time display field 114F,116F Shortest waiting time display field 114G, 116G Required number of scopes display field 114H,116H Reference information display column 114I,116I Caution information display field 114J, 116J Inspection type display field 114K, 116K Inspection Support Comment Display Field 118 Scope Attribute Database
Claims
1. Processor and The processor comprises, The aforementioned processor, When N is a natural number, the required number of endoscopes is derived based on the standard procedure time from the start to the end of the first endoscopic procedure, which is the Nth endoscopic procedure performed by the information processing device used with the endoscope, the standard waiting time from the end of the first endoscopic procedure until the start of the second endoscopic procedure, which is the N+1th endoscopic procedure performed by the information processing device, and the standard cleaning time from the end of the first endoscopic procedure until the cleaning of the endoscope is completed. The system outputs medical support information based on the required number of units. The required number is derived based on the ratio of the time including the standard procedure time and the standard washing time to the time including the standard procedure time and the standard waiting time. Medical support device.
2. The aforementioned processor, The standard procedure time, standard waiting time, and standard cleaning time are obtained for each type of endoscopic procedure. Based on the standard procedure time, the standard waiting time, and the standard washing time, the required number of units is derived for each type. The medical business support device according to claim 1, which outputs the medical business support information according to the aforementioned type.
3. The medical work support device according to claim 1 or 2, wherein the processor derives the required number of endoscopic procedures based on the number of medical sites where the endoscopic procedures are performed, the standard procedure time, the standard waiting time, and the standard cleaning time.
4. The medical work support device according to any one of claims 1 to 3, wherein the standard cleaning time includes a first cleaning time derived as the standard time required for manual cleaning of the endoscope scope and a second cleaning time derived as the standard time required for cleaning the endoscope scope with a cleaning machine.
5. The medical support information is presented by a display device in the medical support device according to any one of claims 1 to 4.
6. The medical support device according to any one of claims 1 to 5, wherein the medical support information includes notification information that notifies the required number of items.
7. The aforementioned processor, The number of endoscope scopes currently in use is obtained, A medical business support device according to any one of claims 1 to 6, which outputs information including the required number and the number of currently owned as medical business support information.
8. The medical business support device according to claim 7, wherein the information based on the required number and the number of units currently in use is information indicating the degree of difference between the required number and the number of units currently in use.
9. The processor obtains the number of endoscope scopes used within a predetermined period, A medical business support device according to any one of claims 1 to 8, which outputs information including the required number and the number of units used as medical business support information.
10. The aforementioned types of endoscopes are classified into those that do not require replacement and those that do require replacement. The medical business support device according to any one of claims 1 to 9, wherein the processor outputs information including specific information that can identify the type of update required based on the required number and the attributes of the endoscope scope as the medical business support information.
11. The medical work support device according to any one of claims 1 to 10, wherein the medical work support information is presented by a display device according to the type of endoscopic procedure.
12. The medical work support device according to any one of claims 1 to 11, wherein the processor derives the required number of medical devices used in endoscopic handling operations, including endoscopic procedures, when the degree of operation of the medical devices exceeds a standard degree.
13. The medical work support device according to claim 12, wherein the period when the degree of operation of the medical device is equal to or greater than the standard degree is the period when the value based on the number of endoscopic procedures is equal to or greater than the standard value.
14. The medical work support device according to claim 12 or claim 13, wherein the period when the degree of operation of the medical device is equal to or greater than the standard degree is the period when the number of times the waiting time for the endoscopic procedure falls below a threshold is equal to or greater than the standard number.
15. Processor and The processor comprises, The aforementioned processor, When N is a natural number, the required number of medical accessories is derived based on the standard procedure time from the start to the end of the first medical procedure, which is the Nth medical procedure performed by the information processing device, the standard waiting time from the end of the first medical procedure until the start of the second medical procedure, which is the N+1th medical procedure performed by the information processing device, and the standard cleaning time from the end of the first medical procedure until the cleaning of the medical accessories detachably connected to the information processing device is completed. The medical support information based on the required number is output, The required number is derived based on the ratio of the time including the standard procedure time and the standard washing time to the time including the standard procedure time and the standard waiting time. Medical support device.
16. A medical work support method performed by a computer, The aforementioned computer, When N is a natural number, the required number of endoscopes is derived based on the standard procedure time from the start to the end of the first endoscopic procedure, which is the Nth endoscopic procedure performed by the information processing device used with the endoscope, the standard waiting time from the end of the first endoscopic procedure until the start of the second endoscopic procedure, which is the N+1th endoscopic procedure performed by the information processing device, and the standard cleaning time from the end of the first endoscopic procedure until the cleaning of the endoscope is completed, and, The process includes outputting medical support information based on the required number of units, The required number is derived based on the ratio of the time including the standard procedure time and the standard washing time to the time including the standard procedure time and the standard waiting time. Methods for supporting medical operations.
17. A program that causes a computer to perform a process, The aforementioned process is, When N is a natural number, the required number of endoscopes is derived based on the standard procedure time from the start to the end of the first endoscopic procedure, which is the Nth endoscopic procedure performed by the information processing device used with the endoscope, the standard waiting time from the end of the first endoscopic procedure until the start of the second endoscopic procedure, which is the N+1th endoscopic procedure performed by the information processing device, and the standard cleaning time from the end of the first endoscopic procedure until the cleaning of the endoscope is completed, and, This includes outputting medical support information based on the aforementioned required number of units, The required number is derived based on the ratio of the time including the standard procedure time and the standard washing time to the time including the standard procedure time and the standard waiting time. program.
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