Medical information management device, terminal device, medical information management system, and program
Patent Information
- Application Number
- JP2023003773
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-01-13
- Publication Date
- 2026-01-20
AI Technical Summary
The challenge is to prevent the mixing up of medical image diagnostic apparatuses (modalities) when multiple technicians operate them using different tablet terminals, ensuring that each technician operates the correct modality for the patient scheduled for examination.
A medical information management device with an acquisition, authentication, and authorization system that uses patient authentication data to grant editing authority to the correct tablet terminal for the appropriate modality, preventing incorrect operation.
Prevents the incorrect operation of medical image diagnostic apparatuses by ensuring that only authorized tablet terminals can edit the setting information for the correct patient, thereby maintaining operational accuracy and patient safety.
Smart Images

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Abstract
Description
[Technical field]
[0001] The embodiments disclosed in this specification and the drawings relate to a medical information management device, a terminal device, a medical information management system, and a program. [Background technology]
[0002] In recent years, there is a technology that allows technicians or assistants (hereinafter, technicians, etc.) to remotely operate a medical imaging diagnostic device (hereinafter, modality) using a mobile terminal (tablet terminal) at a location away from the modality. Conventionally, one tablet terminal was associated with one modality, and the modality could only be operated with the associated tablet terminal. In response to this, a technology has been developed that allows a modality to be operated with multiple tablet terminals. Using this technology, multiple technicians, etc. can each carry a tablet terminal and operate multiple modalities.
[0003] In such a situation, multiple technicians can perform operations related to multiple modalities, such as registering information about a patient who is the subject of an examination, on their own tablet terminals. Therefore, it is necessary to take measures to prevent the mixing up of modalities to be operated in order to prevent the operation of a modality different from the one planned for the patient's examination. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] JP 2014-147608 A Summary of the Invention [Problem to be solved by the invention]
[0005] The problem to be solved by the embodiments disclosed in this specification and the drawings is to prevent the misidentification of the modality to be operated. However, the problem to be solved by the embodiments disclosed in this specification and the drawings is not limited to the above problem. Problems corresponding to the effects of each configuration shown in the embodiments described later can also be positioned as other problems. [Means for solving the problem]
[0006] A medical information management device according to an embodiment includes an acquisition unit, an authentication unit, and an authorization unit. The acquisition unit is provided by a terminal device managed by a user and acquires patient authentication data that identifies a patient. The authentication unit authenticates that the patient is a user of a medical image diagnostic device based on the patient authentication data. The authorization unit grants, based on a result of the authentication, to the terminal device an editing authority to edit setting information of the patient that is set by the medical image diagnostic device for examining the patient. [Brief description of the drawings]
[0007] [Figure 1] 1 is a block diagram showing an example of the configuration of a medical information management system 1 according to a first embodiment. [Diagram 2] FIG. 2 is a block diagram showing an example of the configuration of a tablet terminal 10 according to the first embodiment. [Diagram 3] FIG. 2 is a block diagram showing an example of the configuration of a modality 20 according to the first embodiment. [Figure 4] 1 is a block diagram showing an example of the configuration of a medical information management apparatus 100 according to a first embodiment. [Diagram 5] FIG. 2 is a sequence diagram showing an example of processing in the medical information management system 1 of the first embodiment. [Figure 6] 4 is a flowchart showing an example of processing in the medical information management apparatus 100 of the first embodiment. [Figure 7] FIG. 11 is a block diagram showing an example of the configuration of an in-hospital system 8 including a medical information management system 2 according to a second embodiment. [Figure 8] FIG. 11 is a block diagram showing an example of the configuration of a medical information management apparatus 200 according to a second embodiment. [Figure 9] FIG. 11 is a sequence diagram showing an example of processing in the medical information management system 2 of the second embodiment. [Figure 10] FIG. 11 is a sequence diagram showing an example of processing in the medical information management system of the third embodiment. [Figure 11] FIG. 4 is a diagram showing an example of the contents of an authority management table. [Figure 12] FIG. 13 is a sequence diagram showing an example of processing in the medical information management system according to the fourth embodiment. [Figure 13] FIG. 13 is a diagram for explaining updating of the authority management table. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0008] Hereinafter, a medical information management apparatus, a terminal device, a medical information management system, and a program according to the embodiments will be described with reference to the drawings.
[0009] (First embodiment) FIG. 1 is a block diagram showing an example of the configuration of a medical information management system 1 of the first embodiment. The medical information management system 1 of the first embodiment includes, for example, a plurality of tablet terminals 10, a plurality of modalities 20, and a medical information management device 100. The plurality of tablet terminals 10, the plurality of modalities 20, and the medical information management device 100 are capable of communicating with each other via a network NW. The network NW includes, for example, the Internet, a cellular network, a Wi-Fi network, and a WAN (Wide Area Network). A terminal ID is assigned to each of the plurality of tablet terminals 10. Similarly, a device ID is assigned to each of the plurality of modalities 20.
[0010] Next, the tablet terminal 10 will be described. The tablet terminals 10 are distributed to a plurality of users U. Each user U manages the tablet terminal 10 that has been distributed to them. The tablet terminal 10 is a mobile terminal possessed by each user U. Each user U is assigned a user ID. The tablet terminal 10 is an example of a terminal device.
[0011] The tablet terminal 10 may be a terminal dedicated to use with the medical information management system 1, or may be a general-purpose tablet terminal installed with an application program used with the medical information management system 1. The terminal device may be a terminal other than a tablet terminal, such as a smartphone.
[0012] One tablet terminal 10 is assigned to one user U, and the user U manages each assigned tablet terminal 10. As for the relationship between the tablet terminals 10 and the users U, one tablet terminal 10 may be assigned to multiple users U, or multiple tablet terminals 10 may be assigned to one user U.
[0013] 2 is a block diagram showing an example of the configuration of the tablet terminal 10 of the first embodiment. The tablet terminal 10 includes, for example, a communication interface 11, a touch panel 12, a reading device 13, and a control circuit 14. The communication interface 11 communicates with a plurality of modalities 20 and a medical information management device 100 via a network NW such as a LAN (Local Area Network).
[0014] The touch panel 12 functions as an input interface through which the user U inputs information and an output interface that displays the input information, etc. The touch panel 12 displays, for example, a GUI (Graphical User Interface) for receiving various input operations from the user U. The GUI includes, for example, a GUI for the user U to remotely operate the modality 20. The touch panel 12 transmits information corresponding to the received input operation to the control circuit 14.
[0015] The reading device 13 reads, for example, patient authentication data that identifies a patient. The patient authentication data includes, for example, a two-dimensional code such as a barcode or QR code (registered trademark) printed on a card held by the patient, and information on the patient's fingerprints, veins, facial photograph, iris, etc. The reading device 13 outputs the read patient authentication data to the control circuit 14. The two-dimensional code may indicate a patient ID.
[0016] The control circuit 14 controls each unit in the tablet terminal 10. For example, the control circuit 14 performs display control to display a GUI on the touch panel 12. The control circuit 14 controls each unit in the tablet terminal 10 based on input information corresponding to an input operation accepted by the touch panel 12, and generates transmission information to be transmitted to an external device such as the modality 20 or the medical information management device 100 using the communication interface 11 based on the input information. The control circuit 14 is an example of a control unit.
[0017] The communication interface 11 transmits the patient authentication data read by the reading device 13 to the medical information management device 100. The communication interface 11 receives editing authority information transmitted by the medical information management device 100 and notifying that editing authority to edit setting information of a target patient set in the medical information management device 100 is granted. The communication interface 11 is an example of a transmitting unit and a receiving unit.
[0018] The transmission information to be transmitted to the modality 20 includes, for example, registration information, collation information, and editing information. The registration information is information for registering a patient (hereinafter, target patient) who is the subject of an examination in the modality 20. By acquiring the registration information, the modality 20 generates information (hereinafter, setting information) regarding the target patient to be set in the modality 20.
[0019] The setting information is generated for each target patient and includes a patient ID. In addition to the patient ID, the setting information includes information such as the characteristics of the target patient (physical characteristics such as sex, age, height, weight, etc., blood type, medical history, etc.) and imaging conditions by the modality 20. The target patient is an example of a user of the medical image diagnostic device.
[0020] The matching information is information for allowing the modality 20 to match a patient ID when determining whether or not the tablet terminal 10 has been granted the authority to edit the setting information set in the modality 20 (hereinafter, editing authority). The matching information includes the patient ID. The modality 20 matches the patient ID included in the transmitted matching information with the patient ID included in the setting information set in the modality 20, and determines whether or not the tablet terminal 10 has editing authority.
[0021] The editing information is information for editing the setting information generated by the modality 20. The modality 20 acquires the editing information and edits the setting information based on the editing information. The editing information includes, for example, the edited items in the setting information and the edited content. The setting information and the editing information each further include the patient ID of the target patient. The user U can remotely operate multiple modalities 20 by performing an input operation on the touch panel 12.
[0022] The control circuit 14 acquires the patient authentication data output by the reading device 13. The control circuit 14 provides the acquired patient authentication data to the medical information management device 100 by transmitting it as transmission information using the communication interface 11, and requests authentication of the target patient corresponding to the patient authentication data.
[0023] The control circuit 14 acquires the patient ID transmitted by the medical information management device 100 that authenticated the target patient. The control circuit 14 generates matching information including the patient ID of the authenticated target patient, and transmits it to the modality 20. The patient ID included in the matching information is information for identifying the target patient who uses the modality 20 by matching it with the modality 20.
[0024] Next, the modality 20 will be described. Fig. 3 is a block diagram showing an example of the configuration of the modality 20 according to the first embodiment. The modality 20 performs imaging (photographing) according to imaging conditions (photographing protocol) determined based on, for example, an image examination instruction or the like. Examples of the modality 20 include an X-ray computed tomography apparatus, an X-ray diagnostic apparatus, a magnetic resonance imaging apparatus, an ultrasonic diagnostic apparatus, and a nuclear medicine diagnostic apparatus.
[0025] The modality 20 includes, for example, a gantry 21, a bed 22, and a console 23. The gantry 21 is also called a gantry. The gantry 21 is provided with a device for capturing an image of a patient. If the modality 20 is an X-ray tomography device, the imaging device for capturing an image of a patient includes an irradiation device (tube) for emitting X-rays and an X-ray detector for detecting X-rays. The gantry 21 outputs image information captured by the imaging device to the console 23.
[0026] The bed 22 includes, for example, a tabletop on which a patient rests, and a drive mechanism for moving the tabletop along a horizontal plane in a direction toward or away from the gantry device 21 (hereinafter, referred to as the forward / backward direction) and in the up / down direction. The bed 22 moves the patient relative to the gantry device 21 by moving the tabletop in the forward / backward direction and in the up / down direction under the control of the control device.
[0027] The console 23 controls various devices provided in the gantry 21, specifies the output of the devices provided in the gantry 21, and generates images based on information provided by the devices provided in the gantry 21. The console 23 includes, for example, a communication interface 24, an input interface 25, a display 26, a processing circuit 27, and a memory 28.
[0028] The communication interface 24 includes a NIC (Network Interface Card) or the like, and the network NW that communicates with external devices such as the tablet terminal 10 and the medical information management device 100 via a LAN may include the Internet, a cellular network, a Wi-Fi network, a WAN, or the like instead of or in addition to the LAN. The modality 20 receives information such as registration information, collation information, and edit information transmitted by the tablet terminal 10 via the communication interface. The communication interface 24 converts the received information into an electrical signal and outputs it to the processing circuitry 27.
[0029] The input interface 25 accepts various input operations from an operator such as a user U or a doctor (radiologist). The input interface 25 converts information based on the accepted input operation, such as registration information or edit information, into an electrical signal and outputs it to the processing circuit 27. The user U can perform various input operations on the input interface 25 of the console 23 to register an examination when examining a target patient using the modality 20, thereby generating setting information or editing the contents of the setting information. The user U can generate and edit the setting information of the modality 20 not only by the console 23 but also by the tablet terminal 10 managed by the user U.
[0030] The display 26 is an LCD (Liquid Crystal Display), a CRT (Cathode Ray Tube) display, an organic EL (Electro Luminescence) display, or the like. The display 26 displays various types of information. For example, the display 26 displays information generated by the processing circuit 27, a GUI for receiving various input operations from an operator such as a user U, and the like. When displaying a GUI, the display 26 also functions as the input interface 25.
[0031] The processing circuitry 27 processes various types of information based on the electrical signals output by the communication interface 24 and the input interface 25. For example, the processing circuitry 27 performs examination registration of the target patient based on the registration information output by the communication interface 24 or the input interface 25, and generates setting information.
[0032] The processing circuitry 27, for example, determines whether or not there is setting information in the modality 20 that includes a patient ID that matches a patient ID included in the collation information output by the communication interface 24. The processing circuitry 27 transmits the determination result to the tablet terminal 10 that transmitted the editing information, using the communication interface 24. The processing circuitry 27 edits the setting information that matches the patient ID assigned to the editing information, based on the editing information output by the communication interface 24, for example.
[0033] The processing circuitry 27 may edit the setting information having a patient ID that matches the edited information, based on the edited information output by the input interface 25. The processing circuitry 27 realizes these functions by, for example, a hardware processor (computer) executing a program stored in a memory (storage circuitry) 28.
[0034] The processing circuitry 27 generates a reconstructed image by, for example, reconstructing the image information output by the gantry device 21. The processing circuitry 27 displays the generated reconstructed image on the display 26, or transmits the image to another external device or the like using the communication interface 24.
[0035] The memory 28 is realized by, for example, a semiconductor memory element such as a random access memory (RAM), a flash memory, a hard disk, an optical disk, etc. The memory 28 stores, for example, setting information, etc. These data may be stored in an external memory with which the modality 20 can communicate, instead of or in addition to the memory 28. The external memory is controlled by, for example, a cloud server that manages the external memory, by the cloud server accepting a read / write request.
[0036] Next, the medical information management device 100 will be described. Fig. 4 is a block diagram showing an example of the configuration of the medical information management device 100 of the first embodiment. The medical information management device 100 includes, for example, a communication interface 110, an input interface 120, a display 130, a processing circuit 140, and a memory 150. The communication interface 110 communicates with, for example, the tablet terminal 10 and the modality 20 via a network NW. The communication interface 110 includes, for example, a communication interface such as a NIC.
[0037] The input interface 120 accepts various input operations from the user U, a medical practitioner, etc., converts the accepted input operations into electrical signals, and outputs the electrical signals to the processing circuit 140. The input interface 120 includes, for example, a mouse, a keyboard, a trackball, a switch, a button, a joystick, a touch panel, etc. The input interface 120 may be, for example, a user interface that accepts voice input from a microphone, etc. When the input interface 120 is a touch panel, the input interface 120 may also have the display function of the display 130.
[0038] In this specification, the input interface is not limited to an interface having physical operation parts such as a mouse, a keyboard, etc. For example, an example of the input interface also includes an electrical signal processing circuit that receives an electrical signal corresponding to an input operation from an external input device provided separately from the device and outputs the electrical signal to a control circuit.
[0039] The display 130 displays various types of information. For example, the display 130 displays an image generated by the processing circuit 140, a GUI for receiving various input operations from an operator, etc. For example, the display 130 is an LCD, a CRT display, an organic EL display, etc.
[0040] The processing circuit 140 includes, for example, an acquisition function 141, an authentication function 142, and an authorization function 143. The processing circuit 140 realizes these functions by, for example, a hardware processor (computer) executing a program stored in a memory (storage circuit) 150.
[0041] The hardware processor refers to circuitry such as a CPU, a graphics processing unit (GPU), an application specific integrated circuit (ASIC), a programmable logic device (e.g., a simple programmable logic device (SPLD) or a complex programmable logic device (CPLD)), and a field programmable gate array (FPGA).
[0042] Instead of storing the program in the memory 150, the program may be directly embedded in the circuit of the hardware processor. In this case, the hardware processor realizes the function by reading and executing the program embedded in the circuit. The above program may be stored in the memory 150 in advance, or may be stored in a non-transitory storage medium such as a DVD or CD-ROM, and installed in the memory 150 from the non-transitory storage medium by inserting the non-transitory storage medium into a drive device (not shown) of the medical information management device 100.
[0043] The hardware processor is not limited to being configured as a single circuit, but may be configured as a single hardware processor by combining multiple independent circuits to realize each function. Also, multiple components may be integrated into a single hardware processor to realize each function. The hardware processor, memory, etc. in the medical information management device 100 are provided separately from the hardware processor, memory, etc. of the HIS 30, but these may be common.
[0044] The memory 150 is realized by, for example, a semiconductor memory element such as a ROM (Read Only Memory), a RAM (Random Access Memory), a flash memory, a hard disk drive (HDD), an optical disk, etc. The memory 150 stores an authentication list 151. The authentication list 151 is, for example, a list of the relationship between the patient authentication data and the patient IDs of a plurality of registered patients.
[0045] The acquisition function 141 acquires various types of information transmitted by the tablet terminal 10 and the modality 20. The acquisition function 141 acquires, for example, patient authentication data provided by being transmitted by the tablet terminal 10 managed by the user U. The acquisition function 141 is an example of an acquisition unit.
[0046] The authentication function 142 refers to the authentication list 151 stored in the memory 150 for the patient authentication data acquired by the acquisition function 141. As a result, the authentication function 142 performs authentication processing for the target patient for whom authentication is requested by the tablet terminal 10, based on the patient authentication data acquired by the acquisition function 141. The authentication function 142 is an example of an authentication unit.
[0047] The authorization function 143 grants, to the tablet terminal 10, editing authority to edit the setting information of the target patient corresponding to the authenticated patient ID based on the result of authentication by the authentication function 142. When the authentication function 142 authenticates the target patient based on patient authentication data that does not include a patient ID, the authorization function 143 issues a patient ID corresponding to the authenticated patient and adds it to the editing authority information. Instead of or in addition to the patient ID, a test ID assigned for each test on the target patient may be added to the editing authority information.
[0048] The authorization function 143 grants editing authority to the tablet terminal 10 that transmitted the patient authentication data when the target patient is authenticated by the authentication function 142. In this case, the authorization function 143 transmits editing authority information to the tablet terminal 10 using the communication interface 110.
[0049] When the target patient is not authenticated by the authentication function 142, the authorization function 143 transmits denial information to the tablet terminal 10 using the communication interface 110. The modality 20 edits the setting information of the target patient whose patient ID matches, based on the editing information transmitted by the tablet terminal 10 to which editing authority has been granted. The authorization function 143 is an example of an authorization unit.
[0050] Next, the processing in the medical information management system 1 of the first embodiment will be described. Fig. 5 is a sequence diagram showing an example of the processing in the medical information management system 1 of the first embodiment. In this example, a patient can be examined by the first modality 20A and the second modality 20B, and the target patient is examined by the first modality 20A. The patient examined by the second modality 20B is the target patient from the viewpoint of the second modality 20B, but here, the description will be continued assuming that the patient is another patient.
[0051] In the medical information management system 1 of the first embodiment, first, the tablet terminal 10 transmits the registration information of the target patient to the first modality 20A (step S101), and transmits the registration information of other patients to the second modality 20B (step S103). The first modality 20A acquires the registration information of the target patient (step S105), performs examination registration of the target patient (step S107), and generates setting information for examining the target patient (step S109).
[0052] The second modality 20B acquires registration information of the other patient (step S111), performs examination registration of the other patient (step S113), and generates setting information for examining the other patient (step S115). The registration information acquired by the first modality 20A and the second modality 20B is both transmitted by the tablet terminal 10, but the registration information may be input by the input interface 25 in each of the first modality 20A and the second modality 20B. In this case, the processes of steps S101 and S103 are omitted.
[0053] Until the first modality 20A and the second modality 20B generate setting information, the tablet terminal 10 reads the patient authentication data with the reading device 13 (step S117) and transmits the read patient authentication data to the medical information management device 100 (step S119). The medical information management device 100 that has received the patient authentication data performs authentication processing and authorization processing (step S121). The steps of the authentication processing and authorization processing in the medical information management device 100 will be described below.
[0054] 6 is a flowchart showing an example of processing in the medical information management device 100 of the first embodiment. In the medical information management device 100, the acquisition function 141 acquires patient authentication data transmitted by the tablet terminal 10 (step S151). Next, the authentication function 142 refers to the authentication list 151 stored in the memory 150 for the patient authentication data acquired by the acquisition function 141 (step S153), and determines whether the patient authentication data belongs to a patient registered in the authentication list 151 (step S155).
[0055] If it is determined that the patient authentication data belongs to a patient registered in the authentication list 151, the authentication function 142 authenticates the patient corresponding to the patient authentication data as a target patient (step S157). Next, the authorization granting function 143 grants editing authority to the tablet terminal 10 that transmitted the patient authentication data (step S159), and generates editing authority information notifying that editing authority has been granted (step S161).
[0056] Next, the authorization function 143 judges whether the patient authentication data includes a patient ID (step S163). If it is judged that the patient authentication data does not include a patient ID, the authorization function 143 issues a patient ID by referring to the authentication list 151, and adds the issued patient ID to the editing authorization information (step S165). In this way, the medical information management device 100 ends the process shown in FIG. 6.
[0057] If the authorization function 143 determines that the patient authentication data includes a patient ID, the medical information management device 100 ends the process shown in Fig. 6. If the authentication function 142 determines in step S155 that the patient authentication data does not belong to a patient registered in the authentication list 151, it generates denial information (step S167). In this way, the medical information management device 100 ends the process shown in Fig. 6.
[0058] 5, the medical information management device 100 transmits the generated editing authority information or denial information to the tablet terminal 10 that transmitted the patient authentication data, using the communication interface 110 (step S123). When the tablet terminal 10 receives the editing authority information or denial information, it notifies the user U of the received information, for example by displaying it on the display 26 (step S125).
[0059] The user U recognizes whether or not editing authority has been granted upon receiving the notification from the tablet terminal 10. If the patient ID has not been added to the received editing authority information, the patient ID has been read by the reading device 13. In this case, the tablet terminal 10 adds the patient ID read by the reading device 13 to the editing authority information.
[0060] Next, the tablet terminal 10 sequentially transmits the editing authority information including the patient ID to the multiple modalities 20 in accordance with the operation of the user U, and edits the setting information of the target patient that is set in the modality 20 used by the target patient. For this reason, the tablet terminal 10, for example, first transmits the editing authority information to the second modality 20B (step S127).
[0061] The second modality 20B checks the patient ID included in the editing authority information transmitted by the tablet terminal 10 against the patient ID of the patient registered for examination (step S129). Since the target patient has not been registered for examination in the second modality 20B, the second modality 20B determines, as a result of the check, that the editing authority granted to the tablet terminal 10 is not the authority to edit the setting information of the second modality 20B. As a result of the check, the second modality 20B transmits, to the tablet terminal 10, editing authority no information indicating that there is no editing authority (step S131).
[0062] The tablet terminal 10 notifies the user U of the received no-editing-authority information by, for example, displaying it on the display 26 (step S133). Upon receiving the notification from the tablet terminal 10, the user U operates the tablet terminal 10 so as to transmit the editing authority information to another modality 20, here the first modality 20A.
[0063] The tablet terminal 10 transmits the editing authority information to the first modality 20A in accordance with the operation of the user U (step S135). The first modality 20A checks the patient ID included in the editing authority information transmitted by the tablet terminal 10 against the patient ID of the patient registered for examination (step S137).
[0064] Since the examination registration of the target patient is being performed in the first modality 20A, the first modality 20A determines, as a result of the collation, that the editing authority granted to the tablet terminal 10 is the authority to edit the setting information of the first modality 20A. As a result of the collation, the first modality 20A transmits editing authority presence information indicating that editing authority is present to the tablet terminal 10 (step S139).
[0065] The tablet terminal 10 notifies the user U of the received editing authority information by, for example, displaying it on the display 26 (step S141). Upon receiving the notification from the tablet terminal 10, the user U operates the tablet terminal 10 so as to edit the setting information of the first modality 20A.
[0066] The tablet terminal 10 generates editing information in response to an operation by the user U (step S143) and transmits the generated editing information to the first modality 20A (step S145). The first modality 20A edits the setting information of the target patient based on the editing information transmitted by the tablet terminal 10 (step S147). In this way, the medical information management system 1 ends the sequence shown in FIG.
[0067] In the medical information management system 1 of the first embodiment, in the medical information management device 100, a target patient for whom setting information is to be edited using a tablet terminal 10 managed by a user U is authenticated. Since setting information for a patient who is not registered for an examination cannot be edited, it is possible to prevent a mix-up of the modality 20 to be operated.
[0068] Second embodiment Next, the second embodiment will be described. FIG. 7 is a block diagram showing an example of the configuration of the hospital system 8 including the medical information management system 2 of the second embodiment. The medical information management system 2 of the second embodiment is incorporated into a part of the hospital system 8. The hospital system 8 including the medical information management system 2 of the second embodiment is different from the first embodiment in that it includes, for example, a hospital information system (hereinafter, HIS) 30, a radiology information system (hereinafter, RIS) 40, a picture archiving and communication system (PACS: Picture Archiving and Communication System) 50, and a medical information management device 200 in addition to a plurality of tablet terminals 10 and a plurality of modalities 20. In addition, the medical information management device 200 is different from the first embodiment in that it includes a selection function 244. In the following description of the second embodiment, the elements common to the first embodiment may be assigned the same numbers and detailed descriptions thereof may be omitted.
[0069] The HIS 30 is a computer system that supports operations within a hospital. Specifically, the HIS 30 has various subsystems. The various subsystems include, for example, an electronic medical record system, a medical accounting system, a medical appointment system, a hospital reception system, and an admission and discharge management system. The HIS 30 includes, for example, a computer such as a server device or a client terminal that includes a processor such as a CPU (Central Processing Unit), memories such as ROM and RAM, a display, an input interface, and a communication interface.
[0070] A user U inputs and refers to information about a patient using an electronic medical record system included in the HIS 30. The user U issues an order for an imaging examination to the HIS 30. The HIS 30 transfers order information corresponding to the imaging examination order to another system such as the RIS 40.
[0071] RIS40 is a computer system that supports operations in the imaging diagnosis department. RIS40 manages the work schedules of user U and modality 20. The work schedule includes a patient ID and an apparatus ID. RIS40 determines the user U who will be in charge of the imaging examination and the modality 20 to be used for the imaging examination based on the issued imaging examination order. RIS40 manages the work schedules of user U and modality 20 including the determined contents. In response to a request from the medical information management device 200, HIS30 transmits the work schedules of user U and modality 20 to the medical information management device 200 via the network NW. RIS40 is an example of a schedule management device.
[0072] The RIS 40 manages reservations for image examination orders in cooperation with the HIS 30, links reservation information to the examination equipment (modality 20), manages examination information, etc. The RIS 40 includes a computer such as a server device or a client terminal equipped with a processor such as a CPU, memories such as ROM and RAM, a display, an input interface, and a communication interface.
[0073] The PACS 50 is a computer system that receives medical images transmitted by the modality 20 and stores them in a database. The PACS 50 transmits (transfers) medical images stored in the database in response to requests from clients. The PACS 50 includes a server computer including a processor such as a CPU, memories such as ROM and RAM, a display, an input interface, and a communication interface. The medical images stored in the PACS 50 are accompanied by information about the patient to be imaged and the imaging as additional information. The additional information includes, for example, information such as a patient ID, examination ID, imaging conditions (imaging protocol), etc., in a format that complies with the DICOM (Digital Imaging and Communication in Medicine) standard.
[0074] The configuration of the in-hospital system 8 is not limited to the above. The in-hospital system 8 may include, for example, an image interpretation report creation device. In addition, some elements of the in-hospital system 8 may be integrated. For example, the HIS 30 and the RIS 40 may be integrated into one system.
[0075] 8 is a block diagram showing an example of the configuration of a medical information management device 200 of the second embodiment. A processing circuit 240 in the medical information management device 200 of the second embodiment includes a selection function 244. The other configurations of the medical information management device 200 are common to the medical information management device 100 of the first embodiment.
[0076] The selection function 244 selects a modality 20 to be used for an examination of a specific patient from among a plurality of modalities 20. The selection function 244 selects a modality 20 to be used for an examination of a target patient based on, for example, the characteristics and schedule of the target patient and the performance and work schedule of the modality 20. The selection function 244 is an example of a selection unit.
[0077] Next, the processing of the medical information management system 2 of the second embodiment will be described. Fig. 9 is a sequence diagram showing an example of processing in the medical information management system 2 of the second embodiment. In the medical information management system 2 of the second embodiment, first, the tablet terminal 10 reads patient authentication data with the reading device 13 (step S201), and transmits the read patient authentication data to the medical information management device 100 (step S203). The medical information management device 200, which has received the patient authentication data, performs authentication processing and authorization processing (step S205). The authentication processing and authorization processing are the same as those in the first embodiment.
[0078] Next, the medical information management device 100 transmits the generated editing authority information or denial information to the tablet terminal 10 that transmitted the patient authentication data, using the communication interface 110 (step S207). The tablet terminal 10 notifies the user U of the received editing authority information or denial information (step S209), and upon receiving the notification from the tablet terminal 10, the user U recognizes whether or not editing authority has been granted. The processing of the tablet terminal 10 here is also common to the first embodiment.
[0079] Next, the tablet terminal 10 generates reservation information for reserving an examination for the target patient (step S211). The tablet terminal 10 generates the reservation information based on, for example, an operation of the input interface 25 by the user U. The reservation information includes registration information, verification information (patient ID), and setting information. The tablet terminal 10 transmits the generated reservation information to the RIS 40 (step S213).
[0080] The RIS 40 acquires registration information of the target patient based on the reservation information transmitted by the tablet terminal 10 (step S215), and then performs examination registration of the target patient (step S217). The RIS 40 generates a worklist including setting information for examining the target patient (step S219). The RIS 40 selects, in the selection function 244, a modality 20 capable of executing the generated workflow based on the performance and work schedule of the multiple modalities 20 (step S221). The RIS 40 generates selection information based on the selected modality 20 and transmits it to the tablet terminal 10 (step S223). The selection information includes the device ID of the selected modality 20.
[0081] The tablet terminal 10 notifies the user U of the received selection information by, for example, displaying it on the display 26 (step S225). Upon receiving the notification from the tablet terminal 10, the user U checks the device ID of the modality 20 to be used for the examination. Next, the tablet terminal 10 transmits editing authority information to the modality 20 to which the device ID checked by the user U is assigned (step S227).
[0082] The modality 20 that has received the editing authority information transmits request information to the RIS 40 requesting a worklist for performing an examination for the patient ID (or examination ID) added to the editing authority information (step S229). Then, the RIS 40 identifies a worklist corresponding to the patient ID (step S231) and transmits the identified worklist to the modality 20 that transmitted the request information (step S233). The modality 20 sets the worklist transmitted by the RIS 40 (step S235).
[0083] Next, the modality 20 generates setting completion information notifying that the setting of the worklist has been completed, and transmits it to the tablet terminal 10 (step S237). The tablet terminal 10 notifies the user U of the received setting completion information, for example by displaying it on the display 26 (step S239). Upon receiving the notification from the tablet terminal 10, the user U operates the tablet terminal 10 to edit the setting information of the modality 20.
[0084] The tablet terminal 10 generates editing information in response to an operation by the user U (step S241), and transmits the generated editing information to the modality 20 (step S243). The modality 20 edits the setting information of the target patient based on the editing information transmitted by the tablet terminal 10 (step S245). In this way, the medical information management system 2 ends the sequence shown in FIG.
[0085] The medical information management system 2 of the second embodiment has the same effect as the medical information management system 1 of the first embodiment. Furthermore, the medical information management system 2 of the second embodiment selects, in the RIS 40, a modality 20 capable of executing a workflow based on reservation information transmitted by the tablet terminal 10. This makes it easy to select a modality 20 available to a patient, and makes it easy to manage the work schedules of multiple patients and modalities 20. Furthermore, since the modality 20 can request a worklist from the RIS 40, the work of registering examinations in the modality 20 can be simplified.
[0086] Third embodiment Next, a third embodiment will be described. The medical information management system of the third embodiment has a configuration similar to that of the medical information management system 2 of the second embodiment, and can execute the same processing as that of the medical information management system 2. The medical information management system of the third embodiment can execute the processing shown below in addition to the processing of the medical information management system 2 of the second embodiment. Hereinafter, the third embodiment will be described, focusing on the processing of the medical information management system of the third embodiment in addition to the processing of the medical information management system 2 of the second embodiment.
[0087] Fig. 10 is a sequence diagram showing an example of processing in the medical information management system of the third embodiment. The medical information management system of the third embodiment includes a first tablet terminal 10A and a second tablet terminal 10B as tablet terminals 10, as well as a medical information management device 200, a RIS 40, and a modality 20. The first tablet terminal 10A is managed by a first user U1, and the second tablet terminal 10B is managed by a second user U2. In the sequence diagram shown in Fig. 10, the second tablet terminal 10B corresponds to the tablet terminal 10 in the sequence diagram shown in Fig. 9.
[0088] A first user U1 who manages a first tablet terminal 10A different from the second tablet terminal 10B may want to read and view the setting information of a target patient even if he or she does not have the authority to edit the setting information of the target patient. In this case, the first tablet terminal 10A generates information (hereinafter, read authority request information) requesting authority to read the setting information of the target patient set in the modality 20 (hereinafter, read authority) in accordance with the operation of the first user U1 in the medical information management device 200 (step S301). The first tablet terminal 10A transmits the generated read authority request information to the medical information management device 200 (step S303).
[0089] The medical information management device 200, to which the first tablet terminal 10A has transmitted the read authority request information, determines whether or not to grant read authority (step S305). The determination as to whether or not to grant read authority may be performed in any manner. For example, when read authority is to be granted only to doctors, the determination as to whether or not to grant read authority may be based on whether the first user U1 is a doctor or the like.
[0090] The medical information management device 200, after determining whether or not to grant the read authority, transmits read authority information to the first tablet terminal 10A if the read authority is to be granted, and transmits denial information to the first tablet terminal 10A if the read authority is not to be granted (step S307). The memory 150 in the medical information management device 200 stores an authority management table. The authority management table is a table that stores editing authority and reading authority for the setting information of a target patient in multiple tablet terminals 10. The editing authority includes reading authority, and a user U who has editing authority also has reading authority.
[0091] FIG. 11 is a diagram showing an example of the contents of the authority management table. The authority management table includes information on editing authority and reading authority associated with a terminal ID and a patient ID. For example, the authority management table includes information in which a tablet terminal 10 with a terminal ID "0001" has reading authority for a patient ID "000A" and has neither editing authority nor reading authority for patients "000B" and "000C". Since one tablet terminal 10 is managed by one user U, a user ID may be used instead of or in addition to the terminal ID.
[0092] The authority management table includes information that the tablet terminal 10 with terminal ID "0002" has read authority for patients with patient IDs "000A" and "000B", but has neither edit authority nor read authority for patient "000C". Edit authority for each patient ID is granted to only one tablet terminal 10. Read authority for each patient ID can be granted to multiple tablet terminals 10.
[0093] 10, the first tablet terminal 10A that has received the read authority information or denial information notifies the first user U1 of the received information by, for example, displaying it on the display 26 (step S309). Upon receiving the notification from the first tablet terminal 10A, the first user U1 recognizes whether or not read authority has been granted.
[0094] Next, the first tablet terminal 10A transmits a reading destination confirmation request to the medical information management device 200 in order to confirm the modality (hereinafter, reading destination) for which the setting information of the target patient has been set in accordance with the operation of the first user U1 (step S311). The medical information management device 200, which has received the reading destination confirmation request, confirms the reading destination (step S313), generates reading destination information including information on the confirmed reading destination, and transmits the information to the first tablet terminal 10A (step S315).
[0095] Next, the first tablet terminal 10A notifies the first user U1 of the reading destination included in the received reading destination information by, for example, displaying the reading destination on the display 26 (step S317). Upon receiving the notification from the first tablet terminal 10A, the first user U1 recognizes the reading destination from which the setting information of the target patient is to be read.
[0096] Next, the first tablet terminal 10A transmits a request to read the setting information of the target patient (hereinafter, a read request) to the modality 20 to be read according to the operation of the first user U1 (step S319). In response to the transmitted read request, the modality 20 provides the setting information of the target patient (step S321) and transmits it to the first tablet terminal 10A (step S323).
[0097] The first tablet terminal 10A notifies the first user U1 of the received setting completion information by, for example, displaying it on the display 26 (step S325). Upon receiving the notification from the first tablet terminal 10A, the first user U1 operates the first tablet terminal 10A so as to edit the setting information of the modality 20.
[0098] The first tablet terminal 10A generates editing information in response to the operation of the first user U1 (step S327) and transmits the generated editing information to the modality 20 (step S329). The modality 20 edits the setting information of the target patient based on the editing information transmitted by the tablet terminal 10 (step S331). In this way, the medical information management system 2 ends the sequence shown in Fig. 9. In this way, the medical information management system ends the process shown in Fig. 10.
[0099] The medical information management system of the third embodiment has the same effect as the medical information management system 2 of the second embodiment. Furthermore, the medical information management system of the third embodiment grants reading authority to the tablet terminal 10. Therefore, even a user U who manages the tablet terminal 10 without editing authority can read and view the setting information of the target patient.
[0100] (Fourth embodiment) Next, a fourth embodiment will be described. The medical information management system of the fourth embodiment has a configuration similar to that of the medical information management system 2 of the second embodiment, and can execute the same processing as that of the medical information management system 2. The medical information management system of the fourth embodiment can execute the processing shown below in addition to the processing of the medical information management system 2 of the second embodiment. Hereinafter, the fourth embodiment will be described, focusing on the processing of the medical information management system of the fourth embodiment in addition to the processing of the medical information management system 2 of the second embodiment.
[0101] Fig. 12 is a sequence diagram showing an example of processing in the medical information management system of the fourth embodiment. The medical information management system of the fourth embodiment includes a first tablet terminal 10A and a second tablet terminal 10B as the tablet terminals 10, as well as a medical information management device 200, a RIS 40, and a modality 20. In the sequence diagram shown in Fig. 12, the second tablet terminal 10B corresponds to the tablet terminal 10 in the sequence diagram shown in Fig. 9.
[0102] In the medical information management system of the fourth embodiment, the second tablet terminal 10B has the editing authority to edit the setting information of the target patient in the modality 20 (step S401). The first user U1 who manages the first tablet terminal 10A that does not have the editing authority may want to obtain the editing authority depending on his / her own situation.
[0103] In this case, the first tablet terminal 10A generates inquiry information for inquiring of the RIS 40 about the setting information set in the modality 20 used by the target patient according to the operation of the first user U1 (step S403), and transmits the inquiry information to the RIS 40 (step S405). The RIS 40 that has received the inquiry information checks the setting information of the target patient according to the inquiry information (step S407), and transmits held authority information indicating the tablet terminal 10 that holds the editing authority for the target patient to the first tablet terminal 10A (step S409).
[0104] The first tablet terminal 10A that has received the retained authority information notifies the first user U1 of the user U indicated by the retained authority information, here the second user U2 of the second tablet terminal 10B, for example by displaying the user U on the display 26. Upon receiving the notification from the first tablet terminal 10A, the first user U1 generates an authority transfer request requesting the transfer of editing authority (step S411) and transmits the request to the second tablet terminal 10B managed by the second user U2 (step S413).
[0105] The second tablet terminal 10B that has received the authority transfer request determines whether or not the editing authority can be transferred (step S415). The second tablet terminal 10B may determine whether or not the editing authority can be transferred in any way. For example, the second tablet terminal 10B may display on the display 26 whether or not the transfer of the editing authority is permitted, and may determine whether or not the editing authority can be transferred based on the result of the selection made by the second user U2. Alternatively, the second tablet terminal 10B may assign a condition for permitting the grant of transfer authority to the user U in advance, and determine whether or not the editing authority can be transferred based on whether or not the first user U1 satisfies this condition.
[0106] As a result, when it is determined that the transfer of the editing authority is not possible, the second tablet terminal 10B generates denial information and transmits it to the first tablet terminal 10A (step S417). Based on the received denial information, the first tablet terminal 10A notifies the first user U1 that the transfer of the editing authority has not been permitted.
[0107] When it is determined that the editing authority can be transferred, the second tablet terminal 10B transmits transfer information to the medical information management device 200 and the first tablet terminal 10A (step S419). After that, the second tablet terminal 10B loses the editing authority that it has held (step S421). When the editing authority can be granted to multiple tablet terminals 10, the second tablet terminal 10B may not lose the editing authority.
[0108] The acquisition function 141 in the medical information management device 200 acquires the transfer information transmitted by the second tablet terminal 10B. The acquisition function 141 updates the authority management table stored in the memory 150 based on the acquired transfer information (step S423).
[0109] Fig. 13 is a diagram for explaining the update of the authority management table. As shown in the left diagram of Fig. 13, in the authority management table before the update, the second tablet terminal 10B with the terminal ID "0002" has been set with editing authority for the target patient with the patient ID "000A". The first tablet terminal 10A with the terminal ID "0001" has been set with reading authority for the target patient with the patient ID "000A".
[0110] In contrast, as shown in the right diagram of FIG. 13, in the updated authority management table, by delegating the editing authority, the editing authority for the target patient with patient ID "000A" is set in the first tablet terminal 10A with terminal ID "0001". The reading authority that was set in the first tablet terminal 10A with terminal ID "0001" is now included in the editing authority. Also, the second tablet terminal 10B with terminal ID "0002" is now in a state in which reading authority for the target patient with patient ID "000A" is set. The reading authority for the target patient with patient ID "000A" in the second tablet terminal 10B with terminal ID "0002" may be deleted.
[0111] Returning to FIG. 12, the first tablet terminal 10A that has received the transfer information notifies the first user U1 that the editing authority has been transferred, for example by displaying on the display 26 (step S425). The second tablet terminal 10B generates editing information in response to the operation of the first user U1 (step S427) and transmits the generated editing information to the modality 20 (step S429). The modality 20 edits the setting information of the target patient based on the editing information transmitted by the first tablet terminal 10A (step S431). In this way, the medical information management system of the fourth embodiment ends the sequence shown in FIG. 12.
[0112] The medical information management system of the fourth embodiment has the same effect as the medical information management system 1 of the first embodiment. Furthermore, the medical information management system of the fourth embodiment can transfer the editing authority to edit the setting information to another user U. Therefore, the convenience of the user U can be improved.
[0113] In the above embodiment, the tablet terminal 10 transmits a request for authority transfer directly to the other tablet terminal 10, but the request for authority transfer may be transmitted to the medical information management device 200 and then transmitted to the other tablet terminal 10 via the medical information management device 200. In this case, the authority granting function in the medical information management device 200 transfers the editing authority granted to the tablet terminal to the other tablet terminal. Also, in the above embodiment, the medical information management device 200 is provided independently of the RIS 40, but the medical information management device may be provided within the RIS 40.
[0114] According to at least one of the embodiments described above, by having an acquisition unit that acquires patient authentication data that identifies a patient and is provided by a terminal device managed by a user, an authentication unit that authenticates that the patient is a user of a medical image diagnostic device based on the patient authentication data, and an authority granting unit that grants the terminal device editing authority to edit setting information of the patient that is set for examining the patient by the medical image diagnostic device based on a result of the authentication, it is possible to prevent confusion over the modality being operated.
[0115] Although some embodiments have been described, these embodiments are presented as examples and are not intended to limit the scope of the invention. These embodiments can be implemented in various other forms, and various omissions, substitutions, and modifications can be made without departing from the spirit of the invention. These embodiments and their modifications are included in the scope of the invention and its equivalents as described in the claims, as well as in the scope and spirit of the invention. [Explanation of symbols]
[0116] 1,2...Medical information management system 8…Hospital Systems 10. Tablet device 10A…1st tablet device 10B…Second tablet device 11,24,110…Communication interface 12...Touch panel 13...Reading device 14...Control circuit 20. Modality 20A…First Modality 20B…Second modality 21... Mounting device 22…Bed 23…Console 25,120…Input interface 26,130…Display 27...Processing circuit 28,150…Memory 30…Hospital Information System (HIS) 40…Radiology Information System (RIS) 50…Picture Archiving and Communication System (PACS) 100,200...Medical information management device 140, 240... Processing circuit 141…Acquisition function 142…Authentication function 143...Authorization function 151...Certification list 244…Selection function NW…Network U...User U1...First user U2: Second user
Claims
1. A medical information management system including a medical information management device, a plurality of terminal devices, and a plurality of medical image diagnostic devices, The medical information management device includes: an acquisition unit that acquires patient authentication data that identifies a patient and is provided by a terminal device managed by a user; an authentication unit that authenticates that the patient is a user of the medical image diagnostic device based on the patient authentication data; an authorization unit that, based on a result of the authentication, grants to the terminal device an editing authorization to edit setting information of the patient that is set for examining the patient by the medical image diagnostic apparatus; a schedule management device that manages work schedules of the user and the medical image diagnostic device; a selection unit that selects a medical image diagnostic apparatus to be used for examining the patient from a plurality of medical image diagnostic apparatuses; the schedule management device transmits the work schedule to the medical image diagnostic device in response to a request from the medical image diagnostic device selected by the selection unit. Medical information management system.
2. The medical information management device further includes a selection unit that selects a medical image diagnostic device to be used for examining the patient from a plurality of medical image diagnostic devices. The medical information management system according to claim 1 .
3. the authorization unit further grants, to the terminal device, a read authorization to read the setting information of the patient set in the medical image diagnostic apparatus; The medical information management system according to claim 1 .
4. the authorization unit grants the read authorization to the terminal device in response to a request from the terminal device; The medical information management system according to claim 3 .
5. the acquiring unit acquires transfer information indicating that the editing authority has been transferred from the terminal device to another terminal device. The medical information management system according to claim 1 .
6. the authority granting unit transfers the editing authority granted to the terminal device to another terminal device; The medical information management system according to claim 1 .
7. A terminal device used in a medical information processing system including a medical information management device and a plurality of medical image diagnostic devices, The medical information management device includes: an acquisition unit that acquires patient authentication data that identifies a patient and is provided by a terminal device managed by a user; an authentication unit that authenticates that the patient is a user of the medical image diagnostic device based on the patient authentication data; an authorization unit that, based on a result of the authentication, grants to the terminal device an editing authorization to edit setting information of the patient that is set for examining the patient by the medical image diagnostic apparatus; The terminal device a reader for reading the patient authentication data that identifies the patient; a transmitting unit that transmits the patient authentication data to the medical information management device; a receiving unit that receives editing authority information transmitted from the medical information management device and notifying that editing authority to edit setting information set in the medical image diagnostic device is granted; a control unit that generates editing information for editing the setting information set in the medical image diagnostic apparatus and causes the transmission unit to transmit the generated editing information to the medical image diagnostic apparatus. Terminal device.
8. A program used in a medical information management system including a medical information management device, a plurality of terminal devices, and a plurality of medical image diagnostic devices, the program comprising: Acquire patient authentication data that identifies the patient and is provided by a terminal device managed by the user; authenticating that the patient is a user of the medical image diagnostic device based on the patient authentication data; granting, to the terminal device, an editing authority to edit setting information of the patient that is set for examining the patient by the medical image diagnostic apparatus based on a result of the authentication; the medical information management system further includes a schedule management device that manages work schedules of the user and the medical image diagnostic device; causing the computer to select a medical image diagnostic apparatus to be used in examining the patient from among a plurality of medical image diagnostic apparatuses; the schedule management device transmits the work schedule to the selected medical image diagnostic device in response to a request from the selected medical image diagnostic device; program.