Medical equipment control system
By designing a medical equipment control system for panel components and monitoring equipment in the ICU, the problems of incomplete disinfection of bedside medical equipment and insufficient isolation of equipment from patients are solved, and effective control of multidrug-resistant bacteria infection in the ICU and accurate monitoring of patient signs are achieved.
Patent Information
- Application Number
- CN202411615783.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-06-06
AI Technical Summary
Disinfection of bedside medical equipment in ICU is difficult to complete, and the prior art cannot effectively isolate patients and equipment, which increases the risk of multidrug-resistant bacteria infection.
A medical equipment control system was designed to physically isolate the diagnosis and treatment equipment from the bed area through the perimeter assembly, and obtain the physical sign monitoring results in real time through the monitoring equipment, reducing the number and area of contact between medical personnel of the equipment.
It has achieved sealing and disinfection of diagnostic and treatment equipment, reducing the incidence of multidrug-resistant bacteria infection in the ICU, and ensuring comprehensive and accurate monitoring of patient signs.
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Abstract
Description
Technical Field
[0001] The present application relates to the technical field of auxiliary medical equipment, and in particular to a medical equipment control system. Background Art
[0002] With the continuous development of science and technology, electronic technology, computer technology, etc. have begun to be integrated into the field of medical equipment, making the functions of medical equipment more powerful, accurate and diversified. For example, the emergence of X-ray imaging equipment, ultrasonic diagnostic equipment, etc., provides doctors with more comprehensive and accurate auxiliary information, which greatly promotes the development of medical technology. Among them, for the Intensive Care Unit (ICU), since it is a special nursing unit specially set up for patients with critical conditions who need close monitoring and supportive treatment, compared with ordinary nursing units, it has more bedside diagnosis and treatment equipment. In order to reduce the risk of cross infection, it is particularly important to study how to remove and control multidrug-resistant bacteria in the ICU.
[0003] At present, in the related art, the disinfection of bedside medical equipment is mainly performed by nurses wiping the surface with a wet cloth containing disinfectant. However, since most medical equipment has many irregular shapes, edges, cables, buttons and other parts, and each medical device has its own display screen and operation buttons, nurses may miss some during the wiping process. Another way is to use a suspended bridge body to combine the lighting section, the moving section of the liquid pump rack, the nursing section, the monitoring respiratory section and the digital information system under the suspended bridge body, and use them through axially rotating support or mobile operation. However, in this solution, the patient and the equipment are in the same space, and it cannot be applied to various models of ordinary equipment, resulting in an increased incidence of multiple drug-resistant bacteria infections. Summary of the invention
[0004] The purpose of this application is to provide a medical equipment control system that can achieve physical isolation of diagnostic equipment from the bed area, and realize comprehensive and accurate monitoring of patient vital signs, thereby reducing the incidence of multidrug-resistant bacterial infection.
[0005] To achieve the above objectives, this application provides the following solutions:
[0006] In a first aspect, the present application provides a medical device control system, comprising:
[0007] An enclosure assembly, the enclosure assembly is located at the edge of the hospital bed, the enclosure assembly includes a plurality of enclosures, and the plurality of enclosures are connected end to end to form an accommodating space;
[0008] A switch assembly, wherein the switch assembly is arranged on the enclosure plate;
[0009] A diagnostic and treatment device, the diagnostic and treatment device is located in the accommodating space, and the diagnostic and treatment device is used to monitor the vital signs of the subject to be monitored on the bed to obtain monitoring results;
[0010] A monitoring device, wherein the monitoring device is arranged on the enclosure and located outside the enclosure, the monitoring device establishes a communication connection with the diagnosis and treatment device, and the monitoring device is used to obtain the monitoring results in real time.
[0011] Optionally, the multiple enclosures include: a first enclosure, a second enclosure, a third enclosure and a fourth enclosure, one end of the first enclosure is connected to one end of the second enclosure, the other end of the second enclosure is connected to one end of the third enclosure, the other end of the third enclosure is connected to one end of the fourth enclosure, and the other end of the fourth enclosure is connected to the other end of the first enclosure; the first enclosure is the enclosure closest to the bed.
[0012] Optionally, the first enclosure is arranged in parallel with the second enclosure, the third enclosure is arranged in parallel with the fourth enclosure, and the third enclosure is arranged perpendicular to the first enclosure; the switch assembly is arranged on the first enclosure, the second enclosure is arranged opposite to the first enclosure and located at an end away from the bed, and the monitoring device is located on the outside of the second enclosure.
[0013] Optionally, the switch assembly comprises:
[0014] At least two door shafts, the door shafts are arranged on the first enclosure plate;
[0015] At least two door leaves, the door leaves are movably connected to the door shaft, the two door leaves are equal in size and arranged opposite to each other; when the switch assembly is in a closed state, the edges of the two door leaves coincide with each other in a direction parallel to or perpendicular to the door shaft;
[0016] A through hole is arranged at a position where the edges of the two door leaves overlap.
[0017] Optionally, the diagnostic and treatment equipment includes:
[0018] An equipment line, the equipment line comprising an equipment cable and an equipment pipeline, the equipment cable and the equipment pipeline are both connected to the bed through the through hole;
[0019] A controller, the controller is located inside the diagnostic and treatment device, and the controller is used to monitor the vital signs of the subject to be monitored to obtain monitoring results, and generate a monitoring signal according to the monitoring results;
[0020] A display panel, the display panel being arranged on the diagnosis and treatment device; the display panel being used to receive and respond to the monitoring signal and to display;
[0021] A control button, the control button being arranged on the diagnosis and treatment device, the control button being used to generate a first control signal and send the signal to the controller, so that the controller performs a corresponding operation on the diagnosis and treatment device according to the first control signal;
[0022] A control knob is arranged on the diagnostic and treatment device, and is used to generate a second control signal and send it to the controller, so that the controller performs corresponding operations on the diagnostic and treatment device according to the second control signal.
[0023] Optionally, the monitoring device includes:
[0024] A first touch screen, the first touch screen is arranged on the monitoring device, and the first touch screen is used to perform monitoring operations on the diagnosis and treatment device;
[0025] A second touch screen is provided on the monitoring device, and is used to perform control operations on the diagnosis and treatment device.
[0026] Optionally, the medical equipment control system further comprises: a mechanical arm assembly, wherein the mechanical arm assembly is arranged on the third enclosure plate;
[0027] The robotic arm assembly includes a base, a robotic arm, an operating finger and a camera; the base is connected to the robotic arm and is arranged on a side of the third enclosure close to the accommodating space, the operating finger is arranged at the end of the robotic arm, and the camera is installed on the robotic arm.
[0028] Optionally, a disinfection inlet and a disinfection outlet are provided on the third enclosure, wherein the disinfection inlet is used to provide a position for disinfectant to enter, and the disinfection outlet is used to provide a position for the disinfected items to exit.
[0029] Optionally, the medical device control system further comprises: a power supply component, the power supply component comprising a power socket and a gas source interface; the power supply component is arranged on the second enclosure plate or the third enclosure plate;
[0030] The power socket is electrically connected to the diagnostic and treatment equipment through the equipment cable, and the gas source interface is connected to the diagnostic and treatment equipment through the equipment pipeline.
[0031] Optionally, the switch assembly further comprises: a buffer pad, which is arranged along the inner edge of the through hole, and the shape of the buffer pad is semicircular or "C"-shaped.
[0032] According to the specific embodiments provided in this application, this application discloses the following technical effects:
[0033] The present application provides a medical equipment control system, which includes: an enclosure assembly, a switch assembly, a diagnostic and treatment device and a monitoring device. The enclosure assembly is located at the edge of a hospital bed. The enclosure assembly includes multiple enclosures, and the multiple enclosures are connected end to end to form an accommodating space. The switch assembly is arranged on the enclosure, and the diagnostic and treatment device is located in the accommodating space. The diagnostic and treatment device is used to monitor the vital signs of a subject to be monitored on the hospital bed and obtain monitoring results. The monitoring device is arranged on the enclosure and located on the outside of the enclosure. The monitoring device establishes a communication connection with the diagnostic and treatment device, and the monitoring device is used to obtain the monitoring results in real time. Compared with the prior art, the medical equipment control system of the present application is capable of physically isolating the diagnostic equipment from the bed area by providing a panel assembly and arranging the diagnostic equipment in the accommodation space formed by the panel assembly. Since the accommodation space formed by the panel is closed on all sides, the sealing and disinfection of these devices can be strengthened, making the machine environment around the bed area cleaner, avoiding drug and bacterial infection in the bed area, and reducing the unnecessary contact area and frequency of medical staff contact with diagnostic equipment. By providing a switch assembly, it is convenient to provide necessary access channels for diagnostic equipment and personnel. At the same time, there is no need to consider the manufacturing level unification issues of ordinary equipment of different models. Diagnostic equipment, monitoring equipment, etc. can be integrated to achieve all-round monitoring of patient vital signs. While ensuring accurate monitoring, it also reduces the incidence of multidrug-resistant bacterial infections in the ICU. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0035] Figure 1 This is a schematic diagram of the internal structure of a medical device control system in one embodiment of the present application;
[0036] Figure 2 A schematic diagram of the internal structure of a medical device control system provided in one embodiment of the present application;
[0037] Figure 3 This is a front view structural schematic diagram of a medical device control system provided in another embodiment of the present application.
[0038] Description of reference numerals:
[0039] Bed-1, enclosure assembly-10, first enclosure-11, second enclosure-12, third enclosure-13, fourth enclosure-14, switch assembly-20, door hinge-21, door leaf-22, through hole-23, diagnostic equipment-30, equipment line-31, display panel-32, control button-33, control knob-34, monitoring equipment-40, first touch screen-41, second touch screen-42, robotic arm assembly-50, base-51, robotic arm-52, operating finger-53, camera-54, power supply assembly-60, power socket-61, air source interface-62, disinfection inlet-131, disinfection outlet-132, equipment cable-311, equipment pipeline-312. DETAILED DESCRIPTION
[0040] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0041] In order to make the above-mentioned objects, features and advantages of the present application more obvious and easy to understand, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0042] In the description of the present invention, unless otherwise clearly specified and limited, the terms "connected", "connected", and "fixed" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0043] In the present invention, unless otherwise clearly specified and limited, a first feature being "above" or "below" a second feature may include that the first and second features are in direct contact, or may include that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, a first feature being "above", "above" and "above" a second feature includes that the first feature is directly above and obliquely above the second feature, or simply indicates that the first feature is higher in level than the second feature. A first feature being "below", "below" and "below" a second feature includes that the first feature is directly below and obliquely below the second feature, or simply indicates that the first feature is lower in level than the second feature.
[0044] In the description of this embodiment, the terms "upper", "lower", "left", "right" and other directions or positional relationships are based on the directions or positional relationships shown in the drawings, and are only for the convenience of description and simplification of operation, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operate in a specific direction, and therefore cannot be understood as limiting the present invention. In addition, the terms "first" and "second" are only used to distinguish in the description and have no special meaning.
[0045] As mentioned in the background technology, ICU wards are special nursing units. Due to the special patient population and high population density, they are prone to the presence of multidrug-resistant bacteria and cross-infection. The risk is greatly increased for special patient groups after being infected with multidrug-resistant bacteria. Therefore, it is very important to reduce the presence of multidrug-resistant bacteria and cross-infection in ICU wards.
[0046] In the related art, the disinfection of bedside medical equipment is mainly carried out by nurses wiping the surface with a wet cloth containing disinfectant. However, since most medical equipment is designed according to the needs of treatment during production and manufacturing, it has many irregular shapes, edges, cables, buttons and other parts, and each medical device has its own display screen and operation buttons. Nurses may miss some parts during the wiping process, and the configuration of rags and disinfectants may not be completely qualified. Wiping and disinfection may cause the spread of multi-drug resistant bacteria. Another way is to use a suspended bridge body to combine the lighting section, the moving section of the liquid pump rack, the nursing section, the monitoring respiratory section and the digital information system under the suspended bridge body, and use them through axial rotation support or mobile operation. However, this solution cannot isolate patients and equipment, and cannot be applied to various models of ordinary equipment, resulting in an increased incidence of multi-drug resistant bacteria infections.
[0047] Based on the above-mentioned defects, the embodiment of the present application provides a medical equipment control system. Compared with the prior art, the medical equipment control system of the present application can physically isolate the diagnostic equipment from the bed area by setting a panel assembly and setting the diagnostic equipment in the accommodating space formed by the panel assembly. Since the formed accommodating space is closed on all sides, it is possible to strengthen the sealing and disinfection of these equipment, making the machine environment around the bed area cleaner, avoiding drug and bacterial infection in the bed area, and reducing the unnecessary contact area and number of medical staff with diagnostic equipment; by setting a switch assembly, it is convenient to provide necessary entry and exit channels for diagnostic equipment and personnel. At the same time, there is no need to consider the manufacturing level unification issues of ordinary equipment of different models. The diagnostic equipment, monitoring equipment, etc. can be integrated to achieve all-round monitoring of patient vital signs. While ensuring accurate monitoring, it also reduces the incidence of multidrug-resistant bacterial infection in the ICU.
[0048] See also Figure 1As shown, the above-mentioned medical equipment control system includes: a panel assembly 10, a switch assembly 20, a diagnostic and treatment device 30, and a monitoring device 40. The panel assembly 10 is located at the edge of the bed 1. The panel assembly 10 includes multiple panels, and the multiple panels are connected end to end to form a accommodating space. The switch assembly 20 is arranged on the panel, and the diagnostic and treatment device 30 is located in the accommodating space. The diagnostic and treatment device 30 is used to monitor the vital signs of the object to be monitored on the bed 1 to obtain the monitoring results. The monitoring device 40 is arranged on the panel and located on the outside of the panel. The monitoring device 40 establishes a communication connection with the diagnostic and treatment device 30, and the monitoring device 40 is used to obtain the monitoring results in real time.
[0049] It should be noted that the above-mentioned enclosure assembly 10 may include multiple enclosures, and the multiple enclosures are connected end to end to form a containing space, which is a closed space that can accommodate one, two or more diagnostic and treatment equipment 30. The shape formed by the combination of multiple enclosures can be "C-shaped" or "L-shaped", etc. The material of the enclosure can be ice-clean board, ice-fire board, inorganic pre-coated board, PVC wallboard, fiberglass reinforced plastic (FRP) board, etc., as long as the board material of the enclosure has good moisture-proof, mildew-proof, self-cleaning, antibacterial, stain-resistant and wear-resistant properties.
[0050] The areas and shapes of the multiple panels can be the same or different. The areas and shapes of the panels can be customized according to actual needs. For example, four panels can be set, or three panels can be included. When four panels are included, the areas and shapes of the four panels can be the same; or the areas and shapes of every two panels can be the same. The shape of the panel can be a rectangle or a curve. The curve can be understood as a figure composed of curves and straight lines.
[0051] Exemplarily, the above-mentioned multiple enclosures may include a first enclosure 11, a second enclosure 12, a third enclosure 13 and a fourth enclosure 14, one end of the first enclosure 11 is connected to one end of the second enclosure 12, the other end of the second enclosure 12 is connected to one end of the third enclosure 13, the other end of the third enclosure 13 is connected to one end of the fourth enclosure 14, and the other end of the fourth enclosure 14 is connected to the other end of the first enclosure 11; the first enclosure 11 is the enclosure closest to the bed 1.
[0052] It can be understood that the areas and shapes of the first enclosure 11, the second enclosure 12, the third enclosure 13 and the fourth enclosure 14 can be the same or different; when the areas and shapes of the four enclosures are the same, the first enclosure 11, the second enclosure 12, the third enclosure 13 and the fourth enclosure 14 can all be rectangles; when the areas and shapes of the four enclosures are different, the first enclosure 11 and the third enclosure 13 can be rectangles with the same area and shape, and the second enclosure 12 and the fourth enclosure 14 can be squares with the same area and shape.
[0053] In the process of forming the accommodation space, the first enclosure 11, the second enclosure 12, the third enclosure 13 and the fourth enclosure 14 may be connected in sequence, and each two enclosures may be movably connected, for example, by snap connection, or by bolt movably connected, etc. When installing the enclosure assembly 10 in the ward, the first enclosure 11, the second enclosure 12, the third enclosure 13 and the fourth enclosure 14 are connected in sequence to form an accommodation space, and the accommodation space can be customized according to the number required by the monitored objects. By setting the connection between each two enclosures as a movable connection, the enclosure assembly 10 can be detachable, and it is convenient to store and organize when the enclosure assembly 10 needs to be moved or removed, thereby improving the convenience of use.
[0054] Optionally, the first enclosure 11 is arranged parallel to the second enclosure 12, the third enclosure 13 is arranged parallel to the fourth enclosure 14, the third enclosure 13 is arranged perpendicular to the first enclosure 11, the switch assembly 20 is arranged on the first enclosure 11, the second enclosure 12 is arranged opposite to the first enclosure 11 and is located at an end away from the bed 1, and the monitoring device 40 is located on the outside of the second enclosure 12.
[0055] The functions of the first enclosure 11, the second enclosure 12, the third enclosure 13 and the fourth enclosure 14 are all different. The first enclosure 11 is closest to the bed 1, which is convenient for establishing a communication connection between the diagnosis and treatment equipment 30 and the bed 1. The second enclosure 12 is connected to the first enclosure 11 and is perpendicular to each other, and is used to install monitoring equipment 40, etc., so as to monitor the vital signs of the subject to be detected on the bed 1 in real time; the third enclosure 13 is parallel to the first enclosure 11, and is used to install an operable component to provide an operating function for the bed 1 through the operable component; the fourth enclosure 14 is connected to the first enclosure 11 and is perpendicular to each other, and is used to provide an access and maintenance channel for the diagnosis and treatment equipment 30. Among them, the first enclosure 11 can be positioned toward the bed 1, the second enclosure 12 can be positioned toward the medical staff, the third enclosure 13 is arranged opposite to the first enclosure 11, and the second enclosure 12 is arranged opposite to the fourth enclosure 14.
[0056] In this embodiment, by arranging the first enclosure 11 and the second enclosure 12 in parallel, the third enclosure 13 and the fourth enclosure 14 in parallel, and the third enclosure 13 and the first enclosure 11 in perpendicular positions, the formed accommodating space can be made rectangular, the formed accommodating space is more regular, and a larger accommodating space is provided for the diagnostic and treatment equipment 30, so that a larger number of diagnostic and treatment equipment 30 can be accommodated in the accommodating space.
[0057] The above-mentioned switch assembly 20 is arranged on the enclosure, and the number of the switch assembly 20 can be one, two or more. The switch assembly 20 is arranged on the first enclosure 11. The switch assembly 20 is used to provide a connection channel between the diagnostic and treatment equipment 30 and the bed 1. The switch assembly 20 can include a closed state and an open state. When the switch assembly 20 is in the open state, a connection is established between the diagnostic and treatment equipment 30 and the bed 1. When the switch assembly 20 is in the closed state, the diagnostic and treatment equipment 30 and the bed 1 are physically isolated.
[0058] Optionally, the switch assembly 20 may be made of stainless steel or alloy, and its size may be customized according to the size and area of the actual accommodation space. When there are two or more switch assemblies 20, the sizes and shapes of the switch assemblies 20 may be the same or different, and their number may be customized according to actual needs.
[0059] The above-mentioned diagnostic and treatment equipment 30 may include one, two or more, and may be customized according to the actual physical sign requirements of the subject to be monitored. When the diagnostic and treatment equipment 30 includes two or more, the functions of the corresponding diagnostic and treatment equipment 30 may be different. The diagnostic and treatment equipment 30 may be placed in the accommodation space, so as to physically isolate the diagnostic and treatment equipment 30 from the bed 1 area to avoid the occurrence of multiple drug-resistant bacterial infections.
[0060] Exemplarily, the diagnostic and treatment equipment 30 may include life support equipment, monitoring equipment, infusion and drug administration equipment, diagnostic equipment, other special equipment, etc., wherein the life support equipment may include a ventilator, a cardiopulmonary resuscitation machine, and an extracorporeal membrane oxygenation machine; the monitoring equipment may include: a multi-parameter monitor, a central venous pressure monitoring device, an intracranial pressure monitoring device, an arterial catheter monitoring device, etc.; the infusion and drug administration equipment may include: an infusion pump, a syringe pump, and a nutrition pump; the diagnostic equipment may include: a portable ultrasound machine, an X-ray machine, a blood analyzer, etc.; other special equipment may include: a defibrillator, a hemodialysis machine, a cooling blanket, a warming blanket, a negative pressure wound therapy device, etc.
[0061] The monitoring device 40 is arranged outside the second enclosure 12, and the number thereof may include one, two or more. The monitoring device 40 is customized according to the number of diagnostic and treatment devices 30 and the actual space size. The monitoring device 40 establishes a communication connection with the diagnostic and treatment device 30. The diagnostic and treatment device 30 is used to monitor the vital signs of the subject to be monitored on the bed 1, obtain the monitoring results and send them to the monitoring device 40, so that the monitoring device 40 obtains the monitoring results in real time. The monitoring device 40 is used to monitor and manage the diagnostic and treatment devices 30 in real time.
[0062] The medical equipment control system in this embodiment encloses the complex diagnostic equipment 30 in a space, thereby physically isolating the diagnostic equipment 30 from the patients and medical staff in the bed 1 area, thereby reducing the incidence of multidrug-resistant bacterial infection in the ICU.
[0063] The medical device control system in this embodiment can be applied to different application scenarios, such as medical device management, patient monitoring and data management, infection control, drug management and drug administration safety, etc. Among them, for patient monitoring and data management, the data of multi-parameter monitors can be integrated to achieve centralized monitoring and analysis.
[0064] The present application provides a medical equipment control system, which includes: an enclosure assembly 10, a switch assembly 20, a diagnostic and treatment device 30 and a monitoring device 40. The enclosure assembly 10 is located at the edge of the hospital bed 1. The enclosure assembly 10 includes multiple enclosures, and the multiple enclosures are connected end to end to form a accommodating space. The switch assembly 20 is arranged on the enclosure, and the diagnostic and treatment device 30 is located in the accommodating space. The diagnostic and treatment device 30 is used to monitor the vital signs of the object to be monitored on the hospital bed 1 to obtain the monitoring results. The monitoring device 40 is arranged on the enclosure and located on the outside of the enclosure. The monitoring device 40 establishes a communication connection with the diagnostic and treatment device 30, and the monitoring device 40 is used to obtain the monitoring results in real time. Compared with the prior art, the medical equipment control system of the present application is capable of physically isolating the diagnostic equipment 30 from the bed 1 area by providing an enclosure assembly 10 and arranging the diagnostic equipment 30 in the accommodating space formed by the enclosure assembly 10. Since the formed accommodating space is closed on all sides, the sealing and disinfection of these devices can be strengthened, making the machine environment around the bed 1 area cleaner, avoiding drug and bacterial infection in the bed 1 area, and reducing the unnecessary contact area and number of medical staff contacting the diagnostic equipment 30. By providing a switch assembly 20, it is convenient to provide necessary access channels for the diagnostic equipment 30 and personnel. At the same time, there is no need to consider the manufacturing level unification issues of ordinary equipment of different models. The diagnostic equipment 30, monitoring equipment 40, etc. can be integrated to realize all-round monitoring of patient vital signs. While ensuring accurate monitoring, the incidence of multi-drug resistant bacterial infection in the ICU is also reduced.
[0065] In one embodiment, see Figure 2 As shown, the switch assembly 20 includes: at least two door shafts 21, at least two door leaves 22 and a through hole 23, the door shaft 21 is arranged on the first enclosure 11; the door leaf 22 is movably connected to the door shaft 21, and the two door leaves 22 are equal in size and arranged oppositely; when the switch assembly 20 is in a closed state, the edges of the two door leaves 22 overlap along a direction parallel to or perpendicular to the door shaft 21; the through hole 23 is arranged at the position where the edges of the two door leaves 22 overlap.
[0066] It should be noted that the door shaft 21 can be a cylinder, a triangular prism, or a pentagonal prism, as long as it is used to make a door leaf. The length of the door shaft 21 can be determined according to the width of the first enclosure 11, and can be the same as the width of the first enclosure 11, or can be smaller than the width of the first enclosure 11; the door leaf 22 can be a rectangle or other shapes, and can be customized according to the size and area of the switch assembly 20; the number of the shapes of the through holes 23 can be one, two, or more, and the shape of the through holes 23 can be square, circular, or other shapes, and the size of the through holes 23 can be customized according to the size and area of the switch assembly 20. When the number of the through holes 23 is multiple, the multiple through holes 23 can be arranged in sequence along a direction parallel or perpendicular to the door shaft 21.
[0067] When there are two door leaves 22, the two door leaves 22 can be arranged in parallel with the door axis 21. When the switch assembly 20 is in a closed state, the upper edges of the door leaves 22 coincide with each other in a direction parallel to the door axis 21. When there are two door leaves 22, the two door leaves 22 can be arranged in perpendicular to the door axis 21. When the switch assembly 20 is in a closed state, the upper edges of the door leaves 22 coincide with each other in a direction perpendicular to the door axis 21.
[0068] Optionally, the switch assembly 20 further includes: a buffer pad, which is arranged along the inner edge of the through hole 23, and the shape of the buffer pad can be set to be semicircular or "C"-shaped.
[0069] It is understandable that the material of the buffer pad can be rubber material, PE material, or silicone material. In this embodiment, there is no limitation on the material of the buffer pad. When there are multiple through holes 23 and two door leaves 22, half of each through hole 23 can be set on one door leaf 22.
[0070] Specifically, when connecting the diagnostic and treatment equipment 30 to the hospital bed 1, the staff can open the door leaf 22, at which time the switch assembly 20 is in an open state, and the staff can connect the device line 31 of the diagnostic and treatment equipment 30, and close the door leaf 22 after the connection is completed, so that the switch assembly 20 is in a closed state, thereby achieving physical isolation between the hospital bed 1 and the diagnostic and treatment equipment 30.
[0071] In this embodiment, by providing at least two door shafts 21, at least two door leaves 22 and a through hole 23 in the switch assembly 20, it is possible to facilitate the establishment of a connection channel between the diagnostic and treatment equipment 30 and the bed 1. By providing a buffer pad in the through hole 23 of the switch assembly 20, it is possible to prevent the line from being damaged by collision when connecting the diagnostic and treatment equipment 30 and the bed 1 through a line, thereby facilitating line access and protecting the normal connection of the line, and further improving the stability of communication between the diagnostic and treatment equipment 30 and the bed 1.
[0072] In one embodiment, see Figure 3 As shown, the diagnosis and treatment equipment 30 includes: an equipment line 31, a controller, a display panel 32, a control button 33 and a control knob 34. The equipment line 31 includes an equipment cable 311 and an equipment pipeline 312. The controller is not shown in the figure. The equipment cable 311 and the equipment pipeline 312 are both connected to the bed 1 through the through hole 23; the controller is located inside the diagnosis and treatment equipment 30, and the controller is used to monitor the vital signs of the monitored object to obtain the monitoring results, and generate a monitoring signal according to the monitoring results; the display panel 32 is arranged on the diagnosis and treatment equipment 30; the display panel 32 is used to receive and respond to the monitoring signal for display; the control button 33 is arranged on the diagnosis and treatment equipment 30, and the control button 33 is used to generate a first control signal and send it to the controller, so that the controller performs a corresponding operation on the diagnosis and treatment equipment 30 according to the first control signal; the control knob 34 is arranged on the diagnosis and treatment equipment 30, and the control knob 34 is used to generate a second control signal and send it to the controller, so that the controller performs a corresponding operation on the diagnosis and treatment equipment 30 according to the second control signal.
[0073] It should be noted that the controller may include a plurality of circuit elements and modules, and the plurality of circuit elements and modules are mutually configured so that the controller has data processing and logic operation functions, and the controller is used to control the device line 31 to perform signal transmission operations. The device line 31 may include a device cable 311 and a device pipeline 312, wherein the device cable 311 is used to realize the communication connection between the diagnosis and treatment equipment 30 and the bed 1, and the device pipeline 312 is used to realize the physical connection between the diagnosis and treatment equipment 30 and the bed 1; the number of the device cables 311 and the device pipeline 312 may be one, two or more, and the device cable 311 or the device pipeline 312 may be connected to the bed 1 through the through hole 23, wherein the through hole 23 may be set to be multiple, and the device cable 311 may be connected to the bed 1 through one through hole 23, and the device pipeline 312 may be connected to the bed 1 through another through hole 23.
[0074] The display panel 32 may be a liquid crystal display, and the display panel 32 is used to receive and respond to the monitoring signal to display according to the monitoring signal. The control button 33 is set on the diagnosis and treatment device 30, and may be one, two or more. The control button 33 is used to perform data input operations on the diagnosis and treatment device 30, generate a first control signal and send it to the controller, so that the controller performs corresponding operations on the diagnosis and treatment device 30 according to the first control signal.
[0075] The control knob 34 is set on the diagnostic and treatment equipment 30, and can be one, two or more. For example, it can be used to increase or decrease the gear, generate a second control signal and send it to the controller, so that the controller performs corresponding operations on the diagnostic and treatment equipment 30 according to the second control signal.
[0076] Since the diagnosis and treatment equipment 30 in this embodiment is provided with an equipment circuit 31, a controller, a display panel 32, a control button and a control knob 34, it can more comprehensively monitor the vital signs of the subject to be monitored on the bed 1, thereby obtaining more accurate monitoring results.
[0077] In one embodiment, the above-mentioned monitoring device 40 includes: a first touch screen 41 and a second touch screen 42, the first touch screen 41 is set on the monitoring device 40, and the first touch screen 41 is used to perform monitoring operations on the diagnosis and treatment equipment 30; the second touch screen 42 is set on the monitoring device 40, and the second touch screen 42 is used to perform control operations on the diagnosis and treatment equipment 30.
[0078] It can be understood that the first touch screen 41 can be understood as the monitoring touch screen of the diagnosis and treatment device 30, and the second touch screen 42 can be understood as the control touch screen of the diagnosis and treatment device 30. The monitoring touch screen of the diagnosis and treatment device 30 and the control touch screen of the diagnosis and treatment device 30 are arranged on the outside of the second enclosure 12. Both the first touch screen 41 and the second touch screen 42 establish communication connection with the diagnosis and treatment device 30.
[0079] It should be noted that the sizes of the first touch screen 41 and the second touch screen 42 can be the same or different. Both are liquid crystal display units, which can display the monitoring operation of the diagnostic and treatment equipment 30 in real time, and can also display the control operation of the diagnostic and treatment equipment 30 in real time.
[0080] Since the monitoring device 40 in this embodiment is provided with the first touch screen 41 and the second touch screen 42, corresponding operations can be performed on the monitoring device 40 through different touch screens, thereby improving the convenience of operation.
[0081] In one embodiment, the medical equipment control system further includes: a robotic arm assembly 50, which is disposed on the third enclosure 13; the robotic arm assembly 50 includes a base 51, a robotic arm 52, an operating finger 53 and a camera 54; the base 51 is connected to the robotic arm 52 and is disposed on a side of the third enclosure 13 close to the accommodating space, the operating finger 53 is disposed at the end of the robotic arm 52, and the camera 54 is installed on the robotic arm 52.
[0082] It should be noted that the above-mentioned robotic arm assembly 50 is used to perform corresponding operations on the bed 1, avoiding medical staff from frequently contacting the bed 1 area, reducing the contact between medical staff and the bed 1 area, and thus reducing the incidence of multidrug-resistant bacterial infection in the ICU.
[0083] The mechanical arm assembly 50 can be arranged on the third enclosure 13, and can include facial recognition, voice and gesture control functions. It includes a base 51 and a mechanical arm 52. The base 51 is connected to the mechanical arm 52. The end of the mechanical arm 52 is connected to an operating finger 53. The base 51 can be arranged on the outside of the third enclosure 13. The mechanical arm 52 is a mechanical device that can imitate the movements of human arms and is used to perform various tasks, such as carrying, moving, etc. It can include joints, connecting rods and operating fingers 53.
[0084] The base 51 is the basic structure for installing the robot arm 52. It provides a stable support to ensure that the robot arm 52 remains stable during operation and prevents tipping due to excessive load or other factors. The base 51 can usually be made of metal materials, such as steel or aluminum alloy, to ensure that it has sufficient strength and rigidity. The settings of the base 51 and the robot arm 52 can be customized according to the workspace, load capacity, and progress requirements.
[0085] The robotic arm 52 is used to perform moving operations; the camera 54 is used to collect image information during the movement of the robotic arm 52, wherein the robotic arm assembly 50 can establish a communication connection with the monitoring device 40, and display the image collected by the camera 54 through the first touch screen 41 on the monitoring device 40, and can control the movement of the robotic arm 52 of the robotic arm assembly 50 by operating the second touch screen 42 on the monitoring device 40, and perform corresponding operations through the operating finger 53 at the end of the robotic arm 52, and the operating finger 53 is used to perform the functions of touch, button, and knob.
[0086] Specifically, when it is necessary to operate the control button 33 on the diagnostic and treatment equipment 30, the second touch screen 42 on the monitoring device 40 can be operated so that the monitoring device 40 controls the robotic arm 52 to move to the diagnostic and treatment equipment 30, and performs a corresponding pressing operation through the operating finger 53 at the end of the robotic arm 52, thereby realizing automatic operation processing.
[0087] In this embodiment, by providing a mechanical arm assembly 50, the diagnosis and treatment equipment 30 can be sealed in the middle of the enclosure assembly 10, so that the corresponding operations on the diagnosis and treatment equipment can be flexibly controlled.
[0088] In one embodiment, a disinfection inlet 131 and a disinfection outlet 132 are provided on the third enclosure 13. The disinfection inlet 131 is used to provide a position for disinfectant to enter, and the disinfection outlet 132 is used to provide a position for disinfected items to exit.
[0089] The disinfection inlet 131 may be a disinfectant inlet, the disinfection outlet 132 may be a disinfectant outlet, and the disinfectant may be a gas disinfectant or other types of disinfectants. When the diagnosis and treatment equipment 30 needs to be disinfected, the gas disinfectant may be transmitted to the diagnosis and treatment equipment 30 through the disinfection inlet 131 to disinfect the diagnosis and treatment equipment 30; when the disinfection of the diagnosis and treatment equipment 30 is completed, the gas disinfectant may be transmitted from the diagnosis and treatment equipment 30 through the disinfection outlet 132.
[0090] In this embodiment, since a disinfection entrance 131 and a disinfection exit 132 are provided on the third enclosure 13, it is convenient to disinfect the diagnosis and treatment equipment 30 in a timely manner, and the sealing and disinfection of these equipment can be strengthened, so that the machine environment around the bed 1 area is cleaner and drug and bacteria infection in the bed 1 area is avoided.
[0091] In one embodiment, the medical equipment control system also includes: a power supply component 60, the power supply component 60 includes a power socket 61 and an air source interface 62; the power supply component 60 is arranged on the second enclosure 12 or the third enclosure 13; the power socket 61 is electrically connected to the diagnostic and treatment equipment 30 through the equipment cable 311, and the air source interface 62 is electrically connected to the diagnostic and treatment equipment 30 through the equipment pipeline 312.
[0092] The power supply assembly 60 is used to supply power to the diagnosis and treatment equipment 30. The power socket 61 and the gas source interface 62 may be both provided on the second enclosure 12, or both provided on the third enclosure 13, or the power socket 61 may be provided on the second enclosure 12, and the gas source interface 62 may be provided on the third enclosure 13. The number of the power socket 61 and the gas source interface 62 may be one, two, or more, and the number may be customized according to actual needs.
[0093] The power socket 61 is electrically connected to the diagnostic and treatment equipment 30 through the equipment cable 311 to supply power to the diagnostic and treatment equipment 30 , and the gas source interface 62 is connected to the diagnostic and treatment equipment 30 through the equipment pipeline 312 , so that the diagnostic and treatment equipment 30 can work normally through the power supply component 60 .
[0094] Since the medical equipment control system in this embodiment is provided with a power supply assembly 60, the diagnosis and treatment equipment 30 can work normally, which facilitates the comprehensive and azimuth monitoring of the patient's vital signs and improves the accuracy of monitoring.
[0095] Optionally, the above-mentioned medical device control system may also include a data storage module, and the data storage module may include a read-only memory (ROM), a magnetic tape, a floppy disk, a flash memory, an optical storage, a high-density embedded non-volatile memory, a resistive random access memory (ReRAM), a magnetic random access memory (MRAM), a ferroelectric random access memory (FRAM), a phase change memory (PCM), a graphene memory, etc. Volatile memory may include a random access memory (RAM) or an external cache memory, etc. As an illustration and not limitation, RAM may be in various forms, such as a static random access memory (SRAM) or a dynamic random access memory (DRAM), etc. In this embodiment, by setting a data storage module, data can be saved in time when the system loses power, which is convenient for real-time acquisition of data during data processing.
[0096] In this embodiment, the diagnosis and treatment equipment is arranged in a accommodating space to achieve physical isolation of the complex diagnosis and treatment equipment from patients and medical staff, and the cables and pipes required for diagnosis and treatment are passed through the through holes to contact the patients in the bed area. The display function and the operation function are all integrated into a touch screen flush with the enclosure to form a first touch screen and a second touch screen, which is convenient for real-time control and operation of the diagnosis and treatment equipment, and solves the problem of numerous complex medical devices in the ICU ward acting as a medium to increase the number of hospital-acquired multidrug-resistant bacterial infections in the ICU. In addition, the monitoring equipment can communicate with various diagnostic and treatment equipment in the isolation space through a robotic arm or data interface with programming and self-learning functions in the enclosure, and can communicate with external remote monitoring equipment, thereby improving data transmission efficiency; by setting up enclosure components, many complex diagnostic and treatment machines and equipment reused at the ICU bedside are physically isolated from the bed area, and the monitoring screens and operation buttons of each diagnostic and treatment equipment are merged for unified management, and a disinfection entrance and disinfection exit are set to provide inlet and outlet pipelines for disinfection gas, so as to achieve closed disinfection of each diagnostic and treatment equipment, making the diagnostic and treatment equipment environment around ICU patients tidier, reducing the area and number of times medical staff touch non-essential parts of diagnostic and treatment equipment, and reducing the disinfection blind spots of diagnostic and treatment equipment, thereby greatly reducing the risk of multidrug-resistant bacteria infection in the ICU.
[0097] The technical features of the above embodiments may be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0098] This article uses specific examples to illustrate the principles and implementation methods of this application. The description of the above embodiments is only used to help understand the method and core ideas of this application. At the same time, for those skilled in the art, according to the ideas of this application, there will be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as limiting this application.
Claims
1. A medical equipment control system, characterized in that: The medical equipment control system comprises: An enclosure assembly, the enclosure assembly is located at the edge of the hospital bed, the enclosure assembly includes a plurality of enclosures, and the plurality of enclosures are connected end to end to form an accommodating space; A switch assembly, wherein the switch assembly is arranged on the enclosure plate; A diagnostic and treatment device, the diagnostic and treatment device is located in the accommodating space, and the diagnostic and treatment device is used to monitor the vital signs of the subject to be monitored on the bed to obtain monitoring results; A monitoring device, wherein the monitoring device is arranged on the enclosure and located outside the enclosure, the monitoring device establishes a communication connection with the diagnosis and treatment device, and the monitoring device is used to obtain the monitoring results in real time.
2. The medical device control system according to claim 1, characterized in that: The multiple enclosures include: a first enclosure, a second enclosure, a third enclosure and a fourth enclosure, one end of the first enclosure is connected to one end of the second enclosure, the other end of the second enclosure is connected to one end of the third enclosure, the other end of the third enclosure is connected to one end of the fourth enclosure, and the other end of the fourth enclosure is connected to the other end of the first enclosure; the first enclosure is the enclosure closest to the hospital bed.
3. The medical device control system according to claim 2, characterized in that: The first enclosure is arranged in parallel with the second enclosure, the third enclosure is arranged in parallel with the fourth enclosure, and the third enclosure is arranged perpendicular to the first enclosure; the switch assembly is arranged on the first enclosure, the second enclosure is arranged opposite to the first enclosure and is located at an end away from the bed, and the monitoring device is located on the outside of the second enclosure.
4. The medical device control system according to claim 2, characterized in that: The switch assembly comprises: At least two door shafts, the door shafts are arranged on the first enclosure plate; At least two door leaves, the door leaves are movably connected to the door shaft, the two door leaves are equal in size and arranged opposite to each other; when the switch assembly is in a closed state, the edges of the two door leaves coincide with each other in a direction parallel to or perpendicular to the door shaft; A through hole is arranged at a position where the edges of the two door leaves overlap.
5. The medical device control system according to claim 4, characterized in that: The diagnostic and treatment equipment includes: An equipment line, the equipment line comprising an equipment cable and an equipment pipeline, the equipment cable and the equipment pipeline are both connected to the bed through the through hole; A controller, the controller is located inside the diagnostic and treatment device, and the controller is used to monitor the vital signs of the subject to be monitored to obtain monitoring results, and generate a monitoring signal according to the monitoring results; A display panel, the display panel being arranged on the diagnosis and treatment device; the display panel being used to receive and respond to the monitoring signal and to display; A control button, the control button being arranged on the diagnosis and treatment device, the control button being used to generate a first control signal and send the signal to the controller, so that the controller performs a corresponding operation on the diagnosis and treatment device according to the first control signal; A control knob is arranged on the diagnostic and treatment device, and is used to generate a second control signal and send it to the controller, so that the controller performs corresponding operations on the diagnostic and treatment device according to the second control signal.
6. The medical device control system according to claim 1, characterized in that: The monitoring device comprises: A first touch screen, the first touch screen is arranged on the monitoring device, and the first touch screen is used to perform monitoring operations on the diagnosis and treatment device; A second touch screen is provided on the monitoring device, and is used to perform control operations on the diagnosis and treatment device.
7. The medical device control system according to claim 2, characterized in that: The medical equipment control system further comprises: a mechanical arm assembly, wherein the mechanical arm assembly is arranged on the third enclosure plate; The robotic arm assembly includes a base, a robotic arm, an operating finger and a camera; the base is connected to the robotic arm and is arranged on a side of the third enclosure close to the accommodating space, the operating finger is arranged at the end of the robotic arm, and the camera is installed on the robotic arm.
8. The medical equipment control system according to claim 2, characterized in that: The third enclosure is provided with a disinfection inlet and a disinfection outlet, wherein the disinfection inlet is used to provide a position for disinfectant to enter, and the disinfection outlet is used to provide a position for the disinfected items to exit.
9. The medical equipment control system according to claim 5, characterized in that: The medical equipment control system further includes: a power supply component, the power supply component including a power socket and a gas source interface; the power supply component is arranged on the second enclosure plate or the third enclosure plate; The power socket is electrically connected to the diagnostic and treatment equipment through the equipment cable, and the gas source interface is connected to the diagnostic and treatment equipment through the equipment pipeline.
10. The medical equipment control system according to claim 4, characterized in that: The switch assembly further includes a buffer pad, which is arranged along the inner edge of the through hole and has a semicircular or "C" shape.