Medical device and medical workstation
By introducing two display modes into medical devices and workstations, information interaction and combined display between devices are realized, solving the problems of single display modes and lack of information correlation in existing technologies, and improving work efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-30
- Publication Date
- 2026-03-20
AI Technical Summary
Existing medical equipment has a single display mode, and the information displayed by different devices lacks correlation, resulting in low work efficiency for clinicians.
Design a medical device and a medical workstation with two display modes: the first display mode displays the device's own information, and the second display mode displays the combined display data. The communication unit enables information interaction and combined display of multiple devices.
It improves the relevance and diversity of information displayed on medical devices, thereby enhancing user work efficiency.
Smart Images

Figure CN115770336B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of data display, in particular to a medical device and a medical workstation. BACKGROUND
[0002] The infusion workstation is composed of several injection pumps or infusion pumps, and the fine control of drug input is realized through computer-aided mechanical transmission, which is an important small medical device for precise drug delivery in clinical practice.
[0003] At present, the infusion pump has realized high intelligence, supports multiple infusion modes and drug delivery models, and can effectively help clinical users implement treatment plans.
[0004] However, the current infusion pump has a single display mode, and in a workstation composed of multiple infusion pumps, each infusion pump can only display its own data information, and there is a lack of strong correlation between the display information of each device, which causes trouble to clinical workers and reduces work efficiency. SUMMARY
[0005] The present application provides a medical device and a medical workstation to solve the problem of single display mode and lack of correlation of display information of the existing medical device.
[0006] According to one aspect of the present application, a medical device is provided, characterized in that it comprises a housing, a controller, an execution unit, a communication unit and a display unit, the controller, the execution unit and the communication unit are arranged in the housing, the display unit is inlaid on the housing, the controller is electrically connected with the execution unit, the communication unit and the display unit, wherein,
[0007] In the first display mode, the controller controls the execution unit to perform work and controls the display unit to display the work information of the execution unit; in the second display mode, the controller receives display data through the communication unit and controls the display unit to display the display data received through the communication unit.
[0008] Optionally, it further comprises an input / output unit, the controller receives the display mode switching instruction through the input / output unit and / or the communication unit, and switches the display mode according to the received display mode switching instruction.
[0009] Optionally, the communication unit is in communication connection with the control component of the medical workstation to receive the display data input by the control component and send the input display data to the controller.
[0010] Optionally, the housing is arranged in the receiving slot of the fixed rack of the workstation.
[0011] Optionally, the controller is further configured to send the infusion device information and the infusion information in the infusion state to the control component of the medical workstation via the communication unit.
[0012] Optionally, a frame thickness of the display unit is less than a preset value.
[0013] According to another aspect of the present application, a medical workstation is provided, which comprises a control component and a fixing frame, wherein the fixing frame comprises a plurality of medical device receiving slots arranged according to preset positions.
[0014] The control component is in communication connection with each medical device via the plurality of medical device receiving slots, and sends local display data to the medical device in the second display mode.
[0015] Optionally, a frame thickness of adjacent edges of two adjacent medical device receiving slots is less than a preset value.
[0016] Optionally, the medical device comprises an infusion pump, a monitoring device, a breathing module, an anesthesia module and a diagnosis module.
[0017] Optionally, a detection component is arranged in each medical device receiving slot, for in-situ detection of the medical device in the medical device receiving slot, and sending an in-situ detection signal to the control component.
[0018] The control component sets a page layout of the combined display data according to the in-situ detection signal of each medical device and the corresponding slot position.
[0019] Optionally, the control component is further configured to output a mode switching instruction to switch the display mode of the medical device.
[0020] Optionally, the medical device receiving slot is provided with one or more of a power supply interface, a data transmission interface and a communication interface.
[0021] The technical solution of the embodiment of the present application displays the working information of the medical device through two display modes, in the first display mode, the working information of the medical device itself is displayed, and in the second display mode, the combined display data obtained by combining and adjusting the working information of each medical device is displayed, so that the medical device can not only display the working information itself, but also display the combined display data after combination, which solves the problem of single display mode and lack of correlation of display information of the existing medical device, improves the correlation and diversity of the display information of the medical device, and thus improves the work efficiency of the user. It should be understood that the content described in this part is not intended to identify the key or important features of the embodiments of the present application, nor is it used to limit the scope of the present application. Other features of the present application will become apparent through the following description. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments description will be briefly introduced as follows. Obviously, the drawings in the following description only represent some of the embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort based on these drawings.
[0023] Figure 1 is a structural schematic diagram of a medical device provided by Embodiment One of the present application;
[0024] Figure 2a is a display layout schematic diagram in a first display mode provided by Embodiment One of the present application;
[0025] Figure 2b is a display layout schematic diagram in a second display mode provided by Embodiment One of the present application;
[0026] Figure 3 is a structural schematic diagram of a medical workstation provided by Embodiment Two of the present application;
[0027] Figure 4 is a structural schematic diagram of a fixing frame provided by Embodiment Two of the present application. DETAILED DESCRIPTION
[0028] In order to make the person skilled in the art better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely in the following with reference to the drawings of the embodiments of the present application. Obviously, the described embodiments only represent some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without any creative effort should belong to the scope of protection of the present application.
[0029] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily mean a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0030] Embodiment One
[0031] Figure 1 is a structural schematic diagram of a medical device provided by an embodiment of the present application. As shown in the figure, the medical device 100 comprises a housing (not shown in the figure), a controller 110, an execution unit 120, a communication unit 130 and a display unit 140. The controller 110, the execution unit 120 and the communication unit 130 are arranged in the housing, and the display unit 140 is embedded on the housing. The controller 110 is electrically connected with the execution unit 120, the communication unit 130 and the display unit 140 respectively. Figure 1 Figure 1 The medical device 100 in the embodiment is a device with display function, and is configured with two display modes. Information can be displayed in either display mode, and the two display modes can be switched according to display requirements. In addition, the medical device 100 also has task execution function, i.e. the task can be executed by the execution unit 120. The tasks executed by the execution unit 120 can be different, and are determined according to the type of the medical device 100. Optionally, the medical device includes but is not limited to infusion pump, monitoring device, breathing device, anesthesia device, diagnostic device, etc., which are not limited here. Taking the infusion pump as an example, the execution unit 120 in the infusion pump can be an infusion component. Correspondingly, the controller 110 is used to control the execution unit 120 to perform drug infusion on a target object, for example, the infusion parameters of the execution unit 120 can be controlled. Similarly, the controller 110 and the execution unit 120 in other types of medical devices perform corresponding control process and processing process respectively.
[0032] The display modes of the medical device 100 include a first display mode and a second display mode. In the first display mode, the controller 110 controls the execution unit 120 to perform work, and controls the display unit 140 to display the work information of the execution unit 120. In the second display mode, the controller 110 receives display data through the communication unit 130, and controls the display unit 140 to display the display data received through the communication unit 130.
[0033]
[0034] The first display mode is a single display mode of the medical device. In the first display mode, the display unit 140 of the medical device displays the working information of the execution unit 120 in the medical device, and does not need to cooperate with the display unit of other medical devices to display the working information. The second display mode is a combined display mode of multiple medical devices. In the second display mode, the medical device receives display data sent by other devices and displays the display data through the display unit 140. The other devices can be electronic devices connected to the medical device 100, including but not limited to other medical devices, medical workstations, other display control components, etc. The other display control components can be control components of the medical workstations. The control components can be electronic devices such as mobile phones and computers.
[0035] The display data received by the medical device through the communication unit 130 can be any form of data, such as images, texts, videos, etc. In some embodiments, the display data received by the medical device through the communication unit 130 can be complete data, such as complete working information of any device, etc., or can be partial data, such as partial content of the working information, etc.
[0036] Optionally, the second display mode is a combined display mode of multiple medical devices. In the combined display mode, the display units of the multiple medical devices display complete data of the same page through the display data displayed respectively.
[0037] In this embodiment, the multiple medical devices can be arranged in a splicing manner, so that the display units of the multiple medical devices are spliced, and the display data displayed by each display unit can be combined to display complete data of the same page. The multiple medical devices can be medical devices of the same type or medical devices of different types.
[0038] For example, Figure 2a and Figure 2b Taking four medical devices as an example, Figure 2a is a display layout schematic diagram in the first display mode provided by the first embodiment of the present application, Figure 2b is a display layout schematic diagram in a second display mode provided by the first embodiment of the present application. It can be understood that the number of medical devices combined can be set according to requirements.
[0039] For example, Figure 2aAs shown, in the first display mode, the display units of the four medical devices each display the working information of the medical device. Among them, the medical device 1 can be an infusion pump, the display unit of the medical device 1 displays an infusion control page formed by the infusion information of the execution unit of the infusion pump; the medical device 2 can be a monitoring device, the display unit of the medical device 2 displays a monitoring page formed by the monitoring information of the execution unit of the monitoring device; the medical device 3 can be a breathing device, the display unit of the medical device 3 displays a ventilation control page formed by the ventilation control information of the execution unit of the breathing device; and the medical device 4 can be a detection device, the display unit of the medical device 4 displays a detection page formed by the detection information of the execution unit of the detection device. The contents displayed by the display units of the above medical devices do not interfere with each other. In the embodiment, in the first display mode, the controller 110 of the medical device 100 controls the execution unit 120 to execute the work, and controls the display unit 140 to display the working information of the execution unit 120; wherein the work executed by the execution unit includes but is not limited to infusion control, monitoring, anesthesia, ventilation control, detection, etc., which are not limited here; correspondingly, the working information includes but is not limited to infusion drug type / concentration, infusion flow rate, infusion preset amount, infusion time, etc., which are not limited here. Exemplarily, taking the infusion pump as an example, in the first display mode, the controller controls the execution unit to execute the infusion work, and controls the display unit to display the infusion drug type / concentration, infusion flow rate, etc. working information.
[0040] As Figure 2b shown, the display data displayed by the display units of the four medical devices can be combined into complete display data of the same interface (infusion overview interface), and the display units of the medical devices respectively display part of the display data of the infusion overview interface. In the embodiment, the controller 110 of the medical device 100 receives the display data through the communication unit 130, and controls the display unit 140 to display the display data received through the communication unit 130; wherein the display data corresponding to each medical device is determined based on the combined display interface (such as the infusion overview interface) and the relative position of the medical device. Exemplarily, as Figure 2b shown, when the combined display interface is the infusion overview interface, the display units of different medical devices display the display data corresponding to the position of the medical device. Specifically, the combined display interface can be divided according to the arrangement mode of the plurality of medical devices to obtain a plurality of local display data, and the arrangement position of the medical device is determined to determine the corresponding local display data. Exemplarily, the arrangement position of the medical device 1 is located on the seat, and correspondingly, the display unit thereof displays the local display data located on the seat after division.
[0041] On the basis of the above-mentioned embodiments, the communication unit 130 is in communication connection with the control component of the medical workstation, to receive display data input by the control component, and send the input display data to the controller 110. The control component of the medical workstation distributes display data to medical devices, the control component of the medical workstation sends display data to the communication unit 130 in communication connection therewith, the communication unit 130 receives the display data and sends the display data to the controller 110; the controller 110 displays the display data based on the second display mode.
[0042] The control component of the medical workstation can determine complete display data to be displayed in response to a selection operation of the user on the display data. The control component of the medical workstation can determine at least one medical device for displaying the complete display data in response to a selection operation on the medical device; or the control component of the medical workstation can determine all medical devices in communication connection as medical devices for displaying the complete display data. The control component of the medical workstation can divide the complete display data into a corresponding number of partial display data according to the number and arrangement of the determined medical devices, and determine the correspondence between the partial display data and the medical devices, based on the correspondence, send the partial display data to the communication unit 130 of the corresponding medical device, so that the corresponding medical device displays the received partial display data, and the partial display data displayed by the plurality of medical devices can be combined to obtain the complete display data.
[0043] On the basis of the above-mentioned embodiments, the medical device can send the working information of the execution unit to the control component of the medical workstation as the complete display data selected by the control component of the medical workstation. Taking the infusion pump as an example, the controller 110 sends the infusion device information and the infusion information in the infusion state to the control component of the medical workstation through the communication unit 130. The infusion device information and the infusion information in the infusion state are the working information of the execution unit 120 in the infusion pump.
[0044] The infusion device information refers to device information of an infusion pump in the medical device, and specifically includes but is not limited to device sequence of the infusion device, which is not limited herein. Correspondingly, the numerical information refers to infusion information of the infusion device in the infusion state, and specifically includes but is not limited to infusion drug type / concentration, infusion flow rate, infusion preset amount, infusion time, etc., which is not limited herein. In this embodiment, the controller 110 sends the infusion device information and the infusion information in the infusion state to the control component of the medical workstation through the communication unit 130; the control component of the medical device receives the infusion device information and the infusion information of each medical device, and uniformly controls the received information. The above infusion device information and infusion information in the infusion state can be complete display data, and the complete display data is divided and displayed on the display units of the multiple medical devices. It can be understood that, according to the type of the medical device, the execution unit of the medical device generates monitoring information, breathing information, etc., which is sent to the control component of the medical workstation, which is not limited herein.
[0045] In this embodiment, the control component of the medical workstation is arranged and in communication connection with the medical device, so as to realize distribution of display content displayed by the medical device, and further realize combination of display data of the multiple medical devices, so as to realize "large screen" display of data through the display units of the multiple medical devices, which is beneficial to multiplexing and multifunctional use of the medical device, and can reduce device cost consumed by separately configuring a large screen.
[0046] On the basis of the above embodiment, optionally, the shell of the medical device is arranged in the receiving slot of the fixing frame of the workstation, and the fixing frame is used to fix the multiple medical devices, so as to ensure that the display units of the multiple medical devices can be arranged in series.
[0047] In this embodiment, the shell of the medical device 100 is arranged in the receiving slot of the fixing frame of the medical workstation, that is, each medical device is arranged on the fixing frame of the medical workstation through the receiving slot of the fixing frame of the medical workstation, the display units of the multiple medical devices are combined to form a combined display unit, and the display units of the multiple medical devices respectively display display data in corresponding positions.
[0048] Optionally, the fixing rack receiving slot can be configured with a power supply interface and a data communication interface, wherein the power supply interface can be connected with the medical device in the fixing rack receiving slot to supply power for the medical device, and the data communication interface can be connected with the medical device in the fixing rack receiving slot to realize the connection of the medical device with other devices. Preferably, the setting positions of the power supply interface and the data communication interface on the receiving slot correspond one-to-one with the corresponding power supply interface and data communication interface on the medical device, so that when the medical device is pushed into the receiving slot in place, the medical device can be connected with the power supply interface and the data communication interface, thereby facilitating the installation and operation of medical staff.
[0049] Optionally, the fixing rack receiving slot can be configured with a detection component for detecting whether the medical device is in place. The detection component can be a pressure detection component, which determines that the medical device is in place when a pressure greater than a preset value is detected. The detection component can also be electrically connected with the medical device to determine whether the medical device is in a running state, and if the medical device is in a running state, it is determined that the medical device can display data, i.e. the medical device is in place. The above detection components can be respectively in communication connection with the control component of the medical workstation to send the in-place state of the medical device to the control component of the medical workstation.
[0050] On the basis of the above embodiment, optionally, the frame thickness of the display unit 130 is less than a preset value. In this embodiment, in order to ensure the display effect in the second display mode, the frame thickness of the display unit 130 of the medical device 100 is less than a preset value; wherein the preset value is set by the person skilled in the art according to experience and demand, which is not limited here. It can be understood that if the frame thickness of the display unit is too large, in the second display mode, the frame of the display unit will affect the display effect of the display unit when the display units of the medical devices are combined to display.
[0051] On the basis of the above embodiment, optionally, the medical device further comprises an input / output unit, and the controller 110 receives the display mode switching instruction through the input / output unit and / or the communication unit 130, and switches the display mode according to the received display mode switching instruction.
[0052] The input / output unit can be a keyboard, a remote control device, a key arranged on a medical device, a touch screen, and the like input device, which is not limited herein; the display mode switching instruction is used to switch the display mode of the medical device. In this embodiment, the controller 110 determines the current display mode of the medical device 100 after receiving the display mode switching instruction through the input / output unit and / or the communication unit 130, and switches the first display mode to the second display mode if the current display mode is the first display mode, or switches the second display mode to the first display mode if the current display mode is the second display mode. For example, assuming that the input device in the input / output unit is a remote control device, the display mode switching instruction can be input to the controller by clicking the display mode switching control to switch the display mode of the medical device.
[0053] The technical scheme of this embodiment displays the working information of the medical device through two display modes, displays the working information of the medical device itself in the first display mode, and displays the combined display data obtained by combining and deploying the working information of each medical device in the second display mode, so that the medical device can display not only the working information itself but also the combined display data after combination, solves the problems of single display mode and lack of correlation of display information of the existing medical device, improves the correlation and diversity of display information of the medical device, and thus improves the work efficiency of the user.
[0054] Embodiment Two
[0055] Figure 3 is a structural schematic diagram of a medical workstation provided in Embodiment Two of the present application. The medical workstation provided in this embodiment is used to set the medical device provided in the above embodiments. As shown in Figure 3 The medical workstation includes a control component 310 and a fixing frame 320, wherein the fixing frame 320 includes a plurality of medical device receiving slots arranged according to preset positions.
[0056] For example, four medical device fixing frames are set, Figure 4 is a structural schematic diagram of a fixing frame provided in Embodiment Two of the present application. As shown in Figure 4 The fixing frame includes four medical device receiving slots, and four medical devices can be set on the fixing frame, and each medical device is set on the fixing frame according to the preset position of the medical device receiving slot.
[0057] The control unit 310 is communicatively connected to each medical device through multiple medical device receiving slots, sending partial display data to the medical device in the second display mode. Each medical device receiving slot may have a preset interface, which connects to the medical device. The receiving slot receives the partial display data sent by the control unit 310 and then sends the partial display data to the medical device through the preset interface. For example, this preset interface may be connected to the communication unit of the medical device, transmitting the partial display data to the controller via the communication unit.
[0058] Among them, the local display data refers to the display data corresponding to the display units of each medical device after being mapped to the combined display unit. For example, when the combined display unit displays the infusion overview interface, medical device 1 displays as shown in the image. Figure 2b The display data shown is as follows. In this embodiment, the control unit 310 sends partial display data to the medical device in the second display mode through the medical device receiving slot; after receiving the partial display data, each medical device in the second display mode displays the partial display data on its display unit; wherein, the display units of each medical device are combined to form a combined display unit, and correspondingly, the display data of each display unit is combined to form combined display data; for example, as shown... Figure 2b As shown, the display data from each medical device display unit is combined to form the infusion overview interface.
[0059] It should be noted that when all medical devices are in the second display mode, if a medical device switches from the second display mode to the first display mode, the control unit 310 adjusts the local display data sent to each medical device in the second display mode. For example, the control unit 310 determines the medical device in the adjusted second display mode and the position of its receiving slot based on the display mode of each medical device. Based on the number and position of the medical devices in the second display mode, it redetermines the local display data for each medical device, ensuring that the medical device switching modes displays in the first display mode without affecting the combined display.
[0060] Based on the above embodiments, optionally, the thickness of the border of adjacent sides of two adjacent medical device receiving slots is less than a preset value.
[0061] like Figure 4 As shown, there are two medical device receiving slots between two adjacent medical devices. If the border thickness of the adjacent sides of the medical device receiving slots is too large, it will affect the combined display. In this embodiment, the border thickness of the adjacent sides of the two adjacent medical device receiving slots is less than a preset value to reduce the impact of the border on the combined display.
[0062] It should be noted that the preset value is set by a person skilled in the art according to experience and needs, which is not limited here.
[0063] On the basis of the above-mentioned embodiments, the medical device comprises an infusion pump, a monitoring device, a breathing module, an anesthesia module, and a diagnosis module.
[0064] In this embodiment, the medical device comprises an infusion pump, a monitoring device, a breathing module, an anesthesia module, and a diagnosis module. Correspondingly, the working information of the infusion pump is infusion information, such as infusion drug type / concentration and infusion flow rate; the information of the monitoring device is monitoring information, such as heart rate and brain wave; the working information of the breathing module is breathing information, such as breathing frequency; the working information of the anesthesia module is anesthesia information, such as anesthesia type and anesthesia drug amount; and the working information of the diagnosis module is diagnosis information. The medical device sends the above-mentioned information to the control component 310 of the medical workstation, the control component 310 recombines the received information to obtain display data, and sends the local display data to the medical device in the second display mode.
[0065] On the basis of the above-mentioned embodiments, the medical device receiving slot is provided with a detection component, which is used for in-situ detection of the medical device in the medical device receiving slot and sends an in-situ detection signal to the control component 310; and the control component 310 sets the page layout of the combined display data according to the in-situ detection signal of each medical device and the corresponding slot position.
[0066] In this embodiment, the detection component provided in the medical device receiving slot detects the medical device in-situ, generates an in-situ detection signal, and sends the in-situ detection signal to the control component 310; the control component 310 sets the page layout of the combined display data according to the in-situ detection signal of each medical device and the corresponding slot position of the medical device receiving slot; and the slot position is the position of the medical device receiving slot on the fixing frame.
[0067] On the basis of the above-mentioned embodiments, the control component 310 is further used for outputting a mode switching instruction to switch the display mode of the medical device.
[0068] In this embodiment, the control component 310 sends the mode switching instruction to the medical device through the medical device receiving slot, and the medical device receives and switches the display mode.
[0069] On the basis of the above-mentioned embodiments, the medical device receiving slot is provided with one or more of a power supply interface, a data transmission interface, and a communication interface.
[0070] In the embodiment, the medical device receiving slot is further provided with a power supply interface, a data transmission interface and a communication interface, the medical device arranged in the medical device receiving slot can be connected to the power supply through the power supply interface, can transmit data with the medical workstation through the data transmission interface, specifically, the medical device sends working information to the controller of the medical workstation, or the medical workstation sends local display data to each medical device, can communicate with the medical workstation through the communication interface, specifically, the control part of the medical workstation sends mode switching instructions to the medical device through the communication interface.
[0071] The technical scheme of the embodiment combines the working information of each medical device to obtain combined display data, and sends local display data to the medical device in the second display mode, so that the display units of each medical device are combined to display the combined display data, solves the problem of single display mode and lack of correlation of display information of the existing medical device, improves the correlation and diversity of display information of the medical device, and thus improves the work efficiency of the user.
[0072] The above specific embodiments do not constitute a limitation on the protection scope of the present application. Those skilled in the art should understand that various modifications, combinations, sub-combinations and substitutions can be made according to design requirements and other factors. Any modification, equivalent replacement and improvement made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A medical device, characterized in that, include: The system comprises a housing, a controller, an execution unit, a communication unit, and a display unit. The controller, the execution unit, and the communication unit are all housed within the housing. The display unit is embedded in the housing. The controller is electrically connected to the execution unit, the communication unit, and the display unit. In the first display mode, the controller controls the execution unit to perform tasks and controls the display unit to display the execution unit's work information; in the second display mode, the controller receives display data through the communication unit and controls the display unit to display the display data received through the communication unit. The second display mode is a combined display mode of multiple medical devices. In the combined display mode, the display units of multiple medical devices combine the display data displayed separately to display the complete data of the same page. The combined display interface is divided according to the arrangement of multiple medical devices to obtain multiple partial display data, and the arrangement position of the medical devices is determined to determine the corresponding partial display data. The housing is installed in the receiving slot of the fixed frame of the workstation; the receiving slot of the fixed frame is equipped with a power interface and a data communication interface; a detection component is installed on the receiving slot of the fixed frame to detect whether the medical device is in place, and to determine that the medical device is in place when a pressure greater than a preset value is detected; The thickness of the border of the display unit is less than a preset value.
2. The medical device according to claim 1, characterized in that, It also includes an input / output unit, through which the controller receives display mode switching instructions and / or communication units, and switches the display mode according to the received display mode switching instructions.
3. The medical device according to claim 1, characterized in that, The communication unit is communicatively connected to the control component of the medical workstation to receive display data input by the control component and send the input display data to the controller.
4. The medical device according to claim 3, characterized in that, The controller is also used to send infusion device information and infusion information in the infusion state to the control components of the medical workstation through the communication unit.
5. A medical workstation, characterized in that, It includes control components and a mounting bracket, wherein the mounting bracket includes multiple medical device receiving slots arranged in a preset position; The control component is communicatively connected to each medical device through multiple medical device receiving slots, and sends partial display data to the medical device in the second display mode; The medical device receiving slot is equipped with a detection component, which is used to perform in-situ detection on the medical device in the medical device receiving slot and send the in-situ detection signal to the control component. The control component sets the page layout of the combined display data according to the in-situ detection signals of each medical device and the corresponding slot positions; wherein, the combined display interface is divided according to the arrangement of multiple medical devices to obtain multiple local display data, and the arrangement positions of the medical devices are determined to determine the corresponding local display data. Among them, the thickness of the border of the adjacent sides of two adjacent medical device receiving slots is less than the preset value; The medical device receiving slot is equipped with one or more of a power supply interface, a data transmission interface, and a communication interface.
6. The medical workstation according to claim 5, characterized in that, The medical equipment includes an infusion pump, monitoring equipment, a respiratory module, an anesthesia module, and a diagnostic module.
7. The medical workstation according to claim 5, characterized in that, The control unit is also used to output mode switching commands to switch the display mode of the medical device.
Citation Information
Patent Citations
Display and control device for medical equipment
CN1829956A
System and method for providing the medical service using tiled display and hand tracker
KR1020090030682A
User interface improvements for medical devices
US20060229557A1
Medical device and information display method therefor
WO2022135569A1