Medical equipment remote scheduling system and scheduling planning management method

Through the matrix arrangement and selection method of the remote scheduling system of medical equipment, the poor flexibility and complexity of the scheduling device are solved, and the scheduling efficiency and diagnosis and treatment experience are improved.

CN120452727AInactive Publication Date: 2025-08-08SHENZHEN HUASHENG MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202510664448.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-08-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing medical equipment scheduling devices have poor flexibility and complex scheduling methods, which are prone to scheduling abnormalities, affecting scheduling efficiency.

Method used

The remote scheduling system for medical equipment is adopted to match the equipment through matrix arrangement and selection, including the information database, operation server and backend control terminal, to realize the entry, retrieval, matching and return of device information, simplify the scheduling algorithm, and reduce the occurrence of abnormal phenomena.

Benefits of technology

It improves scheduling efficiency, reduces the waiting time of patients, and improves the diagnosis and treatment experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a medical equipment remote scheduling system and a scheduling planning management method, and relates to the field of equipment scheduling, the medical equipment remote scheduling system comprises an information base, an operation server and a background control terminal; the information base is used for inputting and archiving names, functions, production periods and use durations of the medical devices; the operation server is provided with a display end which is used for operation display of a user and ultimate display of each instruction signal; the background control end is used for summarizing, analyzing and distributing data and instructions of each module; and a dispatching center is arranged and is used for carrying out data matching on corresponding dispatching requirements and sending corresponding instruction signals according to data states. According to the method, the corresponding scheduling equipment is matched in a matrix arrangement deletion and selection mode, the algorithm is simple, the operation is convenient and fast, the occurrence of abnormal scheduling phenomena is effectively reduced, the overall scheduling efficiency is improved, the waiting time of the patient is shortened, and the diagnosis and treatment experience feeling of the patient is further improved.
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Description

Technical Field

[0001] The present invention relates to the field of equipment scheduling, and in particular to a medical equipment remote scheduling system and a scheduling planning management method. Background Art

[0002] Medical devices refer to instruments, equipment, appliances, materials, or other items used on the human body, either singly or in combination, including the required software. Medical devices are essential elements of healthcare, scientific research, teaching, institutional, and clinical disciplines, encompassing both professional and home medical devices. With the continuous advancement of technology, the use of medical cosmetic devices is becoming increasingly widespread, not only for postoperative repair and adjustment, but also for daily maintenance and stabilization.

[0003] In actual application scenarios, as the number of patients increases, efficient and convenient equipment scheduling can not only effectively improve the efficiency of doctor-patient treatment, but also significantly enhance the patient's diagnosis and treatment experience. Existing scheduling devices have poor flexibility, complex scheduling methods, and complex algorithms, which are prone to scheduling anomalies and affect scheduling efficiency. Summary of the Invention

[0004] Purpose of the invention: To provide a medical equipment remote dispatching system, and further provide a dispatching planning and management method based on the above-mentioned medical equipment remote dispatching system, so as to solve the above-mentioned problems existing in the prior art.

[0005] Technical solution: A method for remote scheduling and planning management of medical equipment, including the following steps: S1. Enter the basic information of medical equipment in sequence, including equipment name, function, production period and usage time, and establish an equipment information database; send the equipment information database to the backend control terminal for filing; S2. When the equipment needs to be dispatched, the operation server sends the corresponding dispatch instruction to the dispatch center of the backend control terminal. After receiving the corresponding dispatch instruction, the dispatch center performs real-time information retrieval and matching on the information database data; S3. After the dispatch center retrieves and matches a suitable device, it sends the device information data to the dispatch center. The dispatch center then transmits the corresponding device information to the operation server. The user obtains and confirms the dispatch device information through the display terminal of the operation server and dispatches the corresponding device for use. S4. When all the registered devices in the information database have been dispatched, the dispatch center sends an empty warehouse signal to the backend control terminal. After receiving the empty warehouse signal, the backend control terminal sends a suspension scheduling signal to the operation server. The user is no longer able to continue the equipment scheduling operation through the operation server. S5. When the user has finished using the dispatched device, he will return the device through the operation server again; then the backend control terminal will send the device return to the dispatch center, and the dispatch center will record the idle status of the device in real time, and the information database will simultaneously update the usage count of the device; S6. When the dispatch center has idle equipment on file, it sends a dispatchable signal to the background control terminal. After receiving the corresponding signal, the background control terminal sends a dispatchable signal to the operation server. Then the operation server restores the dispatchable operation state, and the user can complete the equipment dispatch operation through the operation server again.

[0006] In a further embodiment, after the scheduling instruction is confirmed in step S3, the information database synchronously updates the record of the scheduled equipment and records the scheduled usage time of the scheduled equipment in real time. The information database has a separate usage monitoring module for each registered equipment. When the corresponding equipment is confirmed to be scheduled for use, the usage monitoring module is activated and directly connected to the equipment control center to synchronously update and record the equipment usage status, including the equipment's usage operation items, duration, and the equipment's operating status during use. After the equipment's scheduled use is completed and the equipment is confirmed to be returned, the usage monitoring module sends the equipment's usage record information to the information database, and the information database promptly updates and records the corresponding equipment data.

[0007] In a further embodiment, when the pause scheduling signal in step S4 is executed, that is, the scheduling center sends an empty warehouse signal to the background control terminal and simultaneously sends an appointment scheduling instruction to the background control terminal. After receiving the appointment scheduling instruction, the background control terminal sends a reservation operation signal to the operation server, and finally displays the appointment through the display terminal of the operation server, and the user can perform the appointment scheduling operation.

[0008] In a further embodiment, the user enters the model, function, and usage duration of the required dispatch equipment in advance through the display terminal of the operation server, and then the operation server sends the entered reservation information to the background control terminal, which temporarily stores the reservation information; when the background control terminal receives the dispatchable signal, it first sends the temporarily stored reservation information to the dispatch center for device matching. If the data match is successful, the dispatch reservation information device is first executed; if the reservation information does not match successfully, the dispatch center will execute the corresponding dispatch instruction normally; Whenever the dispatch center has a new device idle status record, the device matching of the reservation information is performed first, until all reservation information is successfully matched and executed.

[0009] In a further embodiment, the real-time information retrieval and matching of the information base data in step S2 includes the following analysis steps: S201: The user selects and enters the devices to be scheduled in sequence, including the device name and function; S202: After receiving the corresponding dispatch instruction, the dispatch center first matches and selects the names and functions of the equipment registered in the information database according to the input dispatch requirements; S203, then filter the production dates of the selected devices from the most recent to the most recent, and filter the usage times from the longest to the shortest; S204: Output the final selection result and send it to the dispatch center.

[0010] In a further embodiment, the matching and filtering in step S202 and step S203 and the data establishment are specifically performed as follows: SR1. The information database is arranged vertically in alphabetical order according to the first letter of the entered device name to generate a vertical sequence set. , and then follow the vertical sequence set The arrangement and positioning of each device name is used to enter the function, production period and usage time of the device, and further generate the corresponding vertical series set 、 as well as , each set of number series forms a corresponding information base matrix; SR2. Select the device name and function of the device to be scheduled in sequence through the operation server, and generate the scheduling target point (M, R), where M corresponds to the device name and R corresponds to the function, to complete the scheduling requirement entry; SR3, the M coordinates of the target point and the sequence set The data in the database are compared in turn, the corresponding data are retained, and the non-compliant data are deleted from the database matrix horizontally in the entire row; SR4. Compare the R coordinate of the target point with the deleted sequence set The data in the database are compared in turn and screened twice. The corresponding data are retained, and the non-compliant data are screened twice from the information database matrix after screening to generate the final screening matrix. SR5. Perform a secondary permutation on the deletion matrix to obtain a vertical sequence set Arrange them in order of date from recent to far, and at the same time, arrange the vertical series Central and vertical series The horizontal array data corresponding to the middle data is synchronously shifted; SR6, when the vertical sequence set after quadratic arrangement When the top data in the digits are not repeated, the vertical sequence set after the second arrangement is selected. The device corresponding to the highest-order data executes the scheduling instruction; When the vertical sequence set after quadratic arrangement When the top data in the same sequence has the same repetition, the vertical sequence set corresponding to the repeated data The data in the second order are arranged from small to large, and then the vertical series set after the second order is selected The device corresponding to the highest-order data executes the scheduling instruction.

[0011] In a further embodiment, after the device data corresponding to the information library is updated and filed, the data corresponding to the information library matrix composed of each number series set is synchronously updated.

[0012] The medical equipment remote scheduling system applied to the medical equipment remote scheduling planning and management method includes an information database, an operation server and a background control terminal; the information database is used to record and archive the name, function, production period and usage time of each medical equipment; the operation server is provided with a display terminal for user operation display and ultimate display of each command signal; the background control terminal is used to summarize, analyze and distribute the data and instructions of each module; and a scheduling center is provided for data matching of corresponding scheduling requirements and sending corresponding command signals according to the data status.

[0013] Beneficial effects: The present invention relates to a remote dispatching system for medical equipment and a dispatching planning management method, which relates to the field of equipment dispatching, including an information database, an operation server and a background control terminal; the information database is used to record and archive the name, function, production period and usage time of each medical equipment; the operation server is provided with a display terminal for user operation display and ultimate display of each command signal; the background control terminal is used to summarize, analyze and distribute the data and instructions of each module; and a dispatching center is provided for data matching of corresponding dispatching requirements, and sending corresponding command signals according to the data status. The present invention matches the corresponding dispatching equipment through a matrix arrangement and selection method, with a simple algorithm and convenient operation, which effectively reduces the occurrence of dispatching anomalies, improves the overall dispatching efficiency, and also reduces the waiting time of patients, further improving the patient's diagnosis and treatment experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a simplified flow chart of the present invention. DETAILED DESCRIPTION

[0015] In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention may be practiced without one or more of these details. In other instances, certain technical features well known in the art are not described to avoid confusion with the present invention.

[0016] The applicant believes that the existing scheduling devices have poor flexibility, complex scheduling methods and algorithms, and are prone to scheduling anomalies, which affect scheduling efficiency.

[0017] To this end, the applicant designed a remote scheduling system for medical equipment and a scheduling planning management method, which matches the corresponding scheduling equipment through a matrix arrangement and selection method. The algorithm is simple and the operation is convenient, which effectively reduces the occurrence of scheduling anomalies, improves the overall scheduling efficiency, and reduces the patient's waiting time, further improving the patient's diagnosis and treatment experience.

[0018] like Figure 1 As shown, the present invention relates to a remote scheduling planning and management method for medical equipment, comprising the following steps: S1. Enter the basic information of medical equipment in sequence, including equipment name, function, production period and usage time, and establish an equipment information database; send the equipment information database to the backend control terminal for filing; S2. When the equipment needs to be dispatched, the operation server sends the corresponding dispatch instruction to the dispatch center of the backend control terminal. After receiving the corresponding dispatch instruction, the dispatch center performs real-time information retrieval and matching on the information database data; S3. After the dispatch center retrieves and matches a suitable device, it sends the device information data to the dispatch center. The dispatch center then transmits the corresponding device information to the operation server. The user obtains and confirms the dispatch device information through the display terminal of the operation server and dispatches the corresponding device for use. S4. When all the registered devices in the information database have been dispatched, the dispatch center sends an empty warehouse signal to the backend control terminal. After receiving the empty warehouse signal, the backend control terminal sends a suspension scheduling signal to the operation server. The user is no longer able to continue the equipment scheduling operation through the operation server. S5. When the user has finished using the dispatched device, he will return the device through the operation server again; then the backend control terminal will send the device return to the dispatch center, and the dispatch center will record the idle status of the device in real time, and the information database will simultaneously update the usage count of the device; S6. When the dispatch center has idle equipment on file, it sends a dispatchable signal to the background control terminal. After receiving the corresponding signal, the background control terminal sends a dispatchable signal to the operation server. Then the operation server restores the dispatchable operation state, and the user can complete the equipment dispatch operation through the operation server again.

[0019] In a further preferred embodiment, the display terminal of the operation server can be any touch screen in the prior art, and the user can enter or select the scheduling equipment conditions by touch to perform subsequent scheduling analysis.

[0020] After the scheduling instruction is confirmed in step S3, the information database will synchronously update the record of the scheduled equipment and record the scheduled usage time of the scheduled equipment in real time. The information database has a separate usage monitoring module for each registered equipment. When the corresponding equipment is confirmed to be scheduled for use, the usage monitoring module is activated and directly connected to the equipment's control center to synchronously update and record the equipment's usage status, including the equipment's usage operation items, duration, and the equipment's operating status during use. After the equipment's scheduled use is completed and the equipment is confirmed to be returned, the usage monitoring module sends the equipment's usage record information to the information database, and the information database promptly updates and records the corresponding equipment data.

[0021] In a further preferred embodiment, the monitoring module may be a SN74LS90N counter / divider chip, which is used to synchronously record and autonomously update the usage status of the device, and release the recorded update data to the information database for filing and updating.

[0022] When the pause scheduling signal in step S4 is executed, that is, the scheduling center sends an empty warehouse signal to the background control terminal at the same time as it sends an appointment scheduling instruction to the background control terminal. After receiving the appointment scheduling instruction, the background control terminal sends a reservation operation signal to the operation server, and finally displays the appointment through the display terminal of the operation server, and the user can perform the appointment scheduling operation.

[0023] The user enters the model, function and usage time of the required dispatch equipment in advance through the display terminal of the operation server. The operation server then sends the entered reservation information to the background control terminal, which temporarily stores the reservation information. When the background control terminal receives the dispatchable signal, it first sends the temporarily stored reservation information to the dispatch center for equipment matching. If the data match is successful, the dispatch reservation information device will be dispatched first. If the reservation information does not match successfully, the dispatch center will execute the corresponding dispatch instruction normally. Whenever the dispatch center has a new device idle status record, the device matching of the reservation information is performed first, until all reservation information is successfully matched and executed.

[0024] The real-time information retrieval and matching of the information base data in step S2 includes the following analysis steps: S201: The user selects and enters the devices to be scheduled in sequence, including the device name and function; S202: After receiving the corresponding dispatch instruction, the dispatch center first matches and selects the names and functions of the equipment registered in the information database according to the input dispatch requirements; S203, then filter the production dates of the selected devices from the most recent to the most recent, and filter the usage times from the longest to the shortest; S204: Output the final selection result and send it to the dispatch center.

[0025] The specific operations for matching and selecting in step S202 and step S203 and establishing data are as follows: SR1. The information database is arranged vertically in alphabetical order according to the first letter of the entered device name to generate a vertical sequence set. , and then follow the vertical sequence set The arrangement and positioning of each device name is used to enter the function, production period and usage time of the device, and further generate the corresponding vertical series set 、 as well as , each set of number series forms a corresponding information base matrix; SR2. Select the device name and function of the device to be scheduled in sequence through the operation server, and generate the scheduling target point (M, R), where M corresponds to the device name and R corresponds to the function, to complete the scheduling requirement entry; SR3, the M coordinates of the target point and the sequence set The data in the database are compared in turn, the corresponding data are retained, and the non-compliant data are deleted from the database matrix horizontally in the entire row; SR4. Compare the R coordinate of the target point with the deleted sequence set The data in the database are compared in turn and screened twice. The corresponding data are retained, and the non-compliant data are screened twice from the information database matrix after screening to generate the final screening matrix. SR5. Perform a secondary permutation on the deletion matrix to obtain a vertical sequence set Arrange them in order of date from near to far, and at the same time, arrange the vertical series Central and vertical series The horizontal array data corresponding to the middle data is synchronously shifted; SR6, when the vertical sequence set after quadratic arrangement When the top data in the digits are not repeated, the vertical sequence set after the second arrangement is selected. The device corresponding to the highest-order data executes the scheduling instruction; When the vertical sequence set after quadratic arrangement When the top data in the same sequence has the same repetition, the vertical sequence set corresponding to the repeated data The data in the second order are arranged from small to large, and then the vertical series set after the second order is selected The device corresponding to the highest-order data executes the scheduling instruction.

[0026] In a further preferred embodiment, after receiving the matching device information from the dispatch center, the operation server transmits the corresponding device information to the operation server, and ultimately displays the device information on the display terminal, including the device name and function, and simultaneously displays a confirmation option button to confirm whether the user confirms the scheduling of this device. When the user confirms the scheduling of this device, that is, clicks the confirmation option button, the operation server sends a scheduling confirmation signal back to the backend control terminal, and the backend control terminal sends the corresponding confirmation information to the information library. After receiving the confirmation information, the information library temporarily locks the corresponding device's filing information, that is, the device temporarily does not participate in any instructions and mobilization of the deletion matrix. When the user is finished using the scheduled device, the user can click the touch option on the display terminal to return the device to the archive. At the same time, the operation server sends a planning instruction to the backend control terminal, so that the backend control terminal receives the corresponding planned device information and simultaneously sends the restoration scheduling information to the information library. After receiving the restoration scheduling information for the corresponding device, the information library unlocks the corresponding device, allowing the device to participate in the instructions and mobilization of the deletion matrix again.

[0027] When all the registered information in the information database is temporarily locked, that is, no series can participate in the instructions and mobilization of the deletion and screening matrix, the information database sends an empty warehouse alarm to the dispatch center, and the dispatch center sends an empty warehouse signal to the background control terminal. After receiving the empty warehouse signal, the background control terminal sends a pause scheduling signal to the operation server, and the user cannot continue the equipment scheduling operation through the operation server.

[0028] When the device data corresponding to the information database is updated and filed, the data corresponding to the information database matrix composed of each series set is updated synchronously.

[0029] The medical equipment remote scheduling system applied to the medical equipment remote scheduling planning and management method includes an information database, an operation server and a background control terminal; the information database is used to record and archive the name, function, production period and usage time of each medical equipment; the operation server is provided with a display terminal for user operation display and ultimate display of each command signal; the background control terminal is used to summarize, analyze and distribute the data and instructions of each module; and a scheduling center is provided for data matching of corresponding scheduling requirements and sending corresponding command signals according to the data status.

[0030] As described above, although the present invention has been shown and described with reference to specific preferred embodiments, it should not be construed as limiting the present invention itself. Various changes may be made to it in form and detail without departing from the spirit and scope of the present invention as defined in the appended claims.

Claims

1. A remote scheduling and planning management method for medical equipment, characterized in that: The following steps are included: S1. Enter the basic information of medical equipment in sequence, including equipment name, function, production period and usage time, and establish an equipment information database; send the equipment information database to the backend control terminal for filing; S2. When the equipment needs to be dispatched, the dispatching requirements are entered through the display terminal of the operation server, and the corresponding dispatching instructions are sent to the dispatching center of the backend control terminal. After receiving the corresponding dispatching instructions, the dispatching center performs real-time information retrieval and matching on the information database data; S3. After the dispatch center retrieves and matches a suitable device, it sends the device information data to the dispatch center. The dispatch center then transmits the corresponding device information to the operation server. The user obtains and confirms the dispatch device information through the display terminal of the operation server and dispatches the corresponding device for use. S4. When all the registered devices in the information database have been dispatched, the dispatch center sends an empty warehouse signal to the backend control terminal. After receiving the empty warehouse signal, the backend control terminal sends a suspension scheduling signal to the operation server. The user is no longer able to continue the equipment scheduling operation through the operation server. S5. When the user has finished using the dispatched device, he will return the device through the operation server again; then the backend control terminal will send the device return to the dispatch center, and the dispatch center will record the idle status of the device in real time, and the information database will simultaneously update the usage count of the device; S6. When the dispatch center has idle equipment on file, it sends a dispatchable signal to the background control terminal. After receiving the corresponding signal, the background control terminal sends a dispatchable signal to the operation server. Then the operation server restores the dispatchable operation state, and the user can complete the equipment dispatch operation through the operation server again.

2. A medical equipment remote scheduling planning and management method according to claim 1, characterized in that: After the scheduling instruction is confirmed in step S3, the information database synchronously updates the record of the scheduled equipment and records the scheduling usage time of the scheduled equipment in real time; The information database has a separate usage monitoring module for each registered device. When the corresponding device is confirmed to be scheduled for use, the usage monitoring module is activated and directly connected to the device's control center to synchronously update and record the device's usage status, including the device's usage operation items, duration, and device operating status during use; After the equipment is dispatched and used and its return is confirmed, the usage monitoring module sends the usage record information of the equipment to the information database, and the information database promptly updates and files the corresponding equipment data.

3. A medical equipment remote scheduling planning and management method according to claim 2, characterized in that: When the pause scheduling signal in step S4 is executed, that is, the scheduling center sends an empty warehouse signal to the background control terminal at the same time as it sends an appointment scheduling instruction to the background control terminal. After receiving the appointment scheduling instruction, the background control terminal sends a reservation operation signal to the operation server, and finally displays the appointment through the display terminal of the operation server, and the user can perform the appointment scheduling operation.

4. A medical equipment remote scheduling planning and management method according to claim 3, characterized in that: The user enters the model, function and usage time of the required scheduling equipment in advance through the display terminal of the operation server, and then the operation server sends the entered reservation information to the background control terminal, which temporarily stores the reservation information; When the backend control terminal receives the dispatchable signal, it will first send the temporarily stored reservation information to the dispatch center for device matching. If the data is matched successfully, the dispatch reservation information device will be executed first; if the reservation information is not matched successfully, the dispatch center will execute the corresponding dispatch instruction normally. Whenever the dispatch center has a new device idle status record, the device matching of the reservation information is performed first, until all reservation information is successfully matched and executed.

5. A medical equipment remote scheduling planning and management method according to claim 3, characterized in that: The real-time information retrieval and matching of the information base data in step S2 includes the following analysis steps: S201: The user selects and enters the devices to be scheduled in sequence, including the device name and function; S202: After receiving the corresponding dispatch instruction, the dispatch center first matches and selects the names and functions of the equipment registered in the information database according to the input dispatch requirements; S203, then filter the production dates of the selected devices from the most recent to the most recent, and filter the usage times from the longest to the shortest; S204: Output the final selection result and send it to the dispatch center.

6. A medical equipment remote scheduling planning and management method according to claim 5, characterized in that: The specific operations for matching and selecting in step S202 and step S203 and establishing data are as follows: SR1. The information database is arranged vertically in alphabetical order according to the first letter of the entered device name to generate a vertical sequence set. , and then follow the vertical sequence set The arrangement and positioning of each device name is used to enter the function, production period and usage time of the device, and further generate the corresponding vertical series set 、 as well as , each set of number series forms a corresponding information base matrix; SR2. Select the device name and function of the device to be scheduled in sequence through the operation server, and generate the scheduling target point (M, R), where M corresponds to the device name and R corresponds to the function, to complete the scheduling requirement entry; SR3, compare the M coordinates of the target point with the sequence set The data in the database are compared in turn, the corresponding data are retained, and the non-compliant data are deleted from the database matrix horizontally in the entire row; SR4. Compare the R coordinate of the target point with the deleted sequence set The data in the database are compared in turn and screened twice. The corresponding data are retained, and the non-compliant data are screened twice from the information database matrix after screening to generate the final screening matrix. SR5. Perform a secondary permutation on the deletion matrix to obtain a vertical sequence set Arrange them in order of date from near to far, and at the same time, arrange the vertical series Central and vertical series The horizontal array data corresponding to the middle data is synchronously shifted; SR6, when the vertical sequence set after quadratic arrangement When the top data in the digits are not repeated, the vertical sequence set after the second arrangement is selected. The device corresponding to the highest-order data executes the scheduling instruction; When the vertical sequence set after quadratic arrangement When the top data in the same sequence has the same repetition, the vertical sequence set corresponding to the repeated data The data in the second order are arranged from small to large, and then the vertical series set after the second order is selected The device corresponding to the highest-order data executes the scheduling instruction.

7. A medical equipment remote scheduling planning and management method according to claim 6, characterized in that: When the device data corresponding to the information database is updated and filed, the data corresponding to the information database matrix composed of each series set is updated synchronously.

8. A medical equipment remote scheduling system using the medical equipment remote scheduling planning and management method according to any one of claims 1 to 7, characterized in that: Including information database, operation server and back-end control terminal; The information database is used to record and archive the name, function, production period and usage time of each medical device; The operation server is provided with a display terminal for displaying the user's operation and the ultimate display of each command signal; The background control terminal is used to summarize, analyze and distribute the data and instructions of each module; and a scheduling center is provided to match data with corresponding scheduling requirements and send corresponding instruction signals according to the data status.

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