Chronic disease data acquisition system and management method
By designing a chronic disease data acquisition system, data acquisition, processing and display of a variety of medical equipment is realized, which solves the problem of insufficient management of chronic disease data in the existing technology, and improves data acquisition efficiency and the accuracy of medical decision-making.
Patent Information
- Application Number
- CN202510388009.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-07-04
AI Technical Summary
The lack of effective chronic disease data collection and management system in the prior art has led to the understanding of chronic disease epidemic trends, influencing factors and prevention and treatment effects that cannot keep up with the pace of social development, affecting the allocation of medical resources and the ability of patients to manage themselves.
Design a chronic disease data acquisition system, including processing computing module, data acquisition module, wireless module, display module and cloud server. By wirelessly connecting a variety of medical equipment, periodically collecting and classifying data, performing calculation and fitting, realizing intelligent processing and display of data, and storing and managing it in cloud servers.
It improves the efficiency and accuracy of chronic disease data collection, realizes intelligent processing and display of data, improves the accuracy of medical decision-making, and facilitates medical staff's disease analysis and patient's disease management.
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Figure CN120260764A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of clinical medicine assistance technology, and in particular, to a chronic disease data acquisition system and management method. Background Art
[0002] Chronic diseases are public health problems threatening the health of the elderly population in our country. Their high incidence and mortality have imposed a heavy burden on society. However, at present, the monitoring of chronic diseases is still relatively weak, lacking a similar disease and case integration system, resulting in the understanding of the epidemic trend, influencing factors, and prevention and treatment effects of chronic diseases unable to keep up with the current social development rhythm.
[0003] The data collection of chronic diseases is of multiple significances to current clinical medicine. It can not only promote the rational allocation of medical resources and improve patients' self-management and disease awareness capabilities, but also is very important for the formulation of current overall prevention and treatment policies and the evaluation of medical effects. Therefore, it is urgent to try to establish a system related to the data collection and management of chronic diseases. Specifically, doctors collect various data of patients through various medical diagnostic instruments to make disease judgments, such as B-ultrasound machines, blood pressure monitors, or ventilators and monitors inside specific wards.
[0004] In view of the above related technologies, an information interconnection system can be set up in the overall area of the hospital campus for the upload and download of chronic disease data, corresponding to patients one by one for data integration, which not only provides great convenience for patients who often visit the doctor, but also facilitates doctors to retrieve and view all diseases and cases, and better understand the current epidemic trend of chronic diseases. Summary of the Invention
[0005] In order to accelerate the integration and management of chronic disease collection data and optimize the current situation of chronic disease data analysis, the present invention provides a chronic disease data acquisition system and management method.
[0006] The chronic disease data acquisition system and management method provided by the present invention adopt the following technical solutions: A chronic disease data acquisition system and management method, including a processing and computing module, a data acquisition module, a wireless module, and a display module; The data acquisition module is connected to a variety of medical devices, periodically collects the monitoring and diagnostic data of the medical devices, classifies them, and sends them to the processing and computing module and the display module; The processing and computing module receives the acquisition results of the data acquisition module, calculates and fits them, and sends the fitting results to the display module; instruction files are pre-stored in the processing and computing module, and relevant instruction files are run according to the calculation and fitting results of the medical data to control the operation of the medical devices; The display module receives the data from the data acquisition module and displays medical data; the display module receives the calculation and fitting results from the processing and operation module and displays them. The wireless module is connected to the data acquisition module, the processing and operation module, and the display module, and is used for wireless transmission between devices.
[0007] By adopting the above technical solution, the processing and operation module is the central processing system, and generally a large computer with high performance requirements is selected. It has a fast calculation speed and can process a large amount of data sent from the data acquisition module at the same time; the data acquisition module is used for regular data acquisition during medical treatment or when the patient is hospitalized. It is specifically connected to instruments such as B-ultrasound machines, blood pressure monitors, ventilators, monitors, and nuclear magnetic resonance machines, and immediately receives various detection values of the above instruments. Thus, when the patient seeks medical treatment, the medical staff operates the medical equipment and detection instruments to monitor the patient's body, and the detection data is displayed. At the same time, the wireless module corresponding to the medical equipment and detection instruments sends the detection results to the processing and operation module at the same time as the detection results are obtained. The processing and operation module summarizes, calculates, and stores the data, and performs curve fitting and chart drawing in combination with historical data. The medical staff can select a suitable data browsing method through the display module to intuitively display the detection data of each medical history of the patient, retrieve the detection situation of all or a certain period of the patient's data, and understand the disease trend more intuitively and conveniently to prescribe the right medicine.
[0008] Optionally, it further includes a cloud server. The cloud server is connected to the data acquisition module and the processing and operation module through the wireless module. The data acquisition module regularly uploads medical diagnosis data to the cloud server; the processing and operation module automatically sends the calculation results to the cloud server and stores them in the relevant area of the cloud server.
[0009] By adopting the above technical solution, the cloud server functions as a storage, used to store the medical treatment information of each patient in the hospital. The cloud server is connected to the data acquisition module through the wireless module. When the data acquisition module uploads the collected data to the processing and operation module, it also uploads it to the cloud server at the same time. The cloud server stores the medical treatment information of each patient, including the physical examination data during medical treatment. When the medical staff or doctor needs to retrieve and diagnose, they send a retrieval instruction to the cloud server through the wireless module. The processing and operation module retrieves or downloads the stored data in the cloud server within a certain period of time for the processing and operation module to perform data processing, and then intuitively displays it through the display module.
[0010] Optionally, it further includes a key-in module. The input module is connected to the processing and computing module and the display module. The input module provides an operation instruction writing channel, and sends relevant instructions through the processing and computing module to control the operation of the medical device. The cloud server provides file archiving, storage, and management services internally. Medical staff can retrieve personal files stored internally in the cloud server through the input module to obtain personal information.
[0011] By adopting the above technical solutions, firstly, the input module is used for medical staff to modify the instruction files and operation logics of the processing and computing module. Specifically, medical staff design different diagnosis and treatment plans for different patients, or set different key detection values for different patients. Secondly, medical staff or doctors can operate the medical device during the diagnosis and treatment process through the input module. The input module sends a signal to the processing and computing module, and the processing and computing module sends a retrieval instruction to the cloud server to download the internal data stored personally in the cloud server for the use of medical staff. Therefore, when a patient visits the hospital for the first time, a medical record needs to be established in the hospital. The medical record stores patient information, medical history, disease history, medication history, physical examination history, etc., which can be retrieved through the input module when needed by doctors or medical staff to directly understand the patient's condition. And after personal filing, family member information can be input, and people in the same family can be interconnected, facilitating the investigation of family medical history. In addition, the input module retrieves historical personnel information through the processing and computing module. When a patient visits the hospital, after the data acquisition module collects the same examination data and similar disease condition information, the processing and computing module retrieves the files and records of similar historical personnel in the cloud server. The processing and computing module generates corresponding medication advice plans based on the diagnosis and treatment records of similar historical patients and provides a corresponding instruction input channel. Doctors can complete it through simple operations, improving the efficiency of daily medical treatment.
[0012] Optionally, it further includes a device control module. The device control module is connected to the medical device, receives instructions from the operation control module, and controls the medical device to send data, display, or control the medical device to execute operations according to the established instructions.
[0013] By adopting the above technical solutions, medical staff and doctors input relevant control instructions through the input module. The processing and computing module controls the device control module according to the input instructions, and then controls the medical device to specifically execute the relevant operations of medical staff and doctors to diagnose and treat patients. Integrating the device control module into the clinical data acquisition, management, and interconnection system can achieve data docking and improve the traditional instrument diagnosis and treatment method where medical staff observe data and manually input control instructions. Thus, after a single examination of a patient, the processing and computing module calculates the device detection data of the patient, runs relevant instruction files, and provides operation instructions related to diagnosis and treatment based on the detection results. Physicians and medical staff can directly select the corresponding operations. In daily medical work, medical staff can directly enter relevant instructions through the input module, retrieve relevant data from the cloud server. After retrieving the data, the processing and computing module generates relevant instructions according to the retrieval by the medical staff, and medical staff can directly select relevant operations. Whether it is the above-mentioned daily medical work or the diagnosis process, the above-mentioned processing and computing module needs to be regularly updated by relevant technical personnel in real-time according to the medical data, and provide the most appropriate diagnosis and treatment plan for the corresponding patient's diagnosis data in combination with the expanded diagnosis data based on the experience of physicians.
[0014] Optionally, it further includes a communication module. The communication module provides an online communication channel for medical staff and patients. The two communication ends of the communication module are set in the ward and the consulting room. Alarm instructions are pre-stored inside the communication module for patients to quickly send an alarm.
[0015] By adopting the above technical solution, the communication module is often applicable to the inpatient scenario. During the inpatient treatment process of patients, considering that physicians cannot accompany the patients throughout the process, the two communication ends of the communication module are integrated in the ward and the consulting room. When a patient in the ward feels unwell, they can directly use the communication module to quickly contact the attending physician. The communication module establishes a quick contact channel between the attending physician and the patient. Therefore, in addition to providing an emergency contact channel between the patient and the attending physician, it also provides the function of the attending physician reminding the patient to take medicine. The communication module has a display end set inside the ward and an operation end set inside the consulting room. After the above patient contacts the attending physician urgently, the attending physician can quickly operate the operation end of the communication module to inform the patient to take medicine. The communication module can also be connected to the pharmacy, enabling the medical staff inside the pharmacy to quickly deliver medicine to a specific ward according to the doctor's prescription, realizing rapid diagnosis and treatment.
[0016] Optionally, it further includes an information platform module. The information platform module is integrated inside the cloud server, retrieves the medical records stored inside the cloud server, and the information platform module connects to the wireless module to build an online medical information platform. Medical staff, patients, and those seeking medical treatment log in to the medical information platform through the wireless module using mobile devices.
[0017] By adopting the above technical solution, the information platform module is provided for patients and their families. The information platform module is connected to the cloud server and displays the patient information recorded inside the cloud server to the patient's family members, including the patient's specific identity information, various physical examination indicators, physical examination data, medication records, attending physicians, and the current medication situation. When in use, the patient can pre-register, log in to the information platform module using a mobile network device, and after binding the family member information, can obtain the latest data on the patient's medication, diagnosis, and physical examination at any time. The medical treatment information platform has a notification function. When the patient's physical examination data, diagnosis data, or medication situation is updated, a message push is sent to the mobile network device of their family members, enabling the patient's family members to immediately understand.
[0018] Optionally, it further includes an emergency treatment module. The emergency treatment module is connected to the data acquisition module, the wireless module, and the information platform module. Multiple groups of healthy range values are pre-stored inside the emergency treatment module. It communicates with the data acquisition module in real time, retrieves the acquisition data of the data acquisition module, and immediately compares the acquired data value with the healthy range value. When the real-time acquired data value exceeds the healthy range value, the emergency treatment module sends a signal to the information platform module and issues an emergency notice.
[0019] By adopting the above technical solution, the communication module is adaptively set with the emergency treatment module. The emergency treatment module is mainly used for emergency notification. The emergency treatment module receives the inspection data of the data acquisition module in real time. While the data acquisition module sends data to the processing and operation module, it simultaneously sends data to the emergency treatment module. The emergency treatment module compares the healthy range value with the data acquired by the data acquisition module. If any one of the multi-sided diagnosis data exceeds the healthy range value, the emergency treatment module issues an emergency notice to the data acquisition module and notifies the attending physician, enabling the attending physician to immediately obtain the latest situation and be able to control the condition in a timely manner when encountering a sudden illness. In addition, through the connection with the information platform module, after the data acquisition module detects the corresponding data, it is sent to the cloud server. Subsequently, after the emergency treatment module detects the patient's various physical indicators, it sends the similar group of data to the display module through comparison. The physician retrieves the historical personnel information of the data similar group and can directly determine the emergency treatment or emergency rescue plan based on the observation and comparison, which can enhance the rescue efficiency.
[0020] Optionally, it further includes a timing notification module. The timing notification module is set inside the ward. The timing notification module is connected to the processing and operation module, receives the instruction of the processing and operation module, and reminds the patient to take medicine and seek medical treatment at the preset time.
[0021] By adopting the above technical solution, the timing notification module is adapted to the communication module and set in the consulting room and the ward, which can perform the timing notification function except in case of emergency and is generally applicable to inpatients; The timing notification module and the communication module should correspond one by one to each patient. Medical staff input the medication situation in advance for each patient and set fixed-point reminders, and the reminder situation should be informed to the doctor in the consulting room; the timing notification module is also connected to the cloud server through the wireless module, and reminds the patient's family members through the information platform module of the notification situation. The timing notification module plays the role of reminder and feedback, enabling doctors and family members to immediately understand the patient's medication situation.
[0022] In summary, the present application includes at least one of the following beneficial technical effects: 1. The data acquisition module is connected to a variety of medical devices, periodically acquires and classifies the monitoring and diagnostic data of the medical devices, and sends them to the processing and operation module and the display module, improving the efficiency and accuracy of data acquisition; 2. The processing and operation module receives the acquired data for calculation and fitting, and sends the fitting result to the display module. At the same time, it automatically runs the relevant instruction file according to the calculation result to control the operation of the medical device, realizing the intelligent processing and utilization of data; 3. The display module displays the medical data and its calculation and fitting results in real time, and communicates with other modules through the wireless module, enabling medical staff to timely understand the patient's health status and improving the accuracy of medical decision-making. Description of the Drawings
[0023] Figure 1 It is the system logic block diagram of the embodiment of the present application.
[0024] Description of the reference numerals: 1. Data acquisition module; 2. Processing and operation module; 3. Key-in module; 4. Communication module; 41. Timing notification module; 5. Wireless module; 6. Cloud server; 61. Information platform module; 62. Regional storage module; 7. Emergency processing module; 8. Display module; 9. Device control module. Detailed Embodiment
[0025] The following is a further detailed description of the present application in conjunction with the attached Figure 1 drawings.
[0026] The embodiment of the present application discloses a chronic disease data acquisition system and management method. Refer to Figure 1, A chronic disease data collection system and management method includes a processing and operation module 2, a data collection module 1, a wireless module 5, a display module 8, a cloud server 6, a keying module 3, a device control module 9, a communication module 4, an information platform module 61, an emergency processing module 7, and a timing notification module 41. Among them, the processing and operation module 2 is the core computing component, which plays the role of data calculation, analysis, simulation, instruction generation, and sending.
[0027] Refer to Figure 1 , The data collection module 1 is connected to a variety of medical devices, periodically collects the monitoring and diagnostic data of medical devices, and classifies them. Specifically, the data collection module 1 is connected to all instruments in the hospital that are connected to the interconnection system, such as B-ultrasound machines, blood pressure monitors, ventilators, monitors, and magnetic resonance imaging. It receives the detection data of each patient from the above-mentioned instruments. As the front-end collection part of the interconnection system, the data collection module 1 simply classifies and calculates the detection data of the above-mentioned medical diagnostic instruments. Therefore, the data collection module 1 should always be in an active state to receive each detection data of each patient.
[0028] Refer to Figure 1 , The processing and operation module 2 is the central processing module. Generally, a large computer with high performance requirements is selected, which has a fast calculation speed and can receive and process a large amount of data from the data collection module 1 at the same time; the processing and operation module 2 receives the collection results of the data collection module 1, calculates, processes, and fits them, and presents the data in the form of graphs, curves, etc. that are convenient for doctors and medical staff to observe. Thus, the numerical values of each physical examination data are fitted into graphs that are convenient for doctors to understand the development trend of the patient's condition, increasing the efficiency of the patient's medical treatment.
[0029] Refer to Figure 1 , The display module 8 is connected to the processing and operation module 2 and the data collection module 1, receives the patient's diagnosis data collected by the data collection module 1, and displays it to the medical staff; the display module 8 receives the fitting results of the processing and operation module 2. Medical staff can retrieve the diagnosis information for a certain period of time or all of it, which is displayed by the display module 8. Thus, in actual application, the display end of the display module 8 is set in the ward and the consulting room, and usually a display component with interactive capabilities is selected to facilitate operation by medical staff or patients according to the actual situation.
[0030] Refer to Figure 1, the cloud server 6 includes a regional storage module 62 with information storage capabilities, an information platform module 61 with information classification and display capabilities, and a firewall module with protection capabilities. The regional storage module 62 is actually generally a cloud disk, which is used to store the medical treatment information of each patient within the hospital. The information platform module 61 is a port for patients, physicians, or other relevant personnel to retrieve the patient's medical treatment information. Specifically, the cloud server 6 is set up to facilitate the service of medical treatment personnel. When each patient first comes to the hospital for medical treatment, a medical treatment file will be established. The internal information of the medical treatment file includes all data such as patient information, medical treatment history, medical history, medication history, and physical examination history during the hospital stay. The medical treatment file is stored in the regional storage module 62 of the cloud server 6. The regional storage module 62 is divided into multiple storage areas according to the current in-hospital status of the patient, such as the storage area for outpatient patients, the storage area for inpatients, the storage area for ICU patients, etc. Patients in different storage areas should be treated according to the priority level. The condition of single-visit patients is usually relatively mild, and they leave the hospital after receiving medication. The information retrieval of the inpatient storage area is relatively frequent, and it should be marked together with the ICU patient storage area according to the inpatient building number and room number. Physicians can directly select according to the inpatient area during retrieval, which conforms to the daily memory habits of physicians and is relatively convenient.
[0031] At the same time, to facilitate and safely retrieve the patient information stored in the regional storage module 62, the information platform module 61 builds a network information platform in the cloud server 6 and opens a mobile network port. Patients, medical staff, or patient families can log in through mobile network devices and real-time understand the latest diagnostic data, physical examination results, or medication conditions of the patient, etc. When the user logs in for the first time, the patient information should be bound and the patient family information should be associated. When the patient's medical treatment data is updated, the patient, the patient's family, and the relevant physicians can immediately obtain the push through the mobile device and understand the situation.
[0032] For the confidentiality of the patient information in the cloud server 6 and to ensure the security of network information, a firewall, that is, a firewall module, should also be set up in the cloud server 6.
[0033] Refer to Figure 1 , the device control module 9 is connected to specific medical devices, receives instructions from the operation control module, and controls the medical devices to send data, display, or control the medical devices to execute operations according to the established instructions. Specifically, the device control module 9 corresponds one-to-one with the data acquisition module 1 and is connected to detection instruments such as B-ultrasound machines, blood pressure monitors, monitors, and magnetic resonance imaging. It can also control treatment devices such as ventilators and chemotherapy instruments. The advantage of integrating the device control module 9, the data acquisition module 1, and the processing operation module 2 into an interconnected system lies in data docking. When the data acquisition module 1 collects various data of the patient, through the data processing of the processing operation module 2, relevant control plans can be directly generated, and physicians and medical staff can directly select the corresponding operations, which is relatively convenient.
[0034] Referring to Figure 1 , the input module 3 is connected to the processing operation module 2 and the display module 8, and is connected to the device control module 9 through the processing operation module 2. The input module 3 provides an operation instruction writing channel, sends relevant instructions through the processing operation module 2, and controls the operation of the medical device. The input module 3 is the main module for medical staff to operate the diagnosis and treatment device. During actual diagnosis, the doctor sends a signal to the processing operation module 2 through the input module 3, uses the processing operation module 2 to send a retrieval instruction to the cloud server 6, downloads the internal data stored personally in the cloud server 6, observes and judges, and controls the diagnosis and treatment device to operate according to relevant instructions through the input module 3 for medical treatment; Secondly, the input module 3 can also provide instructions to modify the internal instruction file and operation logic of the processing operation module 2. Specifically, medical staff can design different diagnosis and treatment plans for different patients or set different key detection values for different patients through the input module 3.
[0035] Referring to Figure 1 , the communication module 4 provides an online communication channel for medical staff and patients. The two communication ends of the communication module 4 are set in the ward and the consulting room for real-time communication between patients and doctors. Therefore, the communication module 4 is often applicable to the inpatient scenario. Considering that doctors cannot accompany patients throughout the treatment process during the inpatient treatment, the two communication ends of the communication module 4 are integrated in the ward and the consulting room. When the patient in the ward feels unwell, they can directly use the communication module 4 to quickly contact the attending doctor; In addition, the attending doctor can also get in touch with the patient in real time through the communication module 4; The attending doctor reminds the patient to take medicine according to the actual condition, or conveniently contacts the patient to inquire about the condition. For the convenience of the doctor's operation, the operation end of the communication module 4 is usually set in the consulting room, and the attending doctor can quickly operate the operation end of the communication module 4 to inform the patient about taking medicine and other relevant matters.
[0036] Referring to Figure 1 , the emergency processing module 7 is connected to the information platform module 61 and the data acquisition module 1, and the emergency processing module 7 is directly connected to the data acquisition module 1 to ensure the timeliness of data acquisition and avoid data reception delay due to network failure. Multiple groups of healthy range values are pre-stored inside the emergency processing module 7. It communicates with the data acquisition module 1 in real time, retrieves the acquisition data of the data acquisition module 1, and immediately compares the acquired data value with the healthy range value. When the real-time acquired data value exceeds the healthy range value, the emergency processing module 7 sends a signal to the information platform module 61, and the emergency processing module 7 issues an emergency notice. The notification end of the emergency processing module 7 should be set in the consulting room so that the attending doctor can immediately obtain the latest situation and can control the condition in time in case of sudden illness.
[0037] Referring to Figure 1, the Timing Notification Module 41 is installed inside the ward and is generally applicable to inpatients. The Timing Notification Module 41 is connected to the Processing and Computing Module 2, receives the instructions from the Processing and Computing Module 2, and reminds the patient to take medicine or do rehabilitation training at a preset time. The Timing Notification Module 41 and the Communication Module 4 should correspond to each patient one by one. Medical staff input the medication situation for each patient in advance and set fixed-point reminders. The reminder situation should be informed to the doctor in the consulting room; the Timing Notification Module 41 is also connected to the Cloud Server 6 through the Wireless Module 5, and reminds the patient's family members through the Information Platform Module 61 of the notification situation. The Timing Notification Module 41 plays the role of reminder and feedback, enabling doctors and family members to immediately understand the patient's medication situation; further, based on the storage of all patients' medical data, the Cloud Server 6 receives the information of the front-end medical device data in real time. The Processing and Computing Module 2 downloads the historical medical data of patients with similar conditions, directly provides the medication situation of previous patients, and the Timing Notification Module 41 immediately downloads the technical solutions fitted and provided by the Processing and Computing Module 2 through the data collection and storage functions of the Cloud Server 6 and pushes them to the attending doctor of the corresponding patient. The attending doctor can directly select them, greatly improving the medical treatment efficiency; similarly, the information integration and interconnection function of the Processing and Computing Module 2, the Cloud Server 6, and the Emergency Notification Module 7 can directly push to the patient's family members after the above-mentioned attending doctor pushes the treatment plan.
[0038] Refer to Figure 1 , the Wireless Module 5 is connected to the Data Collection Module 1, the Processing and Computing Module 2, the Communication Module 4, the Keying Module 3, the Equipment Control Module 9, and the Cloud Server 6, and is used for wireless communication between devices and between devices and modules. Considering the complexity and inoperability of using wired connections, a wireless local area network is formed by the Wireless Module 5 within the same hospital campus to enable the interconnection of device instructions and data within the hospital. The Wireless Module 5 is the basis for realizing communication between the above-mentioned modules. In practical applications, it is recommended to select a WIFI module or a Bluetooth module. For devices with low requirements for signal bandwidth, it is recommended to use a ZIGBEE module for interconnection.
[0039] The implementation principle of a chronic disease data collection system and management method in an embodiment of this application is as follows: The Data Collection Module 1 collects the patient's medical data and sends it to the Processing and Computing Module 2. The Processing and Computing Module 2 generates relevant instructions and sends them to the Equipment Control Module 9. Or doctors and medical staff operate through the Keying Module 3 to override the instructions of the processing and computing and send them to the Equipment Control Module 9 to control the operation of relevant medical and diagnostic devices. The data collection results are displayed by the Display Module 8 and synchronously stored in the Cloud Server 6. When data needs to be used, doctors and patients can log in to the platform to retrieve the medical data for a certain period or all.
[0040] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application shall be covered within the protection scope of the present application.
Claims
1. A chronic disease data acquisition system and management method, characterized in that: It includes a processing and operation module (2), a data acquisition module (1), a wireless module (5), and a display module (8); The data acquisition module (1) is connected to a variety of medical devices, periodically acquires the monitoring and diagnostic data of the medical devices, classifies them, and sends them to the processing and operation module (2) and the display module (8); The processing and operation module (2) receives the acquisition results of the data acquisition module (1), calculates and fits them, and sends the fitting results to the display module (8); Instruction files are pre-stored in the processing and operation module (2), and relevant instruction files are run according to the calculation and fitting results of the medical data to control the operation of the medical devices; The display module (8) receives the data of the data acquisition module (1) and displays the medical data; The display module (8) receives the calculation and fitting results of the processing and operation module (2) and displays them; The wireless module (5) is connected to the data acquisition module (1), the processing and operation module (2), and the display module (8) for wireless transmission between devices.
2. The chronic disease data acquisition system and management method according to claim 1, wherein: It further includes a cloud server (6); The cloud server (6) is connected to the data acquisition module (1) and the processing and operation module (2) through the wireless module (5). The data acquisition module (1) regularly uploads medical diagnosis data to the cloud server (6); The processing and operation module (2) automatically sends the calculation results to the cloud server (6) and stores them in the relevant area of the cloud server (6).
3. The chronic disease data acquisition system and management method according to claim 2, wherein: It further includes a key-in module (3); The key-in module (3) is connected to the processing and operation module (2) and the display module (8). The key-in module (3) provides an operation instruction writing channel, sends relevant instructions through the processing and operation module (2), and controls the operation of the medical devices; The cloud server (6) provides file archiving, storage, and management services internally. Medical staff can retrieve the personal files stored internally in the cloud server (6) through the key-in module (3) to obtain personal information.
4. A chronic disease data collection system and management method according to claim 1, characterized in that: It further includes a device control module (9); The device control module (9) is connected to the medical devices, receives the instructions of the operation control module, and controls the medical devices to send data, display, or control the medical devices to perform operations according to the established instructions.
5. A chronic disease data collection system and management method according to claim 1, characterized in that: It further includes a communication module (4); The communication module (4) provides an online communication channel for medical staff and patients. The two communication ends of the communication module (4) are set in the ward and the consulting room; Alarm instructions are pre-stored inside the communication module (4) for patients to quickly alarm.
6. The chronic disease data acquisition system and management method according to claim 1, characterized in that: It further includes an information platform module (61); The information platform module (61) is integrated inside the cloud server (6), retrieves the medical records stored inside the cloud server (6), and the information platform module (61) is connected to the wireless module (5) to build an online medical information platform; Medical staff, patients, and visitors can log in to the medical information platform using mobile devices through the wireless module (5).
7. The chronic disease data acquisition system and management method according to claim 6, characterized in that: It further includes an emergency handling module (7); The emergency processing module (7) is connected to the data acquisition module (1), the wireless module (5), and the information platform module (61). Multiple groups of healthy range values are pre-stored inside the emergency processing module (7). It communicates instantaneously with the data acquisition module (1), retrieves the acquisition data of the data acquisition module (1), and instantaneously compares the acquired data values with the healthy range values. When the real-time acquired data values exceed the healthy range values, the emergency processing module (7) sends a signal to the information platform module (61), and the emergency processing module (7) issues an emergency notice.
8. A chronic disease data acquisition system and management method according to claim 1, characterized in that: It further includes a timing notification module (41); The timing notification module (41) is arranged inside the ward. The timing notification module (41) is connected to the processing and operation module (2), receives the instructions of the processing and operation module (2), and reminds the patient to take medicine and seek medical treatment at a preset time.