A telemedicine system for providing continuing care for congenital heart disease

The telemedicine system enables rapid diagnosis and monitoring of children's conditions, solves the problem of children being unable to seek medical treatment in a timely manner, and improves diagnostic accuracy and disease supervision efficiency.

CN116313033BActive Publication Date: 2025-09-26THE SIXTH MEDICAL CENT OF THE CHINESE PEOPLES LIBERATION ARMY GENERAL HOSPITAL
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Patent Information

Application Number
CN202211089530.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-07
Publication Date
2025-09-26
Estimated Expiration
2042-09-07

AI Technical Summary

Technical Problem

Children are unable to receive timely medical treatment during the onset of the disease and the subsequent maintenance process, resulting in delayed disease progression. In addition, monitoring data during remote consultations is unstable, affecting the accuracy of diagnosis.

Method used

A telemedicine system was designed, including a remote online management module, a hospital online communication module, and a business system management module. It integrates pharmacies, distribution centers, emergency centers, doctor diagnosis terminals, video diagnosis, cardiovascular model acquisition sensors, signal amplifiers, cloud computing servers, etc., to achieve child condition monitoring and remote consultation.

Benefits of technology

It shortens the consultation time, improves the accuracy of doctors' judgment on children's conditions, realizes automatic classification supervision of children's conditions and regular follow-up visits, and ensures timely monitoring and treatment of children's conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a telemedicine system for providing continued care for congenital heart disease, which relates to the field of telemedicine technology. The present invention includes a remote online management module, a hospital online communication module, and a business system management module; a remote medical management platform manages the entire system platform, and the system platform can be logged in at the initial start; the remote online management module includes a pharmacy, a distribution center, and an emergency center module. By taking pictures of the affected part and facial features of the child, and conducting a face-to-face video diagnosis with the doctor, not only the consultation time is shortened, but also the doctor can immediately make an accurate judgment on the child's disease condition in a static state based on the consultation data. The medical staff makes a one-category or two-category judgment based on the severity of the child's condition, and then makes a classification, so that it is convenient to supervise the child's condition in the later stage, so that regular inquiries can be made, and the child can be revisited in the later stage according to the classification, which is conducive to the recovery of the condition.
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Description

Technical Field

[0001] The present invention relates to the technical field of remote nursing, and in particular to a remote medical system for providing continued nursing care for congenital heart disease. Background Art

[0002] During the care of children with congenital heart disease, when the disease needs to be remedied in time, the rescue time may not be enough to support the child to wait for medical staff to arrive in time for treatment, and the child's condition will not be relieved in time. In addition, according to the precautions of some past cases of the child himself, registering and going back and forth to the hospital for consultation will not only waste too much time, but the long distance will also affect the physical tolerance of children with congenital heart disease. During the consultation process, the child's physical monitoring data may also cause large fluctuations, which is not conducive to the doctor's accurate diagnosis and treatment of the child's condition. Summary of the Invention

[0003] The purpose of the present invention is to solve the problem that children cannot see a doctor quickly during the onset of the disease and the subsequent maintenance process. The present invention provides a telemedicine system for providing continued care for congenital heart disease.

[0004] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:

[0005] A telemedicine system for providing continued care for congenital heart disease, comprising a remote online management module, a hospital online communication module, and a business system management module;

[0006] Telemedicine management platform manages the entire system platform, and users can log in to the system platform at the beginning;

[0007] The remote online management module includes a pharmacy, a distribution center, and an emergency center module, wherein the pharmacy, the distribution center, and the emergency center module are connected to a doctor diagnosis terminal module;

[0008] Parents communicate about the condition, where the parents describe the child's symptoms to the doctor based on their previous experience or the child's own symptoms;

[0009] Upload case data: Parents upload the child's past condition and medical records, and provide the child's weight, height, and photos so that doctors can accurately judge the child's condition;

[0010] Electronic medical records: After the previous medical records are uploaded, the patient's personal electronic medical records will be automatically generated in the patient's medical records system, which can be managed by the patient's parents.

[0011] Video diagnosis of the patient or device. Since infants and children are unable to operate the system independently, their parents can turn on the device and capture the affected area and facial features of the child, or conduct face-to-face video diagnosis with the doctor.

[0012] Receive expert consultation orders, and doctors will issue consultation orders based on the characteristics of the child's condition;

[0013] Consult and determine the treatment plan. The doctor will check the medical records based on the child's physical condition, conduct remote consultation, fill out the consultation form, and sign or electronically sign;

[0014] Evaluation: After the consultation, the parents of the child will evaluate the doctor and the system based on the consultation and treatment of the expert doctor. The hospital will make adjustments based on the patient's client's evaluation system.

[0015] Consultation forms are included in electronic medical records. Electronic consultation forms issued by expert doctors can be automatically included in the electronic medical record system. When inquiring about cases later, doctors can automatically retrieve previous case information based on the patient's system files to avoid misjudgment.

[0016] The consultation sheets are classified and stored for supervision. Medical staff make first-class and second-class judgments based on the severity of the child's condition, and then make classifications. This makes it easier to monitor the child's condition in the later stages and to conduct regular inquiries.

[0017] The hospital's online communication monitoring system monitors the patient's health status;

[0018] The Internet of Things management platform is built based on the Internet between the patient port and the hospital port;

[0019] Cardiovascular model acquisition sensor collects the patient's ECG signal for doctors to judge;

[0020] Integrated analog front-end module to transmit the detected signal for transmission;

[0021] The signal amplifier amplifies and transmits the collected signal to avoid the signal being reduced or missed during the transmission process;

[0022] The main control processing module controls the signals of the surrounding connected modules for operation;

[0023] Wireless communication module, which controls the wireless connection signal of the entire device and system;

[0024] Cloud computing server, a port for acquiring, processing and storing information;

[0025] Function setting module, which can adjust the monitoring function strength of the system;

[0026] Positioning module, adjusts the monitored part;

[0027] Data storage module, automatically storing and saving monitored content information;

[0028] The business system management unit controls the number of online medical services;

[0029] Terminal management module, manages the entire business order system;

[0030] Support system interface unit, connecting the entire system unit;

[0031] The ordering relationship maintenance unit provides maintenance reminders for sorting units such as online reservations.

[0032] Furthermore, the remote communication platform includes a WeChat platform and a video consultation system, which can automatically generate consultation records after the consultation.

[0033] Furthermore, the remote medical management platform is connected to a pharmacy, a delivery center, and an emergency center, and the pharmacy, the delivery center, and the emergency center are connected to a doctor's diagnosis terminal, and the doctor's diagnosis terminal is respectively provided with continuity channels 1, 2, 3, etc.

[0034] Furthermore, the remote medical management platform module includes an appointment module, a parent condition communication module, a case information upload module, an electronic case module, a patient or equipment video diagnosis module, an expert consultation form receiving module, an evaluation module, and a consultation form electronic case module. The remote medical management platform also includes a pharmacy module, a distribution center module and an emergency center module. The pharmacy module, distribution center module and emergency center module are connected to a doctor diagnosis terminal module, and the doctor diagnosis terminal module is connected to a community network server module and a wireless communication device module.

[0035] Furthermore, the parent condition communication module and the case information upload module are connected to the time determination module, the time determination module is connected to the doctor diagnosis terminal module, the patient or equipment video diagnosis module and the expert consultation form receiving module are connected to the consultation and treatment plan determination module, the consultation and treatment plan determination module is connected to the time determination module, and the consultation form is classified into the electronic medical case module and is connected to the consultation form classification, storage, reception and supervision module.

[0036] Furthermore, the consultation and treatment plan determination module is connected to a medical record query module, a remote consultation module, a consultation form filling module and a signature or electronic signature module.

[0037] Furthermore, the hospital online communication module includes an Internet of Things management platform, a telemedicine service platform, a cardiovascular model acquisition sensor, an integrated analog front-end module, a signal amplifier, a main control processing module, a wireless communication module and a cloud computing server. The Internet of Things management platform is connected to the telemedicine service platform, the telemedicine service platform is connected to the cardiovascular model acquisition sensor, the cardiovascular model acquisition sensor is connected to the integrated analog front-end module, the integrated analog front-end module is connected to the signal amplifier, the signal amplifier is connected to the main control processing module, the main control processing module is connected to the wireless communication module, and the wireless communication module is connected to the cloud computing server.

[0038] Furthermore, the telemedicine service platform module is connected to a professional medical service module, a digital management module and other industry service platforms of the Internet of Things, and the main control processing module is connected to a function setting module, a positioning module and a data storage module;

[0039] Furthermore, the business system management module includes a terminal management module, a support system interface unit, a subscription relationship maintenance unit, a network management data collection unit, a business fault management unit and a subscription relationship management unit. The terminal management module is connected to the support system interface unit, the support system interface unit is connected to the subscription relationship maintenance unit, the subscription relationship maintenance unit is connected to the network management data collection unit, the network management data collection unit is connected to the business fault management unit, and the business fault management unit is connected to the subscription relationship management unit.

[0040] Furthermore, the subscription relationship maintenance unit is connected to a terminal management portal unit and a service operation unit.

[0041] The beneficial effects of the present invention are as follows:

[0042] 1. In the present invention, parents of children with the disease upload their children's past conditions and medical records, and provide the children's weight, height and photos, so that doctors can accurately judge the children's condition. They can take photos of the affected parts and facial features of the children, or have face-to-face video diagnosis with the doctor. This not only shortens the consultation time, but also helps doctors to make accurate judgments on the children's disease conditions in a static state based on the consultation data.

[0043] 2. The present invention provides the corresponding online nursing plan to the guardian of the child, and automatically stores the electronic medical records of the child in the system so that the secondary doctor can retrieve the case for inquiry. The consultation form is classified and stored for supervision. The medical staff makes a first-class or second-class judgment based on the severity of the child's condition, and then makes a classification, which is convenient for monitoring the child's condition in the later stage, so as to make regular inquiries and make follow-up visits to the child according to the classification, which is conducive to the recovery of the condition. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] Figure 1 This is a system diagram of the remote online management module of the present invention;

[0045] Figure 2 This is a system diagram of the online communication module of the present invention;

[0046] Figure 3 It is the business system management module of the present invention. DETAILED DESCRIPTION

[0047] To make the objectives, technical solutions and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.

[0048] like Figure 1-Figure 3 As shown, a telemedicine system for providing continued care for congenital heart disease includes a remote online management module, a hospital online communication module and a business system management module;

[0049] Telemedicine management platform manages the entire system platform, and users can log in to the system platform at the beginning;

[0050] The remote online management module includes pharmacy, distribution center, and emergency center modules, among which the pharmacy, distribution center, and emergency center modules are connected to the doctor diagnosis terminal module;

[0051] Parents communicate about the condition, where the parents describe the child's symptoms to the doctor based on their previous experience or the child's own symptoms;

[0052] Upload case data: Parents upload the child's past condition and medical records, and provide the child's weight, height, and photos so that doctors can accurately judge the child's condition;

[0053] Electronic medical records: After the previous medical records are uploaded, the patient's personal electronic medical records will be automatically generated in the patient's medical records system, which can be managed by the patient's parents.

[0054] Video diagnosis of the patient or device. Since infants and children are unable to operate the system independently, their parents can turn on the device and capture the affected area and facial features of the child, or conduct face-to-face video diagnosis with the doctor.

[0055] Receive expert consultation orders, and doctors will issue consultation orders based on the characteristics of the child's condition;

[0056] Consult and determine the treatment plan. The doctor will check the medical records based on the child's physical condition, conduct remote consultation, fill out the consultation form, and sign or electronically sign;

[0057] Evaluation: After the consultation, the parents of the child will evaluate the doctor and the system based on the consultation and treatment of the expert doctor. The hospital will make adjustments based on the patient's client's evaluation system.

[0058] Consultation forms are included in electronic medical records. Electronic consultation forms issued by expert doctors can be automatically included in the electronic medical record system. When inquiring about cases later, doctors can automatically retrieve previous case information based on the patient's system files to avoid misjudgment.

[0059] The consultation sheets are classified and stored for supervision. Medical staff make first-class and second-class judgments based on the severity of the child's condition, and then make classifications. This makes it easier to monitor the child's condition in the later stages and to conduct regular inquiries.

[0060] The hospital's online communication monitoring system monitors the health status of patients;

[0061] The Internet of Things management platform is built based on the Internet between the patient port and the hospital port;

[0062] Cardiovascular model acquisition sensor collects the patient's ECG signal for doctors to judge;

[0063] Integrated analog front-end module to transmit the detected signal for transmission;

[0064] The signal amplifier amplifies and transmits the collected signal to avoid the signal being reduced or missed during the transmission process;

[0065] The main control processing module controls the signals of the surrounding connected modules for operation;

[0066] Wireless communication module, which controls the wireless connection signal of the entire device and system;

[0067] Cloud computing server, a port for acquiring, processing and storing information;

[0068] Function setting module, which can adjust the monitoring function strength of the system;

[0069] Positioning module, adjusts the monitored part;

[0070] Data storage module, automatically storing and saving monitored content information;

[0071] The business system management unit controls the number of online medical services;

[0072] Terminal management module, manages the entire business order system;

[0073] Support system interface unit, connecting the entire system unit;

[0074] The ordering relationship maintenance unit provides maintenance reminders for sorting units such as online reservations.

[0075] like Figure 1 As shown, in some embodiments, the remote communication platform includes a WeChat platform and a video consultation system, and a consultation record can be automatically generated after the consultation.

[0076] like Figure 1 As shown, in some embodiments, the remote medical management platform is connected to the pharmacy, delivery center, and emergency center, and the pharmacy, delivery center, and emergency center are connected to the doctor's diagnosis terminal, and the doctor's diagnosis terminal is respectively provided with continuity channels 1, 2, 3, etc.

[0077] like Figure 1 As shown, in some embodiments, the remote medical management platform module includes an appointment module, a parent condition communication module, a case information upload module, an electronic medical record module, a patient or equipment video diagnosis module, a module for receiving expert consultation orders, an evaluation module, and a consultation order inclusion module. The remote medical management platform also includes a pharmacy module, a distribution center module, and an emergency center module. The pharmacy module, the distribution center module, and the emergency center module are connected to a doctor diagnosis terminal module, and the doctor diagnosis terminal module is connected to a community network server module and a wireless communication device module.

[0078] like Figure 1 As shown, in some embodiments, the parent condition communication module and the case information upload module are connected to the time determination module, the time determination module is connected to the doctor diagnosis terminal module, the patient or equipment video diagnosis module and the expert consultation form receiving module are connected to the consultation and treatment plan determination module, the consultation and treatment plan determination module is connected to the time determination module, and the consultation form is classified into the electronic medical record module is connected to the consultation form classification, storage, reception and supervision module.

[0079] like Figure 1 As shown, in some embodiments, the consultation and treatment plan determination module is connected to the medical record query module, the remote consultation module, the consultation form filling module and the signature or electronic signature module.

[0080] like Figure 2 As shown, in some embodiments, the hospital online communication module includes an Internet of Things management platform, a telemedicine service platform, a cardiovascular model acquisition sensor, an integrated analog front-end module, a signal amplifier, a main control processing module, a wireless communication module and a cloud computing server. The Internet of Things management platform is connected to the telemedicine service platform, the telemedicine service platform is connected to the cardiovascular model acquisition sensor, the cardiovascular model acquisition sensor is connected to the integrated analog front-end module, the integrated analog front-end module is connected to the signal amplifier, the signal amplifier is connected to the main control processing module, the main control processing module is connected to the wireless communication module, and the wireless communication module is connected to the cloud computing server.

[0081] like Figure 2 As shown, in some embodiments, the telemedicine service platform module is connected to the professional medical service module, the digital management module and the IoT other industry service platform, and the main control processing module is connected to the function setting module, the positioning module and the data storage module;

[0082] like Figure 3 As shown, in some embodiments, the business system management module includes a terminal management module, a support system interface unit, a subscription relationship maintenance unit, a network management data collection unit, a business fault management unit and a subscription relationship management unit. The terminal management module is connected to the support system interface unit, the support system interface unit is connected to the subscription relationship maintenance unit, the subscription relationship maintenance unit is connected to the network management data collection unit, the network management data collection unit is connected to the business fault management unit, and the business fault management unit is connected to the subscription relationship management unit.

[0083] like Figure 3 As shown, in some embodiments, the subscription relationship maintenance unit is connected to the terminal management portal unit and the service operation unit.

[0084] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A telemedicine system for providing continued care for congenital heart disease, characterized in that: It includes a remote online management module, a hospital online communication module, a business system management module and a remote communication platform. The remote communication platform includes a WeChat platform and a video consultation system, which can automatically generate consultation records after the consultation. Telemedicine management platform manages the entire system platform, and users can log in to the system platform at the beginning; The remote online management module includes a pharmacy, a distribution center, and an emergency center module, wherein the pharmacy, the distribution center, and the emergency center module are connected to a doctor diagnosis terminal module; Parents communicate about the condition, where the parents describe the child's condition to the expert doctor based on their previous experience or the child's own symptoms; Upload case data: Parents upload the child's past condition and medical records, and provide the child's weight, height, and photos, so that expert doctors can accurately judge the child's condition; Electronic medical records: After the previous medical records are uploaded, the patient's personal electronic medical records will be automatically generated in the patient's medical records system, which can be managed by the patient's parents. Video diagnosis of the patient or device: Since infants and young children are unable to operate the system independently, their parents can turn on the device to capture the affected area and facial features, or conduct face-to-face video diagnosis with an expert doctor. Receive expert consultation orders, and the expert doctor will issue consultation orders based on the characteristics of the child's condition; Consultation: To determine the treatment plan, the expert doctor will check the medical records based on the child's physical condition, conduct a remote consultation, fill out the consultation form and sign it electronically; Evaluation: After the consultation, the parents of the child will evaluate the expert doctor and the system based on the consultation and treatment results. The hospital will make adjustments to the system based on the patient's evaluation. Consultation forms are included in electronic medical records: Electronic consultation forms issued by expert doctors can be automatically included in the electronic medical record system. When inquiring about cases later, expert doctors can automatically retrieve previous case information based on the patient's system files to avoid misjudgment; Classification, storage and supervision of consultation forms: medical staff make first-class and second-class judgments based on the severity of the child's condition, and then make classifications, so as to facilitate the supervision of the child's condition in the later stage and to facilitate regular inquiries; The hospital's online communication monitoring system monitors the patient's health status; Internet of Things management platform: built based on the Internet between the patient port and the hospital port; Cardiovascular model acquisition sensor collects the patient's ECG signal for expert doctors to judge; Integrated analog front-end module to transmit the detected signal for transmission; The signal amplifier amplifies and transmits the collected signal to avoid the signal being reduced or missed during the transmission process; The main control processing module controls the signals of the surrounding connected modules for operation; Wireless communication module, which controls the wireless connection signal of the entire device and system; Cloud computing server, a port for acquiring, processing and storing information; Function setting module, which can adjust the monitoring function strength of the system; Positioning module, adjusts the monitored part; Data storage module, automatically storing and saving monitored content information; The business system management unit controls the number of online medical services; Terminal management module, manages the entire business order system; Support system interface unit, connecting the entire system unit; The ordering relationship maintenance unit provides maintenance reminders for the online reservation sorting unit.

2. A telemedicine system for providing continued care for congenital heart disease according to claim 1, characterized in that: The remote medical management platform is connected to a pharmacy, a delivery center, and an emergency center. The pharmacy, the delivery center, and the emergency center are connected to a doctor's diagnosis terminal. The doctor's diagnosis terminal is respectively provided with 1, 2, and 3 continuity channels.

3. A telemedicine system for providing continued care for congenital heart disease according to claim 1, characterized in that: The telemedicine management platform includes an appointment module, a parent-child condition communication module, a case data upload module, an electronic case module, a patient or equipment video diagnosis module, a module for receiving expert consultation forms, an evaluation module, and a consultation form electronic case module. The telemedicine management platform also includes a pharmacy module, a distribution center module, and an emergency center module. The pharmacy module, distribution center module, and emergency center module are connected to a doctor diagnosis terminal module, and the doctor diagnosis terminal module is connected to a community network server module and a wireless communication device module.

4. A telemedicine system for providing continued care for congenital heart disease according to claim 3, characterized in that: The parent condition communication module and the case information upload module are connected to the time determination module, the time determination module is connected to the doctor diagnosis terminal module, the patient or equipment video diagnosis module and the expert consultation form receiving module are connected to the consultation and treatment plan determination module, the consultation and treatment plan determination module is connected to the time determination module, and the consultation form is classified into the electronic medical case module and is connected to the consultation form classification, storage, reception and supervision module.

5. A telemedicine system for providing continued care for congenital heart disease according to claim 4, characterized in that: The consultation and treatment plan determination module is connected to a medical record query module, a remote consultation module, a consultation form filling module and an electronic signature module.

6. A telemedicine system for providing continued care for congenital heart disease according to claim 1, characterized in that: The hospital online communication module includes an Internet of Things management platform, a telemedicine service platform, a cardiovascular model acquisition sensor, an integrated analog front-end module, a signal amplifier, a main control processing module, a wireless communication module and a cloud computing server. The Internet of Things management platform is connected to the telemedicine service platform, the telemedicine service platform is connected to the cardiovascular model acquisition sensor, the cardiovascular model acquisition sensor is connected to the integrated analog front-end module, the integrated analog front-end module is connected to the signal amplifier, the signal amplifier is connected to the main control processing module, the main control processing module is connected to the wireless communication module, and the wireless communication module is connected to the cloud computing server.

7. A telemedicine system for providing continued care for congenital heart disease according to claim 6, characterized in that: The telemedicine service platform is connected to a professional medical service module, a digital management module and other industry service platforms of the Internet of Things, and the main control processing module is connected to a function setting module, a positioning module and a data storage module.

8. A telemedicine system for providing continued care for congenital heart disease according to claim 1, characterized in that: The business system management module includes a terminal management module, a support system interface unit, a subscription relationship maintenance unit, a network management data collection unit, a business fault management unit and a subscription relationship management unit. The terminal management module is connected to the support system interface unit, the support system interface unit is connected to the subscription relationship maintenance unit, the subscription relationship maintenance unit is connected to the network management data collection unit, the network management data collection unit is connected to the business fault management unit, and the business fault management unit is connected to the subscription relationship management unit.

9. A telemedicine system for providing continued care for congenital heart disease according to claim 8, characterized in that: The subscription relationship maintenance unit is connected to the terminal management portal unit and the service operation unit.

Citation Information

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