Remote varicosity management and health monitoring system

Through the varicose vein remote management and health monitoring system, combined with anklet data collection and physician judgment, the problem of patients' accuracy in self-identification of varicose veins is solved, early screening and diagnosis of varicose veins are achieved, and the accuracy and timeliness of diagnosis are improved.

CN120674071AInactive Publication Date: 2025-09-19XUZHOU MEDICAL UNIVERSITY
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Patent Information

Application Number
CN202510767591.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-09-19
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention relates to the technical field of varicosity identification, in particular to a varicosity remote management and health monitoring system which comprises a medical terminal used by a medical institution and a user terminal not used by a patient. The medical terminal sends an acquisition authorization protocol to the corresponding user terminal based on the IP information of the user terminal; the user side is used for signing an acquisition authorization protocol, inputting personal information by a patient and collecting associated information of the patient in daily life; the medical end is used for carrying out crowd classification based on the personal information, generating a corresponding investigation table based on the crowd classification of the personal information and sending a daily reminding instruction to the corresponding user end based on the filling condition of the investigation table, and meanwhile, a doctor outputs a corresponding diagnosis result based on the crowd classification and the associated information; the method is used for screening and identifying early-stage varicose vein patients, and doctors are used for accurately judging the invisible varicose vein patients so as to remind the patients to see a doctor in time.
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Description

Technical Field

[0001] The present invention relates to the technical field of varicose vein identification, and in particular to a varicose vein remote management and health monitoring system. Background Art

[0002] Varicose veins are a chronic disease caused by weakened vein walls, incompetent venous valves, or obstructed blood flow, leading to abnormal dilation, tortuosity, and deformation of the veins. Varicose veins are common in people with a family history of varicose veins, those who spend extended periods standing or sitting, and those with physiological factors, such as pregnant women, the obese, and the elderly. Early identification and intervention can slow disease progression and reduce the risk of complications.

[0003] In clinical diagnosis of varicose veins, venography is often used for accurate detection. For busy people today, they often only seek medical attention when they have regular physical examinations or noticeable signs of varicose veins, which can lead to worsening symptoms. Patients can self-monitor and assess varicose vein symptoms by visually observing changes in surface blood vessels and palpating skin nodules.

[0004] However, the self-monitoring method has subjective judgment errors, and it is impossible for ordinary people to accurately judge varicose veins. According to the CEAP grading standard, C0: no visible or palpable signs of venous disease; C1: telangiectasia or reticular veins; C2: varicose veins; C3: edema; C4: skin changes (pigmentation, eczema, etc.); C5: healed venous ulcers; C6: active venous ulcers. Ordinary people cannot distinguish varicose veins from other vascular problems, such as the difference between telangiectasia, bruising or skin allergies; for example, skin pigmentation or ulcers may also be complications of diseases such as diabetes and arteriosclerosis; for example, varicose vein symptoms are affected by factors such as activity level, body position, and temperature. Swelling worsens after sitting for a long time and subsides after rest, which can easily lead to misdiagnosis of the condition. Therefore, the present invention provides a health management system that facilitates patients to judge the manifestations of varicose veins on a daily basis, facilitates the screening of people with early symptoms, and reminds the corresponding patients to seek medical treatment in a timely manner through the secondary judgment of the early symptom population by the physician. Summary of the Invention

[0005] To solve the above problems, the present invention provides a varicose vein remote management and health monitoring system for screening and identifying patients with early varicose veins, and using doctors to accurately judge patients with invisible varicose veins to remind patients to seek medical treatment in time.

[0006] To achieve the above objectives, the technical solution of the present invention is as follows: a varicose vein remote management and health monitoring system, comprising a medical terminal for use by medical institutions and a user terminal for use by patients, wherein the user terminal is used to input and store IP information and then send the IP information to the medical terminal; the medical terminal includes a data acquisition module, a push module, a population screening module, and a physician processing module, wherein the data acquisition module is used to obtain IP information uploaded by the medical institution and send the IP information to the push module;

[0007] The push module is used to send a collection authorization agreement to the corresponding user terminal based on the IP information, and the collection authorization agreement includes the IP information corresponding to the user terminal;

[0008] The user end includes a login module, a data acquisition module, an information entry module and a data transmission module;

[0009] The login module is used for patients to log in and verify their identity information, as well as to sign the collection authorization agreement and send the signed collection authorization agreement to the medical end;

[0010] The information entry module is used for patients to enter their personal information, which is then sent to the data transmission module;

[0011] The data collection module is used to collect relevant information of patients in their daily lives and send the relevant information to the data transmission module;

[0012] The data transmission module is used to encrypt the personal information and related information and send them to the population screening module and the physician processing module respectively based on the signed collection agreement;

[0013] The crowd screening module is used to classify the crowd based on the decrypted personal information. The corresponding user terminals are divided into obese and normal people based on height and weight, sedentary / standing people and normal people based on occupation information, and affected people and normal people based on medical history and genetic history. The corresponding survey form is then generated based on the crowd classification of personal information. The survey form includes recent skin symptoms, duration of leg soreness or heaviness after work, night cramps, and duration of leg soreness or heaviness after exercise. The survey form is then sent to the corresponding user terminal.

[0014] The information entry module is also used to record and store the completion status of the survey form. The population screening module then calculates the risk index based on the completed survey form. When the risk index is higher than the recommended value, it sends daily reminder instructions to the corresponding user terminal and sends the IP information of the user terminal to the physician processing module.

[0015] The physician processing module is used for physicians to log in and record the corresponding diagnosis results, display and process the population classification of personal information based on IP information, and then obtain the decrypted related information based on the IP information. The physician outputs the corresponding diagnosis results based on the population classification and related information.

[0016] Furthermore, the data acquisition module includes a manual recording module and an auxiliary acquisition module;

[0017] The manual recording module is used for patients to manually input relevant information after logging into the user terminal, and save the relevant information in the form of a timetable;

[0018] The auxiliary acquisition module is a foot ring worn on the patient's foot, which is equipped with a control panel, gyroscope module, camera module, power module and communication module;

[0019] The gyroscope module is used to collect the patient's motion data in real time and send the motion data to the control panel;

[0020] The camera module is used to collect image data of the patient's legs in real time and send the image data to the control panel for storage; the power module is used to supply power to the control panel, gyroscope module, camera module and communication module; the communication module is used to establish a communication connection between the control panel and the data transmission module;

[0021] The control panel is used to start and shut down the camera module based on motion data.

[0022] Furthermore, the manual recording module is also used to establish a blank schedule. The blank schedule establishes different time periods based on the normal work and rest time, and then generates corresponding temporary status recording points based on the movement status recorded in the current time period. The temporary status recording points are marked in the blank schedule, and then the blank schedule is sent to the user end for display.

[0023] Furthermore, the control panel is also used to record and store the motion status corresponding to the motion data of the current time period;

[0024] If the current exercise state is a long-term sitting or standing state, the duration is recorded and then sent to the data transmission module through the communication module;

[0025] If the current motion state is an exercise state, the continuous exercise time is recorded, and the continuous exercise time of the motion data is sent to the data transmission module through the communication module. At the same time, an exercise type input instruction is sent to the user terminal, and a first start instruction is sent to the camera module. The camera module then marks the first image data with the exercise time based on the first image data corresponding to the first start instruction;

[0026] The data transmission module is used to mark the continuous exercise time based on the exercise type input by the patient, then generate the corresponding post-exercise detection time based on the exercise type, and send a second start-up instruction to the camera module based on the post-exercise detection time. The camera module then marks the second image data based on the post-exercise detection time based on the second image data corresponding to the second start-up instruction.

[0027] Furthermore, the control panel is also used to compare the current time with the set sleep schedule. If the current time is consistent with the sleep schedule, a sleep command is sent to the camera module, and a timer start command is sent to the gyroscope module; if the current time is inconsistent with the sleep schedule, a standby command is sent to the camera module and the gyroscope module.

[0028] Furthermore, the physician processing module is also used to sort the associated information in chronological order, distinguish and mark the schedule of a day based on different exercise states, and the timetable lengths corresponding to the associated information marked by the previous and next days are consistent.

[0029] Furthermore, the population screening module is also used to add real-time follow-up instructions based on IP information when the risk index is higher than the recommended value. Based on the real-time follow-up instructions, the user end manually records the patient's reminders to fill in related information according to the schedule within the set continuous reminder time, and the auxiliary collection module collects the related information according to the schedule.

[0030] Furthermore, the user terminal also includes a data sharing module, which is used for the current user terminal to establish data sharing with other user terminals;

[0031] The crowd screening module is also used to compare the age of personal information with the limit value. If the age is greater than the limit value, a sharing instruction is sent to the data sharing module, and the data sharing module is used to send reminder instructions to the corresponding user terminal based on a schedule; if the age is less than the limit value, a standby instruction is sent to the data sharing module.

[0032] Furthermore, the control panel is also used to obtain the communication quality of the communication module and compare the communication quality with the set standard value. If the communication quality is greater than the standard value, a normal transmission instruction is sent to the communication module; if the communication quality is less than the standard value, a temporary storage instruction is sent to the communication module. When the communication quality is greater than the standard value, the motion data and image data collected by the data transmission module are compared with the data temporarily stored in the communication module for consistency. If they are consistent, a deletion instruction is sent to the communication module; if they are inconsistent, an update upload instruction is sent to the communication module.

[0033] Furthermore, a temperature sensor for real-time temperature measurement is fixedly connected to the outer wall of the foot ring;

[0034] The control panel is also used to add a pre-exercise mark to the temperature data at the current time when the current exercise state is the exercise state; add a post-exercise mark to the temperature data at the current time based on the post-exercise detection time, and then send the temperature data to the data transmission module through the communication module.

[0035] The above scheme has the following beneficial effects:

[0036] 1. This solution, through the coordinated use of the medical end and the user end, can widely recommend treatment to hospital patients, conduct preliminary screening of personal information that has signed the collection authorization agreement, and ensure the security of patients' personal information; send survey forms to targeted groups, remind patients based on the risk index of the survey form, and collect and process related information at the same time to screen and identify patients with early varicose veins, and then use doctors to make accurate judgments on patients with invisible varicose veins to remind patients to seek medical treatment in time.

[0037] 2. This solution meets the usage needs and equipment collection needs of different patients through the setting of manual recording modules and auxiliary collection modules; through active or passive collection, it is convenient to record related information according to one's wishes, so as to provide a reference basis for subsequent physician diagnosis.

[0038] 3. This solution uses motion status recognition to determine whether the patient is exercising or working, and then collects corresponding image data to determine the patient's skin condition and edema after exercise, providing a basis for doctors to diagnose varicose veins.

[0039] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned by practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Figure 1 Schematic diagram of the framework of an embodiment of the varicose vein remote management and health monitoring system of the present invention;

[0041] Figure 2 Schematic diagram of the process of an embodiment of the varicose vein remote management and health monitoring system of the present invention. DETAILED DESCRIPTION

[0042] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0043] The following is further described in detail through specific implementation methods:

[0044] Example 1:

[0045] As attached Figures 1 to 2 As shown: A varicose vein remote management and health monitoring system includes a medical terminal for use by medical institutions and a user terminal not for use by patients. The user terminal is used to enter and store IP information and then send the IP information to the medical terminal. In this embodiment, the medical terminal is, for example, a website or APP for connecting to the server of the medical institution; the user terminal is, for example, an APP and WeChat applet for login, etc. The medical terminal includes a data acquisition module, a push module, a population screening module and a physician processing module. The data acquisition module is used to obtain IP information uploaded by the medical institution and send the IP information to the push module.

[0046] For example, through the coordinated use of the medical and user terminals, hospital patient recommendations can be widely disseminated. A brief introduction to the patient can be provided through the collection authorization agreement to confirm the patient's participation, facilitate the subsequent collection of patient-related data, and reduce the processing of large amounts of data to reduce the computational burden. The personal information of those who have signed the collection authorization agreement is initially screened to further determine the matching of eligible groups. Encryption is used during data transmission to protect the privacy and security of the patient's personal information.

[0047] The push module is used to send a collection authorization agreement to the corresponding user terminal based on the IP information. The collection authorization agreement includes information collection details, collection function descriptions, and the IP information of the corresponding user terminal. In another embodiment, the push module is used to send a link registration SMS based on a pre-delivered suspicious group of people. Users can register the user terminal based on the link registration SMS, and then send the collection authorization agreement to the corresponding user terminal based on the IP information of the reply link SMS. Suspicious groups include people in specific age groups and specific occupations.

[0048] The user end includes a login module, a data collection module, an information entry module and a data transmission module; the login module is used for patients to log in and verify their identity information, as well as to sign a collection authorization agreement and send the signed collection authorization agreement to the medical end; the information entry module is used for patients to enter personal information, including height, weight, occupational information, medical history and genetic history, and then send the personal information to the data transmission module.

[0049] The data acquisition module is used to collect relevant information about patients in their daily lives, including movement status, lower limb skin surface symptoms and night cramps, and send the relevant information to the data transmission module; the data acquisition module includes a manual recording module and an auxiliary acquisition module.

[0050] The manual recording module is used by the patient to manually enter the corresponding related information after logging into the user terminal, and the related information is saved and processed as a text in the form of a timetable. The auxiliary acquisition module is used for an anklet worn on the patient's foot, and the anklet is equipped with a control panel, a gyroscope module, a camera module, a power module, and a communication module. The gyroscope module is used to collect the patient's motion data in real time and send the motion data to the control panel. The gyroscope module, camera module, and communication module are all existing technologies and will not be described in detail in this embodiment. The camera module is used to collect image data of the patient's legs in real time and send the image data to the control panel for storage. The power module is used to power the control panel, gyroscope module, camera module, and communication module. The communication module is used to establish a communication connection between the control panel and the data transmission module. The control panel is used to activate and deactivate the camera module based on the motion data.

[0051] The manual recording module is also used to create a blank schedule. The blank schedule establishes different time periods based on the normal work and rest time, and then generates corresponding temporary status recording points based on the movement status recorded in the current time period. The temporary status recording points are marked in the blank schedule, and then the blank schedule is sent to the user end for display.

[0052] For example, during the manual recording process, planning and processing are carried out through each time period in the blank schedule to provide a reference for the patient's recording process, so as to facilitate the timely recording and processing of related information in chronological order; and then temporary status recording points are marked to remind patients to record their symptoms after exercise, such as the duration of leg soreness or heaviness after exercise, lower limb skin surface symptoms, edema and night cramps, to provide data support for the doctor's subsequent diagnosis and provide protection for the patient's health.

[0053] The data transmission module is used to encrypt the personal information and related information and send them to the population screening module and the physician processing module based on the signed collection agreement; in this embodiment, the encryption method of personal information and related information is the existing technology, such as hash algorithm, APN encryption, etc., which will not be repeated in this embodiment.

[0054] The population screening module is used to classify the population based on the decrypted personal information, and to divide the corresponding user terminals into obese and normal people based on height and weight, into sedentary / standing people and normal people based on occupational information, and into affected people and normal people based on medical history and genetic history; then, a corresponding survey form is generated based on the population classification of personal information, and the survey form includes recent surface skin symptoms, duration of leg soreness or heaviness after work, night cramps, and duration of leg soreness or heaviness after exercise, and the survey form is sent to the corresponding user terminal.

[0055] The information entry module is also used to record and store the completion status of the survey form. The population screening module then calculates the risk index based on the completed survey form. When the risk index is higher than the recommended value, it sends daily reminder instructions to the corresponding user terminal and sends the IP information corresponding to the user terminal to the physician processing module.

[0056] The physician processing module is used for physicians to log in and record the corresponding diagnosis results, display and process the population classification of personal information based on IP information, and then obtain the decrypted related information based on the IP information. The physician outputs the corresponding diagnosis results based on the population classification and related information.

[0057] In another embodiment, the physician processing module classifies and processes different diagnostic results, and then establishes a neural network model based on the relationship between the diagnostic results, population classification and relationship information. In this embodiment, the establishment of the neural network model is an existing technology and will not be repeated. In the subsequent management process, the population classification and related information are automatically identified and judged by the neural network model to output the corresponding diagnostic results and save them; IP information with low correlation based on population classification and related information is sent to the physician for display processing to update the neural network model based on the diagnosis results after the physician's diagnosis. The neural network model is used to replace the physician to diagnose and judge a large number of repeated patients with invisible varicose veins, so as to reduce the workload of the physician. Through the continuously updated neural diagnosis model, the accuracy and reliability of the diagnostic results are improved, so as to remind patients to seek medical treatment in time.

[0058] For example, patients are processed through the population screening module to obtain patients with a high degree of association with varicose veins. Patients are then reminded through the information entry module to ensure patient participation, to ensure the accuracy and authenticity of the associated information, and to facilitate doctors to make accurate judgments on patients with invisible varicose veins, so as to remind patients to seek medical treatment in a timely manner.

[0059] Among them, the control panel is also used to record and store the motion status corresponding to the motion data of the current time period; if the current motion status is a sedentary or standing state, the duration is recorded, and then the duration is sent to the data transmission module through the communication module; if the current motion status is an exercise state, the continuous exercise time is recorded, and then the continuous exercise time of the motion data is sent to the data transmission module through the communication module, and at the same time, an exercise type input instruction is sent to the user end, and a first start instruction is sent to the camera module. The camera module then marks the first image data with the exercise time based on the first image data corresponding to the first start instruction.

[0060] The data transmission module is used to mark the continuous exercise time based on the exercise type input by the patient, then generate the corresponding post-exercise detection time based on the exercise type, and send a second start-up instruction to the camera module based on the post-exercise detection time. The camera module then marks the second image data based on the post-exercise detection time based on the second image data corresponding to the second start-up instruction.

[0061] For example, by recording the duration and continuous exercise time, the long-term continuous state of the patient during daily work can be confirmed to determine the extent of the impact of work on varicose veins, thereby providing support for the doctor's diagnosis; based on the exercise state and exercise intensity, the corresponding first image data and second image data are obtained, and the first image data and second image data are used to determine the patient's corresponding skin condition and edema after exercise, thereby providing a judgment basis for the doctor to diagnose varicose veins.

[0062] The physician processing module is also used to sort the related information in chronological order, and to distinguish and mark the daily schedule based on different movement states, such as the sedentary or long-standing state is marked in yellow, and the exercise state is marked in red. The time marks corresponding to the first start instruction and the second start instruction are flashing, and the sedentary or long-standing state and the exercise state are displayed as different icons respectively, and the time schedule length corresponding to the related information marked by the previous and next days is consistent.

[0063] For example, by displaying timetables for different time periods, doctors can intuitively confirm the patient's work and exercise status during the day, and then confirm the status and performance at special time points in turn to determine the symptoms of varicose veins, providing a basis for diagnosis of varicose veins.

[0064] Example 2:

[0065] The difference from Example 1 is that the control panel is also used to compare the current time with the set sleep schedule. If the current time is consistent with the sleep schedule, a sleep command is sent to the camera module, and a timer start command is sent to the gyroscope module; if the current time is inconsistent with the sleep schedule, a standby command is sent to the camera module and the gyroscope module.

[0066] For example, since night cramps usually occur in the morning when the patient is about to wake up, the working hours of the camera module and the gyroscope module are controlled to ensure that the patient's leg cramps are recorded. At the same time, the working energy consumption and the generation of additional data are reduced, the use time of the anklet is extended, and the generation of unnecessary data is reduced. By reducing data calculations, the fluency of subsequent data processing can be improved.

[0067] Example 3:

[0068] The difference from Example 2 is that the population screening module is also used to add real-time follow-up instructions based on IP information when the risk index is higher than the recommended value. Based on the real-time follow-up instructions, the user terminal uses the manual recording module to remind the patient to fill in the related information according to the schedule within the set continuous reminder time, and the auxiliary collection module collects the related information according to the schedule.

[0069] For example, when patients first receive information about possible disease risks, they are most proactive in terms of attention and participation, and are usually highly cooperative in filling out related information and collecting information, making it easier to obtain more accurate related data. By promptly reminding patients to update or collect related data, more accurate data support can be provided to physicians, ensuring the accuracy of varicose vein diagnosis.

[0070] Example 4:

[0071] The difference from Example 3 is that the user terminal also includes a data sharing module, which is used for the current user terminal to establish data sharing with other user terminals; the population screening module is also used to compare the age of the personal information with the limit value. If the age is greater than the limit value, a sharing instruction is sent to the data sharing module, and the data sharing module is used to send a reminder instruction to the corresponding user terminal based on a schedule; if the age is less than the limit value, a standby instruction is sent to the data sharing module.

[0072] For example, since there are elderly people among the patients suffering from varicose veins, the sharing settings of the data sharing module can help family members understand whether the elderly have filled in the related data on time. At the same time, the elderly have declining memory, and it is easy for them to fill in the symptoms inaccurately during the subsequent recall process. By sending reminder instructions to assist the elderly in filling in the data, the accurate collection and processing of the related data can be achieved, which is convenient for the doctor to make a subsequent diagnosis.

[0073] Example 5:

[0074] The difference from Example 4 is that the control panel is also used to obtain the communication quality of the communication module, and compare the communication quality with the set standard value. If the communication quality is greater than the standard value, a normal transmission instruction is sent to the communication module; if the communication quality is less than the standard value, a temporary storage instruction is sent to the communication module. When the communication quality is greater than the standard value, the motion data and image data collected by the data transmission module are compared with the data temporarily stored in the communication module for consistency. If they are consistent, a deletion instruction is sent to the communication module; if they are inconsistent, an update upload instruction is sent to the communication module.

[0075] For example, since the auxiliary acquisition module may be affected by the communication quality and may cause data transmission loss, real-time comparison and processing of communication quality is performed to ensure the accuracy and clarity of the data transmission module during data reception, thereby reducing errors caused by inaccurate data in subsequent data processing and improving the accuracy of subsequent physician diagnosis results.

[0076] Example 6:

[0077] The difference from Example 5 is that a temperature sensor for measuring temperature data in real time is also fixedly connected to the outer wall of the foot ring; the control panel is also used to add a pre-exercise mark to the temperature data at the current time when the current exercise state is the exercise state; add a post-exercise mark to the temperature data at the current time based on the post-exercise detection time, and then send the temperature data to the data transmission module through the communication module.

[0078] For example, temperature data can be marked and processed to determine whether there are abnormal changes in the patient's surface skin temperature before and after exercise, thereby providing auxiliary judgment basis for doctors' diagnosis.

[0079] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.

Claims

1. A varicose vein remote management and health monitoring system, comprising a medical terminal for use by medical institutions and a user terminal for use by patients, wherein the user terminal is used to input and store IP information and then send the IP information to the medical terminal; characterized in that: The medical end includes a data acquisition module, a push module, a population screening module, and a physician processing module. The data acquisition module is used to obtain the IP information uploaded by the medical institution and send the IP information to the push module; The push module is used to send a collection authorization agreement to the corresponding user terminal based on the IP information, and the collection authorization agreement includes the IP information corresponding to the user terminal; The user end includes a login module, a data acquisition module, an information entry module and a data transmission module; The login module is used for patients to log in and verify their identity information, as well as to sign the collection authorization agreement and send the signed collection authorization agreement to the medical end; The information entry module is used for patients to enter their personal information, which is then sent to the data transmission module; The data acquisition module is used to collect relevant information of patients in their daily lives and send the relevant information to the data transmission module; The data transmission module is used to encrypt the personal information and related information and send them to the population screening module and the physician processing module respectively based on the signed collection agreement; The crowd screening module is used to classify the crowd based on the decrypted personal information. The corresponding users are divided into obese and normal people based on height and weight, sedentary / standing people and normal people based on occupation information, and affected people and normal people based on medical history and genetic history. The corresponding survey form is then generated based on the crowd classification of personal information. The information entry module is also used to record and store the completion status of the survey form. The population screening module then calculates the risk index based on the completed survey form. When the risk index is higher than the recommended value, it sends daily reminder instructions to the corresponding user terminal and sends the IP information of the user terminal to the physician processing module. The physician processing module is used for physicians to log in and record the corresponding diagnosis results, display and process the population classification of personal information based on IP information, and then obtain the decrypted related information based on the IP information. The physician outputs the corresponding diagnosis results based on the population classification and related information.

2. The varicose vein remote management and health monitoring system according to claim 1, characterized in that: The data acquisition module includes a manual recording module and an auxiliary acquisition module; The manual recording module is used for patients to manually input relevant information after logging into the user terminal, and save the relevant information in the form of a timetable; The auxiliary acquisition module is a foot ring worn on the patient's foot, which is equipped with a control panel, gyroscope module, camera module, power module and communication module; The gyroscope module is used to collect the patient's motion data in real time and send the motion data to the control panel; The camera module is used to collect image data of the patient's legs in real time and send the image data to the control panel for storage; the power module is used to supply power to the control panel, gyroscope module, camera module and communication module; The communication module is used to establish a communication connection between the control panel and the data transmission module; The control panel is used to start and shut down the camera module based on motion data. The manual recording module and the auxiliary collection module are set up to meet the usage needs and equipment collection needs of different patients. The manual recording module allows patients to record related information according to their wishes when they initially believe they are not ill, thereby providing a reference basis for subsequent physician diagnosis; at the same time, it reduces patients' medical expenses during uncertain diagnosis and reduces the waste of medical resources. The auxiliary acquisition module replaces manual recording of movement conditions and leg skin information to reduce the tediousness of manual recording. At the same time, real-time recording is used to reduce the subjective nature of the manual recording process, thereby reducing the interference of objective factors on subsequent physician diagnosis.

3. The varicose vein remote management and health monitoring system according to claim 2, characterized in that: The manual recording module is also used to create a blank schedule. The blank schedule establishes different time periods based on the normal work and rest time, and then generates corresponding temporary status recording points based on the movement status recorded in the current time period. The temporary status recording points are marked in the blank schedule, and then the blank schedule is sent to the user end for display.

4. The varicose vein remote management and health monitoring system according to claim 3, characterized in that: The control panel is also used to record and store the motion status corresponding to the motion data of the current time period; If the current exercise state is a long-term sitting or standing state, the duration is recorded and then sent to the data transmission module through the communication module; If the current motion state is an exercise state, the continuous exercise time is recorded, and the continuous exercise time of the motion data is sent to the data transmission module through the communication module. At the same time, an exercise type input instruction is sent to the user terminal, and a first start instruction is sent to the camera module. The camera module then marks the first image data with the exercise time based on the first image data corresponding to the first start instruction; The data transmission module is used to mark the continuous exercise time based on the exercise type input by the patient, then generate the corresponding post-exercise detection time based on the exercise type, and send a second start-up instruction to the camera module based on the post-exercise detection time. The camera module then marks the second image data based on the post-exercise detection time based on the second image data corresponding to the second start-up instruction.

5. The varicose vein remote management and health monitoring system according to claim 4, characterized in that: The control panel is also used to compare the current time with the set sleep schedule. If the current time is consistent with the sleep schedule, a sleep command is sent to the camera module and a timer start command is sent to the gyroscope module; if the current time is inconsistent with the sleep schedule, a standby command is sent to the camera module and the gyroscope module.

6. The varicose vein remote management and health monitoring system according to claim 5, characterized in that: The physician processing module is further used to sort the associated information in chronological order, distinguish and mark the schedule of a day based on different exercise states, and the length of the schedule corresponding to the associated information marked by the previous and next days is consistent.

7. The varicose vein remote management and health monitoring system according to claim 6, characterized in that: The population screening module is also used to add real-time follow-up instructions based on IP information when the risk index is higher than the recommended value. Based on the real-time follow-up instructions, the user end will use the manual recording module to remind the patient to fill in the related information according to the schedule within the set continuous reminder time, and the auxiliary collection module will collect the related information according to the schedule.

8. The varicose vein remote management and health monitoring system according to claim 7, characterized in that: The user terminal also includes a data sharing module, which is used for the current user terminal to establish data sharing with other user terminals; The crowd screening module is also used to compare the age of personal information with the limit value. If the age is greater than the limit value, a sharing instruction is sent to the data sharing module, and the data sharing module is used to send reminder instructions to the corresponding user terminal based on a schedule; if the age is less than the limit value, a standby instruction is sent to the data sharing module.

9. The varicose vein remote management and health monitoring system according to claim 8, characterized in that: The control panel is also used to obtain the communication quality of the communication module and compare the communication quality with the set standard value. If the communication quality is greater than the standard value, a normal transmission instruction is sent to the communication module; if the communication quality is less than the standard value, a temporary storage instruction is sent to the communication module. When the communication quality is greater than the standard value, the motion data and image data collected by the data transmission module are compared with the data temporarily stored in the communication module for consistency. If they are consistent, a deletion instruction is sent to the communication module; if they are inconsistent, an update upload instruction is sent to the communication module.

10. The varicose vein remote management and health monitoring system according to claim 9, characterized in that: The outer wall of the foot ring is also fixedly connected with a temperature sensor for real-time temperature measurement; The control panel is also used to add a pre-exercise mark to the temperature data at the current time when the current exercise state is the exercise state; add a post-exercise mark to the temperature data at the current time based on the post-exercise detection time, and then send the temperature data to the data transmission module through the communication module.