Cardiovascular health status assessment system and method
Through the cardiovascular health status assessment system, the coordinated work of multiple modules is solved, and the problem that home testing indicators are difficult to correspond to medical institutions is achieved, real-time monitoring and evaluation of cardiovascular health status is provided, personalized health suggestions are provided, and the functionality and accuracy of home testing is improved.
Patent Information
- Application Number
- CN202510081510.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-05-13
AI Technical Summary
The evaluation indicators provided by home physical testing medical instruments in the prior art are difficult to correspond to the evaluation indicator results of medical institutions, and medical institutions cannot evaluate the test results of physical testing medical instruments used by users. The home testing function used by users is poor, and the hospital still needs to re-test.
It provides a cardiovascular health status assessment system, including a connection module, acquisition module, body monitoring module, diet and food monitoring module, analysis and evaluation module, risk calculation and evaluation module, early warning module and data transmission storage module. Through the coordinated work of these modules, obtain physical examination reports, monitor the body and diet in real time, conduct analysis and evaluation and risk calculation, and provide health advice and early warning.
Real-time monitoring and evaluation of the user's cardiovascular health status is achieved, personalized health advice is provided, and the need for repeated testing in the hospital is reduced, and the functionality and accuracy of home testing is improved.
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Figure CN119993490A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of cardiovascular technology, and in particular to a cardiovascular health status assessment system and method. Background Art
[0002] The heart is a hollow muscular organ located in the middle of the chest cavity. It is divided into two chambers, left and right, by a partition. Each chamber is divided into two parts, the atrium located in the upper part and the ventricle located in the lower part. The atrium collects blood entering the heart, and the ventricle ejects blood out of the heart. The inlet and outlet of the ventricle have valves to ensure unidirectional blood flow. Under different physiological conditions, the metabolic levels of various organs and tissues of the human body are different, and the needs for blood flow are also different. Cardiovascular activity can change cardiac output and peripheral resistance under the mediation of the body's nerves and body fluids, and coordinate the blood flow distribution between various organs and tissues to meet the needs of various organs and tissues for blood flow. The evaluation indicators provided by the common home physical examination medical instruments in the existing technology are difficult to correspond to the evaluation indicator results provided by medical institutions, and medical institutions cannot conduct evaluation work based on the test results of the physical examination medical instruments used by users. In addition, the detection functionality of the home physical examination medical instruments used by users is poor, and hospitals still need to re-examine users. Summary of the invention
[0003] The purpose of the present invention is to provide a cardiovascular health status assessment system and method to solve the problem raised in the above background technology that the evaluation indicators provided by the common home physical examination medical instruments in the current prior art are difficult to correspond to the evaluation indicator results provided by medical institutions, and the medical institutions are unable to perform evaluation work based on the test results of the physical examination medical instruments used by the users, and the detection functionality of the home physical examination medical instruments used by the users themselves is poor, and the hospital still needs to re-examine the users.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a cardiovascular health status assessment system and method, comprising a connection module, an acquisition module, a body monitoring module, a diet and food monitoring module, an analysis and evaluation module, a risk calculation and evaluation module, an early warning module and a data transmission and storage module, wherein the output end of the connection module is unidirectionally connected to the input end of the acquisition module, the output end of the acquisition module is unidirectionally connected to the input end of the body monitoring module, the output end of the body monitoring module is unidirectionally connected to the input end of the diet and food monitoring module, the output end of the diet and food monitoring module is unidirectionally connected to the input end of the analysis and evaluation module, the output end of the analysis and evaluation module is unidirectionally connected to the input end of the risk calculation and evaluation module, the output end of the risk calculation and evaluation module is unidirectionally connected to the input end of the data transmission and storage module, and the output ends of the body monitoring module and the risk calculation and evaluation module are both unidirectionally connected to the input end of the early warning module;
[0005] The acquisition module is used to obtain the user's physical examination report in the hospital;
[0006] The body monitoring module is used to monitor the user's body in real time;
[0007] The diet food monitoring module is used to monitor the user's daily diet food in real time;
[0008] The analysis and evaluation module is used to analyze and evaluate the cardiovascular health status according to the user's physical monitoring conditions and daily food monitoring conditions;
[0009] The risk calculation and assessment module is used to calculate the risk assessment of the user's cardiovascular health status based on the data results generated by the operation of the body monitoring module, the diet monitoring module and the analysis and assessment module, so as to provide advice for the user's health and prevent the occurrence of diseases;
[0010] The warning module is used to set thresholds for physical conditions and daily diet, and to issue warnings in a timely manner once the thresholds are exceeded;
[0011] The data transmission storage module is used to store all data generated by the user during use and to transmit the data during use.
[0012] As a preferred solution of the present invention: the connection module is used for connection via two methods, namely, Bluetooth and WIFI.
[0013] As a preferred solution of the present invention: the acquisition module includes a data receiving unit, a data acquisition unit and a data sorting unit, and the output end of the acquisition module is unidirectionally connected to the input end of the data receiving unit, the data acquisition unit and the data sorting unit;
[0014] The data receiving unit is used to receive relevant examination data of the physical condition;
[0015] The data collection unit is used to collect cardiovascular health-related data of the user;
[0016] The data sorting unit is used to perform overall processing on the data received and collected by the data receiving unit and the data collecting unit.
[0017] As a preferred solution of the present invention: the body monitoring module includes a blood pressure sensor unit, a blood sugar sensor unit, a blood fat sensor unit and a heart rate sensor unit, and the output end of the body monitoring module is unidirectionally connected to the input end of the blood pressure sensor unit, the blood sugar sensor unit, the blood fat sensor unit and the heart rate sensor unit;
[0018] The blood pressure sensor unit is used to monitor the user's blood pressure in real time;
[0019] The blood sugar sensor unit is used to monitor the blood sugar status of the user in real time;
[0020] The blood lipid sensor unit is used to monitor the blood lipid status of the user in real time;
[0021] The heart rate sensor unit is used to monitor and sense the user's heart rate in real time.
[0022] As a preferred solution of the present invention: the diet food monitoring module includes an image taking unit, an image recognition unit and a food analysis unit, and the output end of the diet food monitoring module is unidirectionally connected to the input end of the image taking unit, the image recognition unit and the food analysis unit;
[0023] The image taking unit is used to take photos of the user's daily diet and store the images;
[0024] The image recognition unit is used to perform AI recognition on the food in the photo;
[0025] The food analysis unit is used to analyze relevant information of the identified food.
[0026] As a preferred solution of the present invention: the analysis and evaluation module includes an AI algorithm unit, an analysis unit and an evaluation unit, and the output end of the analysis and evaluation module is unidirectionally connected to the input end of the AI algorithm unit, the analysis unit and the evaluation unit;
[0027] The AI algorithm unit is used to provide algorithm operation for the analysis unit and the evaluation unit through the AI algorithm;
[0028] The analysis unit is used to perform algorithm analysis based on the AI algorithm unit, the user's physical monitoring status and daily diet analysis results;
[0029] The evaluation unit is used to evaluate the health status of the user after completing the cardiovascular analysis.
[0030] As a preferred solution of the present invention: the risk calculation and evaluation module includes a data aggregation unit, a relationship model establishment unit and a risk evaluation unit, and the output end of the risk calculation and evaluation module is unidirectionally connected to the input end of the data aggregation unit, the relationship model establishment unit and the risk evaluation unit;
[0031] The data aggregation unit is used to aggregate the user's wearing and usage data and historical related data;
[0032] The relationship model building unit is used to build a relationship model through an AI algorithm when the user's daily diet and cardiovascular health status change;
[0033] The risk assessment unit is used to perform risk assessment on the cardiovascular health of the user through the relationship module established by the relationship model establishment unit.
[0034] As a preferred solution of the present invention: the warning module includes a threshold setting unit, a central connection unit and an exceeding alarm unit, and the output end of the warning module is unidirectionally connected to the input end of the threshold setting unit, the central connection unit and the exceeding alarm unit;
[0035] The threshold setting unit is used to set a threshold for the user's cardiovascular related monitoring values;
[0036] The central connection unit is used to perform central connection according to the real-time monitoring of the changes in the cardiovascular status of the user, so as to ensure the smoothness of the data connection;
[0037] The exceeding alarm unit is used to promptly give an alarm after exceeding a set threshold value of the cardiovascular health status of the user.
[0038] As a preferred solution of the present invention: the data transmission storage module comprises a data storage unit, a data transmission unit and a data combing unit, and the output end of the data transmission storage module is unidirectionally connected to the input end of the data storage unit, the data transmission unit and the data combing unit;
[0039] The data combing unit is used to comb and organize all the data generated by the user during use;
[0040] The data storage unit is used to store the user-related data after sorting and arranging them;
[0041] The data transmission unit is used to transmit the data stored in the data storage unit according to the needs of use.
[0042] As a preferred embodiment of the present invention: a method for evaluating cardiovascular health status comprises the following steps:
[0043] S1: Perform a full body examination of the user's body through hospital medical body examination equipment;
[0044] S2: Obtain the user's physical signs and historical test data reports;
[0045] S3: Real-time monitoring of the user's body based on detection data;
[0046] S4: Monitor the user's daily diet;
[0047] S5: Analyze and evaluate based on physical and dietary monitoring;
[0048] S6: Calculate and assess the risk based on the user's daily diet, exercise and physical monitoring data;
[0049] S7: Store the data generated by the user during use, and provide timely warnings based on the user's physical condition.
[0050] Compared with the prior art, the beneficial effects of the present invention are as follows: by adding a body monitoring module and a diet monitoring module, the present invention realizes that the user's body status information can be monitored during use, and at the same time, the user's daily diet is monitored in real time, so as to provide a favorable reference for the subsequent cardiovascular health status assessment; by adding an analysis and evaluation module, it is possible to analyze and evaluate the cardiovascular health status according to the user's body monitoring situation and daily food monitoring situation; by adding a risk calculation and evaluation module, it is possible to calculate the risk assessment of the user's cardiovascular health status according to the data results generated by the operation of the body monitoring module, the diet monitoring module and the analysis and evaluation module, thereby providing advice for the user's health and preventing the occurrence of diseases; and by adding an early warning module, it is possible to set thresholds for physical conditions and daily diet, and then promptly issue early warnings once the thresholds are exceeded. BRIEF DESCRIPTION OF THE DRAWINGS
[0051] Figure 1 is a system block diagram of the present invention;
[0052] Figure 2 The figure is a flow chart of the method of the present invention. DETAILED DESCRIPTION
[0053] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0054] See also Figure 1 to Figure 2The present invention provides a technical solution: a cardiovascular health status assessment system and method, comprising a connection module, an acquisition module, a body monitoring module, a diet food monitoring module, an analysis and evaluation module, a risk calculation and evaluation module, an early warning module and a data transmission and storage module, wherein the output end of the connection module is unidirectionally connected to the input end of the acquisition module, the output end of the acquisition module is unidirectionally connected to the input end of the body monitoring module, the output end of the body monitoring module is unidirectionally connected to the input end of the diet food monitoring module, the output end of the diet food monitoring module is unidirectionally connected to the input end of the analysis and evaluation module, the output end of the analysis and evaluation module is unidirectionally connected to the input end of the risk calculation and evaluation module, the output end of the risk calculation and evaluation module is unidirectionally connected to the input end of the data transmission and storage module, and the output ends of the body monitoring module and the risk calculation and evaluation module are both unidirectionally connected to the input end of the early warning module;
[0055] The acquisition module is used to obtain the user's physical examination report in the hospital;
[0056] The body monitoring module is used to monitor the user's body in real time;
[0057] The diet food monitoring module is used to monitor the user's daily diet food in real time;
[0058] The analysis and evaluation module is used to analyze and evaluate the cardiovascular health status according to the user's physical monitoring conditions and daily food monitoring conditions;
[0059] The risk calculation and assessment module is used to calculate the risk assessment of the user's cardiovascular health status based on the data results generated by the operation of the body monitoring module, the diet monitoring module and the analysis and assessment module, so as to provide advice for the user's health and prevent the occurrence of diseases;
[0060] The warning module is used to set thresholds for physical conditions and daily diet, and to issue warnings in a timely manner once the thresholds are exceeded;
[0061] The data transmission storage module is used to store all data generated by the user during use and to transmit the data during use.
[0062] The connection module is used for connection via Bluetooth and WIFI.
[0063] The acquisition module includes a data receiving unit, a data acquisition unit and a data sorting unit, and the output end of the acquisition module is unidirectionally connected to the input end of the data receiving unit, the data acquisition unit and the data sorting unit;
[0064] The data receiving unit is used to receive relevant examination data of the physical condition;
[0065] The data collection unit is used to collect cardiovascular health-related data of the user;
[0066] The data sorting unit is used to perform overall processing on the data received and collected by the data receiving unit and the data collecting unit.
[0067] The body monitoring module includes a blood pressure sensor unit, a blood sugar sensor unit, a blood lipid sensor unit and a heart rate sensor unit, and the output end of the body monitoring module is unidirectionally connected to the input end of the blood pressure sensor unit, the blood sugar sensor unit, the blood lipid sensor unit and the heart rate sensor unit;
[0068] The blood pressure sensor unit is used to monitor the user's blood pressure in real time;
[0069] The blood sugar sensor unit is used to monitor the blood sugar status of the user in real time;
[0070] The blood lipid sensor unit is used to monitor the blood lipid status of the user in real time;
[0071] The heart rate sensor unit is used to monitor and sense the user's heart rate in real time.
[0072] The diet food monitoring module comprises an image taking unit, an image recognition unit and a food analysis unit, and the output end of the diet food monitoring module is unidirectionally connected to the input end of the image taking unit, the image recognition unit and the food analysis unit;
[0073] The image taking unit is used to take photos of the user's daily diet and store the images;
[0074] The image recognition unit is used to perform AI recognition on the food in the photo;
[0075] The food analysis unit is used to analyze relevant information of the identified food.
[0076] The analysis and evaluation module includes an AI algorithm unit, an analysis unit and an evaluation unit, and the output ends of the analysis and evaluation module are unidirectionally connected to the input ends of the AI algorithm unit, the analysis unit and the evaluation unit;
[0077] The AI algorithm unit is used to provide algorithm operation for the analysis unit and the evaluation unit through the AI algorithm;
[0078] The analysis unit is used to perform algorithm analysis based on the AI algorithm unit, the user's physical monitoring status and daily diet analysis results;
[0079] The evaluation unit is used to evaluate the health status of the user after completing the cardiovascular analysis.
[0080] The risk calculation and evaluation module includes a data aggregation unit, a relationship model establishment unit and a risk evaluation unit, and the output end of the risk calculation and evaluation module is unidirectionally connected to the input end of the data aggregation unit, the relationship model establishment unit and the risk evaluation unit;
[0081] The data aggregation unit is used to aggregate the user's wearing and usage data and historical related data;
[0082] The relationship model building unit is used to build a relationship model through an AI algorithm when the user's daily diet and cardiovascular health status change;
[0083] The risk assessment unit is used to perform risk assessment on the cardiovascular health of the user through the relationship module established by the relationship model establishment unit.
[0084] Wherein, the warning module comprises a threshold setting unit, a central connection unit and an exceeding alarm unit, and the output end of the warning module is unidirectionally connected to the input end of the threshold setting unit, the central connection unit and the exceeding alarm unit;
[0085] The threshold setting unit is used to set a threshold for the user's cardiovascular related monitoring values;
[0086] The central connection unit is used to perform central connection according to the real-time monitoring of the changes in the cardiovascular status of the user, so as to ensure the smoothness of the data connection;
[0087] The exceeding alarm unit is used to promptly give an alarm after exceeding a set threshold value of the cardiovascular health status of the user.
[0088] The data transmission storage module comprises a data storage unit, a data transmission unit and a data combing unit, and the output end of the data transmission storage module is unidirectionally connected to the input end of the data storage unit, the data transmission unit and the data combing unit;
[0089] The data combing unit is used to comb and organize all the data generated by the user during use;
[0090] The data storage unit is used to store the user-related data after sorting and arranging them;
[0091] The data transmission unit is used to transmit the data stored in the data storage unit according to the needs of use.
[0092] Specifically, when in use, the user's body is subjected to a full-body examination through a hospital medical body examination instrument, and the user's physical examination report in the hospital is obtained through the acquisition module, and then the user's physical signs and historical test data report are obtained, and the user's body is monitored in real time based on the test data, so that the user's body is monitored in real time through the body monitoring module, and the user's daily diet is monitored in real time in conjunction with the diet monitoring module, and then the user's daily diet is monitored, and the cardiovascular health status is analyzed and evaluated according to the user's body monitoring situation and daily food monitoring situation through the analysis and evaluation module, and then the analysis and evaluation can be performed based on the body monitoring and diet monitoring situation. And perform risk calculation and assessment based on the user's daily diet, exercise conditions and body monitoring data, and then use the risk calculation and assessment module to calculate the risk assessment of the user's cardiovascular health status based on the data results generated by the operation of the body monitoring module, the diet food monitoring module and the analysis and evaluation module, so as to provide advice for the user's health and prevent the occurrence of diseases. Finally, the data generated by the user during use is stored, and early warning is carried out in time according to the user's physical condition. At this time, all data generated by the user during use is stored and transmitted during use through the data transmission and storage module, and thresholds are set for physical condition and daily diet food through the early warning module, and then timely early warning is carried out once the threshold is exceeded.
[0093] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A cardiovascular health status assessment system, characterized in that: It includes a connection module, an acquisition module, a body monitoring module, a diet and food monitoring module, an analysis and evaluation module, a risk calculation and evaluation module, an early warning module and a data transmission and storage module, wherein the output end of the connection module is unidirectionally connected to the input end of the acquisition module, the output end of the acquisition module is unidirectionally connected to the input end of the body monitoring module, the output end of the body monitoring module is unidirectionally connected to the input end of the diet and food monitoring module, the output end of the diet and food monitoring module is unidirectionally connected to the input end of the analysis and evaluation module, the output end of the analysis and evaluation module is unidirectionally connected to the input end of the risk calculation and evaluation module, the output end of the risk calculation and evaluation module is unidirectionally connected to the input end of the data transmission and storage module, and the output ends of the body monitoring module and the risk calculation and evaluation module are both unidirectionally connected to the input end of the early warning module; The acquisition module is used to obtain the user's physical examination report in the hospital; The body monitoring module is used to monitor the user's body in real time; The diet food monitoring module is used to monitor the user's daily diet food in real time; The analysis and evaluation module is used to analyze and evaluate the cardiovascular health status according to the user's physical monitoring conditions and daily food monitoring conditions; The risk calculation and assessment module is used to calculate the risk assessment of the user's cardiovascular health status based on the data results generated by the operation of the body monitoring module, the diet monitoring module and the analysis and assessment module, so as to provide advice for the user's health and prevent the occurrence of diseases; The warning module is used to set thresholds for physical conditions and daily diet, and to issue warnings in a timely manner once the thresholds are exceeded; The data transmission storage module is used to store all data generated by the user during use and to transmit the data during use.
2. A cardiovascular health status assessment system according to claim 1, characterized in that: The connection module is used for connection via two methods, namely, Bluetooth and WIFI.
3. A cardiovascular health status assessment system according to claim 2, characterized in that: The acquisition module comprises a data receiving unit, a data acquisition unit and a data sorting unit, and the output end of the acquisition module is unidirectionally connected to the input end of the data receiving unit, the data acquisition unit and the data sorting unit; The data receiving unit is used to receive relevant examination data of the physical condition; The data collection unit is used to collect cardiovascular health-related data of the user; The data sorting unit is used to perform overall processing on the data received and collected by the data receiving unit and the data collecting unit.
4. A cardiovascular health status assessment system according to claim 3, characterized in that: The body monitoring module comprises a blood pressure sensor unit, a blood sugar sensor unit, a blood fat sensor unit and a heart rate sensor unit, and the output end of the body monitoring module is unidirectionally connected to the input end of the blood pressure sensor unit, the blood sugar sensor unit, the blood fat sensor unit and the heart rate sensor unit; The blood pressure sensor unit is used to monitor the user's blood pressure in real time; The blood sugar sensor unit is used to monitor the blood sugar status of the user in real time; The blood lipid sensor unit is used to monitor the blood lipid status of the user in real time; The heart rate sensor unit is used to monitor and sense the user's heart rate in real time.
5. A cardiovascular health status assessment system according to claim 4, characterized in that: The diet food monitoring module comprises an image taking unit, an image recognition unit and a food analysis unit, and the output end of the diet food monitoring module is unidirectionally connected to the input end of the image taking unit, the image recognition unit and the food analysis unit; The image taking unit is used to take photos of the user's daily diet and store the images; The image recognition unit is used to perform AI recognition on the food in the photo; The food analysis unit is used to analyze relevant information of the identified food.
6. A cardiovascular health status assessment system according to claim 5, characterized in that: The analysis and evaluation module includes an AI algorithm unit, an analysis unit and an evaluation unit, and the output ends of the analysis and evaluation module are all unidirectionally connected to the input ends of the AI algorithm unit, the analysis unit and the evaluation unit; The AI algorithm unit is used to provide algorithm operation for the analysis unit and the evaluation unit through the AI algorithm; The analysis unit is used to perform algorithm analysis based on the AI algorithm unit, the user's physical monitoring status and daily diet analysis results; The evaluation unit is used to evaluate the health status of the user after completing the cardiovascular analysis.
7. A cardiovascular health status assessment system according to claim 6, characterized in that: The risk calculation and evaluation module includes a data aggregation unit, a relationship model establishment unit and a risk evaluation unit, and the output end of the risk calculation and evaluation module is unidirectionally connected to the input end of the data aggregation unit, the relationship model establishment unit and the risk evaluation unit; The data aggregation unit is used to aggregate the user's wearing and usage data and historical related data; The relationship model building unit is used to build a relationship model through an AI algorithm when the user's daily diet and cardiovascular health status change; The risk assessment unit is used to perform risk assessment on the cardiovascular health of the user through the relationship module established by the relationship model establishment unit.
8. A cardiovascular health status assessment system according to claim 7, characterized in that: The warning module comprises a threshold setting unit, a central connection unit and an exceeding alarm unit, and the output end of the warning module is unidirectionally connected to the input end of the threshold setting unit, the central connection unit and the exceeding alarm unit; The threshold setting unit is used to set a threshold for the user's cardiovascular related monitoring values; The central connection unit is used to perform central connection according to the real-time monitoring of the changes in the cardiovascular status of the user, so as to ensure the smoothness of the data connection; The exceeding alarm unit is used to promptly give an alarm after exceeding a set threshold value of the cardiovascular health status of the user.
9. A cardiovascular health status assessment system according to claim 8, characterized in that: The data transmission storage module comprises a data storage unit, a data transmission unit and a data combing unit, and the output end of the data transmission storage module is unidirectionally connected to the input end of the data storage unit, the data transmission unit and the data combing unit; The data combing unit is used to comb and organize all the data generated by the user during use; The data storage unit is used to store the user-related data after sorting and arranging them; The data transmission unit is used to transmit the data stored in the data storage unit according to the needs of use.
10. The method for evaluating cardiovascular health status according to claim 9 comprises the following steps: S1: Perform a full body examination of the user's body through hospital medical body examination equipment; S2: Obtain the user's physical signs and historical test data reports; S3: Real-time monitoring of the user's body based on detection data; S4: Monitor the user's daily diet; S5: Analyze and evaluate based on physical and dietary monitoring; S6: Calculate and assess the risk based on the user's daily diet, exercise and physical monitoring data; S7: Store the data generated by the user during use, and provide timely warnings based on the user's physical condition.