Medical health information management method and system for patient user
By using the health risk scoring formula to calculate the risk score value in the medical health information management system, dynamically adjusting the frequency of review and the number of guardians, the problem of difficulty in realizing dynamic monitoring and personalized management of existing systems is solved, and real-time tracking and personalized management of maternal and infant health status is achieved.
Patent Information
- Application Number
- CN202510144280.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing medical and health information management system is difficult to achieve dynamic monitoring and risk assessment of patient health data, especially in the maternal and infant postoperative recovery scenarios, where personalized management plans are lacking.
By obtaining postoperative physical data of mothers and babies, using health risk scoring formulas to calculate risk score values, dynamically adjust the frequency of review and number of guardians to achieve real-time tracking and personalized management of maternal and infant health status.
Dynamic monitoring and risk assessment of maternal and infant health status have been achieved, timely adjust the frequency of review and the number of guardians, ensure that high-risk patients receive timely medical attention, and provide personalized nursing plans.
Smart Images

Figure CN120072230A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent health monitoring, and particularly relates to a medical health information management method and system for patient users. Background Art
[0002] In today's society, with the increasing emphasis on health management, medical health information management has become one of the key research directions in the medical field. Especially for the health management of patient users, how to efficiently, scientifically collect, store, and analyze patients' health data, so as to provide accurate medical advice, has become an important link in the medical service system. Existing medical health information management systems mainly focus on hospitals or medical institutions. Patients' health data is usually manually input by doctors when patients visit the doctor, lacking continuous monitoring and analysis of patients' daily health data. Due to the complexity of patients' health data and its characteristics that change over time, existing systems often have difficulty achieving comprehensive dynamic monitoring and cannot timely warn of patients' health risks, resulting in patients not being effectively intervened before potential health problems occur. In addition, in scenarios such as the postoperative recovery of maternal and infant care, there are significant differences in the management data of postoperative reexaminations of mothers and infants, and existing technologies are difficult to provide personalized solutions. Therefore, there is an urgent need for a medical health information management to achieve dynamic monitoring, risk assessment, and personalized management of patients' health data. Summary of the Invention
[0003] In order to overcome the drawback of lacking dynamic adjustment of the reexamination frequency of mothers and infants, the present invention provides a medical health information management method and system for patient users.
[0004] The technical solution is as follows: A medical health information management method for patient users includes the following steps:
[0005] S1: Obtain the first postoperative physical data of the mother and the infant, and use the first health risk scoring formula according to the first postoperative physical data to obtain the first risk score value of the mother;
[0006] S2: Obtain the second postoperative physical data of the mother and the infant, and use the second health risk scoring formula according to the second postoperative physical data to obtain the second risk score value of the infant;
[0007] S3: Adjust the reexamination frequency of the mother and the infant according to the first risk score value or the second risk score value;
[0008] S4: Obtain the first guardian quantity adjustment sequence of the mother and the second guardian quantity adjustment sequence of the infant, and adjust the guardian quantity of the mother and the infant respectively according to the first guardian quantity adjustment sequence and the second guardian quantity adjustment sequence.
[0009] Preferably, obtaining the first postoperative physical data of the mother and the infant, and using the first health risk scoring formula according to the first postoperative physical data to obtain the first risk score value of the mother, includes: the first postoperative physical data includes the breast milk quality of the mother, the emotional fluctuation value of the mother, the recent second risk score value of the infant, the first time, the second time, and the first interval duration data. Inputting the first postoperative physical data into the first health risk scoring formula to obtain the first risk score value of the mother, taking the time when the first postoperative physical data is obtained as the first time, taking the time when the recent second risk score value of the infant is obtained as the second time, and the first interval duration data is the difference between the first time and the second time.
[0010] Preferably, inputting the first postoperative physical data into the first health risk scoring formula to obtain the first risk score value of the mother, includes: where the first health risk scoring formula is:
[0011]
[0012] In the formula, R 1 is the first risk score value; ω 1 , ω 2 , ω 3 are weight parameters; k is an adjustment parameter; p 0 is the standard breast milk quality; p is the breast milk quality of the mother; q is the emotional fluctuation value of the mother; q 0 is the standard emotional value of an adult; R rt2 is the recent second risk score value of the infant; R st2 is the preset standard threshold of the second risk score value; T 1 is the first interval duration.
[0013] Preferably, obtaining the second postoperative physical data of the mother and the infant, and using the second health risk scoring formula according to the second postoperative physical data to obtain the second risk score value of the infant, includes: the second postoperative physical data includes the sleep duration of the infant, the emotional fluctuation value of the infant, the recent first risk score value of the mother, the third time, the fourth time, and the second interval duration data. Inputting the second postoperative physical data into the second health risk scoring formula to obtain the second risk score value of the infant, taking the time when the second postoperative physical data is obtained as the third time, taking the time when the recent first risk score value of the mother is obtained as the fourth time, and the second interval duration data is the difference between the third time and the fourth time.
[0014] Preferably, inputting the second postoperative physical data into the second health risk scoring formula to obtain the second risk score value of the infant, includes: where the second health risk scoring formula is:
[0015]
[0016] In the formula, R 2 is the second risk score value; α 1 , α 2 , α 3 is the weight parameter; k and μ are adjustment parameters; z is the sleep duration of the infant; 0 is the standard sleep duration of the baby; b is the mood swing value of the baby; b 0 is the standard emotion value of the baby; R rt1 is the mother's most recent first risk score value; R st1 is the preset standard threshold value of the first risk score; T 2 The second interval duration.
[0017] Preferably, the review frequency of the mother and the baby is adjusted according to the first risk score value or the second risk score value, including: when the first risk score value is greater than a first preset threshold, the review frequency of the mother is increased; when the second risk score value is greater than a second preset threshold, the review frequency of the baby is increased.
[0018] Preferably, the method of obtaining a first guardian number adjustment sequence for the mother and a second guardian number adjustment sequence for the infant, and adjusting the number of guardians for the mother and the infant respectively according to the first guardian number adjustment sequence and the second guardian number adjustment sequence, includes: obtaining a time when a first risk score value is greater than a first preset threshold value within a preset time period, dividing the time and recording it to obtain a first guardian number adjustment sequence, and adjusting the number of guardians for the mother according to the time period according to the first guardian number adjustment sequence; obtaining a time when a second risk score value is greater than a second preset threshold value within a preset time period, dividing the time and recording it to obtain a second guardian number adjustment sequence, and adjusting the number of guardians for the infant according to the time period according to the second guardian number adjustment sequence.
[0019] Preferably, the method of obtaining the first guardian number adjustment sequence for the mother and the second guardian number adjustment sequence for the baby includes: performing division once every preset time interval, taking the number of times the first risk score value is greater than the first preset threshold or the second risk score value is greater than the second preset threshold as the number of abnormal times, and when the time period in which the abnormal number of times is located is simultaneously in the two divided time periods, the abnormal number of times is classified into the time period with the largest proportion in the two time periods; when the time period in which the abnormal number of times is located is simultaneously in the two divided time periods and the time proportions in the two time periods are the same, the abnormal number of times is classified into the previous time period.
[0020] Preferably, adjusting the number of guardians for the mother and the baby respectively according to the first guardian number adjustment sequence and the second guardian number adjustment sequence includes: increasing or decreasing the number of guardians for the mother in each time period according to the number of abnormalities in each time period in the first guardian number adjustment sequence; increasing or decreasing the number of guardians for the baby in each time period according to the number of abnormalities in each time period in the second guardian number adjustment sequence, wherein when adjusting the number of guardians for the mother and the baby, the intersection number of the guardians for the mother and the guardians for the baby is less than or equal to the preset number.
[0021] Preferably, a medical and health information management system for patient users includes:
[0022] A data acquisition module for obtaining the breast milk quality of the mother, the emotional fluctuation value of the mother, the second risk score value of the baby recently, the sleep duration of the baby, the emotional fluctuation value of the baby, and the first risk score value of the mother recently;
[0023] A data processing module for obtaining the first interval duration data according to the first time and the second time; obtaining the second interval duration data according to the third time and the fourth time;
[0024] A health risk assessment module for obtaining the first risk score value of the mother and the second risk score value of the baby respectively according to the first health risk scoring formula and the second health risk scoring formula;
[0025] A review frequency adjustment module for adjusting the review frequencies of the mother and the baby according to the first risk score value of the mother and the second risk score value of the baby;
[0026] A guardian number adjustment module for adjusting the number of guardians according to the first risk score value of the mother and the second risk score value of the baby.
[0027] The beneficial effects of the present invention are:
[0028] 1. By combining means such as wearable devices and mobile terminals, the present invention realizes real-time collection of physiological parameters and psychological states of mothers and babies, adopts a dynamic monitoring mechanism to continuously track the health status of patients, and combines data at different time nodes to achieve more accurate health risk assessment;
[0029] 2. Considering factors such as the breast milk quality of the mother, the emotional fluctuation value of the mother, and the second risk score value of the baby recently, obtaining the first risk score value of the mother, and adjusting the review frequency of the mother according to the first risk score value of the mother to ensure that high-risk patients can receive timely medical attention;
[0030] 3. Consider factors such as the baby's sleep duration, the baby's emotional fluctuation value, and the mother's recent first risk score value to obtain the baby's second risk score value, and adjust the baby's reexamination frequency according to the baby's second risk score value. By combining the first risk score values of the mother and the baby, comprehensively considering the mutual influence relationship between the mother and the baby, ensure that the mother's health condition is reflected through the baby's physical condition, and vice versa, the baby's health condition is reflected through the mother's physical condition;
[0031] 4. By adjusting the number of guardians for the mother and the baby, ensure that the mother and the baby are cared for by the corresponding number of guardians at the corresponding time, and ensure that both the mother and the baby receive perfect recuperation. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 It is a flowchart of the medical health information management method for patient users of the present invention;
[0033] Figure 2 It is a system diagram of the medical health information management for patient users of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0034] The above solution will be further described below in conjunction with specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the present application. The implementation conditions adopted in the embodiments can be further adjusted according to the conditions of specific manufacturers, and the implementation conditions not specified are usually those in conventional experiments.
[0035] Embodiment 1: A medical health information management method for patient users, as Figure 1 shown, includes the following steps:
[0036] S1: Obtain the first postoperative physical data of the mother and the baby, and use the first health risk scoring formula according to the first postoperative physical data to obtain the first risk score value of the mother;
[0037] The first postoperative physical data includes the mother's breast milk quality, the mother's emotional fluctuation value, the baby's recent second risk score value, the first time, the second time, and the first interval duration data. Input the first postoperative physical data into the first health risk scoring formula to obtain the first risk score value of the mother. Take the time when the first postoperative physical data is obtained as the first time, and take the time when the baby's recent second risk score value is obtained as the second time. The first interval duration data is the difference between the first time and the second time.
[0038] It should be noted that the first postoperative physical data of the mother and the baby are collected, the fat, protein, and lactose contents in breast milk are detected by a breast milk analyzer; the psychological state fluctuation value of the mother is recorded using a wearable device; the most recent second risk score value evaluated by the baby health monitoring device is obtained; and the data collection time of the first postoperative physical data is obtained; the time of the baby's most recent second risk score value; the first interval duration data is the difference between the first time and the second time.
[0039] Among them, the first health risk score formula is:
[0040]
[0041] In the formula, R 1 is the first risk score value; ω 1 , ω 2 , ω 3 are weight parameters; k is an adjustment parameter; p 0 is the standard breast milk quality; p is the mother's breast milk quality; q is the mother's emotional fluctuation value; q 0 is the standard emotional value of an adult; R rt2 is the most recent second risk score value of the baby; R st2 is the preset standard threshold of the second risk score value; T 1 is the first interval duration.
[0042] It should be noted that R 1 is the first risk score value, which is used to determine the review frequency based on the score result, and can be combined with maternal and infant health management to provide a customized care plan; p 0 is the standard breast milk quality, which reflects the standard value of the nutritional components of the mother's milk under ideal conditions, usually formulated by medical institutions such as protein, fat, and vitamin contents; p is the mother's breast milk quality, which is the current breast milk nutritional status measured by a breast milk quality detection device, evaluating the mother's nutritional supply ability and directly affecting the baby's health; q is the mother's emotional fluctuation value, which is the degree of the mother's daily emotional fluctuation measured by heart rate monitoring and emotional analysis software, such as the amplitude of emotional changes such as anxiety and depression; q 0 is the standard emotional value of an adult, which is the average emotional fluctuation range of normal adults set by medical research and used as a reference value to measure whether the mother's emotion is in a normal state; R rt2 is the most recent second risk score value of the baby, which reflects the current health status of the baby, and the baby's health status affects the mother's emotion and health; R st2 is the preset standard threshold of the second risk score value, which is the reference value of the baby's second risk score value, usually set according to medical data to measure whether the baby has a health risk, and comparing the baby's second risk score value to determine the potential impact of the baby on the mother's health; T 1is the first interval duration. The larger the interval duration is, the greater the lag of health monitoring is, and the risk needs to be evaluated more carefully.
[0043] S2: Obtain the second postoperative physical data of the mother and the infant, and use the second health risk scoring formula according to the second postoperative physical data to obtain the second risk score value of the infant;
[0044] The second postoperative physical data includes the sleep duration of the infant, the emotional fluctuation value of the infant, the most recent first risk score value of the mother, the third time, the fourth time, and the second interval duration data. Input the second postoperative physical data into the second health risk scoring formula to obtain the second risk score value of the infant. Take the time when the second postoperative physical data is obtained as the third time, and take the time when the most recent first risk score value of the mother is obtained as the fourth time. The second interval duration data is the difference between the third time and the fourth time.
[0045] It should be noted that collect the second postoperative physical data of the mother and the infant, record the daily effective sleep duration of the infant through the infant monitoring device, and obtain the emotional fluctuation value of the infant using the emotion sensor; obtain the most recent first risk score value evaluated by the mother's health monitoring device; and obtain the data collection time of the second postoperative physical data; the time of the most recent first risk score value of the mother; the second interval duration data is the difference between the third time and the fourth time.
[0046] The second health risk scoring formula is as follows:
[0047]
[0048] In the formula, R 2 is the second risk score value; α 1 、α 2 、α 3 are weight parameters; k, μ are adjustment parameters; z is the sleep duration of the infant; z 0 is the standard sleep duration of the infant; b is the emotional fluctuation value of the infant; b 0 is the standard emotion value of the infant; R rt1 is the most recent first risk score value of the mother; R st1 is the preset standard threshold of the first risk score value; T 2 is the second interval duration.
[0049] It should be noted that, R 2is the second risk score value, which is used to assist doctors or caregivers in quickly assessing the health status of infants and determining whether intervention measures need to be taken, such as adjusting the infant's diet, sleep arrangement, or conducting medical examinations; z is the sleep duration of the infant, which is recorded by a smart infant monitoring device or manually by the parents. The sleep time of the infant not only affects the growth and development of the infant but also affects the change of the mother's sleep situation; z 0 is the standard sleep duration of the infant. The ideal sleep duration based on medical guidelines or infant health monitoring data is set according to the infant's age group. By calculating the deviation between the actual sleep duration of the infant and the standard sleep duration, it is ensured that the minimum deviation will not be lower than the threshold μ to avoid the influence of minor sleep deviations on the score; b is the emotional fluctuation value of the infant, which represents the emotional fluctuation of the infant during the monitoring period; b 0 is the standard emotional value of the infant, which is a standard value set according to the emotional fluctuation range of normal infants; R rt1 is the first risk score value of the mother recently, which represents the first risk score value of the mother recently and is used to reflect the potential impact of the mother's health status on the infant; R st1 is the preset standard threshold of the first risk score value, which is the standard limit of the mother's first risk score value. If the mother's first risk score value exceeds this threshold, the health status of the infant will be affected; T 2 is the second interval duration. The larger the interval duration, the greater the lag of health monitoring, and the more cautious the risk assessment needs to be.
[0050] S3: Adjust the review frequency of the mother and the infant according to the first risk score value or the second risk score value;
[0051] When the first risk score value is greater than the first preset threshold, increase the review frequency of the mother; when the second risk score value is greater than the second preset threshold, increase the review frequency of the infant.
[0052] It should be noted that in this embodiment, the review frequency is once a week, once every three days, or once a day. When the first risk score value is greater than the first preset threshold or the second risk score value is greater than the second preset threshold, the review frequency is selected and adjusted according to the size situation.
[0053] S4: Obtain the first guardian number adjustment sequence of the mother and the second guardian number adjustment sequence of the infant, and adjust the number of guardians of the mother and the infant respectively according to the first guardian number adjustment sequence and the second guardian number adjustment sequence.
[0054] Obtain the time when the first risk score value is greater than the first preset threshold within a preset time period, divide and record the time to obtain the first guardian quantity adjustment sequence, and adjust the guardian quantity of the mother according to the first guardian quantity adjustment sequence in time periods; obtain the time when the second risk score value is greater than the second preset threshold within a preset time period, divide and record the time to obtain the second guardian quantity adjustment sequence, and adjust the guardian quantity of the baby according to the second guardian quantity adjustment sequence in time periods.
[0055] It should be noted that within a preset time period, such as three days or one week, the first postoperative physical data of the mother and the second postoperative physical data of the baby are continuously collected; the first guardian quantity adjustment sequence and the second guardian quantity adjustment sequence are constructed, and the guardian quantity in each time period is obtained and adjusted.
[0056] Perform a division at every preset time interval, and use the number of times when the first risk score value is greater than the first preset threshold or the second risk score value is greater than the second preset threshold as the number of abnormal times. When the time period where the abnormal times are located is simultaneously in two divided time periods, the abnormal times are included in the time period with the largest proportion in the two time periods; when the time period where the abnormal times are located is simultaneously in two divided time periods and the time proportions in the two time periods are the same, the abnormal times are included in the previous time period.
[0057] It should be noted that in this embodiment, the preset time interval is set to six hours. Then both the first guardian quantity adjustment sequence and the second guardian quantity adjustment sequence have four time periods, namely the first time period from zero to six o'clock, the second time period from six to twelve o'clock, the third time period from twelve to eighteen o'clock, and the fourth time period from eighteen to twenty-four o'clock. When the time period where the abnormal times are located is simultaneously in two divided time periods, for example, when the first risk score value is greater than the first preset threshold and its duration is three hours, that is, one hour is in the third time period and the other two hours are in the fourth time period, then the time proportion of the fourth time period is the largest, which is two-thirds, so the abnormal times are included in the fourth time period, that is, the number of times in the fourth time period in the first guardian quantity adjustment sequence is incremented by one; when the first risk score value is greater than the first preset threshold and its duration is four hours, that is, two hours are in the third time period and two hours are in the fourth time period, then the abnormal times are included in the third time period, that is, the number of times in the third time period in the first guardian quantity adjustment sequence is incremented by one.
[0058] Adjust the number of anomalies in each time period in the sequence according to the number of first guardians, and increase or decrease the number of guardians of the mother in each time period; adjust the number of anomalies in each time period in the sequence according to the number of second guardians, and increase or decrease the number of guardians of the baby in each time period. When adjusting the number of guardians of the mother and the baby, the number of intersections of the guardians of the mother and the guardians of the baby is less than or equal to the preset number.
[0059] It should be noted that, for example, for the sequence of adjusting the number of first guardians, the number of anomalies in the first time period is ten, the number of anomalies in the second time period is fifteen, the number of anomalies in the third time period is eight, and the number of anomalies in the fourth time period is five. Then the corresponding number of guardians is two in the first time period; three in the second time period, one in the third time period, and one in the fourth time period. Among them, the number of overlapping persons between the guardians of the mother and the guardians of the baby cannot exceed two.
[0060] Embodiment 2: On the basis of Embodiment 1, as Figure 2 shown, a medical and health information management system for patient users includes:
[0061] A data collection module for obtaining the breast milk quality of the mother, the emotional fluctuation value of the mother, the second risk score value of the baby recently, the sleep duration of the baby, the emotional fluctuation value of the baby, and the first risk score value of the mother recently;
[0062] A data processing module for obtaining the first interval duration data according to the first time and the second time; obtaining the second interval duration data according to the third time and the fourth time;
[0063] A health risk assessment module for obtaining the first risk score value of the mother and the second risk score value of the baby respectively according to the first health risk score formula and the second health risk score formula;
[0064] A reexamination frequency adjustment module for adjusting the reexamination frequencies of the mother and the baby according to the first risk score value of the mother and the second risk score value of the baby;
[0065] A guardian number adjustment module for adjusting the number of guardians according to the first risk score value of the mother and the second risk score value of the baby.
[0066] It should be understood that the above description is only for exemplary purposes and does not mean to limit the present invention. Those skilled in the art will understand that the variant forms of the present invention will be included within the scope of the claims herein.
Claims
1. A medical health information management method for a patient user, characterized in that: The following steps are involved: S1: Obtaining first postoperative physical data of the mother and the baby, and obtaining a first risk score value of the mother using a first health risk score formula according to the first postoperative physical data; S2: obtaining second postoperative physical data of the mother and the baby, and obtaining a second risk score value of the baby using a second health risk score formula according to the second postoperative physical data; S3: adjusting the reexamination frequency of the mother and the baby according to the first risk score value or the second risk score value; S4: Obtain a first guardian number adjustment sequence for the mother and a second guardian number adjustment sequence for the baby, and adjust the number of guardians for the mother and the baby respectively according to the first guardian number adjustment sequence and the second guardian number adjustment sequence.
2. A medical health information management method for a patient user according to claim 1, characterized in that: The method of obtaining the first postoperative physical data of the mother and the baby, and using the first health risk scoring formula according to the first postoperative physical data to obtain the first risk score value of the mother includes: the first postoperative physical data includes the mother's breast milk quality, the mother's emotional fluctuation value, the baby's most recent second risk score value, the first time, the second time and the first interval duration data; the first postoperative physical data is input into the first health risk scoring formula to obtain the mother's first risk score value; the time when the first postoperative physical data is obtained is used as the first time; the time when the baby's most recent second risk score value is obtained is used as the second time; and the first interval duration data is the difference between the first time and the second time.
3. A medical health information management method for a patient user according to claim 2, characterized in that: The step of inputting the first postoperative physical data into a first health risk scoring formula to obtain a first risk score value of the mother includes: wherein the first health risk scoring formula is: Where R1 is the first risk score; ω1, ω2, ω3 are weight parameters; k is the adjustment parameter; p0 is the standard breast milk quality; p is the mother's breast milk quality; q is the mother's mood fluctuation value; q0 is the standard mood value of adults; R rt2 is the infant's most recent second risk score value; R st2 is the preset standard threshold of the second risk score value; T1 is the first interval duration.
4. A medical health information management method for a patient user according to claim 1, characterized in that: The method of obtaining the second postoperative physical data of the mother and the baby, and using the second health risk scoring formula according to the second postoperative physical data to obtain the second risk score value of the baby includes: the second postoperative physical data includes the baby's sleep duration, the baby's mood fluctuation value, the mother's most recent first risk score value, the third time, the fourth time, and the second interval duration data; the second postoperative physical data is input into the second health risk scoring formula to obtain the baby's second risk score value; the time when the second postoperative physical data is obtained is used as the third time; the time when the mother's most recent first risk score value is obtained is used as the fourth time; and the second interval duration data is the difference between the third time and the fourth time.
5. A medical health information management method for a patient user according to claim 4, characterized in that: The step of inputting the second postoperative physical data into a second health risk score formula to obtain a second risk score value for the infant includes: wherein the second health risk score formula is: Where R2 is the second risk score; α1, α3, α3 are weight parameters; k, μ are adjustment parameters; z is the infant's sleep duration; z0 is the infant's standard sleep duration; b is the infant's mood fluctuation value; b0 is the infant's standard mood value; R rt1 is the mother's most recent first risk score value; R st1 is the preset standard threshold of the first risk score value; T2 is the second interval duration.
6. A medical health information management method for a patient user according to claim 1, characterized in that: The adjusting the review frequency of the mother and the baby according to the first risk score value or the second risk score value includes: when the first risk score value is greater than a first preset threshold value, increasing the review frequency of the mother; when the second risk score value is greater than a second preset threshold value, increasing the review frequency of the baby.
7. A medical health information management method for a patient user according to claim 1, characterized in that: The method of obtaining a first guardian number adjustment sequence for the mother and a second guardian number adjustment sequence for the infant, and adjusting the number of guardians for the mother and the infant respectively according to the first guardian number adjustment sequence and the second guardian number adjustment sequence, includes: obtaining a time when a first risk score value is greater than a first preset threshold value within a preset time period, dividing the time and recording it to obtain a first guardian number adjustment sequence, and adjusting the number of guardians for the mother according to the time period according to the first guardian number adjustment sequence; obtaining a time when a second risk score value is greater than a second preset threshold value within the preset time period, dividing the time and recording it to obtain a second guardian number adjustment sequence, and adjusting the number of guardians for the infant according to the time period according to the second guardian number adjustment sequence.
8. A medical health information management method for a patient user according to claim 7, characterized in that: The obtaining of the first guardian number adjustment sequence for the mother and the second guardian number adjustment sequence for the baby includes: performing division once at every preset time interval, taking the number of times when the first risk score value is greater than the first preset threshold or the second risk score value is greater than the second preset threshold as the number of abnormal times, and when the time period in which the abnormal number of times is located is simultaneously in the two divided time periods, the abnormal number of times is classified into the time period with the largest proportion in the two time periods; when the time period in which the abnormal number of times is located is simultaneously in the two divided time periods and the time proportions in the two time periods are the same, the abnormal number of times is classified into the previous time period.
9. A medical health information management method for a patient user according to claim 7, characterized in that: The number of guardians for the mother and the baby are adjusted respectively according to the first guardian number adjustment sequence and the second guardian number adjustment sequence, including: increasing or decreasing the number of guardians for the mother in each time period according to the number of abnormalities in each time period in the first guardian number adjustment sequence; increasing or decreasing the number of guardians for the baby in each time period according to the number of abnormalities in each time period in the second guardian number adjustment sequence, wherein when adjusting the number of guardians for the mother and the baby, the intersection number of the mother's guardians and the baby's guardians is less than or equal to a preset number.
10. A medical health information management system for a patient user, according to a medical health information management method for a patient user according to any one of claims 1 to 9, characterized in that: include: A data collection module is used to obtain the mother's breast milk quality, the mother's mood swing value, the baby's most recent second risk score value, the baby's sleep duration, the baby's mood swing value and the mother's most recent first risk score value; A data processing module, used for obtaining first interval duration data according to the first time and the second time; Obtaining second interval duration data according to the third time and the fourth time; A health risk assessment module, used to obtain a first risk score value for the mother and a second risk score value for the baby according to a first health risk score formula and a second health risk score formula; A review frequency adjustment module, used to adjust the review frequency of the mother and the baby according to the first risk score value of the mother and the second risk score value of the baby; The guardian quantity adjustment module is used to adjust the guardian quantity according to the first risk score value of the mother and the second risk score value of the baby.
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