Method, device, electronic equipment and medium for analyzing and monitoring medical environment

By obtaining the ward temperature and patient identity information and determining the optimal temperature range based on physical condition, the accuracy of temperature regulation in the existing system is solved, and personalized temperature regulation and patient rehabilitation effects are achieved.

CN116678104BActive Publication Date: 2025-08-22SHENZHEN HUAFANG INFORMATION IND CO LTD
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Patent Information

Application Number
CN202310874614.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-17
Publication Date
2025-08-22
Estimated Expiration
2043-07-17

AI Technical Summary

Technical Problem

The existing medical environmental analysis and monitoring system is only adjusted based on the ambient temperature, and has poor accuracy and cannot meet the personalized temperature needs of different patients.

Method used

By obtaining the current temperature in the target ward, the identity information of the target patient and the current body temperature, determine the optimal temperature range based on the physical condition, and adjust the temperature as needed.

Benefits of technology

It achieves more accurate adjustment of the ward temperature, meets the personalized needs of different patients, and promotes patient recovery.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a method, device, electronic device and medium for analyzing and monitoring a medical environment, and relates to the field of medical environment monitoring. The method includes obtaining the current temperature in a target ward, the identity information of a target patient corresponding to the target ward, and the current body temperature of the target patient. Based on the identity information and the current body temperature, the current physical condition of the target patient is determined. The physical condition includes an exercise-calmed state, a fever state, and a normal recovery state. The exercise-calmed state is the state of the target patient after undergoing rehabilitation exercises. The physical condition corresponds to a preset optimal temperature range. Based on the physical condition and the preset optimal temperature range corresponding to the physical condition, it is determined whether the current temperature needs to be adjusted. If adjustment is required, the current temperature is adjusted based on the physical condition and the current temperature. The present application has the effect of more accurately adjusting the ambient temperature in the ward.
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Description

Technical Field

[0001] The present application relates to the field of medical environment monitoring, and in particular to a method, device, electronic equipment and medium for analyzing and monitoring a medical environment. Background Art

[0002] The medical environment refers to the environment in which patients receive treatment and undergo rehabilitation, such as a hospital ward. Research has shown that a comfortable medical environment can promote patient recovery, and temperature is a key factor in this environment. High temperatures can easily cause patients to experience symptoms such as shortness of breath and irritability, while low temperatures can easily cause patients to catch a cold. Therefore, current medical environment analysis and monitoring systems often monitor the ambient temperature in hospital wards using temperature sensors and adjust the ambient temperature based on the ambient temperature uploaded by the temperature sensors to keep patients at a more suitable temperature, thereby promoting their recovery. However, since temperature sensors can only monitor the ambient temperature in hospital wards, and there are more temperature factors that affect a patient's recovery status than just the ambient temperature, the accuracy of current medical environment analysis and monitoring systems that adjust the ambient temperature in hospital wards based solely on the ambient temperature is poor. Summary of the Invention

[0003] In order to more accurately adjust the ambient temperature in a ward, the present application provides a method, device, electronic equipment and medium for analyzing and monitoring a medical environment.

[0004] In a first aspect, the present application provides a method for analyzing and monitoring a medical environment, which adopts the following technical solutions:

[0005] A method for analyzing and monitoring a medical environment, comprising:

[0006] Obtaining the current temperature in the target ward, the identity information of the target patient corresponding to the target ward, and the current body temperature of the target patient;

[0007] Determining the target patient's current physical condition based on the identity information and the current body temperature, wherein the physical condition includes an exercise-calmed state, a fever state, and a normal recovery state. The exercise-calmed state is the state of the target patient after undergoing rehabilitation exercise, and each physical condition corresponds to a preset optimal temperature range.

[0008] Based on the physical condition and the preset optimal temperature range corresponding to the physical condition, determining whether the current temperature needs to be adjusted;

[0009] If adjustment is required, the current temperature is adjusted based on the physical condition and the current temperature.

[0010] By adopting the above technical solution, the identity information of the target patient corresponding to the target ward and the current body temperature of the target patient are obtained, so that the current physical condition of the target patient can be determined based on the identity information and the current body temperature. The physical condition includes the exercise calming state, the fever state and the normal recovery state. The exercise calming state is the state of the target patient after undergoing rehabilitation exercise. The physical condition corresponds to a preset optimal temperature range. The current temperature in the target ward is obtained to determine whether the current temperature needs to be adjusted based on the physical condition of the target patient and the preset optimal temperature range corresponding to the physical condition. When adjustment is needed, due to the different physical conditions of the target patients, the degree of demand for the temperature in the target ward is different. Therefore, adjustment is made according to the physical condition and the current temperature, thereby achieving the effect of more accurately adjusting the temperature in the ward.

[0011] In another possible implementation, obtaining the identity information of the target patient corresponding to the target ward includes:

[0012] Obtain the ward number of the target ward;

[0013] Searching the ward number in a preset registration database, wherein the preset registration database includes a plurality of preset ward numbers, each of which corresponds to preset identity information and admission status of a plurality of patients, wherein the admission status includes admitted and discharged;

[0014] Determine the preset identity information corresponding to the target ward number as the identity information to be determined, wherein the target ward number is the preset ward number in the preset registration database that is the same as the ward number;

[0015] The identity information to be determined whose check-in status is checked-in is determined as the identity information of the target patient.

[0016] By adopting the above technical solution, the preset registration library is a registration library set in advance, in which multiple preset ward numbers are registered, and each preset ward number is registered with the preset identity information and admission status of multiple corresponding patients, wherein the admission status includes two states: admitted and discharged. The ward number of the target ward is obtained so that the ward number can be searched in the preset registration library later. The target ward number is the preset ward number that is consistent with the ward number in the preset registration library. Since the preset registration library registers the identity information of all patients, and the same ward corresponds to the identity information of discharged patients and the identity information of hospitalized patients, after the preset identity information corresponding to the target ward number is determined as the identity information to be determined, it is necessary to further determine the identity information of the patient currently living in the target ward from the identity information to be determined. Preferably, the identity information to be determined with the admission status of admitted can be determined as the identity information of the target patient, thereby achieving the effect of more accurately obtaining the identity information of the target patient.

[0017] In another possible implementation, the identity information includes facial information;

[0018] Determining the current physical condition of the target patient based on the identity information and the current body temperature includes:

[0019] If the current body temperature reaches the preset fever temperature, it is determined that the body condition is in a fever state;

[0020] obtaining video information containing the facial information within a preset time period, and determining whether the physical condition belongs to a state of recovery from exercise based on the video information;

[0021] If the physical condition does not belong to the exercise recovery state or the fever state, it is determined that the physical condition belongs to the normal recovery state;

[0022] Wherein, determining whether the physical condition belongs to the exercise recovery state based on the video information includes:

[0023] Performing behavioral feature recognition on the video information to determine whether the target patient has exercise behavior;

[0024] If so, determining the target patient's exercise duration;

[0025] If the exercise duration reaches a preset duration, it is determined that the physical condition belongs to the exercise recovery state.

[0026] By adopting the above technical solution, the preset fever temperature is a temperature threshold set in advance, which serves as the standard for determining whether the target patient has a fever. When the current body temperature of the target patient reaches the preset fever temperature, it means that the current body temperature of the target patient has reached the standard for a fever state, and the target patient's physical condition can be determined to be a fever state. The preset target patient's identity information includes the target patient's facial information, and the preset historical time is the extraction time period. Video information containing the target patient's facial information within the preset historical time is obtained, so that it can be determined based on the video information whether the physical condition is in an exercise-calmed state. When the target patient's identity information does not belong to a fever state or an exercise-calmed state at the same time, it means that the target patient is in a normal recovery state, so as to achieve the effect of determining the target patient's physical condition based on the current body temperature and identity information. Among them, when determining whether the physical condition belongs to the exercise recovery state based on the video information, preferably, the video information can be used to identify behavioral characteristics to determine whether the target patient has exercise behavior. When there is no exercise behavior, it means that the target patient has not undergone rehabilitation exercise. When there is exercise behavior, it means that the target patient has undergone rehabilitation exercise. However, when the target patient's exercise time is shorter, the target patient consumes less energy and generates less heat, that is, the target patient may not be in the exercise recovery state or the time in the exercise recovery state is shorter. Therefore, the target patient's exercise time can be determined so that it can be used for subsequent Whether the target patient is in the exercise recovery state is judged according to the exercise duration. The preset duration is the duration set in advance, which serves as the standard for judging whether the target patient's exercise duration is long. When the exercise duration reaches the preset duration, it means that the target patient's exercise duration has reached the standard for a long exercise duration, and it can be determined that the physical condition belongs to the exercise recovery state. When the exercise duration does not reach the preset duration, it means that the target patient's exercise duration is short, and the corresponding exercise recovery state does not exist or is short, and it can be determined that the target patient's physical condition does not belong to the exercise recovery state, thereby achieving the effect of judging whether the target patient is in the exercise recovery state.

[0027] In another possible implementation, determining whether the current temperature needs to be adjusted based on the physical condition and the preset optimal temperature range corresponding to the physical condition includes:

[0028] When the physical condition is in a normal recovery state, determining whether the current temperature is within a preset optimal temperature range corresponding to the normal recovery state, and if so, determining that the current temperature does not need to be adjusted; if not, determining that the current temperature needs to be adjusted;

[0029] When the physical condition is in the exercise recovery state, determining whether the current temperature is the same as a first target temperature; if different, determining that the current temperature needs to be adjusted; if the same, determining that the current temperature does not need to be adjusted, the first target temperature being the minimum temperature in a preset optimal temperature range corresponding to the exercise recovery state;

[0030] When the physical condition is in a fever state, determine whether the current temperature is the same as the second target temperature. If different, determine that the current temperature needs to be adjusted. If the same, determine that the current temperature does not need to be adjusted. The second target temperature is the minimum temperature in the preset optimal temperature range corresponding to the fever state.

[0031] By adopting the above technical solution, different physical conditions correspond to different preset optimal temperature ranges. When the physical condition is in a normal recovery state, it is determined whether the current temperature is in the preset optimal temperature range corresponding to the normal recovery state, so as to determine whether the current temperature needs to be adjusted. When it is in the preset optimal temperature range, it means that the target patient will not feel hot or cool when at the current temperature, and it can be determined that the current temperature does not need to be adjusted. When it is not in the preset optimal temperature range, it means that if the target patient is kept at the current temperature for a long time, it may cause the target patient to feel anxious and stuffy, or may cause the target patient to catch a cold, etc., so it can be determined that the current temperature needs to be adjusted. The first target temperature is the minimum temperature in the preset optimal temperature range corresponding to the exercise recovery state. When the physical condition belongs to the exercise recovery state, it is determined whether the current temperature is the same as the first target temperature, so as to determine whether the current temperature needs to be adjusted. Since the target patient is prone to feel heat in the exercise recovery state, if the current temperature is increased, the target patient will be hotter. The first target temperature is the minimum temperature in the preset optimal temperature range corresponding to the exercise recovery state. If the current temperature continues to decrease, the target patient may catch a cold, etc. Therefore, when the first target temperature is the same as the current temperature, it can be determined that the current temperature does not need to be adjusted, and when they are different, it can be determined that the current temperature needs to be adjusted. The second target temperature is the minimum temperature in the preset optimal temperature range corresponding to the fever state. Since the preset optimal temperature range corresponding to each physical condition is different, that is, the first target temperature is different from the second target temperature. When the physical condition is in a fever state, the target patient is likely to feel a fever. In order to help the target patient reduce the burning sensation, and since the target patient is in poor physical condition and is likely to feel cold when having a fever, when adjusting the temperature in the target ward, the room temperature needs to be kept within the preset optimal temperature range corresponding to the fever state to avoid the temperature being too low and causing the patient to catch a cold. That is, it can be determined whether the current temperature is the same as the second target temperature. If they are different, it means that the target patient may feel cold at the current temperature or the current temperature can be lowered to help the target patient cool down. That is, it is determined that the current temperature needs to be adjusted. If they are the same, it means that if the temperature continues to decrease, the target patient will catch a cold. If the temperature continues to increase, the burning sensation of the target patient will become more intense, which is not conducive to the recovery of the target patient. Therefore, it can be determined that the current temperature does not need to be adjusted.

[0032] In another possible implementation, adjusting the current temperature based on the physical condition and the current temperature includes:

[0033] When the physical condition belongs to a normal recovery state, a first temperature difference is calculated. If the first temperature difference is less than a first preset temperature difference, the current output temperature is lowered or increased by the first temperature difference. If the first temperature difference reaches the first preset temperature difference, the current output temperature is adjusted based on the first preset temperature difference. The first temperature difference is the difference between the current temperature and a third target temperature. The third target temperature is the boundary temperature in the preset optimal temperature range corresponding to the normal recovery state. The current output temperature is the current output temperature of the air conditioner corresponding to the target ward.

[0034] When the physical condition is in a state of recovery from exercise, a second temperature difference is calculated; if the second temperature difference is less than a second preset temperature difference, the current output temperature is lowered or increased by the second temperature difference; if the second temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference, the second temperature difference being the difference between the current temperature and the first target temperature, and the second preset temperature difference being less than the first preset temperature difference;

[0035] When the physical condition is in a feverish state, the third temperature difference is calculated. If the third temperature difference is less than the second preset temperature difference, the current output temperature is lowered or increased by the third temperature difference. If the third temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference. The second temperature difference is the difference between the current temperature and the second target temperature.

[0036] By adopting the above technical solution, the third target temperature difference is the boundary temperature of the preset optimal temperature range corresponding to the normal recovery state, the first temperature difference is the difference between the current temperature and the third target temperature, and the current output temperature is the current output temperature of the air conditioner corresponding to the target ward. When the physical condition is in the normal recovery state, the first temperature difference is calculated. The first preset temperature difference is a pre-set temperature difference, which is used to indicate a small temperature difference. When the first temperature difference is less than the first preset temperature difference, it indicates that the first temperature difference is small. Directly adjusting the current output temperature by the first temperature difference will not cause the target patient to feel cold. Therefore, the current output temperature can be adjusted downward or upward by the first temperature difference. When the first temperature difference reaches the first preset temperature difference, it indicates that the first temperature difference is large. If adjusted according to the first temperature difference, the current output temperature will have a large span, which may easily cause discomfort to the target patient. Therefore, the current output temperature can be adjusted according to the first preset temperature difference, thereby achieving the effect of adjusting the current temperature when the physical condition of the target patient is in the normal recovery state.

[0037] The second temperature difference is the difference between the current temperature and the first target temperature. When the physical condition belongs to the exercise recovery state, the second temperature difference is calculated so that the current output temperature can be adjusted according to the second temperature difference later. The second preset temperature difference is the temperature difference set in advance, which is used as a standard for judging the smaller temperature difference in the exercise recovery state. Compared with the normal recovery state, the target patient is more likely to feel the temperature change in the exercise recovery state. Therefore, the second preset temperature difference is smaller than the first preset temperature difference to avoid the target patient from feeling cold. When the second temperature difference is smaller than the second preset temperature difference, it is said that If the second temperature difference is small, if the current output temperature is adjusted directly according to the second temperature difference, it will not affect the physical condition of the target patient. Therefore, the current output temperature can be raised or lowered by the second temperature difference. When the second temperature difference reaches the second preset temperature difference, it means that the second temperature difference is large. If the current output temperature is adjusted according to the second temperature difference, it may affect the physical condition of the target patient. Therefore, the current output temperature can be adjusted according to the second preset temperature difference, so as to achieve the effect of adjusting the current temperature when the physical condition of the target patient is in a state of recovery from exercise.

[0038] The third temperature difference is the difference between the current temperature and the second target temperature. When the physical condition is in a fever state, the third temperature difference is calculated so that the current temperature can be adjusted according to the third temperature difference later. When the third temperature difference is less than the second preset temperature difference, it means that the third temperature difference is small. If the current output temperature is adjusted directly according to the third temperature difference, it will not affect the physical condition of the target patient. Therefore, the current output temperature can be increased or decreased by the third temperature difference. When the third temperature difference reaches the second preset temperature difference, it means that the third temperature difference is large. If the current output temperature is adjusted according to the third temperature difference, it may affect the physical condition of the target patient. Therefore, the current output temperature can be adjusted according to the second preset temperature difference, thereby achieving the effect of adjusting the current temperature when the physical condition of the target patient is in a fever state.

[0039] In another possible implementation, the target patient has a caregiver, and based on the patient's physical condition, determining whether the current temperature needs to be adjusted may further include:

[0040] If no adjustment is required, the current time and door video information are obtained, where the door video information is video information including an image of the door of the target ward;

[0041] Determine the number of accompanying personnel currently in the target ward based on the door video information;

[0042] Determining the current temperature increase rate in the target ward based on the number of accompanying personnel and a preset formula;

[0043] Calculating the time to be adjusted based on the temperature growth rate, the current temperature, and a preset optimal temperature range corresponding to the physical condition;

[0044] Based on the time to be adjusted, the output temperature of the air conditioner in the target ward is adjusted.

[0045] By adopting the above technical solution, the target patient in the target ward has a corresponding caregiver. When the current temperature does not need to be adjusted, the more people in the target ward, the more heat is generated, that is, the faster the temperature in the current target ward will increase. Therefore, when the current temperature does not need to be adjusted, the current time and door video information can be obtained. Since the door video information is video information including an image of the target ward's door, that is, the entry and exit of people in the target ward can be viewed based on the door information, the number of caregivers in the current target ward can be determined based on the door video information. The preset formula is a pre-set formula that can calculate the temperature increase rate based on the number of people. Therefore, the temperature increase rate in the target ward can be calculated based on the number of caregivers and the preset formula, so that the time to be adjusted can be calculated based on the temperature increase rate, the current temperature, and the physical condition corresponding to the preset temperature range. This facilitates the subsequent adjustment of the output temperature of the air conditioner in the target ward based on the time to be adjusted, thereby achieving the effect of keeping the temperature in the target ward moderate and within the optimal temperature range, thereby achieving the effect of promoting the recovery of the target patient.

[0046] In another possible implementation, the number of the target patients is at least two, and the method further includes:

[0047] Determine a target preset optimal temperature range corresponding to the target ward based on the physical condition corresponding to each target patient and the preset optimal temperature range corresponding to the physical condition;

[0048] If the current temperature is within the target preset optimal temperature range, determining that the current temperature does not need to be adjusted;

[0049] If the current temperature is not within the target preset optimal temperature range, the current temperature is adjusted based on the target preset optimal temperature range and the current temperature.

[0050] By adopting the above technical solution, the number of target patients living in the target ward may be at least two, and there may be situations where the physical conditions corresponding to the target patients are different. According to the preset optimal temperature corresponding to the physical condition of each target patient, the target preset optimal temperature range suitable for each target patient in the target ward is determined, so that it is convenient to judge whether the current temperature needs to be adjusted according to the target preset optimal temperature range. Specifically, when the current temperature is in the target preset optimal temperature range, it means that the current temperature is suitable for each target patient, so it can be determined that the current temperature does not need to be adjusted. When the current temperature is not in the target preset optimal temperature range, it means that the current temperature is not suitable for each target patient, so the current temperature can be adjusted according to the target preset optimal temperature range and the current temperature, so as to achieve the effect of making each target patient in the target ward at a temperature suitable for recovery, thereby achieving the effect of promoting the recovery of each target patient.

[0051] In a second aspect, the present application provides a device for analyzing and monitoring a medical environment, which adopts the following technical solution:

[0052] A device for analyzing and monitoring a medical environment, comprising:

[0053] A first acquisition module is used to obtain the current temperature in the target ward, the identity information of the target patient corresponding to the target ward, and the current body temperature of the target patient;

[0054] a first determining module, configured to determine a current physical condition of the target patient based on the identity information and the current body temperature, the physical condition including an exercise-calmed state, a fever state, and a normal recovery state, the exercise-calmed state being the state of the target patient after undergoing rehabilitation exercise, and the physical condition corresponding to a preset optimal temperature range;

[0055] a first judgment module, configured to judge whether the current temperature needs to be adjusted based on the physical condition and a preset optimal temperature range corresponding to the physical condition;

[0056] The first adjustment module is used to adjust the current temperature based on the physical condition and the current temperature when adjustment is needed.

[0057] By adopting the above technical solution, the first acquisition module obtains the identity information of the target patient corresponding to the target ward and the current body temperature of the target patient, so that the subsequent first determination module can determine the current physical condition of the target patient based on the identity information and the current body temperature, wherein the physical condition includes exercise calming state, fever state and normal recovery state, and the exercise calming state is the state of the target patient after undergoing rehabilitation exercise. The first acquisition module obtains the current temperature in the target ward, so that the first judgment module can determine whether the current temperature needs to be adjusted based on the physical condition of the target patient and the preset optimal temperature range corresponding to the physical condition. When adjustment is required, due to the different physical conditions of the target patients, the degree of demand for the temperature in the target ward is different, so the first adjustment module can be adjusted according to the physical condition and the current temperature to achieve the effect of more accurately adjusting the temperature in the ward.

[0058] In another possible implementation, when acquiring the identity information of the target patient corresponding to the target ward, the first acquisition module is specifically configured to:

[0059] Obtain the ward number of the target ward;

[0060] Searching the ward number in a preset registration database, wherein the preset registration database includes a plurality of preset ward numbers, each of which corresponds to preset identity information and admission status of a plurality of patients, wherein the admission status includes admitted and discharged;

[0061] Determine the preset identity information corresponding to the target ward number as the identity information to be determined, wherein the target ward number is the preset ward number in the preset registration database that is the same as the ward number;

[0062] The identity information to be determined whose check-in status is checked-in is determined as the identity information of the target patient.

[0063] In another possible implementation, when the first determination module determines the current physical condition of the target patient based on the identity information and the current body temperature, it is specifically configured to:

[0064] If the current body temperature reaches the preset fever temperature, it is determined that the body condition is in a fever state;

[0065] obtaining video information containing the facial information within a preset time period, and determining whether the physical condition belongs to a state of recovery from exercise based on the video information;

[0066] If the physical condition does not belong to the exercise recovery state or the fever state, it is determined that the physical condition belongs to the normal recovery state;

[0067] Wherein, determining whether the physical condition belongs to the exercise recovery state based on the video information includes:

[0068] Performing behavioral feature recognition on the video information to determine whether the target patient has exercise behavior;

[0069] If so, determining the target patient's exercise duration;

[0070] If the exercise duration reaches a preset duration, it is determined that the physical condition belongs to the exercise recovery state.

[0071] In another possible implementation, the first determination module determines whether the current temperature needs to be adjusted based on the physical condition and a preset optimal temperature range corresponding to the physical condition, specifically for:

[0072] When the physical condition is in a normal recovery state, determining whether the current temperature is within a preset optimal temperature range corresponding to the normal recovery state, and if so, determining that the current temperature does not need to be adjusted; if not, determining that the current temperature needs to be adjusted;

[0073] When the physical condition is in the exercise recovery state, determining whether the current temperature is the same as a first target temperature; if different, determining that the current temperature needs to be adjusted; if the same, determining that the current temperature does not need to be adjusted, the first target temperature being the minimum temperature in a preset optimal temperature range corresponding to the exercise recovery state;

[0074] When the physical condition is in a fever state, determine whether the current temperature is the same as the second target temperature. If different, determine that the current temperature needs to be adjusted. If the same, determine that the current temperature does not need to be adjusted. The second target temperature is the minimum temperature in the preset optimal temperature range corresponding to the fever state.

[0075] In another possible implementation, the first adjustment module adjusts the current temperature based on the physical condition and the current temperature, specifically for:

[0076] When the physical condition belongs to a normal recovery state, a first temperature difference is calculated. If the first temperature difference is less than a first preset temperature difference, the current output temperature is lowered or increased by the first temperature difference. If the first temperature difference reaches the first preset temperature difference, the current output temperature is adjusted based on the first preset temperature difference. The first temperature difference is the difference between the current temperature and a third target temperature. The third target temperature is the boundary temperature in the preset optimal temperature range corresponding to the normal recovery state. The current output temperature is the current output temperature of the air conditioner corresponding to the target ward.

[0077] When the physical condition is in a state of recovery from exercise, a second temperature difference is calculated; if the second temperature difference is less than a second preset temperature difference, the current output temperature is lowered or increased by the second temperature difference; if the second temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference, the second temperature difference being the difference between the current temperature and the first target temperature, and the second preset temperature difference being less than the first preset temperature difference;

[0078] When the physical condition is in a feverish state, the third temperature difference is calculated. If the third temperature difference is less than the second preset temperature difference, the current output temperature is lowered or increased by the third temperature difference. If the third temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference. The second temperature difference is the difference between the current temperature and the second target temperature.

[0079] In another possible implementation, the apparatus further includes:

[0080] A second acquisition module is used to acquire the current time and door video information when no adjustment is required, wherein the door video information is video information including the door image of the target ward;

[0081] A second determining module is used to determine the number of accompanying personnel currently in the target ward based on the door video information;

[0082] a third determining module, configured to determine a current temperature increase rate in the target ward based on the number of accompanying personnel and a preset formula;

[0083] a calculation module, configured to calculate a time to be adjusted based on the temperature growth rate, the current temperature, and a preset optimal temperature range corresponding to the physical condition;

[0084] The second adjustment module is used to adjust the output temperature of the air conditioner in the target ward based on the time to be adjusted.

[0085] In another possible implementation, the apparatus further includes:

[0086] A fourth determining module is configured to determine a target preset optimal temperature interval corresponding to the target ward based on the physical condition corresponding to each target patient and the preset optimal temperature interval corresponding to the physical condition;

[0087] a fifth determining module, configured to determine that the current temperature does not need to be adjusted when the current temperature is within the target preset optimal temperature range;

[0088] The third adjustment module is configured to adjust the current temperature based on the target preset optimal temperature interval and the current temperature when the current temperature is not within the target preset optimal temperature interval.

[0089] In a third aspect, the present application provides an electronic device, which adopts the following technical solution:

[0090] An electronic device, comprising:

[0091] at least one processor;

[0092] Memory;

[0093] At least one application, wherein the at least one application is stored in a memory and configured to be executed by at least one processor, and the at least one application is configured to: execute a method for analyzing and monitoring a medical environment according to any possible implementation of the first aspect.

[0094] In a fourth aspect, the present application provides a computer-readable storage medium, which adopts the following technical solution:

[0095] A computer-readable storage medium, when the computer program is executed in a computer, causes the computer to execute the method for analyzing and monitoring the medical environment as described in any one of the first aspects.

[0096] In summary, this application includes at least one of the following beneficial technical effects:

[0097] 1. Obtain the identity information of the target patient corresponding to the target ward and the target patient's current body temperature, so that the current physical condition of the target patient can be determined based on the identity information and current body temperature. The physical condition includes the exercise calming state, fever state, and normal recovery state. The exercise calming state is the state of the target patient after undergoing rehabilitation exercises. Obtain the current temperature in the target ward so that, based on the target patient's physical condition and the preset optimal temperature range, it can be determined whether the current temperature needs to be adjusted. If adjustment is required, since the target patient's physical condition varies and the degree of temperature demand in the target ward varies, adjustment is made based on the physical condition and current temperature, achieving the effect of more accurately adjusting the temperature in the ward;

[0098] 2. The target patient in the target ward has a caregiver. When the current temperature does not need to be adjusted, the more people in the target ward, the more heat is generated, i.e., the faster the temperature rises in the target ward. Therefore, when the current temperature does not need to be adjusted, the current time and door video information can be obtained. Since the door video information includes an image of the target ward's door, i.e., the entry and exit of people in the target ward can be viewed based on the door information, the number of caregivers in the target ward can be determined based on the door video information. The preset formula is a pre-set formula that can calculate the temperature growth rate based on the number of people. Therefore, the temperature growth rate in the target ward can be calculated based on the number of caregivers and the preset formula. The time to be adjusted can then be calculated based on the temperature growth rate, the current temperature, and the patient's physical condition, corresponding to the preset temperature range. This allows the output temperature of the air conditioner in the target ward to be adjusted based on the time to be adjusted, thereby maintaining the temperature in the target ward within the optimal temperature range and promoting the recovery of the target patient. BRIEF DESCRIPTION OF THE DRAWINGS

[0099] Figure 1 It is a flow chart of a method for analyzing and monitoring a medical environment in an embodiment of the present application.

[0100] Figure 2 It is a structural diagram of a device for analyzing and monitoring a medical environment in an embodiment of the present application.

[0101] Figure 3 It is a structural diagram of an electronic device in an embodiment of the present application. DETAILED DESCRIPTION

[0102] The following is combined with Figure 1-3 This application is described in further detail.

[0103] After reading this specification, those skilled in the art may make non-creative modifications to this embodiment as needed, but such modifications are protected by patent law as long as they fall within the scope of the claims of this application.

[0104] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0105] In this document, the term "and / or" simply describes a relationship between related objects, indicating that three possible relationships exist. For example, "A and / or B" can represent: A exists alone, A and B exist simultaneously, or B exists alone. Furthermore, the character " / " in this document, unless otherwise specified, generally indicates an "or" relationship between the related objects.

[0106] The embodiments of the present application are described in further detail below with reference to the accompanying drawings.

[0107] The embodiment of the present application provides a method for analyzing and monitoring a medical environment, which is performed by an electronic device, which can be a server or a terminal device, wherein the server can be an independent physical server, a server cluster or a distributed system composed of multiple physical servers, or a cloud server that provides cloud computing services. The terminal device can be a smart phone, a tablet computer, a laptop computer, a desktop computer, etc., but is not limited thereto. The terminal device and the server can be directly or indirectly connected via wired or wireless communication, which is not limited in the embodiment of the present application. Figure 1 As shown, the method includes: step S101, step S102, step S103 and step S104, wherein,

[0108] Step S101 , obtaining the current temperature in the target ward, the identity information of the target patient corresponding to the target ward, and the current body temperature of the target patient.

[0109] For the embodiment of the present application, the current temperature in the target ward, the identity information of the target patient corresponding to the target ward, and the current body temperature of the target patient are obtained, so that the physical condition of the target patient can be determined based on the identity information and the current body temperature, and then it is convenient to judge whether the current body temperature needs to be adjusted based on the physical condition. Assume that the target ward is ward A, the target patient is patient A, the identity information of patient A is identity information A, the current body temperature of patient A is 36.5°C, and the current temperature in the target ward is 21°C.

[0110] In an embodiment of the present application, when obtaining the current temperature in the target ward, it can be obtained through the temperature sensor in the target ward, and when obtaining the current body temperature of the target patient, it can be obtained through thermal imaging and other technologies, which are not limited here.

[0111] Step S102: Determine the current physical condition of the target patient based on the identity information and the current body temperature.

[0112] Among them, the physical condition includes the exercise calming state, fever state and normal recovery state. The exercise calming state is the state of the target patient after undergoing rehabilitation exercise. The physical condition corresponds to a preset optimal temperature range.

[0113] In the embodiment of the present application, in daily life, after exercising, people will feel hot for a period of time. When they have a fever, in addition to taking the corresponding antipyretic medicine, they will use physical cooling methods to reduce the discomfort of the body. Therefore, in the embodiment of the present application, considering the three physical conditions of the patient: exercise calming state, fever state and normal recovery state, each physical condition has a corresponding preset optimal temperature range. The preset optimal temperature range is a temperature range determined in advance after multiple experiments and is the temperature range that the patient feels most comfortable. The physical condition of the target patient is determined based on the identity information and the current body temperature, so that it can be judged whether the current temperature in the target ward needs to be adjusted based on the physical condition of the target patient and the preset optimal temperature range corresponding to the physical condition. Taking step S101 as an example, based on patient A and the current body temperature of 36.5℃, it is determined that the physical condition of patient A is exercise calming state. The preset optimal temperature range corresponding to the exercise calming state is [20, 23], the preset optimal temperature range corresponding to the normal recovery state is [18, 22], and the preset optimal temperature range corresponding to the fever state is [22, 26].

[0114] Step S103 , based on the physical condition and the preset optimal temperature range corresponding to the physical condition, it is determined whether the current temperature needs to be adjusted.

[0115] In the embodiment of the present application, taking step S101 and step S102 as an example, it can be determined that the current temperature needs to be adjusted.

[0116] Step S104: If adjustment is required, the current temperature is adjusted based on the physical condition and the current temperature.

[0117] For the embodiment of the present application, when adjustment is required, the current temperature is adjusted according to the physical condition and the current temperature, thereby achieving the effect of more accurately adjusting the temperature in the target ward.

[0118] In a possible implementation of the embodiment of the present application, when step S101 obtains the identity information of the target patient corresponding to the target ward, it includes step S1011 (not shown in the figure), step S1012 (not shown in the figure), step S1013 (not shown in the figure), and step S1014 (not shown in the figure), wherein:

[0119] Step S1011, obtaining the ward number of the target ward.

[0120] For the embodiment of the present application, the ward number of the target ward is obtained so that the identity information of the target patient living in the target ward can be determined based on the ward number of the target ward. Taking step S101 as an example, it is assumed that the ward number of ward A is ward number A.

[0121] Step S1012: Search the ward number in the preset registration database.

[0122] The preset registration database includes multiple preset ward numbers, each of which corresponds to preset identity information and admission status of multiple patients, where the admission status includes admitted and discharged.

[0123] For the embodiment of the present application, the preset registration library is a pre-set hospitalization registration library. When a patient needs to be hospitalized, the patient's information and the ward where the patient is staying will be registered in the preset registration library. That is, the preset registration library includes multiple preset ward numbers, and each preset ward number corresponds to the preset identity information and admission status of multiple patients. Assume that the preset registration library includes a preset ward number A and a preset ward number B, and the preset identity information of the patient corresponding to the preset ward number A is preset identity information A and preset identity information B, wherein the admission status corresponding to the preset identity information A is admitted, and the admission status of the preset identity information B is discharged. Ward number A is searched in the preset registration library, so that the identity information of the patient corresponding to ward number A can be determined from the preset registration library.

[0124] Step S1013: Determine the preset identity information corresponding to the target ward number as the identity information to be determined.

[0125] The target ward number is a preset ward number that is the same as the ward number in the preset registration database.

[0126] In the embodiment of the present application, taking steps S1011 and S1012 as an example, it can be determined that the target ward number is the preset ward number A, that is, it can be further determined that the identity information to be determined is the preset identity information A and the preset identity information B. This allows the identity information of the target patient in ward A to be determined from the preset identity information A and the preset identity information B.

[0127] Step S1014: determine the identity information to be determined whose check-in status is checked-in as the identity information of the target patient.

[0128] In this embodiment of the present application, since each ward corresponds to both currently hospitalized patients and discharged patients, it is necessary to determine the currently hospitalized patient from among the multiple patients corresponding to the ward. Therefore, the identity information of the target patient whose admission status is "accepted" can be determined as the identity information of the target patient. Taking steps S1012 and S1013 as an example, the identity information of the target patient corresponding to ward A can be determined to be preset identity information A from preset identity information A and preset identity information B. This achieves the effect of obtaining the identity information of the target patient.

[0129] In a possible implementation of the embodiment of the present application, when determining the current physical condition of the target patient based on the identity information and the current body temperature, step S102 includes step S1021 (not shown in the figure), step S1022 (not shown in the figure), and step S1023 (not shown in the figure), wherein step S1021 and step S1022 are performed simultaneously.

[0130] Step S1021: If the current body temperature reaches the preset fever temperature, it is determined that the body condition is in a fever state.

[0131] For the embodiment of the present application, the preset fever temperature is a temperature set in advance as a standard for determining whether the target patient has a fever. Assuming that the preset fever temperature is 37.3°C, taking step S101 as an example, it can be determined that patient A is not in a fever state.

[0132] Step S1022: Obtain video information containing facial information within a preset time period, and determine whether the physical condition belongs to an exercise recovery state based on the video information.

[0133] For the embodiment of the present application, the preset time is a time set in advance. As a standard for obtaining video information, a preset time is generally set to ensure that the video information obtained is video information that can determine the patient's current physical condition. Assuming that the preset time is 40 minutes from the current time, the preset time can be manually input by medical staff by observing the target patient's exercise time, or it can be based on the video information collected by the image acquisition device in the hospital to identify the exercise behavior of the target patient living in the target ward, and statistically calculate the average exercise time of the target patient, and set the preset time based on the average exercise time. The identity information corresponding to the target patient includes the target patient's facial information. Video information containing the facial information of patient A within 40 minutes from the current time is obtained, and based on the video information, it is determined whether the current physical condition of patient A is in the exercise-calmed state, thereby achieving the purpose of determining whether the physical condition of patient A is in the exercise-calmed state.

[0134] Step S1023: If the physical condition is neither in the exercise recovery state nor in the fever state, it is determined that the physical condition is in the normal recovery state.

[0135] For the embodiment of the present application, when the physical condition is not in the exercise recovery state or fever state, it can be determined that the target patient is currently in a normal recovery state, thereby achieving the effect of determining whether the target patient's physical condition is in a normal recovery state.

[0136] In a possible implementation method of the embodiment of the present application, step S1022, when determining whether the physical condition belongs to the exercise recovery state based on the video information, includes steps S10221, S10222, and S10223, wherein:

[0137] Step S10221: Perform behavioral feature recognition on the video information to determine whether the target patient has exercise behavior.

[0138] In the embodiment of the present application, behavioral characteristics of the video information are identified to determine whether the target patient has exercise behavior, so that it can be determined whether the current physical condition of the target patient is in an exercise recovery state based on whether there is exercise behavior.

[0139] Step S10222: If so, determine the target patient's exercise duration.

[0140] For the embodiment of the present application, when it is detected in the acquired video information that the target patient has exercised, it indicates that the target patient may have exercised within 40 minutes from the current time. Since the target patient may have exercised unintentionally, or there may be recognition errors, and the exercise duration is short, the target patient will not feel hot after the exercise. Therefore, even if the target patient is detected to have exercised, it is necessary to further determine the target patient's exercise duration so as to further determine whether the target patient's physical condition is in an exercise recovery state. Assume that it is detected in the video information that patient A has exercised his arms (for example, swinging his arms) and legs (leg rehabilitation exercises), and it is determined that the exercise duration of patient A's arm and leg exercises is 30 minutes.

[0141] Step S10223: If the exercise duration reaches the preset duration, it is determined that the physical condition belongs to the exercise recovery state.

[0142] In the embodiment of the present application, the preset duration is a pre-set duration as a criterion for determining whether the physical condition is in the exercise recovery state. Assuming the preset duration is 15 minutes, taking step S10222 as an example, it can be determined that the physical condition of patient A is in the exercise recovery state.

[0143] In a possible implementation of the embodiment of the present application, step S103, when determining whether the current temperature needs to be adjusted based on the physical condition and the preset optimal temperature range corresponding to the physical condition, includes step S1031 (not shown in the figure), step S1032 (not shown in the figure), and step S1033 (not shown in the figure), wherein:

[0144] Step S1031, when the physical condition is in a normal recovery state, determine whether the current temperature is in a preset optimal temperature range corresponding to the normal recovery state. If so, determine that the current temperature does not need to be adjusted; if not, determine that the current temperature needs to be adjusted.

[0145] For the embodiment of the present application, assuming that patient A is in a normal recovery state, taking steps S101 and S102 as an example, the current temperature of 21°C is compared with the preset optimal temperature range [18, 22]. It is determined that 21°C is within the preset optimal temperature range [18, 22]. This indicates that patient A will not experience excessive heat or coolness when at 21°C, and it can be determined that the current temperature does not need to be adjusted. Assuming that the current temperature is 23°C, it can be determined that 23°C is not within the preset optimal temperature range [18, 22]. If patient A is kept at 23°C for a long time, he may experience anxiety and stuffiness, and therefore it can be determined that the current temperature needs to be adjusted.

[0146] Step S1032, when the physical condition is in the exercise recovery state, determine whether the current temperature is the same as the first target temperature. If different, determine that the current temperature needs to be adjusted; if the same, determine that the current temperature does not need to be adjusted.

[0147] The first target temperature is the minimum temperature in the preset optimal temperature range corresponding to the exercise recovery state.

[0148] In the embodiment of the present application, taking step S102 as an example, the preset optimal temperature interval corresponding to the exercise recovery state is [20, 22]. Since the target patient is in a relatively hot state during the exercise recovery state and is easily chilled due to illness, the current temperature can be appropriately adjusted to achieve the effect of cooling the target patient without causing the target patient to catch a cold. In [20, 22], 20°C is the lowest temperature that the target patient can accept during the exercise recovery state, so 20°C can be determined as the first target temperature. Taking step S101 as an example, the current temperature of 21°C is different from the first target temperature of 20°C, indicating that the current temperature can be lowered to allow the target patient to feel cooler. This achieves the effect of placing the target patient in a more comfortable temperature.

[0149] Step S1033, when the body condition is in a fever state, determine whether the current temperature is the same as the second target temperature. If different, determine that the current temperature needs to be adjusted; if the same, determine that the current temperature does not need to be adjusted.

[0150] The second target temperature is the minimum temperature in the preset optimal temperature range corresponding to the heating state.

[0151] For the embodiment of the present application, taking step S102 as an example, the preset optimal temperature interval corresponding to the fever state is [22, 26], and the second target temperature is 22°C. Assuming that the physical condition of patient A is in a fever state, patient A is prone to feeling hot. In order to help patient A reduce the burning sensation, and because patient A is in poor physical condition and is prone to feeling cold when having a fever, when adjusting the temperature in ward A, the room temperature needs to be kept at [22, 26] to avoid the temperature being too low and causing patient A to catch a cold. That is, it can be determined whether 21°C and 22°C are the same. If they are different, it means that patient A may feel cold at 21°C, and it can be determined that the current temperature needs to be adjusted. If they are the same, it means that if the temperature continues to drop, the target patient will catch a cold. If the temperature continues to rise, the target patient's burning sensation will become more intense, which is not conducive to the target patient's recovery. Therefore, it can be determined that the current temperature does not need to be adjusted.

[0152] In the embodiment of the present application, due to different physical conditions, the target patient may feel different temperatures when catching a cold or feeling hot, that is, the preset optimal temperature ranges corresponding to different physical conditions are different.

[0153] In a possible implementation of the embodiment of the present application, when adjusting the current temperature based on the physical condition and the current temperature, step S104 includes step S1041 (not shown in the figure), step S1042 (not shown in the figure), and step S1043 (not shown in the figure), wherein:

[0154] Step S1041, when the physical condition is in a normal recovery state, calculate the first temperature difference. If the first temperature difference is less than the first preset temperature difference, lower or increase the current output temperature by the first temperature difference. If the first temperature difference reaches the first preset temperature difference, adjust the current output temperature based on the first preset temperature difference.

[0155] Among them, the first temperature difference is the difference between the current temperature and the third target temperature, the third target temperature is the boundary temperature in the preset optimal temperature range corresponding to the normal recovery state, and the current output temperature is the current output temperature of the air conditioner corresponding to the target ward.

[0156] In the embodiment of the present application, taking step S102 as an example, the third target temperature is 18°C ​​and 22°C, and assuming the current temperature is 23°C, the first temperature difference is 5°C and 1°C. In the embodiment of the present application, the specific calculation formula for calculating the first temperature difference is T1=T2-T3, where T1 is the first temperature difference, T2 is the current temperature, and T3 is the third target temperature. The first preset temperature difference is a pre-set temperature difference. As a criterion for determining whether the first temperature difference is large, when the first temperature difference is small, even if the output temperature of the air conditioner corresponding to the target ward, i.e., the current output temperature, is directly adjusted according to the first temperature difference, there will be no sudden temperature change that may cause the target patient to catch a cold or feel uncomfortable. Therefore, the current output temperature can be adjusted downward or upward by the first temperature difference. Assuming the first preset temperature difference is 1.5°C, and the first temperature difference is 5°C and 1°C, since a 1°C reduction can bring the temperature in the target ward down to the preset optimal temperature range, thus achieving the condition where no adjustment is required, the current output temperature is adjusted downward by 1°C to achieve the effect of adjusting the current temperature.

[0157] When the first temperature difference reaches the first preset temperature difference, it means that the first temperature difference is large. Assume that the first temperature difference is 2°C and 6°C. Since the target patient is currently hospitalized and has a poor physical condition, if the temperature is directly lowered by 2°C, the target patient may catch a cold. Therefore, the current output temperature can be adjusted according to the first preset temperature difference. The specific implementation method is to first lower the current output temperature by 1.5°C. After a specific time, if the current temperature is not within the [18, 22] interval, the first temperature difference is calculated in a loop, the current output temperature is adjusted according to the first temperature difference, and whether the current temperature is within the [18, 22] interval is detected until the current temperature is within the [18, 22] interval.

[0158] Step S1042, when the physical condition is in the exercise recovery state, calculate the second temperature difference. If the second temperature difference is less than the second preset temperature difference, lower or increase the current output temperature by the second temperature difference. If the second temperature difference reaches the second preset temperature difference, adjust the current output temperature based on the second preset temperature difference.

[0159] The second temperature difference is the difference between the current temperature and the first target temperature, and the second preset temperature difference is smaller than the first preset temperature difference.

[0160] For the embodiment of the present application, it is assumed that patient A is in the exercise recovery state, and the current temperature is 21.5°C. The second preset temperature difference is a temperature difference set in advance, which is used as a standard for judging the smaller temperature difference in the exercise recovery state. Compared with the normal recovery state, the target patient is more likely to feel the temperature change in the exercise recovery state. Therefore, the second preset temperature difference is smaller than the first preset temperature difference to avoid the target patient from feeling cold. Assuming that the second preset temperature difference is 1°C, the second temperature difference is the difference between the current temperature and the first target temperature. Taking step S102 as an example, the first target The target temperature is 20℃, and the calculated second temperature difference is 1.5℃. The second temperature difference reaches the second preset temperature difference, which means that the second temperature difference is large. If it is directly lowered by 1.5, the target patient will catch a cold. Therefore, the current output temperature can be adjusted according to the second preset temperature difference. The specific implementation method is to first lower the current output temperature by 1℃. After a specific time, if the current temperature is not the same as 20℃, the steps of calculating the second temperature difference, adjusting the current output temperature according to the second temperature difference, and detecting whether the current temperature is the same as 20℃ are executed in a loop until the current temperature is the same as 20℃.

[0161] Step S1043, when the body condition is in a fever state, calculate the third temperature difference. If the third temperature difference is less than the second preset temperature difference, lower or increase the current output temperature by the third temperature difference. If the third temperature difference reaches the second preset temperature difference, adjust the current output temperature based on the second preset temperature difference.

[0162] The second temperature difference is the difference between the current temperature and the second target temperature.

[0163] For the embodiment of the present application, it is assumed that patient A is in a fever state, and the current temperature is 25°C. The second preset temperature difference is a temperature difference set in advance, which is used as a standard for judging the smaller temperature difference in the exercise recovery state. Since the target patient is also more likely to feel the temperature change in the fever state, the preset temperature difference used in the fever state is the same as the preset temperature difference used in the exercise recovery state in the embodiment of the present application. Taking step S1042 as an example, the second preset temperature difference is 1°C, and the third temperature difference is the difference between the current temperature and the first target temperature. Taking step S102 as an example, the second preset temperature difference is 1°C. The second target temperature is 22°C, and the calculated third temperature difference is 3°C. The third temperature difference reaches the second preset temperature difference, which means that the third temperature difference is large. If it is directly lowered by 3°C, the target patient will catch a cold. Therefore, the current output temperature can be adjusted according to the second preset temperature difference. The specific implementation method is to first lower the current output temperature by 1°C. If the current temperature is not the same as 22°C after a specific time, the first temperature difference is calculated in a loop, the current output temperature is adjusted according to the first temperature difference, and whether the current temperature is the same as 22°C is detected until the current temperature is the same as 22°C.

[0164] In a possible implementation of the embodiment of the present application, step S103 further includes step S105 (not shown in the figure), step S106 (not shown in the figure), step S107 (not shown in the figure), step S108 (not shown in the figure), and step S109, wherein:

[0165] Step S106: If no adjustment is required, the current time and door video information are obtained.

[0166] The door video information is video information including an image of the door of the target ward.

[0167] For the embodiment of the present application, the target patient in the target ward has a corresponding accompanying person. When the current temperature does not need to be adjusted, the more people there are in the target ward, the more heat is generated, that is, the temperature in the current target ward will increase faster. Therefore, when the current temperature does not need to be adjusted, the current time and door video information can be obtained. Since the door video information is video information including the door image of the target ward, the entry and exit of people in the target ward can be checked according to the door information, so that the number of people in the target ward can be determined later according to the door video information.

[0168] Step S107: Determine the number of accompanying personnel in the current target ward based on the door video information.

[0169] In this embodiment of the present application, the number of accompanying personnel in the current target ward is determined based on the door video information, so that the temperature increase rate in the target ward can be calculated based on the number of accompanying personnel. Taking step S101 as an example, assume that the number of accompanying personnel in the current ward A is determined to be 3 based on the door video information.

[0170] In an embodiment of the present application, the method for determining the number of accompanying personnel in the current target ward based on the door video information can be to perform target recognition processing on the door video information, determine the number of people entering ward A and the number of people leaving ward A from the time patient A admitted to ward A to the current time, and subtract the number of people leaving from the number of people entering to obtain the number of accompanying personnel currently in the target ward.

[0171] Step S108: Determine the temperature increase rate in the current target ward based on the number of accompanying personnel and a preset formula.

[0172] In this embodiment, the preset formula is a pre-set formula that can calculate the temperature growth rate based on the number of people. In this embodiment, the preset formula is V = 0.27N, where V is the temperature growth rate and N is the number of accompanying people. Taking step S107 as an example, the calculated temperature growth rate in Ward A is 0.81°C / h (degrees Celsius / hour).

[0173] Step S109, calculating the time to be adjusted based on the temperature growth rate, the current temperature and the preset optimal temperature range corresponding to the physical condition.

[0174] For the embodiment of the present application, the formula for calculating the time to be adjusted can be T=(AB) / 0.81, where A represents the maximum value within the preset optimal temperature range corresponding to the physical condition, and B represents the current temperature. Taking step S108 as an example, assuming that the current temperature is 21.19°C, the physical condition of patient A is in a normal recovery state, and the preset optimal temperature range corresponding to the normal recovery state is [18,22], the time to be adjusted can be calculated to be 1 hour.

[0175] Step S110: adjusting the output temperature of the air conditioner in the target ward based on the time to be adjusted.

[0176] In the embodiment of the present application, taking step S109 as an example, it can be clearly seen that after 1 hour, the temperature in ward A will reach 22°C, which is about to exceed the preset optimal temperature range corresponding to the normal recovery state. Therefore, the temperature in ward A can be adjusted after 1 hour to prevent the temperature in the ward from exceeding the preset optimal temperature range, thereby causing the personnel in the target ward to feel hot or stuffy. In the embodiment of the present application, the method for adjusting the temperature in the target ward can be to adjust the output temperature of the air conditioner in the target ward, or to open the door or window of the target ward for ventilation and cooling, which is not limited here.

[0177] In a possible implementation of the embodiment of the present application, step S102 further includes step S110 (not shown in the figure), step S111 (not shown in the figure), and step S112 (not shown in the figure), wherein:

[0178] Step S110 , determining a target preset optimal temperature range corresponding to the target ward based on the physical condition corresponding to each target patient and the preset optimal temperature range corresponding to the physical condition.

[0179] In this embodiment of the present application, assume that there are patients A and B in ward A. Patient A is in the exercise recovery state, and patient B is in the normal recovery state. Taking step S110 as an example, the preset optimal temperature interval corresponding to the exercise recovery state is [20, 23], and the preset optimal temperature interval corresponding to the normal recovery state is [18, 22]. Therefore, the target preset optimal temperature interval for ward A can be determined to be [20, 22].

[0180] In an embodiment of the present application, the target preset optimal temperature interval corresponding to the target ward can be determined by comparing the boundary values ​​of the multiple preset optimal temperature intervals corresponding to the target ward, for example, comparing 18 with 20 to determine the maximum value, determining the maximum value as the minimum value of the target preset optimal temperature interval, comparing 22 with 23 to determine the minimum value, determining the minimum value as the maximum value of the target preset optimal temperature interval, and then obtaining the target preset optimal temperature interval as [20,22]. If there is no overlap in the preset optimal temperature intervals in the target ward, the preset optimal temperature interval corresponding to the physical condition that is more sensitive to temperature perception can be determined as the target preset optimal temperature interval. Taking step S102 as an example, the preset optimal temperature interval corresponding to the fever state and the preset optimal temperature interval corresponding to the normal recovery state have no overlap, and the fever state is more sensitive to temperature perception. Therefore, when there are patients in the fever state and patients in the normal recovery state at the same time in the target ward, the preset optimal temperature interval corresponding to the fever state can be determined as the target preset optimal temperature interval.

[0181] Step S111: If the current temperature is within the target preset optimal temperature range, it is determined that the current temperature does not need to be adjusted.

[0182] For the embodiment of the present application, taking step S110 as an example, the target preset optimal temperature range corresponding to ward A is [20, 22]. Taking step S101 as an example, it can be determined that the current temperature does not need to be adjusted.

[0183] Step S112: If the current temperature is not within the target preset optimal temperature range, the current temperature is adjusted based on the target preset optimal temperature range and the current temperature.

[0184] For the embodiment of the present application, assuming that the current temperature is 22.5°C, 22.5°C is not in the range of [20, 22], indicating that the current temperature needs to be adjusted. It can be adjusted according to [20, 22] and 22.5°C, so as to achieve the effect of ensuring that each target patient in the target ward is at a temperature suitable for recovery.

[0185] In an embodiment of the present application, the current temperature can be adjusted according to the target preset optimal temperature range and the current temperature by calculating the difference between the current temperature and the maximum value in the target preset optimal temperature range, and judging whether the calculated difference reaches a third preset temperature difference. The third temperature difference is the minimum preset temperature difference among the preset temperature differences corresponding to the physical condition in the target ward. When the calculated difference does not reach the third preset temperature difference, the output temperature of the air conditioner in the target ward can be directly lowered or increased by the calculated difference. When the calculated difference reaches the third preset temperature difference, the current output temperature can be adjusted based on the second preset temperature difference.

[0186] The above embodiment introduces a method for analyzing and monitoring a medical environment from the perspective of a method flow. The following embodiment introduces a device 20 for analyzing and monitoring a medical environment from the perspective of a virtual module or a virtual unit. Please refer to the following embodiment for details.

[0187] The embodiment of the present application provides a device 20 for analyzing and monitoring a medical environment, such as Figure 2 As shown, the medical environment analysis and monitoring device 20 may specifically include:

[0188] The first acquisition module 201 is used to obtain the current temperature in the target ward, the identity information of the target patient corresponding to the target ward, and the current body temperature of the target patient;

[0189] The first determination module 202 is configured to determine the current physical condition of the target patient based on the identity information and the current body temperature. The physical condition includes a calming state after exercise, a fever state, and a normal recovery state. The calming state after exercise is the state of the target patient after undergoing rehabilitation exercise. The physical condition corresponds to a preset optimal temperature range.

[0190] The first judgment module 203 is used to judge whether the current temperature needs to be adjusted based on the physical condition;

[0191] The first adjustment module 204 is configured to adjust the current temperature based on the physical condition and the current temperature when adjustment is required.

[0192] By adopting the above technical solution, the first acquisition module 201 obtains the identity information of the target patient corresponding to the target ward and the current body temperature of the target patient, so that the subsequent first determination module 202 can determine the current physical condition of the target patient based on the identity information and the current body temperature, wherein the physical condition includes exercise calming state, fever state and normal recovery state, and the exercise calming state is the state of the target patient after undergoing rehabilitation exercise. The first acquisition module 201 obtains the current temperature in the target ward, so as to combine the physical condition of the target patient and the preset optimal temperature range corresponding to the physical condition. The first judgment module 203 can determine whether the current temperature needs to be adjusted. When adjustment is required, due to the different physical conditions of the target patients, the degree of demand for the temperature in the target ward is different. Therefore, the first adjustment module 204 can be adjusted according to the physical condition and the current temperature to achieve the effect of more accurately adjusting the temperature in the ward.

[0193] In one possible implementation of the embodiment of the present application, when the first acquisition module 201 acquires the identity information of the target patient corresponding to the target ward, it is specifically configured to:

[0194] Get the ward number of the target ward;

[0195] Searching the ward number in a preset registration database, wherein the preset registration database includes multiple preset ward numbers, each of which corresponds to preset identity information and admission status of multiple patients, where the admission status includes admitted and discharged;

[0196] Determine the preset identity information corresponding to the target ward number as the identity information to be determined, and the target ward number is the preset ward number that is the same as the ward number in the preset registration database;

[0197] The pending identity information of the patient whose admission status is admitted is determined as the identity information of the target patient.

[0198] In one possible implementation of the embodiment of the present application, when the first determination module 202 determines the current physical condition of the target patient based on the identity information and the current body temperature, it is specifically configured to:

[0199] If the current body temperature reaches the preset fever temperature, it is determined that the body condition is feverish;

[0200] Obtaining video information containing facial information within a preset time period, and determining whether the physical condition is in a state of recovery from exercise based on the video information;

[0201] If the physical condition is not in the state of recovery from exercise or fever, it is determined that the physical condition is in a normal recovery state;

[0202] Determining whether the physical condition is in a state of recovery from exercise based on video information includes:

[0203] Identify behavioral characteristics of video information to determine whether the target patient has exercise behavior;

[0204] If available, determine the duration of exercise for the target patient;

[0205] If the exercise duration reaches the preset duration, it is determined that the physical condition is in the exercise recovery state.

[0206] In one possible implementation of the embodiment of the present application, the first determination module 203 determines whether the current temperature needs to be adjusted based on the physical condition, specifically for:

[0207] When the physical condition is in a normal recovery state, determining whether the current temperature is within a preset optimal temperature range corresponding to the normal recovery state, if so, determining that the current temperature does not need to be adjusted; if not, determining that the current temperature needs to be adjusted;

[0208] When the physical condition is in the exercise recovery state, it is determined whether the current temperature is the same as the first target temperature. If different, it is determined that the current temperature needs to be adjusted. If the same, it is determined that the current temperature does not need to be adjusted. The first target temperature is the minimum temperature in the preset optimal temperature range corresponding to the exercise recovery state;

[0209] When the body condition is in a fever state, determine whether the current temperature is the same as the second target temperature. If different, determine that the current temperature needs to be adjusted. If the same, determine that the current temperature does not need to be adjusted. The second target temperature is the minimum temperature in the preset optimal temperature range corresponding to the fever state.

[0210] In one possible implementation of the embodiment of the present application, the first adjustment module 204 adjusts the current temperature based on the physical condition and the current temperature, specifically for:

[0211] When the physical condition is in a normal recovery state, a first temperature difference is calculated. If the first temperature difference is less than a first preset temperature difference, the current output temperature is lowered or increased by the first temperature difference. If the first temperature difference reaches the first preset temperature difference, the current output temperature is adjusted based on the first preset temperature difference. The first temperature difference is the difference between the current temperature and a third target temperature. The third target temperature is the boundary temperature in the preset optimal temperature range corresponding to the normal recovery state. The current output temperature is the current output temperature of the air conditioner corresponding to the target ward.

[0212] When the physical condition is in a state of recovery from exercise, a second temperature difference is calculated. If the second temperature difference is less than a second preset temperature difference, the current output temperature is lowered or increased by the second temperature difference. If the second temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference. The second temperature difference is the difference between the current temperature and the first target temperature, and the second preset temperature difference is less than the first preset temperature difference.

[0213] When the body condition is in a feverish state, the third temperature difference is calculated. If the third temperature difference is less than the second preset temperature difference, the current output temperature is lowered or increased by the third temperature difference. If the third temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference. The second temperature difference is the difference between the current temperature and the second target temperature.

[0214] In a possible implementation of the embodiment of the present application, the apparatus 20 further includes:

[0215] A second acquisition module is used to acquire the current time and door video information when no adjustment is required, where the door video information is video information including an image of the door of the target ward;

[0216] The second determination module is used to determine the number of accompanying personnel in the current target ward based on the door video information;

[0217] The third determination module is used to determine the temperature increase rate in the current target ward based on the number of accompanying personnel and a preset formula;

[0218] A calculation module, for calculating the time to be adjusted based on the temperature growth rate, the current temperature and the preset optimal temperature range corresponding to the physical condition;

[0219] The second adjustment module is used to adjust the output temperature of the air conditioner in the target ward based on the time to be adjusted.

[0220] In a possible implementation of the embodiment of the present application, the apparatus 20 further includes:

[0221] A fourth determining module is configured to determine a target preset optimal temperature range corresponding to a target ward based on the physical condition of each target patient and the preset optimal temperature range corresponding to the physical condition;

[0222] A fifth determining module, configured to determine that the current temperature does not need to be adjusted when the current temperature is within the target preset optimal temperature range;

[0223] The third adjustment module is configured to adjust the current temperature based on the target preset optimal temperature range and the current temperature when the current temperature is not within the target preset optimal temperature range.

[0224] Those skilled in the art will clearly understand that, for the convenience and brevity of description, the specific working processes of the systems, devices and units described above can refer to the corresponding processes in the aforementioned method embodiments and will not be repeated here.

[0225] An electronic device is provided in an embodiment of the present application, such as Figure 3 As shown, Figure 3 The electronic device 30 shown includes a processor 301 and a memory 303. The processor 301 and the memory 303 are connected, for example, via a bus 302. Optionally, the electronic device 30 may further include a transceiver 304. It should be noted that in actual applications, the number of transceivers 304 is not limited to one, and the structure of the electronic device 30 does not constitute a limitation on the embodiments of the present application.

[0226] Processor 301 can be a CPU (Central Processing Unit), a general-purpose processor, a DSP (Digital Signal Processor), an ASIC (Application Specific Integrated Circuit), an FPGA (Field Programmable Gate Array), or other programmable logic device, transistor logic device, hardware component, or any combination thereof. It can implement or execute the various exemplary logic blocks, modules, and circuits described in conjunction with the disclosure of this application. Processor 301 can also be a combination that implements computing functions, such as a combination including at least one microprocessor, a combination of a DSP and a microprocessor, etc.

[0227] Bus 302 may include a path for transmitting information between the above components. Bus 302 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus. Bus 302 may be divided into an address bus, a data bus, a control bus, etc. For ease of illustration, Figure 3 Only one thick line is used in the diagram, but it does not mean that there is only one bus or one type of bus.

[0228] The memory 303 may be a ROM (Read Only Memory) or other type of static storage device that can store static information and instructions, a RAM (Random Access Memory) or other type of dynamic storage device that can store information and instructions, or an EEPROM (Electrically Erasable Programmable Read Only Memory), a CD-ROM (Compact Disc Read Only Memory) or other optical disk storage, optical disk storage (including compact discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.), a magnetic disk storage medium or other magnetic storage device, or any other medium that can be used to carry or store desired program code in the form of instructions or data structures and can be accessed by a computer, but is not limited thereto.

[0229] The memory 303 is used to store application code for executing the solution of the present application, and the execution is controlled by the processor 301. The processor 301 is used to execute the application code stored in the memory 303 to implement the content shown in the above method embodiment.

[0230] Electronic devices include, but are not limited to, mobile terminals such as mobile phones, laptop computers, digital broadcast receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), and in-vehicle terminals (e.g., in-vehicle navigation terminals), as well as fixed terminals such as digital TVs and desktop computers. They may also include servers, etc. Figure 3 The electronic device shown is merely an example and should not limit the functions and scope of use of the embodiments of the present application.

[0231] The embodiment of the present application provides a computer-readable storage medium having a computer program stored thereon, which, when executed on a computer, enables the computer to execute the corresponding contents of the aforementioned method embodiment. Compared with the related art, in the embodiment of the present application, the identity information of the target patient corresponding to the target ward and the current body temperature of the target patient are obtained, so that the current physical condition of the target patient can be determined based on the identity information and the current body temperature, wherein the physical condition includes an exercise calming state, a fever state, and a normal recovery state, and the exercise calming state is the state of the target patient after undergoing rehabilitation exercise, and the current temperature in the target ward is obtained, so as to determine whether the current temperature needs to be adjusted in combination with the physical condition of the target patient and the preset optimal temperature range corresponding to the physical condition. When adjustment is required, since the physical condition of the target patient is different, the degree of demand for the temperature in the target ward is different, so adjustment is made according to the physical condition and the current temperature, thereby achieving the effect of more accurately adjusting the temperature in the ward.

[0232] It should be understood that although the steps in the flowcharts of the accompanying drawings are shown in sequence as indicated by the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some of the steps in the flowcharts of the accompanying drawings may include multiple sub-steps or multiple stages, and these sub-steps or stages are not necessarily executed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be executed in turn or alternately with other steps or at least a portion of the sub-steps or stages of other steps.

[0233] The above are only some of the implementation methods of the present application. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present application. These improvements and modifications should also be regarded as the scope of protection of the present application.

Claims

1. A method for analyzing and monitoring a medical environment, characterized in that: include: Obtaining the current temperature in the target ward, the identity information of the target patient corresponding to the target ward, and the current body temperature of the target patient, wherein the identity information includes facial information; If the current body temperature reaches a preset fever temperature, it is determined that the physical condition is a fever state, and the physical condition includes an exercise calming state, a fever state, and a normal recovery state. The exercise calming state is the state of the target patient after undergoing rehabilitation exercise, and the physical condition corresponds to a preset optimal temperature range; Obtaining video information containing the facial information within a preset historical time period, performing behavioral feature recognition on the video information, and determining whether the target patient has exercise behavior; If so, determining the target patient's exercise duration; If the exercise duration reaches the preset duration, it is determined that the physical condition belongs to the exercise recovery state; If the physical condition does not belong to the exercise recovery state or the fever state, it is determined that the physical condition belongs to the normal recovery state; Based on the physical condition and the preset optimal temperature range corresponding to the physical condition, determining whether the current temperature needs to be adjusted; If adjustment is required, adjusting the current temperature based on the physical condition and the current temperature includes: When the physical condition belongs to the normal recovery state, a first temperature difference is calculated. If the first temperature difference is less than a first preset temperature difference, the current output temperature is lowered or increased by the first temperature difference. If the first temperature difference reaches the first preset temperature difference, the current output temperature is adjusted based on the first preset temperature difference. The first temperature difference is the difference between the current temperature and a third target temperature. The third target temperature is a boundary temperature in a preset optimal temperature range corresponding to the normal recovery state. The current output temperature is the current output temperature of the air conditioner corresponding to the target ward. When the physical condition belongs to the exercise-calm state, a second temperature difference is calculated; if the second temperature difference is less than a second preset temperature difference, the current output temperature is lowered or increased by the second temperature difference; if the second temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference, the second temperature difference is the difference between the current temperature and the first target temperature, the second preset temperature difference is less than the first preset temperature difference, and the first target temperature is the minimum temperature in the preset optimal temperature range corresponding to the exercise-calm state; When the physical condition belongs to the fever state, the third temperature difference is calculated. If the third temperature difference is less than the second preset temperature difference, the current output temperature is lowered or increased by the third temperature difference. If the third temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference. The third temperature difference is the difference between the current temperature and the second target temperature. The second target temperature is the minimum temperature in the preset optimal temperature range corresponding to the fever state.

2. A method for analyzing and monitoring a medical environment according to claim 1, characterized in that: Obtaining the identity information of the target patient corresponding to the target ward includes: Obtain the ward number of the target ward; Searching the ward number in a preset registration database, wherein the preset registration database includes a plurality of preset ward numbers, each of which corresponds to preset identity information and admission status of a plurality of patients, wherein the admission status includes admitted and discharged; Determine the preset identity information corresponding to the target ward number as the identity information to be determined, wherein the target ward number is the preset ward number in the preset registration database that is the same as the ward number; The identity information to be determined whose check-in status is checked-in is determined as the identity information of the target patient.

3. The method for analyzing and monitoring a medical environment according to claim 1, wherein: The determining whether the current temperature needs to be adjusted based on the physical condition and the preset optimal temperature range corresponding to the physical condition includes: When the physical condition belongs to the normal recovery state, determining whether the current temperature is within the preset optimal temperature range corresponding to the normal recovery state, if so, determining that the current temperature does not need to be adjusted; if not, determining that the current temperature needs to be adjusted; When the physical condition belongs to the exercise recovery state, determining whether the current temperature is the same as the first target temperature, if different, determining that the current temperature needs to be adjusted, and if the same, determining that the current temperature does not need to be adjusted; When the physical condition belongs to the fever state, it is determined whether the current temperature is the same as the second target temperature. If different, it is determined that the current temperature needs to be adjusted; if the same, it is determined that the current temperature does not need to be adjusted.

4. The method for analyzing and monitoring a medical environment according to claim 1, wherein: The target patient has a caregiver, and based on the physical condition and the preset optimal temperature range corresponding to the physical condition, it is determined whether the current temperature needs to be adjusted, and then the following further includes: If no adjustment is required, the current time and door video information are obtained, where the door video information is video information including an image of the door of the target ward; Determine the number of accompanying personnel currently in the target ward based on the door video information; Determine the current temperature growth rate in the target ward based on the number of accompanying personnel and a preset formula, wherein the preset formula is a pre-set formula that can calculate the temperature growth rate based on the number of personnel; Calculate the time to be adjusted based on the temperature growth rate, the current temperature, and the preset optimal temperature range corresponding to the physical condition. The formula for the time to be adjusted is T=(AB) / V, where A represents the maximum value within the preset optimal temperature range corresponding to the physical condition, B represents the current temperature, and V represents the temperature growth rate; Based on the time to be adjusted, the output temperature of the air conditioner in the target ward is adjusted.

5. The method for analyzing and monitoring a medical environment according to claim 1, wherein: The number of the target patients is at least two, and the method further comprises: Determine a target preset optimal temperature range corresponding to the target ward based on the physical condition corresponding to each target patient and the preset optimal temperature range corresponding to the physical condition; If the current temperature is within the target preset optimal temperature range, determining that the current temperature does not need to be adjusted; If the current temperature is not within the target preset optimal temperature range, the current temperature is adjusted based on the target preset optimal temperature range and the current temperature.

6. A device for analyzing and monitoring a medical environment, characterized in that: include: A first acquisition module is configured to acquire the current temperature in a target ward, the identity information of a target patient corresponding to the target ward, and the current body temperature of the target patient, wherein the identity information includes facial information; a first determination module, configured to determine that the patient's physical condition is a fever state if the current body temperature reaches a preset fever temperature, wherein the physical condition includes an exercise-calmed state, a fever state, and a normal recovery state, wherein the exercise-calmed state is the state of the target patient after undergoing rehabilitation exercise, and the physical condition corresponds to a preset optimal temperature range; Obtaining video information containing the facial information within a preset historical time period, performing behavioral feature recognition on the video information, and determining whether the target patient has exercise behavior; If so, the target patient's exercise duration is determined; if the exercise duration reaches a preset duration, the target patient's physical condition is determined to be in the exercise recovery state; if the target patient's physical condition does not belong to the exercise recovery state or the fever state, the target patient's physical condition is determined to be in the normal recovery state; a first judgment module, configured to judge whether the current temperature needs to be adjusted based on the physical condition and a preset optimal temperature range corresponding to the physical condition; The first adjustment module is used to adjust the current temperature based on the physical condition and the current temperature when adjustment is needed, including: when the physical condition belongs to the normal recovery state, calculating the first temperature difference; if the first temperature difference is less than the first preset temperature difference, lowering or raising the current output temperature by the first temperature difference; if the first temperature difference reaches the first preset temperature difference, adjusting the current output temperature based on the first preset temperature difference; the first temperature difference is the difference between the current temperature and the third target temperature; the third target temperature is the boundary temperature in the preset optimal temperature range corresponding to the normal recovery state; the current output temperature is the current output temperature of the air conditioner corresponding to the target ward; when the physical condition belongs to the exercise calming state, calculating the second temperature difference; if the second temperature difference is less than the second preset temperature difference, lowering or raising the current output temperature. The second temperature difference is calculated. If the second temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference, the second temperature difference is the difference between the current temperature and the first target temperature, the second preset temperature difference is less than the first preset temperature difference, and the first target temperature is the minimum temperature in the preset optimal temperature range corresponding to the exercise calming state; when the physical condition belongs to the fever state, the third temperature difference is calculated. If the third temperature difference is less than the second preset temperature difference, the current output temperature is lowered or increased by the third temperature difference. If the third temperature difference reaches the second preset temperature difference, the current output temperature is adjusted based on the second preset temperature difference, the third temperature difference is the difference between the current temperature and the second target temperature, and the second target temperature is the minimum temperature in the preset optimal temperature range corresponding to the fever state.

7. An electronic device, characterized in that: It includes: at least one processor; Memory; At least one application, wherein the at least one application is stored in the memory and configured to be executed by the at least one processor, and the at least one application is configured to: execute the method for analyzing and monitoring a medical environment according to any one of claims 1 to 5.

8. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed in a computer, the computer is caused to execute the method for analyzing and monitoring a medical environment according to any one of claims 1 to 5.

Citation Information

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