System and method for monitoring the physical and mental state of a patient undergoing oral orthodontic anchorage pin implant surgery

By using an intelligent monitoring system to monitor the physiological signals of patients undergoing orthodontic anchorage screw implantation in real time, assess their physical and mental state, and recommend personalized psychological counseling, the problem of patients' anxiety affecting the quality of surgery is solved, thereby improving patients' comfort and the success rate of surgery.

CN120360515BActive Publication Date: 2025-12-16TIANJIN DENTAL HOSPITAL
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Patent Information

Application Number
CN202510860684.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-25
Publication Date
2025-12-16
Estimated Expiration
2045-06-25

AI Technical Summary

Technical Problem

During orthodontic anchorage screw implantation, patients may experience anxiety due to concerns about intraoperative trauma and postoperative pain, which can affect the quality of the surgery and the patient's comfort. Current technology lacks effective means of monitoring the patient's physical and mental state and providing psychological counseling.

Method used

An intelligent wearable monitoring system was designed, including modules for detecting pulse, body temperature, grip strength, blood pressure, and blood oxygen saturation. The system monitors patients' physiological signals in real time through a microprocessor and cloud analysis platform, determines their physical and mental state, and recommends personalized psychological counseling measures through mobile terminals.

Benefits of technology

It improved patient cooperation and satisfaction during bracing nail implantation surgery, and alleviated patient tension and anxiety through real-time monitoring and personalized psychological care, thereby increasing the success rate of the surgery.

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Abstract

The application discloses an oral orthodontic anchorage nail implantation operation patient's physical and mental state monitoring system and method, relates to the oral orthodontic treatment technical field, and comprises a patient physiological signal information acquisition unit, which is used for collecting patient physiological signal information and transmitting the patient physiological signal information to a processing and analysis unit for processing and analysis; the processing and analysis unit is used for processing and analyzing the collected patient physiological signal information, determining the patient's physical and mental state according to the patient physiological signal information, and triggering an early warning mode; and a mobile terminal platform is used for displaying the early warning mode output by the processing and analysis unit to doctors and patients and recommending a treatment mode according to the early warning mode. The application can record, analyze and feedback the patient's physical physiological information and changes before, during and after operation in a whole cycle, help doctors and nursing staff understand the real-time health condition change trend of the patient, provide guidance and support for clinical operation, help the patient better accept and adapt to the anchorage nail treatment, and improve the patient's acceptance and satisfaction.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of orthodontic treatment, in particular to a patient's physical and mental state monitoring system and method for orthodontic anchorage pin implantation surgery. BACKGROUND

[0002] People-oriented is the core connotation of medical humanistic care, and meeting the psychological needs of patients is a prominent manifestation of people-oriented. In orthodontic diagnosis and treatment, respect for human nature should be fully reflected, not only to relieve patients of physiological pain caused by malocclusion, but also to understand and meet the other psychological needs of patients. Existing research has shown that in orthodontic treatment, spiritual humanistic care has risen to the same important position as medical technology therapy. In addition to receiving positive oral treatment, patients also value the spiritual comfort and attention provided by medical staff. The importance of this attention is not inferior to the treatment of patients' oral diseases.

[0003] Orthodontic anchorage pin is a small titanium alloy screw used in orthodontic treatment, which can achieve complex tooth movement and shorten treatment time by providing absolute anchorage, and is suitable for complex cases, which can significantly improve the efficiency of orthodontic treatment. Orthodontic anchorage pin implantation is an invasive surgery. Most patients will worry about intraoperative trauma and postoperative pain, etc., resulting in varying degrees of nervousness in patients before, during and after surgery, which reduces the comfort and experience of patients, especially the nervous physical and mental state will affect the implantation of orthodontic anchorage pin during surgery, ultimately leading to a decrease in surgical quality or even failure.

[0004] Therefore, it is necessary to develop an intelligent wearable monitoring system for monitoring the physiological information such as pulse and grip strength of patients during anchorage pin implantation, analyzing and determining the physical and mental state of patients through data acquisition, and feeding back the physical and mental state of patients to doctors in real time. Based on a full understanding of the physical and mental state of patients, doctors can provide personalized physical and mental care, improve the cooperation between doctors and patients, complete psychological counseling and mood relief, alleviate the adverse reactions such as nervousness and anxiety of patients during anchorage pin implantation surgery, help patients better accept and adapt to anchorage pin treatment, and overall improve the acceptance and satisfaction of patients. The present application has a profound significance for successfully completing the anchorage pin implantation surgery. SUMMARY

[0005] In view of the problems existing in the present orthodontic anchorage pin implantation surgery, the present application is proposed. Therefore, the problem to be solved by the present application is how to provide a patient's physical and mental state monitoring system and method for orthodontic anchorage pin implantation surgery.

[0006] To solve the above technical problems, the present application provides the following technical solutions:

[0007] The first aspect, the present application provides an oral orthodontic anchorage nail implantation surgery patient's physical and mental state monitoring system, it includes, patient physiological signal information acquisition unit, including pulse acquisition module, temperature detection module, grip sensing module, blood pressure detection module, blood oxygen saturation detection module and battery module, for collecting patient physiological signal information and transmission to the processing analysis unit in processing analysis;

[0008] Processing analysis unit, including microprocessor and cloud analysis platform, for processing and analyzing the collected patient physiological signal information, and determining the patient's physical and mental state according to the patient's physiological signal information, triggering the warning mode;

[0009] Mobile terminal platform, for displaying the warning mode output by the processing analysis unit to the doctor and the patient, and recommending the treatment mode according to the warning mode.

[0010] As a preferred scheme of the oral orthodontic anchorage nail implantation surgery patient's physical and mental state monitoring system, wherein: the patient physiological signal information includes patient pulse data, temperature data, grip data, blood pressure data and arterial oxygen saturation data.

[0011] As a preferred scheme of the oral orthodontic anchorage nail implantation surgery patient's physical and mental state monitoring system, wherein: the microprocessor converts the received patient physiological signal information into digital information and stores it, and transmits the stored digital information to the cloud analysis platform through wifi.

[0012] As a preferred scheme of the oral orthodontic anchorage nail implantation surgery patient's physical and mental state monitoring system, wherein: the patient's physical and mental state is determined according to the patient's physiological signal information, including the following contents:

[0013] When the patient's pulse is 60~100 times / min, the patient's pulse data is determined to be normal, and when the patient's pulse is less than 60 or more than 100 times / min, the patient's pulse data is determined to be abnormal;

[0014] When the patient's temperature is 36.3~37.2℃, the patient's temperature data is determined to be normal, and when the patient's temperature is less than 36.3℃ or higher than 37.2℃, the patient's temperature data is determined to be abnormal;

[0015] When the patient's palm grip is less than 5kg, the patient's grip data is determined to be normal, and when the patient's palm grip is higher than 5kg, the patient's grip data is determined to be abnormal;

[0016] When the patient's blood pressure data is within 90~140mmHg and diastolic pressure is within 60~90mmHg, the patient's blood pressure data is determined to be normal, and when either the systolic pressure or the diastolic pressure of the patient's blood pressure data is not within the normal range, the patient's blood pressure data is determined to be abnormal;

[0017] When a patient's arterial oxygen saturation is within 95% to 100%, the patient's arterial oxygen saturation data is considered normal; when a patient's arterial oxygen saturation is below 95%, the patient's arterial oxygen saturation data is considered abnormal.

[0018] Based on the judgment results of the patient's physiological signal information, the normal value is set to 0 and the abnormal value is set to 1, and the binary state of each indicator is obtained.

[0019] Calculate the patient's overall risk score to determine the patient's physical and mental condition.

[0020] As a preferred embodiment of the physical and mental status monitoring system for patients undergoing orthodontic anchorage screw implantation surgery according to the present invention, the calculation of the patient's comprehensive risk score includes the following:

[0021] Obtain physiological signal information of other patients in the historical database and obtain the binarized state of each indicator;

[0022] Construct a data matrix, denoted as ,in, For the first The sample at the th Binary state on each indicator;

[0023] The collected sample data was standardized, and the data in each column was standardized for each sample. Each indicator in The formula for calculating the standardized proportion is:

[0024] ;

[0025] In the formula, For the first The sample at the th The standardized proportions of each indicator For the sample size, It is a constant;

[0026] Calculate the entropy value of each indicator, and then calculate the indicator weight for the current patient based on the entropy value of each indicator. The formula is as follows:

[0027] ;

[0028] ;

[0029] In the formula, As an indicator The entropy value, For the number of indicators, As an indicator The weights;

[0030] The final risk index is calculated by using the index weight and the binary result, and the formula is:

[0031] ;

[0032] ;

[0033] In the formula, is the preliminary risk score, is the binary state of the index , is the final risk index, is the adjustment parameter.

[0034] As a preferred scheme of the patient's physical and mental state monitoring system for the oral orthodontic anchorage pin implantation surgery, wherein: the early warning mode includes the following contents:

[0035] When the final risk index is below the first early warning threshold , it is determined that the early warning mode of the patient's physical and mental state is a mild early warning mode; when the final risk index is between the first early warning threshold and the second early warning threshold , it is determined that the early warning mode of the patient's physical and mental state is a moderate early warning mode; when the final risk index is above the second early warning threshold , it is determined that the early warning mode of the patient's physical and mental state is a severe early warning mode.

[0036] Wherein, the first early warning threshold is less than the second early warning threshold .

[0037] As a preferred scheme of the patient's physical and mental state monitoring system for the oral orthodontic anchorage pin implantation surgery, wherein: the recommended treatment mode according to the early warning mode includes the following contents:

[0038] The cloud analysis platform transmits the early warning mode of the patient to the mobile terminal platform for the doctor and the patient to view;

[0039] When the early warning mode of the patient's physical and mental state is a mild early warning mode, deep breathing guided therapy is recommended; when the early warning mode of the patient's physical and mental state is a moderate early warning mode, deep breathing guided + soothing music therapy is recommended; when the early warning mode of the patient's physical and mental state is a severe early warning mode, deep breathing guided + soothing music + medical staff verbal communication emotional care therapy is recommended.

[0040] ​In a second aspect, the present application provides a method for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation surgery, which comprises: collecting physiological signal information of the patient and processing and analyzing the physiological signal information;

[0041] processing and analyzing the collected physiological signal information of the patient, determining the physical and mental state of the patient according to the physiological signal information of the patient, and triggering a warning mode;

[0042] displaying the output warning mode and recommending a treatment mode according to the warning mode.

[0043] In a third aspect, the present application provides a computer device comprising a memory and a processor, wherein the memory stores a computer program, and wherein the processor implements the steps of the method for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation surgery when executing the computer program.

[0044] In a fourth aspect, the present application provides a computer-readable storage medium having a computer program stored thereon, wherein the computer program implements the steps of the method for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation surgery when executed by a processor.

[0045] The physical physiological information and changes of the patient before, during and after the surgery can be recorded, analyzed and fed back intelligently in a whole cycle, helping doctors and nursing staff to understand the real-time health condition change trend of the patient by actively providing good psychological support and active cooperation with the patient, and providing guidance and support for clinical operation. Meanwhile, personalized physical and mental care is provided for the patient, psychological counseling and emotional decompression are completed, and the patient is helped to better accept and adapt to the anchorage pin treatment, thereby improving the acceptance and satisfaction of the patient. BRIEF DESCRIPTION OF DRAWINGS

[0046] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0047] Fig. 1 The structure diagram of the physical and mental state monitoring system for the patient undergoing the orthodontic anchorage pin implantation surgery;

[0048] Fig. 2 The flowchart of the physical and mental state monitoring method for the patient undergoing the orthodontic anchorage pin implantation surgery;

[0049] Fig. 3 The structure diagram of the physical and mental state monitoring device for the patient undergoing the orthodontic anchorage pin implantation surgery.

[0050] 1. Wrist watchband; 2. Hand grip; 3. Retention adhesive piece; 4. Battery module; 5. Pulse acquisition module; 6. Blood pressure detection module; 7. Microprocessor; 8. Hand grip connector; 9. Body temperature detection module; 10. Grip sensing module; 11. Blood oxygen saturation detection module. DETAILED DESCRIPTION

[0051] In order to make the above objectives, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should fall within the scope of protection of the present application.

[0052] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced without the specific details, which are not described herein. In other instances, well-known methods, procedures and components have not been described in detail so as not to obscure the present application.

[0053] Secondly, the "one embodiment" or "embodiment" referred to herein can include specific features, structures or characteristics contained in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor does it mean an embodiment that is separate or selectively excluded from other embodiments.

[0054] REFERENCE Figs. 1-3 For the first embodiment of the present application, the embodiment provides a patient's physical and mental state monitoring system for orthodontic anchorage nail implant surgery, comprising:

[0055] The patient physiological signal information acquisition unit includes a pulse acquisition module, a body temperature detection module, a grip sensing module, a blood pressure detection module, a blood oxygen saturation detection module and a battery module, which is used to collect patient physiological signal information and transmit it to the processing and analysis unit for processing and analysis.

[0056] The intelligent wearable bracelet device as a carrier of the system comprises a wrist part watchband 1, a palm part holding body 2, and a palm part holding body connecting body 8; the wrist part watchband 1 is a retaining component of the bracelet, comprising a retaining adhesive sheet 3, a battery module 4, a pulse acquisition module 5, a blood pressure detection module 6, and a microprocessor 7; the palm part holding body 2 is ergonomically designed, and contains a body temperature detection module 9, a grip sensing module 10, and a blood oxygen saturation detection module 11. In use, the wrist part watchband 1 is fixedly attached to the wrist of a patient, and the palm part holding body 2 is gripped by the patient during the whole operation. The monitoring module monitors the physiological signal information changes of the patient's pulse, body temperature, palm grip, blood pressure, and arterial oxygen saturation, and the battery module 4 is a thin film battery, which provides the required power for the system operation.

[0057] The processing and analysis unit comprises a microprocessor 7 and a cloud analysis platform, which is used for processing and analyzing the collected physiological signal information of the patient, determining the physical and mental state of the patient according to the physiological signal information of the patient, and triggering the early warning mode;

[0058] The microprocessor 7 receives the above physiological signal information of the patient, converts it into digital information and stores it, and the microprocessor transmits the stored digital information to the cloud analysis platform through wifi;

[0059] The cloud analysis platform determines whether each physiological signal is “normal” or “abnormal” based on the normal value standard range of the physiological signal, and sets the “normal” value as “0” and the “abnormal” value as “1”.

[0060] The pulse is normal at 60-100 times / min, and is abnormal below 60 times / min or above 100 times / min; the body temperature is normal at 36.3-37.2℃, and is abnormal below 36.3℃ or above 37.2℃; the palm grip is normal below 5kg, and is abnormal above 5kg; the systolic pressure is normal at 90-140mmHg and the diastolic pressure is normal at 60-90mmHg, and is abnormal if either the systolic pressure or the diastolic pressure is out of the range; the arterial oxygen saturation is normal at 95%-100%, and is abnormal below 95%.

[0061] The contribution degree of each index is extracted from the clinical samples by using a data-driven method, and the weight of each index in the overall risk assessment is determined.

[0062] The comprehensive risk score construction combines the binary state of each index with the objectively determined weight, calculates the overall risk score, and then enhances the risk accumulation effect through nonlinear mapping to obtain the final risk index.

[0063] According to the final risk index, a threshold is set by using a statistical method to divide the early warning mode.

[0064] Collect sample data, obtain patient physiological signal information from historical databases, and obtain the binary status of each indicator (0 represents normal, 1 represents abnormal).

[0065] Construct a data matrix to form a sample The data matrix of the indicator is denoted as ,in For the first The sample at the th Binary state on each indicator.

[0066] The collected sample data was standardized, and the data in each column was standardized.

[0067] Calculate the entropy value of the indicator for each sample. Each indicator in Calculate the standardized proportion The formula is:

[0068] ;

[0069] In the formula, For the sample size, This is to avoid small constants with a denominator of 0.

[0070] Calculation indicators The entropy value is given by the formula:

[0071] ;

[0072] Entropy The smaller the value, the more dispersed the distribution of the indicator in the sample (the greater the amount of information), and the more significant its contribution to risk assessment. Based on the entropy value of each indicator, the indicator weight is calculated using the following formula:

[0073] ;

[0074] In the formula, As an indicator The entropy value, For the number of indicators, As an indicator The weights are calculated in this way to reflect the amount of information provided by each indicator in the sample data. Indicators with high information content (i.e., low entropy) will receive higher weights.

[0075] The final risk index is calculated by using the determined weights of each indicator and the binarization results to calculate the preliminary risk score. The formula is:

[0076] ;

[0077] ;

[0078] wherein, is the final risk index, is an adjustment parameter, which ensures that the risk index rises rapidly when there are more abnormal indicators.

[0079] According to the value of the final risk index, a warning threshold is determined through a large amount of clinical data statistics, and when the final risk index is less than the warning threshold, the patient's mental state is determined to be in a normal state. When the final risk index is between the first warning threshold and the second warning threshold, the patient's mental state is determined to be in a moderate warning mode. When the final risk index is greater than the second warning threshold, the patient's mental state is determined to be in a severe warning mode. When the final risk index is between the first warning threshold and the second warning threshold, the patient's mental state is determined to be in a moderate warning mode. When the final risk index is greater than the second warning threshold, the patient's mental state is determined to be in a severe warning mode. When the final risk index is between the first warning threshold and the second warning threshold, the patient's mental state is determined to be in a moderate warning mode. When the final risk index is greater than the second warning threshold, the patient's mental state is determined to be in a severe warning mode. Wherein, the first warning threshold is less than the second warning threshold.

[0080] The mobile terminal platform is used to display the warning mode output by the processing and analysis unit to the doctor and the patient, and recommend a treatment method according to the warning mode. The cloud analysis platform transmits the warning mode of the patient to the mobile terminal platform for the doctor and the patient to view. After receiving the warning signal through the mobile terminal platform, the doctor selects the deep breathing guided therapy (light warning mode), the deep breathing guided + soothing music therapy (moderate warning mode), and the deep breathing guided + soothing music + medical staff verbal communication emotional care therapy (severe warning mode) measures to relieve the anxiety and fear of the patient, so as to calm the patient's emotions and successfully complete the orthodontic anchorage pin implantation and subsequent related treatment.

[0081] The first warning threshold and the second warning threshold can be obtained through clinical verification data, so that the warning mode is more in line with the actual intervention needs.

[0082] The first warning threshold and the second warning threshold can be obtained through clinical verification data, so that the warning mode is more in line with the actual intervention needs.

[0083] Further, the embodiment also provides a method for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation surgery, which comprises: collecting physiological signal information of the patient for processing and analysis; processing and analyzing the collected physiological signal information of the patient, and determining the physical and mental state of the patient according to the physiological signal information of the patient to trigger a warning mode; displaying the output warning mode, and recommending a treatment method according to the warning mode. Further, the embodiment also provides a method for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation surgery, which comprises: collecting physiological signal information of the patient for processing and analysis; processing and analyzing the collected physiological signal information of the patient, and determining the physical and mental state of the patient according to the physiological signal information of the patient to trigger a warning mode; displaying the output warning mode, and recommending a treatment method according to the warning mode.

[0084] Further, the embodiment also provides a method for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation surgery, which comprises: collecting physiological signal information of the patient for processing and analysis; processing and analyzing the collected physiological signal information of the patient, and determining the physical and mental state of the patient according to the physiological signal information of the patient to trigger a warning mode; displaying the output warning mode, and recommending a treatment method according to the warning mode.

[0085] Further, the embodiment also provides a method for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation surgery, which comprises: collecting physiological signal information of the patient for processing and analysis; processing and analyzing the collected physiological signal information of the patient, and determining the physical and mental state of the patient according to the physiological signal information of the patient to trigger a warning mode; displaying the output warning mode, and recommending a treatment method according to the warning mode.​The embodiment also provides a computer device suitable for the mental and physical state monitoring system of an orthodontic anchorage pin implantation surgery patient, comprising a memory and a processor; the memory is used for storing computer executable instructions, and the processor is used for executing the computer executable instructions to realize all or part of the steps of the method according to the embodiment of the application.

[0086] The embodiment also provides a storage medium having a computer program stored thereon, and the computer program is executed by a processor to execute the method in any optional implementation manner of the above-mentioned embodiment. The storage medium can be realized by any type of volatile or non-volatile storage device or a combination thereof, such as a static random access memory (SRAM), an electrically erasable programmable read-only memory (EEPROM), an erasable programmable read-only memory (EPROM), a programmable read-only memory (PROM), a read-only memory (ROM), a magnetic storage, a flash memory, a magnetic disk or an optical disk.

[0087] The storage medium according to the embodiment and the data storage method according to the above-mentioned embodiment belong to the same inventive concept, and the technical details not described in the embodiment can be referred to the above-mentioned embodiment, and the embodiment has the same beneficial effects as the above-mentioned embodiment.

[0088] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application rather than limit the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, and all of them should be covered in the scope of the claims of the present application.

Claims

1. A system for monitoring the physical and mental state of a patient undergoing an orthodontic anchorage pin implantation procedure, characterized in that: The system comprises a patient physiological signal information acquisition unit, a processing and analysis unit, a mobile terminal platform, and a carrier. The carrier of the system comprises a wrist part watchband, a palm part holding body, and a palm part holding body connector; the palm part holding body is gripped by the palm during the whole operation; The processing and analysis unit comprises a microprocessor and a cloud analysis platform, and is used for processing and analyzing the collected patient physiological signal information, determining the physical and mental state of the patient according to the patient physiological signal information, and triggering an early warning mode; The determination of the physical and mental state of the patient according to the patient physiological signal information comprises the following steps: setting the normal value as 0 and the abnormal value as 1 according to the determination result of the patient physiological signal information, obtaining the binary state of each index, calculating the comprehensive risk score of the patient, and determining the physical and mental state of the patient; The calculation of the comprehensive risk score of the patient comprises the following steps: acquiring the patient physiological signal information of other patients in a historical database and obtaining the binary state of each index; calculating the entropy value of the index, calculating the index weight of the current patient according to the entropy value of each index, and the formula is: Construct a data matrix, denoted as wherein, is the binary state of the th sample on the th index; Data standardization is performed on the collected sample data, and each column of data is standardized. For each sample , each index in the sample is calculated, and the standardized proportion is calculated according to the following formula: ; In the formula, is the proportion of the first sample after standardization on the first index, is the number of samples, is a constant; calculating the final risk index by using the index weight and the binary result, and the formula is: ; ; wherein is the entropy value of the index is the number of indices, is the weight of the index is the weight of the index is the weight of the index The early warning mode comprises the following contents: ; ; wherein is a preliminary risk score, is an indicator of the binarized state of is a final risk index, is an adjustment parameter; The mobile terminal platform is used for displaying the early warning mode output by the processing and analysis unit to the doctor and the patient, and recommending a treatment mode according to the early warning mode. When the final risk index First warning threshold If the following conditions are met, the patient's physical and mental state is assessed as a mild warning mode; when the final risk index... First warning threshold Second warning threshold If the patient's physical and mental state is between these thresholds, the early warning mode is determined to be a moderate early warning mode; if the final risk index is between these thresholds, the early warning mode is determined to be a moderate early warning mode. Second warning threshold If the above conditions are met, the patient's physical and mental state is determined to be in a severe warning mode. wherein the first warning threshold is less than the second warning threshold ; The patient physiological signal information comprises patient pulse data, body temperature data, grip strength data, blood pressure data, and arterial oxygen saturation data.

2. The orthodontic anchorage pin implant surgery patient's physical and mental state monitoring system according to claim 1, wherein: The microprocessor converts the received patient physiological signal information into digital information and stores it, and transmits the stored digital information to the cloud analysis platform through wifi.

3. The orthodontic anchorage pin implant surgery patient's physical and mental state monitoring system of claim 2, wherein: The determination of the physical and mental state of the patient according to the patient physiological signal information comprises the following steps:

4. The orthodontic anchorage pin implant surgery patient's physical and mental state monitoring system according to claim 3, wherein: when the patient's pulse is 60-100 times / min, the patient's pulse data is determined to be normal; when the patient's pulse is less than 60 or more than 100 times / min, the patient's pulse data is determined to be abnormal; when the patient's body temperature is 36.3-37.2℃, the patient's body temperature data is determined to be normal; when the patient's body temperature is less than 36.3℃ or higher than 37.2℃, the patient's body temperature data is determined to be abnormal; when the patient's palm grip strength is less than 5kg, the patient's grip strength data is determined to be normal; when the patient's palm grip strength is higher than 5kg, the patient's grip strength data is determined to be abnormal; when the patient's blood pressure data is within 90-140mmHg for systolic pressure and within 60-90mmHg for diastolic pressure, the patient's blood pressure data is determined to be normal; when either the systolic pressure or the diastolic pressure of the patient's blood pressure data is not within the normal range, the patient's blood pressure data is determined to be abnormal; when the patient's arterial oxygen saturation is within 95%-100%, the patient's arterial oxygen saturation data is determined to be normal; when the patient's arterial oxygen saturation is less than 95%, the patient's arterial oxygen saturation data is determined to be abnormal; According to the determination result of the patient physiological signal information, the normal value is set as 0 and the abnormal value is set as 1, and the binary state of each index is obtained. ​ The comprehensive risk score of the patient is calculated to determine the patient's physical and mental state.

5. The orthodontic anchorage pin implant surgery patient's physical and mental state monitoring system according to claim 4, wherein: The recommended treatment mode according to the early warning mode comprises the following contents: The cloud analysis platform transmits the early warning mode of the patient to the mobile terminal platform for the doctor and the patient to view; When the early warning mode of the physical and mental state of the patient is a mild early warning mode, deep breathing guided therapy is recommended; When the early warning mode of the physical and mental state of the patient is a moderate early warning mode, deep breathing guided + soothing music therapy is recommended; when the early warning mode of the physical and mental state of the patient is a severe early warning mode, deep breathing guided + soothing music + medical staff verbal communication emotional care therapy is recommended.

6. The method for monitoring the physical and mental state of a patient undergoing oral orthodontic anchorage pin implant surgery, based on the system for monitoring the physical and mental state of a patient undergoing oral orthodontic anchorage pin implant surgery according to any one of claims 1 to 5, characterized in that: It comprises, physiological signal information of the patient is collected for processing and analysis; The collected physiological signal information of the patient is processed and analyzed, and the physical and mental state of the patient is determined according to the physiological signal information of the patient, and the early warning mode is triggered; The output early warning mode is displayed, and the treatment mode is recommended according to the early warning mode. 7.A computer device, comprising a memory and a processor, wherein the memory stores a computer program, and the computer device is characterized in that: The processor executes the computer program to realize the steps of the patient's physical and mental state monitoring method for orthodontic anchorage pin implantation surgery in claim 6.

8. A computer readable storage medium having stored thereon a computer program, characterized in that: The computer program is executed by the processor to realize the steps of the patient's physical and mental state monitoring method for orthodontic anchorage pin implantation surgery in claim 6.

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