A robot, device and storage medium for simulating a psychiatric consultation

Through a robot that simulates the consultation of psychiatrists, combining question-and-answer and graph-based simulation, collecting and analyzing user psychological stressor information, the problem of in-depth diagnosis results and lack of emotional resonance in the existing technology is solved, and more accurate and personalized psychological diagnosis and intervention are achieved.

CN119248139BActive Publication Date: 2025-08-15BEIJING HAOXINQING MOBILE MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202411773955.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-08-15
Estimated Expiration
2044-12-05

AI Technical Summary

Technical Problem

When prior art conducts mental and psychological consultations on users through equipment, it is difficult to deeply explore subconscious information, resulting in insufficient depth and accuracy of diagnosis results, and the question and answer methods may make users too mechanized and lack emotional resonance.

Method used

A robot that simulates the consultation of psychiatrists is adopted. Through the stress source selection module, the consultation-based branch evaluation module, the screen-based branch evaluation module and the mental state evaluation module, combined with question-and-answer and graph-based simulation, the user's psychological stressor information is collected, and the user's physical performance and voice reply is analyzed to form multi-dimensional diagnostic results.

Benefits of technology

It improves the accuracy and effectiveness of the diagnosis, can more comprehensively reflect the user's psychological state, helps to formulate personalized mental health intervention plans, and enhances the user's emotional resonance and sense of participation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of the intersection of artificial intelligence and psychology, and specifically discloses a robot, device and storage medium for simulating a consultation between a psychiatrist, including: guiding a user to select and confirm different construction modes of a question screen through a graphic screen simulation, and forming a picture-based psychological stress source branch diagnosis result by analyzing the differences between the user's inertial movements and his or her body expressions when answering operations; by investigating the user's psychological stress source corresponding to each consultation branch, collecting the answer content of each question belonging to each consultation branch corresponding to the user's psychological stress source, forming a question-and-answer psychological stress source branch diagnosis result, and combining the picture-based psychological stress source branch diagnosis result to judge the degree of the user's psychological abnormality tendency in each consultation branch of the psychological stress source, and then determining the suspected abnormal branch of the user's psychological stress source, which is helpful to customize a more personalized mental health intervention plan for the user.
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Description

Technical Field

[0001] The present invention belongs to the technical field of intersection of artificial intelligence and psychology, and relates to a robot, equipment and storage medium for simulating a psychiatric doctor's consultation. Background Art

[0002] With the rapid development of society and the accelerated pace of life, people are facing increasing mental and psychological stress, and the demand for psychiatric services is also growing. However, the number of professional psychiatrists is relatively limited and unevenly distributed, making it difficult to meet everyone's needs. Against this backdrop, a robot that simulates a psychiatrist's consultation has emerged, aiming to provide people with convenient and efficient initial psychiatric assessments and consultation services.

[0003] Existing technical solutions for using devices to diagnose users' mental health have the following limitations: They tend to collect user responses through a question-and-answer format, which may not fully capture the subconscious information within responses, thus affecting the depth and accuracy of diagnostic results. Furthermore, existing technologies tend to adjust the question set in real time based on the user's response status. This disjointed Q&A approach can lead to users responding in an overly mechanical manner, failing to generate emotional resonance. Summary of the Invention

[0004] In view of this, in order to solve the problems raised in the above background technology, a robot, device and storage medium for simulating a psychiatric consultation are proposed.

[0005] The purpose of the present invention can be achieved through the following technical solutions: The first aspect of the present invention provides a robot that simulates a consultation with a psychiatrist, including: a stress source selection module, which is used to collect the user's psychological stress sources through autonomous selection of the device.

[0006] The questionnaire branch assessment module is used to investigate the corresponding questionnaire branches of the user's psychological stress sources, and number each questionnaire branch as , collect the answers to each question belonging to each consultation branch corresponding to the user's psychological stress source, and form a question-and-answer psychological stress source branch diagnosis result. Each consultation branch includes life event inquiries, interpersonal relationship assessments, and coping style investigations.

[0007] The picture-based branch assessment module is used to guide users to select and confirm different construction modes of question screens through graphic screen simulation, and to detect the user's body language when answering, so as to form a picture-based psychological stress source branch diagnosis result.

[0008] The mental state assessment module is used to detect the user's appearance and behavioral abilities, determine the degree of psychological abnormality in the user's psychological stress source consultation branches, and then determine the suspected abnormal branches of the user's psychological stress source.

[0009] The feedback module is used to provide feedback on suspected abnormal branches of the user's psychological stress sources and the degree of their abnormal psychological tendencies.

[0010] The second aspect of the present invention provides a device for simulating a consultation with a psychiatrist, comprising: a processor, a memory and a communication bus; the memory stores a computer-readable program that can be executed by the processor; the communication bus realizes connection and communication between the processor and the memory; when the processor executes the computer-readable program, it realizes a robot that simulates a consultation with a psychiatrist as described in the present invention.

[0011] The third aspect of the present invention provides a storage medium, which stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps in a robot that simulates a psychiatric consultation as described in the present invention.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: (1) The present invention provides users with an intuitive and visual interface through graphic screen simulation, which can stimulate users' emotional resonance and guide users to select and confirm different construction modes of the question screen, so that they can participate in the problem more devotedly, help users express their inner feelings more realistically, and thus choose answers that are more in line with their inner feelings. By analyzing the differences between users' inertial movements and their body expressions when answering, the present invention forms a picture-based psychological stress source branch diagnosis result, which can further capture the user's psychological state and provide richer information for psychological stress source branch diagnosis.

[0013] (2) The present invention investigates the user's psychological stress source corresponding to each branch of the inquiry, collects the answer content of each question belonging to each branch of the inquiry corresponding to the user's psychological stress source, forms a question-and-answer psychological stress source branch diagnosis result, and combines it with the picture-based psychological stress source branch diagnosis result to judge the user's psychological abnormal tendency degree in each branch of the inquiry on the psychological stress source. It can more comprehensively reflect the user's psychological state, thereby improving the accuracy of the diagnosis. In addition, through the interactive selection and confirmation process, the user can more actively participate in the diagnosis process, thereby improving the accuracy and effectiveness of the diagnosis.

[0014] (3) The present invention determines the degree of psychological abnormality tendency of the user in each branch of the psychological stress source inquiry and determines the suspected abnormal branches of the user's psychological stress source, which helps mental health experts or psychological counselors to understand the user's psychological state more accurately, and then helps to customize a more personalized mental health intervention plan for the user, which can better meet the user's actual needs, thereby improving the pertinence and effectiveness of the intervention. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0016] Figure 1 This is a schematic diagram of the system module connection of the present invention. DETAILED DESCRIPTION

[0017] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0018] See also Figure 1 As shown, the first aspect of the present invention provides a robot that simulates a psychiatric consultation, including: a stress source selection module, a consultation-style branch assessment module, a picture-style branch assessment module, a mental state assessment module, and a feedback module.

[0019] The stress source selection module is connected to the question-based branch assessment module and the picture-based branch assessment module respectively, the mental state assessment module is connected to the question-based branch assessment module and the picture-based branch assessment module respectively, and the mental state assessment module is connected to the feedback module.

[0020] The stress source selection module is used to collect the user's psychological stress sources through autonomous selection by the device.

[0021] In a preferred embodiment, the method for collecting the user's psychological stress sources is specifically as follows: the robot obtains the user's basic personal information, constructs a user personal information profile, and matches it with the corresponding information profile of the column selection set of each psychological stress source in the storage element. When the user's personal information profile matches the corresponding information profile of the column selection set of a certain psychological stress source in the storage element, the column selection set of the psychological stress source is determined as the column selection set of the user's corresponding psychological stress source, and then the user makes an independent selection from the column selection set of the psychological stress source to obtain the user's psychological stress source.

[0022] The selected set of psychological stress sources includes family, individual, school, society, etc.

[0023] The user's basic personal information includes gender, height and weight, age, family composition, etc.

[0024] The questionnaire branch assessment module is used to investigate the corresponding questionnaire branches of the user's psychological stress source, and each questionnaire branch is numbered as , collect the answers to each question belonging to each consultation branch corresponding to the user's psychological stress source, and form a question-and-answer psychological stress source branch diagnosis result. Each consultation branch includes life event inquiries, interpersonal relationship assessments, and coping style investigations.

[0025] In a preferred embodiment, the question-and-answer psychological stress source branch diagnosis results include: collecting questions related to the occurrence time of events corresponding to the psychological stress source in each consultation branch, and extracting the user's response time from the answer content of each question belonging to each consultation branch corresponding to the user's psychological stress source, comparing it with the current consultation time, and obtaining the event occurrence duration of each consultation branch, and comparing it with the preset reference duration to obtain the event persistence rate of each consultation branch corresponding to the user's psychological stress source.

[0026] For example, the question related to the time of occurrence of the corresponding event of the psychological stressor is such as "In which year or month did you experience psychological stress from a certain event?"

[0027] Collect the user's response methods to each question belonging to each branch of the psychological stressor, such as self-adjustment type, help-seeking type, and transfer type, and then obtain the corresponding preset self-cognitive conflict force. The user's self-cognitive conflict force to each question belonging to each branch of the psychological stressor is obtained, and its mean is solved and compared with the preset reference self-cognitive conflict force to obtain the burnout rate of the user's response method to each branch of the psychological stressor.

[0028] Specifically, self-perceived conflict refers to the emotional state of a user when faced with a problem. The magnitude and nature of self-perceived conflict have a significant impact on an individual's psychological state and coping style. For example, when the conflict is low, individuals may be more likely to remain calm and rational; whereas, when the conflict is high, individuals may be more likely to fall into negative emotions such as anxiety and depression.

[0029] When investigating the corresponding branches of the user's psychological stress sources, the voice responses between the user and the robot are collected, and the voice response ease rate of the corresponding branches of the user's psychological stress sources is detected. It is then combined with the event persistence rate and reaction style fatigue rate of the corresponding branches of the inquiry to form the question-and-answer psychological stress source branch diagnosis result.

[0030] In another preferred embodiment, the detection of the ease of voice response of each branch of the inquiry corresponding to the user's psychological stress source includes: extracting the answer audio of each question belonging to each branch of the inquiry from the answer voice between the user and the robot, identifying its voice clarity, speech speed uniformity, and pause rationality through language processing technology, comparing it with the preset reference values of voice clarity, speech speed uniformity, and pause rationality, and then summing them to obtain the user's voice intonation stability index for each question belonging to each branch of the inquiry corresponding to the psychological stress source. Finally, the analysis results show the voice response rate of each branch of the user's psychological stress source. ,in Indicates the preset intonation stability reference index, Indicates the number of each question in the consultation branch. .

[0031] Among them, the speech clarity is obtained by calculating the proportion of correct language words in the reply audio to the total number of words; the speech speed uniformity is obtained by calculating the speech speed of each sentence in the reply audio, that is, the number of syllables or words uttered per unit time; the pause rationality is evaluated by identifying the pause position and pause duration in the reply audio, such as making pauses of appropriate length at the end of a sentence, after a keyword, at a turning point, etc. Since the specific methods for obtaining speech clarity, speech speed uniformity, and pause rationality in audio are relatively complete in the existing technology, they will not be elaborated here.

[0032] The present invention collects the audio responses to questions in each branch of the inquiry corresponding to the user's psychological stress source, detects the voice response ease rate, event persistence rate and reaction style fatigue rate in each branch of the inquiry corresponding to the user's psychological stress source, and provides a quantitative basis for the diagnosis of the psychological stress source. Based on this, a question-and-answer type psychological stress source branch diagnosis result is formed, making the diagnosis result more accurate and objective.

[0033] The picture-based branch assessment module is used to guide the user to select and confirm different construction modes of the question screen through a diagram screen simulation, and detect the user's body language when answering, so as to form a picture-based psychological stress source branch diagnosis result.

[0034] In a preferred embodiment, the detection of the user's body language performance when performing the answering operation includes: when guiding the user to select and confirm different construction modes of the question screen, collecting the user's body language performance and facial expressions when answering each question belonging to each branch of the inquiry corresponding to the psychological stress source, identifying the body language performance characteristics and facial expression characteristics of the user when answering each question belonging to each branch of the inquiry corresponding to the psychological stress source through action recognition, and then matching them with the preset rejection degree of the corresponding performance characteristics to obtain the rejection degree of the body language performance and facial rejection degree expression of the user when answering each question belonging to each branch of the inquiry corresponding to the psychological stress source. .

[0035] The body movements may include characteristics such as escaping movements, crossing arms, and quick movements.

[0036] The facial expression characteristics include frowning, drooping mouth corners, blinking eyes, and tense facial muscles.

[0037] When the robot obtains the user's basic personal information, it collects and identifies the user's body movements and facial expressions when answering each basic question based on the motion recognition technology and face detection algorithm, and then compares them with each other, screens out the body movements and facial expressions that appear twice or more when the user answers each basic question, integrates them into the user's inertial motion, and compares them with the body movement performance characteristics and facial expression characteristics when the user answers each question belonging to each consultation branch corresponding to the psychological stress source. If the user's inertial motion matches the body movement performance characteristics or facial expression characteristics when the user answers a question belonging to a certain consultation branch corresponding to the psychological stress source, the user's differential behavior habit compensation factor is recorded as If the user's habitual movements do not match the body movement characteristics or facial expression characteristics when the user answers the questions of each branch of the psychological stress source, the user's difference behavior habit compensation factor is recorded as , based on which we can get the compensation factor of user difference behavior habits .

[0038] The user's habitual actions include gesture habits, sitting habits, and eyebrow habits, among which gesture habits include waving and pointing, sitting habits include crossing arms and leaning forward, and eyebrow habits include eye contact, blinking eyes, and frowning.

[0039] Analyze the user's physical reaction rejection factor to each question in each consultation branch corresponding to the psychological stress source , integrated into the user's physical reaction rejection index for each branch of the consultation to the psychological stress source ,in is the number of questions belonging to the diagnosis branch, is the preset reference rejection factor, and e is a natural constant.

[0040] In another preferred embodiment, the visual psychological stressor branch diagnosis results include: noise making, environmental factors related to temperature changes, and observing the user's body movements.

[0041] According to the method of obtaining the user's physical reaction rejection index to each branch of the consultation corresponding to the psychological stress source, the user's physical reaction rejection index to environmental factors is obtained in the same way. , analyze the user's biological stress index to environmental changes ,in Respectively represent the corresponding manufacturing level strength of noise and temperature changes, They respectively represent the reference levels of preset noise and temperature changes.

[0042] The user's biological stress index to environmental changes and the user's bodily reaction rejection index to each branch of the psychological stressor corresponding to each diagnosis branch are constructed into a visual psychological stressor branch diagnosis result.

[0043] The present invention provides users with an intuitive and visual interface through graphic screen simulation, which can stimulate users' emotional resonance, and guide users to select and confirm different construction modes of the question screen, so that they can participate in the problem more devotedly, and help users express their inner feelings more realistically, so as to choose answers that are more in line with their inner selves. By analyzing the differences between users' inertial movements and their physical expressions when answering, the present invention forms a picture-based psychological stress source branch diagnosis result, such as movements, expressions, etc., which can further capture the user's psychological state and provide richer information for psychological stress source branch diagnosis.

[0044] The mental state assessment module is used to detect the user's appearance and behavioral abilities, determine the degree of psychological abnormality tendency of the user in each branch of the psychological stress source inquiry, and then determine the suspected abnormal branches of the user's psychological stress source.

[0045] In a preferred embodiment, the method of determining the degree of psychological abnormality tendency of the user in each branch of the psychological stress source diagnosis is as follows: obtaining the performance parameter set of the question-and-answer psychological stress source branch diagnosis result , the performance parameter set of the diagnostic results of the branch of the visual psychological stressor , analyze the user's psychological abnormal tendency in each branch of the psychological stress source consultation ,in They represent the preset weight coefficients of the question-answer and picture-based psychological stressor branch diagnostic results, , Respectively represent the corresponding psychological stress sources of users The voice response ease rate, event duration rate and response fatigue rate of each consultation branch, Indicates the user's response to psychological stressors The physical reaction rejection index of each question branch.

[0046] The present invention investigates the user's psychological stress source corresponding to each branch of the inquiry, collects the answer content of each question belonging to each branch of the inquiry corresponding to the user's psychological stress source, forms a question-and-answer psychological stress source branch diagnosis result, and combines it with the picture-based psychological stress source branch diagnosis result to judge the user's psychological abnormality tendency degree in each branch of the inquiry on the psychological stress source. This method combines non-verbal behavior and verbal content, can more comprehensively reflect the user's psychological state, thereby improving the accuracy of the diagnosis, and through the interactive selection and confirmation process, the user can more actively participate in the diagnosis process, thereby improving the accuracy and effectiveness of the diagnosis.

[0047] In another preferred embodiment, the method of determining the suspected abnormal branch of the user's psychological stress source is as follows: comparing the user's psychological abnormal tendency levels in each psychological stress source inquiry branch, screening out the psychological stress source inquiry branch with the highest psychological abnormal tendency level, and recording it as the suspected abnormal branch of the user's psychological stress source, and then obtaining the user's psychological abnormal tendency level from the user's psychological abnormal tendency levels in each psychological stress source inquiry branch.

[0048] The feedback module is used to provide feedback on suspected abnormal branches of the user's psychological stress source and the degree of its abnormal psychological tendency.

[0049] The present invention determines the suspected abnormal branches of the user's psychological stress source by judging the degree of psychological abnormality tendency of the user in each branch of the inquiry about the psychological stress source, and then quickly locates the specific factors of psychological stress that may exist in the user, thereby providing feedback on the suspected abnormal branches of the user's psychological stress source and the degree of psychological abnormality tendency. By understanding the user's specific abnormal manifestations in each branch of the inquiry about the psychological stress source, it helps mental health experts or psychological counselors to understand the user's psychological state more accurately, and then helps to customize a more personalized mental health intervention plan for the user, which can better meet the user's actual needs, thereby improving the pertinence and effectiveness of the intervention.

[0050] The second aspect of the present invention provides a device for simulating a consultation with a psychiatrist, comprising: a processor, a memory and a communication bus; the memory stores a computer-readable program that can be executed by the processor; the communication bus realizes connection and communication between the processor and the memory; when the processor executes the computer-readable program, it realizes a robot that simulates a consultation with a psychiatrist as described in the present invention.

[0051] The third aspect of the present invention provides a storage medium, which stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps in a robot that simulates a psychiatric consultation as described in the present invention.

[0052] The above contents are merely examples and explanations of the concept of the present invention. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them in a similar manner. As long as they do not deviate from the concept of the invention or exceed the scope defined by the present invention, they should all fall within the scope of protection of the present invention.

Claims

1. A robot that simulates a psychiatrist's consultation, characterized by: include: The stress source selection module is used to collect the user's psychological stress sources through device autonomous selection; The questionnaire branch assessment module is used to investigate the corresponding questionnaire branches of the user's psychological stress sources, and number each questionnaire branch as , collect the answers to the questions in each branch of the user's psychological stress source, and form a question-and-answer psychological stress source branch diagnosis result; The picture-based branch assessment module is used to guide users to select and confirm different construction modes of the question screen through a diagram-based screen simulation, and detect the user's body language when answering, forming a picture-based psychological stress source branch diagnosis result; The mental state assessment module is used to detect the user's appearance and behavior, determine the degree of psychological abnormality in the user's psychological stress source, and then determine the suspected abnormal branch of the user's psychological stress source; Feedback module, used to provide feedback on suspected abnormal branches of users' psychological stress sources and the degree of their abnormal psychological tendencies; The diagnostic results of the psychological stressor branch of the question-and-answer format include: Collect questions related to the occurrence time of events corresponding to psychological stress sources in each consultation branch, and extract the user's response time from the answers to each question in each consultation branch corresponding to the user's psychological stress source. Compare it with the current consultation time to obtain the duration of the event in each consultation branch. Ratio it with the preset reference duration to obtain the event persistence rate of each consultation branch corresponding to the user's psychological stress source; Collect the user's response to each question in each branch of the psychological stressor, including self-adjustment, help-seeking, and diversion, and then obtain their corresponding preset self-cognitive conflict. The mean value is solved and integrated into the burnout rate of the user's response to each branch of the psychological stressor; When investigating the user's psychological stress sources corresponding to each branch of the inquiry, the user's voice responses to the robot are collected, and the voice response ease rate of each branch of the inquiry corresponding to the user's psychological stress sources is detected. This is combined with the event persistence rate and response style burnout rate of the corresponding inquiry branch to construct the question-and-answer psychological stress source branch diagnosis result; Determine the degree of psychological abnormality tendency of the user in each branch of psychological stress source diagnosis by: obtaining the performance parameter set of the question-and-answer psychological stress source branch diagnosis result , the performance parameter set of the diagnostic results of the branch of the visual psychological stressor , analyze the user's psychological abnormal tendency in each branch of the psychological stress source consultation ,in They represent the preset weight coefficients of the question-answer and picture-based psychological stressor branch diagnostic results, Respectively represent the corresponding psychological stress sources of users The voice response ease rate, event duration rate and response fatigue rate of each consultation branch, Indicates the user's response to psychological stressors The physical reaction rejection index of each question branch.

2. The robot simulating a psychiatrist's consultation according to claim 1, characterized in that: The method for collecting the user's psychological stress sources is specifically as follows: the robot obtains the user's basic personal information, constructs the user's personal information profile, matches it with the corresponding information profile of the column selection set of each psychological stress source in the storage element, determines the column selection set of the user's corresponding psychological stress source, and then enables the user to independently select the column selection set of the psychological stress source to obtain the user's psychological stress source.

3. The robot simulating a psychiatrist's consultation according to claim 1, characterized in that: The detection of the ease of voice response rate of each branch of the inquiry corresponding to the user's psychological stress source includes: extracting the answer audio of each question belonging to each branch of the inquiry from the answer voice between the user and the robot, identifying its voice clarity, speech speed uniformity, and pause rationality through language processing technology, comparing it with the preset reference values of voice clarity, speech speed uniformity, and pause rationality, and then summing them to obtain the user's voice intonation stability index for each question belonging to each branch of the inquiry corresponding to the psychological stress source. Finally, the analysis results show the voice response rate of each branch of the user's psychological stress source. ,in Indicates the preset intonation stability reference index, Indicates the number of each question in the consultation branch. .

4. The robot simulating a psychiatrist's consultation according to claim 3, characterized in that: The detection of the user's body language performance when answering the question includes: when guiding the user to select and confirm different construction modes of the question screen, collecting the user's body language performance and facial expressions when answering each question belonging to each branch of the inquiry corresponding to the psychological stress source, identifying the body language performance characteristics and facial expression characteristics of the user when answering each question belonging to each branch of the inquiry corresponding to the psychological stress source through action recognition, and then obtaining the degree of rejection of the user's body language performance and facial expression when answering each question belonging to each branch of the inquiry corresponding to the psychological stress source ; When the robot obtains the user's basic personal information, it collects and identifies the user's body movements and facial expressions when answering each basic question based on motion recognition technology and face detection algorithms, and then compares them with each other, screening out body movements and facial expressions that appear twice or more when the user answers each basic question, integrating them into the user's inertial movements, and comparing them with the body movement performance characteristics and facial expression characteristics when the user answers each question belonging to each consultation branch corresponding to the psychological stress source, based on which the user's differential behavioral habit compensation factor is obtained. ; Analyze the user's physical reaction rejection factor to each question in each consultation branch corresponding to the psychological stress source , integrated into the user's physical reaction rejection index to each branch of the consultation corresponding to the psychological stress source.

5. The robot simulating a psychiatrist's consultation according to claim 4, characterized in that: The diagnostic results of the visual psychological stressor branch include: Create environmental factors related to noise and temperature changes, and observe the user's body movements; According to the method of obtaining the user's physical reaction rejection index to each branch of the consultation corresponding to the psychological stress source, the user's physical reaction rejection index to environmental factors is obtained in the same way. , analyze the user's biological stress index to environmental changes ,in Respectively represent the corresponding manufacturing level strength of noise and temperature changes, Respectively represent the preset reference level strength of noise and temperature changes; The user's biological stress index to environmental changes and the user's bodily reaction rejection index to each branch of the psychological stressor corresponding to each diagnosis branch are constructed into a visual psychological stressor branch diagnosis result.

6. The robot simulating a psychiatrist's consultation according to claim 1, characterized in that: The method of determining the suspected abnormal branch of the user's psychological stress source is as follows: comparing the user's psychological abnormal tendency levels in each psychological stress source inquiry branch, screening out the psychological stress source inquiry branch with the highest psychological abnormal tendency level, recording it as the suspected abnormal branch of the user's psychological stress source, and then obtaining the user's psychological abnormal tendency level from the user's psychological abnormal tendency levels in each psychological stress source inquiry branch.

7. A device, characterized in that include: Processor, memory and communication bus; The memory stores a computer-readable program that can be executed by the processor; the communication bus realizes the connection and communication between the processor and the memory; when the processor executes the computer-readable program, it realizes a robot that simulates a psychiatric consultation as described in any one of claims 1-6.

8. A storage medium, characterized in that: The storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement a robot that simulates a psychiatric consultation as described in any one of claims 1-6.

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