Space disease diagnosis and treatment integrated system based on acupuncture physiotherapy sleeping bag

By integrating an intelligent controller into the astronauts' acupuncture therapy sleeping bag and utilizing vital signs data and voice interaction, space sickness diagnosis and acupuncture treatment are achieved without the guidance of a professional doctor, solving the problem of lack of medical care for astronauts working in the space station and improving the treatment effect and convenience.

CN120661845APending Publication Date: 2025-09-19AEROSPACE CENT HOSPITAL
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Patent Information

Application Number
CN202511050973.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

Astronauts lack the guidance of medical experts when working in the space station, making it difficult to effectively ensure the effectiveness of acupuncture, and they are unable to independently diagnose and treat space sickness.

Method used

A space sickness diagnosis and treatment integrated system based on an acupuncture therapy sleeping bag is designed. The system includes a space sickness acupuncture therapy sleeping bag and an intelligent space sickness diagnosis and treatment controller. Through vital sign data and voice interaction, the system can intelligently determine the type of space sickness and generate acupuncture point selection plans, thereby realizing automated acupuncture therapy.

Benefits of technology

Without the need for professional medical guidance, efficient, safe and accurate space sickness diagnosis and acupuncture treatment are achieved, improving the convenience of astronauts' health management and treatment effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a space disease diagnosis and treatment integrated system based on an acupuncture physiotherapy sleeping bag, and belongs to the technical field of space medical systems. The system comprises a space disease acupuncture physiotherapy sleeping bag and a space disease diagnosis and treatment intelligent controller; the space disease acupuncture physiotherapy sleeping bag is provided with a U-shaped slot which can be electrically connected with the space disease diagnosis and treatment intelligent controller; physiotherapy electrode slices are arranged in the sleeping bag, and physical therapy is conducted on human body acupuncture points through current pulses generated by the space disease diagnosis and treatment intelligent controller. The space disease diagnosis and treatment intelligent controller is used for generating and broadcasting a space disease diagnosis problem, receiving the vital sign data and the reply voice data, and determining space disease type information and a space disease acupuncture point selection scheme so as to generate a current pulse. According to the invention, the acupuncture point selection scheme can be automatically generated, and then the physiotherapy electrode slice is controlled to carry out current pulse physiotherapy on the specific acupuncture point, so that the astronaut can carry out acupuncture physiotherapy under the condition that the astronaut is not guided by a professional doctor and does not need professional medical knowledge, and the acupuncture effect is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of aerospace medical systems, and in particular to an integrated space disease diagnosis and treatment system based on an acupuncture and physiotherapy sleeping bag. Background Art

[0002] With the full completion of the in-orbit space station, astronauts have gradually entered the experimental module to carry out their work. However, the weightless environment in space is very different from that on Earth, making it extremely prone to the growth of bacteria and fungi, which can disrupt the astronauts' internal environment and cause various types of space sickness. In addition, the closed living and working space poses a threat to the astronauts' mental health and can easily lead to space-related psychological illnesses.

[0003] Acupuncture has a significant therapeutic effect on regulating the body's internal environment. However, related techniques often require the intervention of medical experts to diagnose symptoms and perform acupuncture procedures. While operating on the space station, astronauts often lack on-site medical guidance, making it difficult to ensure the effectiveness of acupuncture.

[0004] The information disclosed in the background technology section of this application is only intended to deepen the understanding of the general background technology of this application, and should not be regarded as an admission or any form of suggestion that the information constitutes the prior art already known to those skilled in the art. Summary of the Invention

[0005] The present invention provides an integrated space disease diagnosis and treatment system based on an acupuncture therapy sleeping bag, which can solve the technical problem that astronauts lack on-site guidance from medical experts and find it difficult to ensure the efficacy of acupuncture during space station operations.

[0006] According to a first aspect of the present invention, a space sickness diagnosis and treatment system based on an acupuncture and physiotherapy sleeping bag is provided, comprising:

[0007] Space sickness acupuncture and physiotherapy sleeping bag 101 and space sickness diagnosis and treatment intelligent controller 102;

[0008] The space sickness acupuncture and physiotherapy sleeping bag 101 is provided with a U-shaped slot 103 for electrically connecting to the space sickness diagnosis and treatment intelligent controller 102;

[0009] The space sickness acupuncture and physiotherapy sleeping bag 101 is provided with physiotherapy electrodes 104, the positions of which correspond to the positions of acupuncture points on the human body. The physiotherapy electrodes 104 are used to perform physiotherapy on the acupuncture points on the human body through the current pulses generated by the space sickness diagnosis and treatment intelligent controller 102;

[0010] The space sickness diagnosis and treatment intelligent controller 102 is used to:

[0011] Generate and broadcast space sickness diagnostic questions;

[0012] receiving the astronaut's vital sign data and voice data of responses to the space sickness diagnosis questions;

[0013] determining information on the type of space sickness suffered by the astronaut based on the vital sign data and the reply voice data;

[0014] Determine acupuncture point selection plan for space sickness based on the space sickness type information;

[0015] According to the space sickness acupuncture point selection scheme, current pulses are generated.

[0016] According to the present invention, determining the type of space sickness suffered by the astronaut based on the vital sign data and the reply voice data includes:

[0017] Comparing a plurality of vital sign data with preset vital sign data thresholds to obtain a vital sign comparison value;

[0018] Obtain the astronaut's main narrative text based on the reply voice data;

[0019] According to the astronauts' main narrative text, the word representation results of space sickness symptoms are obtained;

[0020] According to the comparison value of the vital signs and the inclusion result of the space sickness symptom characterization word, the type of space sickness suffered by the astronaut is determined.

[0021] According to the present invention, based on the astronaut's main narrative text, the space sickness symptom characterization word inclusion results are obtained, including:

[0022] Acquire multiple space sickness symptom representation words according to the space sickness symptom representation word reference table stored in the storage unit 2005 of the space sickness diagnosis and treatment intelligent controller 102;

[0023] Perform string matching on the i-th space sickness symptom representation word and the astronaut's main narrative text to determine the space sickness symptom representation word inclusion result corresponding to the i-th space sickness symptom representation word, where i is a positive integer;

[0024] Iterate the string matching step to determine the space sickness symptom representation word inclusion result corresponding to each space sickness symptom representation word.

[0025] According to the present invention, determining the type of space sickness suffered by the astronaut based on the vital sign comparison value and the space sickness symptom representation word inclusion result includes:

[0026] Obtaining astronaut symptom characterization data based on the vital sign comparison value and the space sickness symptom characterization word inclusion result;

[0027] The astronauts' symptom representation data is processed through the trained random forest model to determine the type of space sickness the astronauts suffer from.

[0028] According to the present invention, the training step of the random forest model includes:

[0029] Obtaining sample vital sign comparison values ​​and sample space sickness symptom representation word inclusion results of the training personnel;

[0030] Obtaining sample symptom representation data of the training personnel according to the sample vital sign comparison values ​​and the sample space sickness symptom representation word inclusion results;

[0031] The sample symptom representation data was processed through the random forest model to obtain the predicted data of space sickness;

[0032] The random forest model is trained based on the predicted data of space sickness and the labeled information of space sickness suffered by the trainees to obtain a trained random forest model.

[0033] According to the present invention, determining acupuncture point selection scheme for space sickness based on the space sickness type information includes:

[0034] Obtaining the acupuncture point selection scheme retrieval table stored in the storage unit 2005 of the space sickness diagnosis and treatment intelligent controller 102;

[0035] According to the space sickness type information, search in the acupuncture point selection plan search table to obtain the acupuncture points to be treated;

[0036] Obtain the union of the acupoints to be treated corresponding to each type of space sickness information, and obtain the acupoint selection plan for space sickness.

[0037] According to the present invention, generating current pulses according to the acupuncture point selection scheme for space sickness includes:

[0038] Determine the target acupuncture points according to the acupuncture point selection plan for space sickness;

[0039] According to the target acupuncture point, a target electrode sheet is selected from the plurality of physical therapy electrode sheets 104;

[0040] The touch display unit 2002 of the space sickness diagnosis and treatment intelligent controller 102 displays a diagnosis and treatment duration input box and a diagnosis and treatment intensity input box;

[0041] After the treatment duration input box receives the treatment duration data, the treatment intensity input box receives the treatment intensity data, and confirmation information is received, the pulse generator module 2006 of the space disease diagnosis and treatment intelligent controller 102 generates a current pulse to the target electrode sheet based on the treatment duration data and the treatment intensity data.

[0042] According to the present invention, the U-shaped slot 103 includes a pin header 301 corresponding to each physiotherapy electrode sheet 104 , and the pulse generator module 2006 is electrically connected to the pin header 301 via a female header 2008 .

[0043] According to the present invention, the space sickness diagnosis and treatment intelligent controller 102 includes a loudspeaker module 2003 for broadcasting space sickness diagnosis problems; the space sickness diagnosis and treatment intelligent controller 102 includes a microphone module 2004 for receiving the reply voice data.

[0044] According to the present invention, the space disease diagnosis and treatment intelligent controller 102 includes a power supply 2009, which is used to power the space disease diagnosis and treatment intelligent controller 102 and provide the electrical energy required to generate current pulses.

[0045] By adopting the above technical solution, the present invention can achieve the following technical effects:

[0046] According to the present invention, therapeutic electrodes can be integrated into a space sickness acupuncture and therapy sleeping bag, aligning with the location of astronauts' acupuncture points. This allows for therapy to be performed while astronauts' muscles are relaxed during sleep, providing high comfort and effective treatment. Acupuncture therapy performed via the electrodes is also highly safe. Based on the astronaut's vital signs and voice responses to space sickness diagnostic questions, the system can intelligently determine the type of space sickness an astronaut suffers from, enabling accurate and efficient space sickness prediction and screening without the need for a professional doctor. Acupuncture point selection plans can also be automatically generated, controlling the therapeutic electrodes to deliver current pulse therapy to specific acupoints. This allows astronauts to receive safe and reliable acupuncture therapy without the guidance of a professional doctor or specialized medical knowledge, effectively enhancing acupuncture effectiveness. Furthermore, by aligning the therapeutic electrodes, pin headers, female headers, and pulse generator modules, the current pulses of each therapeutic electrode can be precisely controlled to accurately stimulate acupoints and enhance treatment effectiveness. When determining the symptoms an astronaut experiences, the astronaut's main narrative text can be compared with the space sickness symptom term for each type of space sickness to determine whether each space sickness symptom term is included in the main narrative text, thereby determining whether the astronaut experiences the symptoms corresponding to the space sickness symptom term. This allows for oral diagnosis of astronaut symptoms, improving the convenience of symptom diagnosis, providing a data basis for determining the type of space sickness, and helping to accurately determine the type of space sickness an astronaut suffers from without the guidance of a professional doctor. When determining the type of space sickness an astronaut suffers from, the type of space sickness an astronaut suffers from can be determined by combining vital sign data and the astronaut's symptoms. This allows for accurate diagnosis of the type of space sickness an astronaut suffers from without the guidance of a professional doctor, improving the convenience of diagnosis and helping to design more accurate physical therapy plans.

[0047] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and not limiting of the present invention. Other features and aspects of the present invention will become more apparent from the following detailed description of exemplary embodiments with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0048] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can derive other embodiments based on these drawings without inventive efforts.

[0049] Figure 1 A schematic diagram of an integrated system for diagnosing and treating space sickness based on an acupuncture and physiotherapy sleeping bag according to an embodiment of the present invention is exemplarily shown;

[0050] Figure 2 A schematic diagram of an intelligent controller for diagnosing and treating space sickness according to an embodiment of the present invention is exemplarily shown;

[0051] Figure 3 A schematic diagram exemplarily shows a U-shaped slot according to an embodiment of the present invention;

[0052] Figure 4 An application diagram of an integrated system for diagnosing and treating space sickness based on an acupuncture and physiotherapy sleeping bag according to an embodiment of the present invention is exemplarily shown.

[0053] Figure 1: 101 - acupuncture and physiotherapy sleeping bag for space sickness, 102 - intelligent controller for diagnosis and treatment of space sickness, 103 - U-shaped slot, 104 - physiotherapy electrode sheet, 2001 - main control unit, 2002 - touch display module, 2003 - loudspeaker module, 2004 - microphone module, 2005 - storage unit, 2006 - pulse generator module, 2007 - timer module, 2008 - female connector, 2009 - power supply, 301 - pin header. DETAILED DESCRIPTION

[0054] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0055] The following specific embodiments are used to describe the technical solution of the present invention in detail. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described in detail in some embodiments.

[0056] Figure 1 A schematic diagram of an integrated space sickness diagnosis and treatment system based on an acupuncture and physiotherapy sleeping bag according to an embodiment of the present invention is exemplarily shown. The system includes: a space sickness acupuncture and physiotherapy sleeping bag 101 and a space sickness diagnosis and treatment intelligent controller 102. The space sickness acupuncture and physiotherapy sleeping bag 101 is provided with a U-shaped slot 103 for electrically connecting to the space sickness diagnosis and treatment intelligent controller 102; therapy electrodes 104 are provided inside the space sickness acupuncture and physiotherapy sleeping bag 101. The positions of the therapy electrodes 104 correspond to the positions of acupuncture points on the human body. The therapy electrodes 104 are used to treat the acupuncture points on the human body using current pulses generated by the space sickness diagnosis and treatment intelligent controller 102.

[0057] The space sickness diagnosis and treatment intelligent controller 102 is used to:

[0058] Generate and broadcast space sickness diagnostic questions;

[0059] receiving the astronaut's vital sign data and voice data of responses to the space sickness diagnosis questions;

[0060] determining information on the type of space sickness suffered by the astronaut based on the vital sign data and the reply voice data;

[0061] Determine acupuncture point selection plan for space sickness based on the space sickness type information;

[0062] According to the space sickness acupuncture point selection scheme, current pulses are generated.

[0063] According to an embodiment of the present invention, the integrated space sickness diagnosis and treatment system based on an acupuncture and physiotherapy sleeping bag integrates physiotherapy electrodes within the sleeping bag, aligning them with the astronaut's acupuncture points. This allows for physiotherapy while the astronaut's muscles are relaxed during sleep, providing high comfort and effective treatment. Acupuncture and physiotherapy performed via the electrodes is also highly safe. Based on the astronaut's vital signs and voice responses to space sickness diagnostic questions, the system intelligently determines the type of space sickness the astronaut suffers from, enabling accurate and efficient space sickness prediction and screening without the need for a professional doctor. Furthermore, the system automatically generates acupuncture point selection plans, controlling the physiotherapy electrodes to deliver current pulse therapy to specific acupuncture points. This allows astronauts to receive safe and reliable acupuncture and physiotherapy without the guidance of a professional doctor or specialized medical knowledge, effectively improving acupuncture effectiveness.

[0064] Example 1:

[0065] According to one embodiment of the present invention, a plurality of therapy electrode sheets 104 may be provided inside the space sickness acupuncture therapy sleeping bag 101, which respectively correspond to a plurality of human acupuncture points. For example, the space sickness acupuncture therapy sleeping bag 101 may be customized according to the astronaut's body shape. After the astronaut enters the space sickness acupuncture therapy sleeping bag 101, the plurality of therapy electrode sheets 104 provided inside the sleeping bag just fit the astronaut's human acupuncture points, so that the therapy electrode sheets 104 can output current pulses to the positions of the human acupuncture points for therapy.

[0066] Figure 2 A schematic diagram of an intelligent controller for diagnosing and treating space sickness according to an embodiment of the present invention is exemplarily shown.

[0067] According to one embodiment of the present invention, the intelligent controller 102 for space sickness diagnosis and treatment includes a main control unit 2001, a touch display module 2002, a loudspeaker module 2003, a microphone module 2004, a storage unit 2005, a pulse generator module 2006, a timer module 2007, a female connector 2008, and a power supply 2009. The main control unit 2001 is connected to the touch display module 2002, the loudspeaker module 2003, the microphone module 2004, the storage unit 2005, the pulse generator module 2006, and the timer module 2007, respectively, to control these modules to perform corresponding processing.

[0068] According to one embodiment of the present invention, the intelligent controller for space sickness diagnosis and treatment 102 includes a power supply 2009 for powering the intelligent controller 102 and providing the electrical energy required to generate current pulses. Specifically, the power supply module 2009 is used to power the main control unit 2001, the touch display module 2002, the loudspeaker module 2003, the microphone module 2004, the storage unit 2005, the pulse generator module 2006, and the timer module 2007. Furthermore, when the pulse generator module 2006 generates current based on the control of the main control unit 2001, the power supply module 2009 provides the electrical energy required to generate the current pulses.

[0069] Figure 3 A schematic diagram of a U-shaped slot according to an embodiment of the present invention is exemplarily shown.

[0070] According to one embodiment of the present invention, the U-shaped slot 103 includes a pin header 301 corresponding to each therapy electrode sheet 104, and the pulse generator module 2006 is electrically connected to the pin header 301 via a female header 2008. Figure 3As shown, the size and shape of the U-shaped slot 103 match the space sickness diagnosis and treatment intelligent controller 102. If the space sickness diagnosis and treatment intelligent controller 102 has a height of h cm and a width of w cm, then the height of the U-shaped slot 103 is slightly larger than h cm and the width is slightly larger than w cm. For example, the height of the U-shaped slot 103 is h + μ cm and the width is w + μ cm (for example, μ is 0.1-0.2 cm). This allows the space sickness diagnosis and treatment intelligent controller 102 to be inserted smoothly and not slip out. Furthermore, the female connector 2008 mates with the pin header 301 arranged on the inner bottom side of the U-shaped slot 103, that is, the female connector 2008 and the pin header 301 can be electrically connected. For example, each pin header can be connected to a therapy electrode pad, and each pin header can be connected to a jack in the female connector 2008, allowing the pulse generator module 2006 to precisely control the current pulse of each therapy electrode pad through the female connector 2008. For example, in order to make the ath physiotherapy electrode output a current pulse, the pulse generator module 2006 can control the ath pin to generate a current pulse, so that the ath jack in the motherboard 2008 receives the current pulse and transmits it to the ath pin of the pin row 301, and then transmits it to the ath physiotherapy electrode.

[0071] In this way, the current pulse of each therapy electrode can be accurately controlled by corresponding the therapy electrodes, needle headers, mother headers and pulse generator modules, so as to accurately stimulate the acupuncture points of the human body and improve the therapy effect.

[0072] According to one embodiment of the present invention, the intelligent space sickness diagnosis and treatment controller 102 includes a loudspeaker module 2003 for announcing space sickness diagnostic questions and a microphone module 2004 for receiving voice data for responses. In this example, the main control unit 2001 can access a reference table of space sickness symptom terms from the storage unit 2005 and generate a space sickness diagnostic question based on the space sickness symptom terms in the reference table. For example, for the term "anxiety" in the reference table, a space sickness diagnostic question such as "Have you recently experienced anxiety symptoms? If so, please specify the specific symptoms. If not, please answer 'no'" can be generated and announced via the loudspeaker module 2003. After hearing the announcement, the astronaut can respond, and the microphone module 2004 can collect the astronaut's voice data for subsequent analysis by the main control unit 2001.

[0073] According to one embodiment of the present invention, the intelligent controller 102 for diagnosis and treatment of space diseases may include a touch display module 2002. Before starting physical therapy, the astronaut's vital signs data may be collected through the touch display module. For example, the touch display module 2002 may display an input box for a variety of vital signs data. The astronaut may input the real-time vital signs data displayed on a variety of monitors into the above input box. Alternatively, the intelligent controller 102 for diagnosis and treatment of space diseases may be connected to communicate with a variety of monitors without the need for manual input by the astronaut, thereby obtaining a variety of vital signs data.

[0074] Furthermore, the touch display module 2002 can also be used to input confirmation information for the reply voice data. For example, after the astronaut answers the question about space sickness diagnosis, the main control unit 2001 can not only analyze the reply voice data, but also display the analysis results through the touch display module 2002. As in the above example, if the astronaut answers that the symptom of "anxiety" exists, the touch display module 2002 can display the analysis results on the touch display module 2002, for example, displaying a confirmation button indicating that the symptom of "anxiety" exists. If the analysis is correct, the astronaut can directly enter the subsequent analysis program without adjusting the confirmation button. If the analysis is incorrect, the astronaut can also adjust it through the confirmation button. For example, if the astronaut answers that the symptom of "anxiety" exists, but the main control unit 2001 analyzes it incorrectly, a confirmation button indicating that the symptom of "anxiety" does not exist will be displayed. The astronaut can modify it through the confirmation button, for example, by touching the button to change the confirmation button indicating that the symptom of "anxiety" does not exist to a confirmation button indicating that the symptom of "anxiety" exists, and then enter the subsequent analysis program.

[0075] Furthermore, the touch display module 2002 can also be used to input the duration and intensity of acupuncture therapy. For example, the touch display module 2002 can display an input box for the duration and intensity of acupuncture therapy, and the astronaut can make input. The main control unit 2001 can read the astronaut's input on the intensity, and based on the astronaut's input on the intensity, set the pulse generator module 2006 so that the pulse generator module 2006 generates a current pulse corresponding to the input intensity on a specific pin. In addition, the main control unit 2001 can read the astronaut's input on the duration of therapy, and based on the astronaut's input on the duration of therapy, set the timer module 2007. After the therapy duration reaches the duration input by the astronaut, the pulse generator module 2006 can be turned off, or even the space disease diagnosis and treatment intelligent controller 102 can be directly turned off to stop the therapy.

[0076] According to one embodiment of the present invention, the U-shaped slot 103 can be positioned on the chest of the space sickness acupuncture and physiotherapy sleeping bag 101. The U-shaped slot 103 has a certain degree of freedom of movement. For example, it can be connected to the electrode pads 104 inside the space sickness acupuncture and physiotherapy sleeping bag 101 via wires. This allows the astronaut to easily operate the intelligent controller 102 for space sickness diagnosis and treatment even after inserting it into the U-shaped slot 103, for example, by performing human-computer interaction via the touch display module 2002. Alternatively, the U-shaped slot 103 can be positioned closely to the space sickness acupuncture and physiotherapy sleeping bag 101. For example, the U-shaped slot 103 can be embedded in the outer chest area of ​​the space sickness acupuncture and physiotherapy sleeping bag 101. After the astronaut has completed interacting with the intelligent controller 102, the astronaut can insert the intelligent controller 102 into the U-shaped slot 103 to begin treatment. This is not a limitation of the present invention.

[0077] Example 2:

[0078] According to one embodiment of the present invention, the space disease diagnosis and treatment intelligent controller 102 analyzes vital sign data and responds to voice data, determines the type of space disease information, determines the acupuncture point selection scheme, and controls the pulse generation module 2006 to generate current pulses through the main control unit 2001.

[0079] According to one embodiment of the present invention, after acquiring vital sign data and voice response data in response to space sickness diagnostic questions, the intelligent space sickness diagnosis and treatment controller 102 can analyze the type of space sickness suffered by the astronaut based on these two data sets to provide targeted space sickness treatment. Determining the type of space sickness suffered by the astronaut based on the vital sign data and the voice response data includes: comparing multiple vital sign data with preset vital sign data thresholds to obtain vital sign comparison values; obtaining the astronaut's main narrative text based on the voice response data; obtaining a space sickness symptom representation word inclusion result based on the astronaut's main narrative text; and determining the type of space sickness suffered by the astronaut based on the vital sign comparison values ​​and the space sickness symptom representation word inclusion result.

[0080] According to one embodiment of the present invention, multiple types of vital sign data can be compared with preset vital sign data thresholds, wherein the preset vital sign data thresholds are normal thresholds for the vital sign data. For example, the vital sign data include blood pressure data, wherein the blood pressure data include diastolic pressure data and systolic pressure data, the normal threshold for systolic pressure data is 90-139 mmHg, and the normal threshold for diastolic pressure data is 60-89 mmHg. If the astronaut's measured systolic pressure data falls within the above-mentioned normal threshold, the vital sign comparison value of the systolic pressure data is 0, otherwise it is 1. Similarly, if the astronaut's measured diastolic pressure data falls within the above-mentioned normal threshold, the vital sign comparison value of the systolic pressure data is 0, otherwise it is 1. Similarly, normal thresholds can be set for multiple types of vital sign data, and the measured vital sign data can be compared with the normal thresholds. If the measured vital sign data falls within the normal threshold, the vital sign comparison value corresponding to the vital sign data is 0, otherwise it is 1.

[0081] According to one embodiment of the present invention, a speech recognition model can be used to convert the response speech data into the astronaut's main narrative text, that is, to convert speech into text. Furthermore, based on the astronaut's main narrative text, a result of the inclusion of space sickness symptom characterization words can be obtained. For example, a reference table of space sickness symptom characterization words can be obtained from storage unit 2005, and the symptom characterization words in the reference table can be analyzed one by one to determine which symptom characterization words are included in the main narrative text, thereby determining which symptoms the astronaut has.

[0082] In the example, the reference table of space sickness symptom representation words can store symptom representation words of various space sickness in groups. For example, the symptom representation words corresponding to space psychological diseases include "depression", "mood swings", "mental fragility", "anxiety", and "fear"; the symptom representation words corresponding to bacterial inflammation (conjunctivitis) include "red eyes", "dry", "itchy eyes", "eye pain", "foreign body sensation", "photophobia", "excessive secretions", and "tears"; the symptom representation words corresponding to bacterial inflammation (respiratory system diseases) include "cough", "sputum", "hemoptysis", "chest tightness", "chest pain", "difficulty breathing", "shortness of breath", "abnormal respiratory rate", and "abnormal blood oxygen saturation"; the symptom representation words corresponding to bacterial inflammation (tooth infection) include "swollen gums", "bleeding gums", and "gum pain"; space blindness Symptoms for osteoporosis include "back pain," "leg pain," and "dull aches, pains, and swelling in other parts of the body." Symptoms for orthostatic intolerance include "headache," "fatigue," "sleep disturbances," "visual problems," "decreased exercise tolerance," "weakness," "wheezing," "shivering," "sweating," "anxiety," "palpitations," "syncope," "presyncope," "abnormal heart rate," and "abnormal blood pressure." Symptoms for muscular dystrophy include "muscle weakness," "thinning limbs," "stiff joints," and "weak joints." Symptoms for space adaptation syndrome include "loss of appetite," "drowsiness," "pale complexion," "cold sweats," "nausea and vomiting," "dizziness," "increased salivation," "belching," and "headache." When generating space sickness diagnostic questions, grouping can be used. For example, for space psychological illness, the generated question might be, "Have you recently experienced symptoms of low mood, mood swings, mental fragility, anxiety, or fear? If so, please specify the symptoms. If not, please answer 'none.'" When answering, astronauts can give a unified answer to questions about the above multiple symptoms, for example, "I have recently had symptoms of depression, mood swings, mental fragility, and anxiety." After converting the response voice data into a main narrative text, the results containing the characterizing words for space sickness symptoms can be obtained.

[0083] According to one embodiment of the present invention, based on the astronaut's main narrative text, obtaining the space sickness symptom representation word inclusion result includes: obtaining multiple space sickness symptom representation words based on the space sickness symptom representation word reference table stored in the storage unit 2005 of the space sickness diagnosis and treatment intelligent controller 102; performing string matching on the i-th space sickness symptom representation word with the astronaut's main narrative text to determine the space sickness symptom representation word inclusion result corresponding to the i-th space sickness symptom representation word, where i is a positive integer; iteratively executing the string matching step to determine the space sickness symptom representation word inclusion result corresponding to each space sickness symptom representation word.

[0084] According to one embodiment of the present invention, when performing string matching, matching can also be performed based on the symptom representation words in the space sickness grouping. Still as in the above example, the astronaut's answer to the space sickness diagnosis question for space psychological illness is the main statement text "recently having symptoms of low mood, mood swings, mental fragility, and anxiety." The symptom representation words corresponding to the space psychological illness (i.e., "low mood," "mood swings," "mental fragility," "anxiety," and "fear") can be string matched with the main statement text in turn to determine whether each symptom representation word is included in the main statement text, thereby determining the space sickness symptom representation word inclusion result corresponding to each symptom representation word. If the symptom representation word is included in the main statement text, the corresponding space sickness symptom representation word inclusion result is 1, otherwise it is 0.

[0085] For example, when performing string matching on "depression" with the main text, it is determined that "depression" is included in the main text, and its space sickness symptom representation word inclusion result is 1; when performing string matching on "mood swings" with the main text, it is determined that "mood swings" is included in the main text, and its space sickness symptom representation word inclusion result is 1; when performing string matching on "mental fragility" with the main text, it is determined that "mental fragility" is included in the main text, and its space sickness symptom representation word inclusion result is 1; then, when performing string matching on "anxiety" with the main text, it is determined that "anxiety" is included in the main text, and its space sickness symptom representation word inclusion result is 1; then, when performing string matching on "fear" with the main text, it is determined that "fear" is not included in the main text, and its space sickness symptom representation word inclusion result is 0. Furthermore, a confirmation operation as described above can be performed, i.e., the touch display module 2002 can be used to display the space sickness symptom word inclusion results for multiple symptoms of a space sickness. For example, the display module 2002 can display a confirmation button indicating whether each symptom exists, so that the astronaut can confirm. Similarly, the space sickness symptom word inclusion results corresponding to the space sickness symptom word for each space sickness can be determined.

[0086] In another example, a semantic recognition model can also be used to determine whether each space sickness symptom representation word is included in the main text. For example, the main text can be segmented, and the semantic vector of each segmentation of the main text can be obtained through the semantic recognition model. In addition, the semantic vector of each space sickness symptom representation word can be obtained, and the similarity (for example, cosine similarity) between the semantic vector of the space sickness symptom representation word and the semantic vector of each segmentation of the main text can be determined. If there is one or more segmentation semantic vectors whose similarity to the semantic vector of the space sickness symptom representation word is higher than a preset threshold (for example, 0.8), it is determined that the space sickness symptom representation word is included in the main text, that is, the space sickness symptom representation word inclusion result is 1, otherwise it is 0. Similarly, the space sickness symptom representation word inclusion result corresponding to each space sickness symptom representation word can be determined.

[0087] In this way, the astronauts' main narrative text can be compared with the space sickness symptom representation words of each space sickness to determine whether each space sickness symptom representation word is included in the main narrative text, thereby determining whether the astronauts have the symptoms corresponding to the space sickness symptom representation words. The symptoms of the astronauts can be judged orally, which improves the convenience of symptom judgment, provides a data basis for determining the type of space sickness, and helps to accurately determine the space sickness suffered by astronauts without the guidance of professional doctors.

[0088] According to one embodiment of the present invention, whether an astronaut has suffered from space sickness can be determined based on the space sickness symptom inclusion results corresponding to each space sickness symptom. For example, the space sickness symptom inclusion results corresponding to multiple space sickness symptom representations for a given space sickness, along with comparison values ​​of vital signs, can be combined into an input vector. This vector can then be input into a classification model for processing to determine whether the astronaut has suffered from that space sickness. Such classification models may include neural network models, support vector machine models, random forest models, and the like.

[0089] According to one embodiment of the present invention, information on the type of space sickness suffered by an astronaut is determined based on the comparison value of the vital signs and the inclusion result of the space sickness symptom representation word, including: obtaining astronaut symptom representation data based on the comparison value of the vital signs and the inclusion result of the space sickness symptom representation word; and determining information on the type of space sickness suffered by the astronaut by processing the astronaut symptom representation data through a trained random forest model.

[0090] According to one embodiment of the present invention, the astronaut symptom characterization data is the input vector obtained by combining the above-mentioned vital sign comparison values ​​and the space sickness symptom characterization word inclusion results. Moreover, when combining, the combination can be performed according to the space sickness symptom characterization word corresponding to the space sickness. For example, the vital sign comparison value and the space sickness symptom characterization word inclusion results of a space sickness are combined into astronaut symptom characterization data, and the astronaut symptom characterization data can be processed by the random forest model of the space sickness to determine whether the astronaut suffers from the space sickness. Similarly, the respective astronaut symptom characterization data can be processed by the random forest model of each space sickness to determine whether the astronaut suffers from various space sicknesses, thereby determining the type of space sickness the astronaut suffers from. For example, the astronaut symptom characterization data corresponding to a space psychological disease (i.e., the input vector formed by combining the vital sign comparison value and the space sickness symptom characterization word inclusion results of the space psychological disease) can be processed by the random forest model corresponding to the space psychological disease to determine whether the astronaut suffers from the space psychological disease.

[0091] Example 3:

[0092] According to one embodiment of the present invention, the random forest model corresponding to each of the above-mentioned space-related psychological disorders can be trained using a large amount of data on space-related psychological disorders and space sickness symptoms of training personnel stored in an external memory. The training steps of the random forest model include: obtaining sample vital sign comparison values ​​and sample space sickness symptom representation word inclusion results of the training personnel; obtaining sample symptom representation data of the training personnel based on the sample vital sign comparison values ​​and the sample space sickness symptom representation word inclusion results; processing the sample symptom representation data using the random forest model to obtain predicted space sickness data; and training the random forest model based on the predicted space sickness data and the labeled space sickness information of the training personnel to obtain a trained random forest model.

[0093] According to one embodiment of the present invention, the sample vital sign comparison value and the sample space sickness symptom characterization word inclusion result are similar to the above-mentioned methods for obtaining the vital sign comparison value and the space sickness symptom characterization word inclusion result, and will not be repeated here. Moreover, as in the above-mentioned method for obtaining astronaut symptom characterization data, the sample vital sign comparison value and the sample space sickness symptom characterization word inclusion result of a space sickness can be combined to obtain the sample symptom characterization data of the training personnel, and input into the random forest model of the space sickness for processing to obtain the predicted disease data of the space sickness, that is, the data for determining whether the astronaut suffers from the space sickness. Then, the random forest model can be trained based on the predicted disease data of the space sickness and the labeled information of the space sickness suffered by the training personnel. For example, based on the predicted disease data of the space sickness and the space sickness suffered by the training personnel, a cross entropy loss function is determined, and the random forest model is trained. After multiple trainings, a trained random forest model can be obtained.

[0094] In this example, during training, the random forest model parameters can be initialized, such as the number of decision trees n_estimators, the maximum tree depth max_depth, and the minimum number of samples required for internal node splitting min_samples_split. The datasets for multiple trainees are then divided into training, validation, and test sets in a 6:2:2 ratio. The random forest model can then be trained as described above using the trainee data in the training set, and further parameter tuning and model hyperparameter optimization can be performed using the validation set. The prediction accuracy is then tested on the test set to determine the accuracy of whether each trainee in the test set has space sickness. If the accuracy does not meet the requirement, training is repeated until the accuracy meets the requirement, completing the model training and obtaining a trained random forest model. In a similar manner, a trained random forest model for each type of space sickness can be obtained for use in the aforementioned process of determining whether an astronaut has space sickness.

[0095] In this way, the type of space sickness astronauts suffer from can be determined by combining vital signs data and symptoms experienced by astronauts. This can accurately determine the type of space sickness astronauts suffer from without the guidance of professional doctors, improving the convenience of judgment and helping to design more accurate physical therapy plans.

[0096] According to one embodiment of the present invention, an acupuncture point selection scheme for space sickness can be determined based on the type of space sickness suffered by the astronauts. For example, a specific acupuncture point selection scheme can be set for each space sickness, so as to carry out targeted physical therapy and improve the physical therapy effect.

[0097] According to one embodiment of the present invention, based on the space sickness type information, determining the acupuncture point selection plan for space sickness includes: obtaining an acupuncture point selection plan retrieval table stored in the storage unit 2005 of the space sickness diagnosis and treatment intelligent controller 102; searching in the acupuncture point selection plan retrieval table based on the space sickness type information to obtain acupuncture points to be treated; obtaining the union of acupuncture points to be treated corresponding to each type of space sickness information to obtain the acupuncture point selection plan for space sickness.

[0098] According to one embodiment of the present invention, the storage unit 2005 stores an acupuncture point selection scheme retrieval table, which records the acupuncture point selection scheme for each space disease, that is, for each space disease, which acupuncture points on the human body need to be treated with acupuncture. In the example, for space psychological diseases, the acupuncture points for acupuncture treatment include: Zhongshu point, Zhiyang point, Jinsuo point, Xuanshu point, Shendao point, Shangxing point, Shenzhu point, Shenting point, Dazhui point, Xinhui point, Chengjiang point, Taodao point, Yamen point, Qianding point, Fengfu point, Qiangjian point, Yaoyangguan point, Houding point, Naohu point, Baihui point, Lingtai point, Mingmen point, Zhongdu point, Ligou point, Xiaxi point, Xingjian point, Yinbao point, Taichong point, Ququan point, Dadun point, Qimen point, Yinxi point, Tongli point, Lingdao point, Qingling point, Shaohai point, Dabao point, Shaochong point, Shenmen, Yintang, Jiuwei, and Qihai points; for bacterial inflammation (conjunctivitis), acupoints for acupuncture and moxibustion therapy include: Zanzhu, Sizhukong, Chengqi, Fengchi, Hegu, Taichong, Fenglong, Dazhui, Ganshu, Pishu, and Yintang points; for bacterial inflammation (respiratory diseases), acupoints for acupuncture and moxibustion therapy include: Dazhui, Kongzui, Feishu, and Yuji points; for bacterial inflammation (tooth infection), acupoints for acupuncture and moxibustion therapy include: Xiaguan, Jiache, Linggu, Dabai, Cesanli, and Cexiasanli points , Sanchi point, Hegu point; for space blindness, acupoints for acupuncture and moxibustion therapy include: Jingming point, Fengchi point, Guangming point, Taiyang point, Hegu point, Shuigou point, Shangxing point, Taichong point; for osteoporosis, acupoints for acupuncture and moxibustion therapy include: Shenshu point, Pishu point, Mingmen point, Guanyuan point, Qihai point, Yaoyangguan point, Zusanli point, Sanyinjiao point, Taixi point; for orthostatic intolerance, acupoints for acupuncture and moxibustion therapy include: Neiguan point, Shenmen point, Daling point, Baihui point, Touwei point; for muscular dystrophy, acupoints for acupuncture and moxibustion therapy include: The acupoints for acupuncture and moxibustion therapy for space adaptation syndrome include: Zhongwan, Zusanli, Weishu, Pishu, Neiguan, Shuigou, Shangxing, Yintang, Baihui, Fengchi, Sanyinjiao, Hegu, Taichong, Qihai, Xuehai, Mu, Chongzi and Chongxian, Sima, Liangmen, Shangwan, Xiawan, Yanglingquan, Fenglong, Yuzhong, Fengfu, Quchi and Taiyang.

[0099] According to one embodiment of the present invention, based on the type of space sickness an astronaut suffers from, acupuncture point selection scheme search table is searched to obtain acupuncture points for treatment. Specifically, acupuncture points for treatment are determined based on the type of space sickness the astronaut suffers from. If an astronaut suffers from more than one type of space sickness, a union of acupuncture points for each type of space sickness can be determined. This union of acupuncture points corresponding to each type of space sickness can then be determined. All acupuncture points in this union can then be determined as the space sickness acupuncture point selection scheme.

[0100] According to one embodiment of the present invention, according to the space disease acupuncture acupoint selection scheme, current pulses are generated, including: determining the target acupoint according to the space disease acupuncture acupoint selection scheme; selecting the target electrode sheet from multiple physical therapy electrode sheets 104 according to the target acupoint; displaying the treatment time input box and the treatment intensity input box through the touch display unit 2002 of the space disease diagnosis and treatment intelligent controller 102; after the treatment time input box receives the treatment time data, the treatment intensity input box receives the treatment intensity data, and a confirmation message is received, the pulse generator module 2006 of the space disease diagnosis and treatment intelligent controller 102 generates a current pulse for the target electrode sheet according to the treatment time data and the treatment intensity data.

[0101] In the example, each of the above acupuncture points has its own number, and the number of each acupuncture point in the space disease acupuncture acupuncture scheme can be determined, so that the main control unit 2001 can control the corresponding pin of the pulse generator module based on the number to generate a current pulse, thereby causing the corresponding physical therapy electrode sheet (i.e., the target electrode sheet) to output a current pulse, thereby performing current pulse stimulation on the human body acupuncture point (i.e., the target acupuncture point) in the space disease acupuncture acupuncture scheme, that is, simulating acupuncture for physical therapy. Moreover, as mentioned above, the touch display module 2002 can also be used to input the duration and intensity of acupuncture therapy. The main control unit 2001 can control the timer module 2007 and the pulse generator module 2006 respectively based on the duration and intensity, so that the pulse generator module 2006 generates current pulses to the target electrode according to the treatment intensity data input by the astronaut, so as to perform acupuncture therapy on the target acupoint, and can control the timer module 2007 according to the treatment duration data input by the astronaut, so as to stop the therapy after the treatment duration data expires, that is, to stop the pulse generator module 2006 from generating current pulses.

[0102] Example 4:

[0103] Figure 4 An application diagram of an integrated system for diagnosing and treating space sickness based on an acupuncture and physiotherapy sleeping bag according to an embodiment of the present invention is exemplarily shown.

[0104] According to one embodiment of the present invention, after the space sickness diagnosis and treatment intelligent controller 102 is powered on, the touch display module 2002 may display an interface 401, namely, multiple input boxes, into which the astronaut can enter their name and vital sign data. The name entry is verified. Each space sickness acupuncture therapy sleeping bag 101 is customized to the astronaut's body type. If an astronaut enters the wrong sleeping bag, the placement of the therapy electrodes 104 may not match the acupuncture points on the human body. Therefore, the name entry is verified. If the name entered by the astronaut does not match the name stored in the storage unit, the astronaut is notified that the current sleeping bag is not the astronaut's, and is prompted to find their own sleeping bag. After the name is verified, various vital sign data, such as blood pressure, heart rate, respiratory rate, and blood oxygen saturation, can be entered in other input boxes. The main control unit 2001 then obtains a vital sign comparison value based on the vital sign data.

[0105] According to one embodiment of the present invention, after completing the input, the user can click Next. The touchscreen display module 2002 will display interface 402 and generate a space sickness diagnostic question based on each space sickness symptom term. This question will be announced through the loudspeaker module 2003 and displayed on display interface 402. The astronaut can answer the question, and the main control unit 2001 will obtain the astronaut's voice response data and convert it into a main text. The main control unit 2001 will then determine whether each symptom term is included in the main text through string matching, thereby determining whether the astronaut experiences the corresponding symptom. The astronaut can also confirm the answer by clicking the Confirm button corresponding to each symptom term. If the analysis is incorrect, the astronaut can manually correct it. For example, if the main control unit 2001 determines that the main text contains the symptom of "depression," but the astronaut does not experience this symptom, the astronaut can manually correct it. After all symptom terms have been verified, the user can click Next to display interface 403. Alternatively, the user can click Previous to return to interface 401 and modify the previous content.

[0106] According to one embodiment of the present invention, the duration and intensity of treatment can be input in interface 403, thereby controlling the pulse generator module 2006 and the timer module 2007 to control the treatment process. After the above input is completed, the main control unit 2001 can determine the type of space sickness suffered by the astronaut and determine the corresponding acupuncture point selection plan. After the space sickness diagnosis and treatment intelligent controller 102 is inserted into the U-shaped slot 103, the treatment process can be started. Therefore, according to the treatment intensity input by the astronaut, current pulses can be input to the acupuncture points involved in the acupuncture point selection plan to perform acupuncture treatment, and the treatment will be stopped when the input treatment duration expires.

[0107] According to an embodiment of the present invention, the integrated space sickness diagnosis and treatment system based on an acupuncture and physiotherapy sleeping bag integrates therapy electrodes into the sleeping bag, aligning them with the astronaut's acupuncture points. This allows for therapy to be performed while the astronaut's muscles are relaxed while they sleep, providing high comfort and effective treatment. Acupuncture therapy performed via the electrodes is also highly safe. Based on the astronaut's vital signs and voice responses to space sickness diagnostic questions, the system intelligently determines the type of space sickness the astronaut suffers from, enabling accurate and efficient space sickness prediction and screening without the need for a professional doctor. Acupuncture point selection plans are automatically generated, controlling the therapy electrodes to deliver current pulse therapy to specific acupoints. This allows astronauts to receive safe and reliable acupuncture therapy without the need for professional medical guidance or specialized medical knowledge, effectively improving acupuncture effectiveness. Furthermore, by aligning the therapy electrodes, pin headers, female headers, and pulse generator modules, the current pulses of each therapy electrode can be precisely controlled to accurately stimulate acupoints and enhance treatment effectiveness. When determining the symptoms an astronaut experiences, the astronaut's main narrative text can be compared with the space sickness symptom term for each type of space sickness to determine whether each space sickness symptom term is included in the main narrative text, thereby determining whether the astronaut experiences the symptoms corresponding to the space sickness symptom term. This allows for oral diagnosis of astronaut symptoms, improving the convenience of symptom diagnosis, providing a data basis for determining the type of space sickness, and helping to accurately determine the type of space sickness an astronaut suffers from without the guidance of a professional doctor. When determining the type of space sickness an astronaut suffers from, the type of space sickness an astronaut suffers from can be determined by combining vital sign data and the astronaut's symptoms. This allows for accurate diagnosis of the type of space sickness an astronaut suffers from without the guidance of a professional doctor, improving the convenience of diagnosis and helping to design more accurate physical therapy plans.

[0108] The present invention may be a method, an apparatus, a system and / or a computer program product. The computer program product may include a computer-readable storage medium carrying computer-readable program instructions for executing various aspects of the present invention.

[0109] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are intended to be illustrative only and are not intended to limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from the principles described.

[0110] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A space sickness diagnosis and treatment integrated system based on an acupuncture and physiotherapy sleeping bag, characterized in that: include: A space sickness acupuncture and physiotherapy sleeping bag (101) and a space sickness diagnosis and treatment intelligent controller (102); The space sickness acupuncture and physiotherapy sleeping bag (101) is provided with a U-shaped slot (103) for electrically connecting to the space sickness diagnosis and treatment intelligent controller (102); A space sickness acupuncture and physiotherapy sleeping bag (101) is provided with a physiotherapy electrode sheet (104) inside, wherein the position of the physiotherapy electrode sheet (104) corresponds to the position of acupuncture points on the human body, and the physiotherapy electrode sheet (104) is used to perform physiotherapy on acupuncture points on the human body through current pulses generated by a space sickness diagnosis and treatment intelligent controller (102); The space sickness diagnosis and treatment intelligent controller (102) is used for: Generate and broadcast space sickness diagnostic questions; receiving the astronaut's vital sign data and voice data of responses to the space sickness diagnosis questions; determining information on the type of space sickness suffered by the astronaut based on the vital sign data and the reply voice data; Determine acupuncture point selection plan for space sickness based on the space sickness type information; According to the space sickness acupuncture point selection scheme, current pulses are generated.

2. The system according to claim 1, wherein: Determining the type of space sickness suffered by the astronaut based on the vital sign data and the reply voice data, including: Comparing a plurality of vital sign data with preset vital sign data thresholds to obtain a vital sign comparison value; Obtain the astronaut's main narrative text based on the reply voice data; According to the astronauts' main narrative text, the word representation results of space sickness symptoms are obtained; According to the comparison value of the vital signs and the inclusion result of the space sickness symptom characterization word, the type of space sickness suffered by the astronaut is determined.

3. The system according to claim 2, characterized in that According to the astronauts' main text, the word representation of space sickness symptoms is obtained, including: Acquiring a plurality of space sickness symptom representation words according to a space sickness symptom representation word reference table stored in a storage unit (2005) of the space sickness diagnosis and treatment intelligent controller (102); Perform string matching on the i-th space sickness symptom representation word and the astronaut's main narrative text to determine the space sickness symptom representation word inclusion result corresponding to the i-th space sickness symptom representation word, where i is a positive integer; Iterate the string matching step to determine the space sickness symptom representation word inclusion result corresponding to each space sickness symptom representation word.

4. The system according to claim 2, wherein: Determining the type of space sickness suffered by the astronaut based on the vital sign comparison value and the space sickness symptom representation word inclusion result, including: Obtaining astronaut symptom characterization data based on the vital sign comparison value and the space sickness symptom characterization word inclusion result; The astronauts' symptom representation data is processed through the trained random forest model to determine the type of space sickness the astronauts suffer from.

5. The system according to claim 4, characterized in that The training steps of the random forest model include: Obtaining sample vital sign comparison values ​​and sample space sickness symptom representation word inclusion results of the training personnel; Obtaining sample symptom representation data of the training personnel according to the sample vital sign comparison values ​​and the sample space sickness symptom representation word inclusion results; The sample symptom representation data was processed through the random forest model to obtain the predicted data of space sickness; The random forest model is trained based on the predicted data of space sickness and the labeled information of space sickness suffered by the trainees to obtain a trained random forest model.

6. The system according to claim 1, wherein: Based on the space sickness type information, determine the acupuncture point selection plan for space sickness, including: Obtaining an acupuncture point selection scheme retrieval table stored in a storage unit (2005) of the space sickness diagnosis and treatment intelligent controller (102); According to the space sickness type information, a search is performed in the acupuncture point selection plan search table to obtain the acupuncture points to be treated; Obtain the union of the acupoints to be treated corresponding to each type of space sickness information, and obtain the acupoint selection plan for space sickness.

7. The system according to claim 1, wherein: According to the acupuncture point selection scheme for space sickness, current pulses are generated, including: Determine the target acupuncture points according to the acupuncture point selection plan for space sickness; selecting a target electrode sheet from a plurality of physical therapy electrode sheets (104) according to the target acupuncture point; Displaying a diagnosis and treatment duration input box and a diagnosis and treatment intensity input box via a touch display unit (2002) of a space sickness diagnosis and treatment intelligent controller (102); After the treatment duration input box receives the treatment duration data, the treatment intensity input box receives the treatment intensity data, and a confirmation message is received, the pulse generator module (2006) of the space disease diagnosis and treatment intelligent controller (102) generates a current pulse for the target electrode sheet according to the treatment duration data and the treatment intensity data.

8. The system according to claim 7, characterized in that The U-shaped slot (103) includes a pin header (301) corresponding to each physiotherapy electrode sheet (104), and the pulse generator module (2006) is electrically connected to the pin header (301) via a female connector (2008).

9. The system according to claim 1, wherein: The space sickness diagnosis and treatment intelligent controller (102) includes a loudspeaker module (2003) for broadcasting space sickness diagnosis questions; the space sickness diagnosis and treatment intelligent controller (102) includes a microphone module (2004) for receiving the response voice data.

10. The system according to claim 1, wherein: The space disease diagnosis and treatment intelligent controller (102) includes a power supply (2009) for supplying power to the space disease diagnosis and treatment intelligent controller (102) and providing the electrical energy required to generate current pulses.

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