Micro hyperbaric oxygen chamber for promoting cell regeneration

By integrating data monitoring, processing and regulation modules in the micro-hyperbaric oxygen chamber, the environment in the cabin is adjusted in real time, and the problem that the existing micro-hyperbaric oxygen chamber cannot adjust the environment instantly according to the user's physical fitness is solved, the treatment effect and adaptability are improved, and treatment files are generated to assist in the adjustment of the treatment plan.

CN120189301AInactive Publication Date: 2025-06-24ZHONGQING BOWANG GAS CO LTD
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Patent Information

Application Number
CN202510224423.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2025-06-24
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention relates to the technical field of micro hyperbaric oxygen chambers, in particular to a micro hyperbaric oxygen chamber for promoting cell regeneration. Comprising a data monitoring module, a data processing module, a regulation and control module, an emergency early warning module and a recording module, the data monitoring module is connected with the data processing module, the regulation and control module belongs to the data processing module and is connected with the emergency early warning module, and the emergency early warning module is connected with the data processing module and is connected with the data monitoring module. The recording module is connected with the data monitoring module, and the actual treatment environment in the cabin body can be adjusted according to the actual treatment condition of a user through an environment regulation and control system in the micro hyperbaric oxygen cabin, so that effective treatment on different types of users is conveniently realized.
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Description

Technical Field

[0001] The present invention relates to the technical field of micro hyperbaric oxygen chambers, and in particular to a micro hyperbaric oxygen chamber for promoting cell regeneration. Background Art

[0002] A micro hyperbaric oxygen chamber is a low-pressure oxygen therapy device, usually used at a relatively low pressure (1.3 - 1.5 absolute atmospheres), mainly for non-medical health care, rehabilitation, sports recovery and other purposes. The micro hyperbaric oxygen chamber creates an environment with a pressure higher than the normal atmospheric pressure, making oxygen more soluble in blood and tissue fluid, thus greatly increasing the blood oxygen content and oxygen diffusion distance. This high-pressure environment can promote more oxygen to enter the blood and increase the transportation efficiency of oxygen in the body, enabling sufficient oxygen supply to all parts of the body;

[0003] In a hyperbaric oxygen environment, the body can absorb oxygen more effectively, thus promoting the aerobic metabolism process. This helps to accelerate the body's recovery process, including wound healing, inflammation reduction, and muscle and tissue repair. In addition, hyperbaric oxygen therapy can also improve the body's antioxidant capacity, reduce the generation of free radicals, and further protect the body from oxidative stress damage;

[0004] When the existing micro hyperbaric oxygen chamber is in use, due to the different physiques of users, the oxygen concentration requirements in the treatment environment are also different. Moreover, the existing micro hyperbaric oxygen treatment time is generally 40 to 90 minutes. Under long-term continuous treatment, there are also certain differences in the physical states of users at different time periods. However, the existing micro hyperbaric oxygen chamber cannot timely adjust the aerobic treatment environment in the chamber according to the physical differences and actual physical conditions of the treatment personnel, resulting in a poor actual treatment effect. Summary of the Invention

[0005] The purpose of the present invention is to provide a micro hyperbaric oxygen chamber for promoting cell regeneration, which can adjust the actual treatment environment inside the chamber according to the actual treatment situation of users through the environmental control system provided in the micro hyperbaric oxygen chamber, so as to achieve effective treatment for different types of users.

[0006] To achieve the above object, a micro hyperbaric oxygen chamber for promoting cell regeneration adopted by the present invention includes a data monitoring module, a data processing module, a regulation module, an emergency warning module and a recording module. The data monitoring module is connected to the data processing module. The regulation module is connected to the data processing module and is connected to the emergency warning module. The emergency warning module is connected to the data processing module and is connected to the data monitoring module. The recording module is connected to the data monitoring module;

[0007] The data monitoring module is used to monitor the environmental data in the micro hyperbaric oxygen chamber and the physical signs data of users;

[0008] The data processing module is used to acquire the physical sign data and analyze and process the acquired physical sign data;

[0009] The regulation module correspondingly regulates the treatment environment in the micro hyperbaric oxygen chamber based on the judgment result of the data processing module;

[0010] The emergency warning module is used to analyze and judge the environmental data and the user's physical sign data in the micro hyperbaric oxygen chamber, and perform emergency treatment and warning when an abnormality occurs based on the judgment result;

[0011] The recording module generates treatment record data based on the environmental data and the user's physical sign data monitored during the treatment process in combination with the user's identity information.

[0012] Among them, the data monitoring module includes a physical sign data monitoring sub-module and an environmental data monitoring sub-module. The physical sign data monitoring sub-module is connected to the data processing module and the recording module; the environmental data monitoring sub-module is connected to the recording module and the emergency warning module;

[0013] The physical sign data monitoring sub-module is used to acquire the user's physical sign data in the micro hyperbaric oxygen chamber and perform real-time monitoring;

[0014] The environmental data monitoring sub-module is used to acquire the environmental data in the micro hyperbaric oxygen chamber and perform real-time monitoring.

[0015] Among them, the data processing module includes a physical sign data acquisition sub-module and a physical sign data judgment sub-module. The physical sign data acquisition sub-module is connected to the data monitoring module and the physical sign data judgment sub-module; the physical sign data judgment sub-module is connected to the regulation module and the emergency warning module;

[0016] The physical sign data acquisition sub-module is used to acquire the real-time monitored physical sign data;

[0017] The physical sign data judgment sub-module is used to compare and judge the acquired physical sign data with the set normal physical sign range data and generate judgment result data.

[0018] Among them, the regulation module includes a result analysis sub-module and a control terminal sub-module. The result analysis sub-module is connected to the data processing module and the emergency warning module; the control terminal sub-module is connected to the result analysis sub-module;

[0019] The result analysis sub-module is used to analyze the judgment result data generated by the physical sign data judgment sub-module and generate corresponding regulation instruction data;

[0020] The control terminal sub-module adjusts the treatment environment in the micro-hyperbaric oxygen chamber based on the regulation instruction data generated by the result analysis sub-module.

[0021] Among them, the emergency warning module includes a user safety judgment sub-module, an operating condition judgment sub-module, and an emergency handling sub-module. The user safety judgment sub-module is connected to the data processing module, the operating condition judgment sub-module is connected to the data monitoring module and is also connected to the regulation module; the emergency handling sub-module is connected to the user safety judgment sub-module and is also connected to the operating condition judgment sub-module;

[0022] The user safety judgment sub-module is used to continuously monitor the judgment result data generated by the physical sign data judgment sub-module and analyze and judge the user's health based on the monitoring results;

[0023] The operating condition judgment sub-module analyzes and judges the working condition of the equipment based on the regulation instruction data generated by the result analysis sub-module and the acquired environmental data;

[0024] The emergency handling sub-module completes the emergency control and warning of abnormal situations based on the judgment results of the user safety judgment sub-module and the operating condition judgment sub-module.

[0025] Among them, the recording module includes a file establishment sub-module, a treatment data processing sub-module, and a record construction sub-module. The treatment data processing sub-module is connected to the data monitoring module; the record construction sub-module is connected to the treatment data processing sub-module and is also connected to the file establishment sub-module;

[0026] The file establishment sub-module establishes a personal treatment file based on the collected user identity information;

[0027] The treatment data processing sub-module is used to collect all the environmental data and user physical sign data in the micro-hyperbaric oxygen chamber during the process of collecting user information, and process the collected data to generate treatment statistical data;

[0028] The record construction sub-module is used to generate treatment record data based on the treatment time of the treatment statistical data of the treatment data processing sub-module and store it in the personal treatment file established by the file establishment sub-module.

[0029] Among them, the operating condition judgment sub-module includes an environmental data change monitoring unit, a regulation instruction acquisition unit, and a comprehensive judgment unit. The environmental data change monitoring unit is connected to the data monitoring module and also connected to the comprehensive judgment unit; the regulation instruction acquisition unit is connected to the regulation module and also connected to the comprehensive judgment unit; the comprehensive judgment unit is connected to the emergency treatment sub-module;

[0030] The environmental data change monitoring unit is used to monitor the change of the environmental data in the micro hyperbaric oxygen chamber and generate environmental change data;

[0031] The regulation instruction acquisition unit is used to acquire the regulation instruction data generated by the result analysis sub-module;

[0032] The comprehensive judgment unit analyzes and judges the actual operating condition of the entire control system based on the environmental change data generated by the environmental data change monitoring unit and the regulation instruction data acquired by the regulation instruction acquisition unit.

[0033] The micro hyperbaric oxygen chamber for promoting cell regeneration of the present invention can promote the aerobic metabolism of the users' cells to a certain extent by using the micro hyperbaric oxygen chamber to provide a hyperbaric oxygen environment. The data reflecting the aerobic metabolism of human cells include but are not limited to heart rate, blood pressure, and respiratory rate, etc. The data monitoring module can use corresponding monitoring instruments to monitor the physical sign data such as the heart rate, blood pressure, and respiratory rate of the users in the chamber in real time, and then analyze the acquired physical sign data through the data processing module, so as to understand the aerobic metabolism situation of the users' cells in the current environment. Then, according to the feedback of the aerobic metabolism situation, the regulation module is used to adjust the values of the pressure, temperature, humidity, and oxygen concentration in the chamber, etc., to ensure that various physical sign data monitored by the users in the chamber can be maintained within a numerical range conducive to aerobic metabolism of cells. Due to the different physiques of different users, their demands for the environment are also different. By using the data monitoring module and the data processing module to monitor and analyze the physical sign data of the users, and then cooperating with the regulation module to maintain the treatment environment in the chamber within an environment with a higher adaptability to the users based on the analysis results, the treatment effect on different types of users can be enhanced. After the users' treatment is completed, the recording module can generate a treatment file according to the users' identity information to record the treatment data, so that medical staff can adjust and plan the treatment plan in advance according to the users' historical treatment records, enabling the users to carry out continuous rehabilitation treatment more reasonably and effectively;

[0034] Meanwhile, during the treatment, the emergency warning module can also achieve early warning and emergency control in case of emergency by analyzing and judging the environmental data and user physical sign data in the micro hyperbaric oxygen chamber. For example, when the data monitoring module monitors that the user's physical sign data is abnormal, the emergency warning module can quickly and automatically open the door of the micro hyperbaric oxygen chamber, and at the same time give an acoustic and optical warning to avoid unnecessary dangers to the users in the chamber. Brief Description of the Drawings

[0035] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0036] Figure 1 is a schematic structural diagram of the micro hyperbaric oxygen chamber for promoting cell regeneration of the present invention.

[0037] Figure 2 is a schematic structural diagram of the data monitoring module of the present invention.

[0038] Figure 3 is a schematic structural diagram of the data processing module of the present invention.

[0039] Figure 4 is a schematic structural diagram of the regulation module of the present invention.

[0040] Figure 5 is a schematic structural diagram of the emergency warning module of the present invention.

[0041] Figure 6 is a schematic structural diagram of the recording module of the present invention.

[0042] Figure 7 is a schematic structural diagram of the operation status judgment sub-module of the present invention.

[0043] In the figure: 1 - data monitoring module, 2 - data processing module, 3 - regulation module, 4 - emergency warning module, 5 - recording module, 11 - physical sign data monitoring sub-module, 12 - environmental data monitoring sub-module, 21 - physical sign data acquisition sub-module, 22 - physical sign data judgment sub-module, 31 - result analysis sub-module, 32 - control terminal sub-module, 41 - user safety judgment sub-module, 42 - operation status judgment sub-module, 43 - emergency treatment sub-module, 51 - file establishment sub-module, 52 - treatment data processing sub-module, 53 - record construction sub-module, 421 - environmental data change monitoring unit, 422 - regulation instruction acquisition unit, 423 - comprehensive judgment unit. Detailed Embodiments

[0044] Embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention and should not be construed as limiting the present invention.

[0045] In the description of the present invention, it should be understood that the meaning of "a plurality of" is two or more unless otherwise specifically defined.

[0046] Please refer to Figures 1 to 7 , the present invention provides a micro-hyperbaric oxygen chamber for promoting cell regeneration, which includes a data monitoring module 1, a data processing module 2, a regulation module 3, an emergency warning module 4 and a recording module 5. The data monitoring module 1 is connected to the data processing module 2. The regulation module 3 is connected to the data processing module 2 and is connected to the emergency warning module 4. The emergency warning module 4 is connected to the data processing module 2 and is connected to the data monitoring module 1. The recording module 5 is connected to the data monitoring module 1;

[0047] The data monitoring module 1 is used to monitor the environmental data in the micro-hyperbaric oxygen chamber and the physical signs data of the user;

[0048] The data processing module 2 is used to obtain the physical signs data and analyze and process the obtained physical signs data;

[0049] The regulation module 3 correspondingly regulates the treatment environment in the micro-hyperbaric oxygen chamber based on the judgment result of the data processing module 2;

[0050] The emergency warning module 4 is used to analyze and judge the environmental data in the micro-hyperbaric oxygen chamber and the physical signs data of the user, and perform emergency treatment and warning when an abnormality occurs based on the judgment result;

[0051] The recording module 5 generates treatment record data based on the environmental data in the micro-hyperbaric oxygen chamber monitored during the treatment process, the physical signs data of the user, and the identity information of the user.

[0052] Specifically, by using a micro hyperbaric oxygen chamber to provide a hyperbaric oxygen environment, it can promote the aerobic metabolism of the cells of the users to a certain extent. The data reflecting the aerobic metabolism of human cells includes but is not limited to heart rate, blood pressure, and respiratory rate, etc. The data monitoring module 1 can use corresponding monitoring instruments to monitor the physical sign data of the users in the chamber, such as heart rate, blood pressure, and respiratory rate, etc., in real time. Then, the data processing module 2 analyzes the obtained physical sign data to understand the aerobic metabolism situation of the users in the current environment. After that, according to the feedback of the aerobic metabolism situation, the regulation module 3 adjusts the values of the pressure, temperature, humidity, and oxygen concentration, etc., in the chamber. The regulation module 3 can control the pressure, carbon dioxide, and oxygen concentration according to the set temperature. The oxygen concentration in the chamber is controlled at 21 - 23%. At the same time, the regulation module 3 can also perform corresponding timing operations to ensure that various physical sign data monitored by the users in the chamber can be maintained within a numerical range conducive to aerobic metabolism of cells. Due to the different constitutions of different users, their environmental requirements are also different. By using the data monitoring module 1 and the data processing module 2 to monitor and analyze the physical sign data of the users, and then cooperating with the regulation module 3 to maintain the treatment environment in the chamber within an environment with a higher adaptability to the users based on the analysis results, the treatment effect on different types of users can be enhanced. After the treatment of the users is completed, the recording module 5 can generate a treatment file based on the user's identity information to record the treatment data, so that medical staff can adjust and plan the treatment plan in advance according to the user's historical treatment records, enabling the users to carry out continuous rehabilitation treatment more reasonably and effectively;

[0053] Meanwhile, during the treatment, the emergency warning module 4 can also achieve early warning and emergency control in case of emergencies through the analysis and judgment of the environmental data and the user's physical sign data in the micro hyperbaric oxygen chamber. At the same time, the emergency warning module 4 can also be triggered by a manual alarm button. For example, when the data monitoring module 1 monitors that the user's physical sign data is abnormal, it can quickly and automatically open the cabin door of the micro hyperbaric oxygen chamber through the emergency warning module 4 and give an audible and visual warning to avoid unnecessary dangers to the users in the chamber. It should be noted that a far-infrared therapeutic apparatus can be equipped in the chamber for the treatment of soft tissue damage, rheumatism, and joint pain. At the same time, the seats inside are equipped with a massage function, which can massage the users undergoing treatment, thereby improving the actual treatment effect of the users.

[0054] Further, please refer to Figure 2 , the data monitoring module 1 includes a physical sign data monitoring sub-module 11 and an environmental data monitoring sub-module 12. The physical sign data monitoring sub-module 11 is connected to the data processing module 2 and is also connected to the recording module 5; the environmental data monitoring sub-module 12 is connected to the recording module 5 and is also connected to the emergency warning module 4;

[0055] The physical sign data monitoring sub-module 11 is used to obtain the physical sign data of the user in the micro-hyperbaric oxygen chamber and perform real-time monitoring;

[0056] The environmental data monitoring sub-module 12 is used to obtain the environmental data in the micro-hyperbaric oxygen chamber and perform real-time monitoring.

[0057] In this embodiment, the physical sign data monitoring sub-module 11 mainly performs real-time monitoring of the user's physical sign data by using a human characteristic data monitoring instrument. The physical sign data includes but is not limited to heart rate, blood pressure, and respiratory rate. Medical staff can select different types of monitoring instruments according to the actual needs of different users, and then evaluate the treatment environment of the user based on the monitored physical sign data, so that the treatment environment can be more adapted to the current user. The environmental data monitoring sub-module 12 uses a multi-probe monitoring instrument to monitor the environmental data in the chamber. The monitored environmental data includes but is not limited to values such as the pressure, temperature, humidity, and oxygen concentration in the chamber. By monitoring the environmental data in the chamber, a more comprehensive understanding of the treatment environment where the user is located can be obtained.

[0058] Further, please refer to Figure 3 , the data processing module 2 includes a physical sign data acquisition sub-module 21 and a physical sign data judgment sub-module 22. The physical sign data acquisition sub-module 21 is connected to the data monitoring module 1 and is also connected to the physical sign data judgment sub-module 22; the physical sign data judgment sub-module 22 is connected to the regulation module 3 and is also connected to the emergency warning module 4;

[0059] The physical sign data acquisition sub-module 21 is used to acquire the physical sign data that is being monitored in real time;

[0060] The physical sign data judgment sub-module 22 is used to compare and judge the acquired physical sign data with the set normal physical sign range data, and generate judgment result data.

[0061] Further, please refer to Figure 4 , the regulation module 3 includes a result analysis sub-module 31 and a control terminal sub-module 32. The result analysis sub-module 31 is connected to the data processing module 2 and is also connected to the emergency warning module 4; the control terminal sub-module 32 is connected to the result analysis sub-module 31;

[0062] The result analysis sub-module 31 is used to analyze the judgment result data generated by the physical sign data judgment sub-module 22, and generate corresponding regulation instruction data;

[0063] The control terminal sub-module 32 adjusts the treatment environment in the micro-hyperbaric oxygen chamber based on the regulation instruction data generated by the result analysis sub-module 31.

[0064] In this embodiment, the vital sign data acquisition sub-module 21 in the data processing module 2 is responsible for acquiring the user's vital sign data monitored by the vital sign data monitoring sub-module 11, and then analyzing the acquired user's vital sign data through the vital sign data judgment sub-module 22. Since there are many types of monitored vital sign data, the heart rate data is mainly used as the main judgment basis here, because the heart rate can directly reflect the aerobic metabolism of human cells. According to existing medical knowledge, although the heart rate of normal adults at rest has significant individual differences, most are about 75 beats per minute on average (between 60 and 100 beats per minute). The resting heart rate of healthy adults is usually between 60 and 80 beats per minute, and this range is generally considered to be the optimal heart rate in the resting state, which helps the heart pump blood effectively while reducing the burden on the heart. When performing treatment, since most existing micro-hyperbaric oxygen chambers require users to lie flat for treatment, the monitored heart rate is the resting heart rate. At the same time, due to differences in age, the normal heart rate under normal circumstances will also vary. Therefore, when setting the normal heart rate range, the operator needs to select a suitable heart rate monitoring range according to the user's age in advance;

[0065] During actual treatment, since the principle of micro-hyperbaric oxygen chamber treatment is to increase the oxygen uptake of the human body significantly by raising the pressure and oxygen concentration inside the chamber, the blood oxygen content in the body increases compared to the normal pressure environment. And due to the pressure, the oxygen transport capacity and diffusion distance are greatly improved, thus quickly improving the hypoxic state, promoting metabolism, and being beneficial to physical health. Therefore, when the user is in the treatment environment inside the micro-hyperbaric oxygen chamber, the burden on the heart can be reduced to a certain extent due to the environmental impact, which in turn causes the user's actual heart rate to be slightly lower than usual. Therefore, when setting the normal heart rate range during the treatment process, the user needs to adjust the normal heart rate range during the treatment according to the actual treatment situation. The sign data judgment sub-module 22 compares the obtained real-time heart rate data of the user with the set normal heart rate range. When the heart rate is within the normal range, it proves that parameters such as the oxygen supply efficiency and pressure inside the chamber do not need to be adjusted. When the heart rate is lower than the normal range, it proves that the oxygen concentration is too high, and at this time, the oxygen supply efficiency needs to be lowered. On the contrary, when the monitored real-time heart rate is higher than the normal range, it proves that the oxygen concentration is too low, and at this time, the oxygen supply efficiency needs to be increased. The regulation module 3 is the main module for adjusting the environmental parameters inside the chamber. The sign data judgment sub-module 22 is only responsible for transmitting the final judgment result data. Then, the result analysis sub-module 31 in the regulation module 3 determines the specific adjustment plan for the environmental parameters inside the chamber by analyzing the judgment result data. Finally, the control terminal sub-module 32 controls the corresponding equipment to adjust the environmental parameters inside the chamber. For example, when the oxygen concentration needs to be adjusted, the control terminal sub-module 32 can operate the oxygen generator to regulate the oxygen supply efficiency.

[0066] Further, please refer to Figure 5 , the emergency warning module 4 includes a user safety judgment sub-module 41, an operating condition judgment sub-module 42, and an emergency handling sub-module 43. The user safety judgment sub-module 41 is connected to the data processing module 2. The operating condition judgment sub-module 42 is connected to the data monitoring module 1 and is also connected to the regulation module 3; the emergency handling sub-module 43 is connected to the user safety judgment sub-module 41 and is also connected to the operating condition judgment sub-module 42;

[0067] The user safety judgment sub-module 41 is used to continuously monitor the judgment result data generated by the sign data judgment sub-module 22 and analyze and judge the user's health based on the monitoring results;

[0068] The operating condition judgment sub-module 42 analyzes and judges the working condition of the equipment based on the regulation instruction data generated by the result analysis sub-module 31 and the obtained environmental data;

[0069] The emergency handling sub-module 43 completes the emergency control and warning of abnormal situations based on the judgment results of the user safety judgment sub-module 41 and the operating condition judgment sub-module 42.

[0070] Further, please refer to Figure 7 , the operating condition judgment sub-module 42 includes an environmental data change monitoring unit 421, a regulation instruction acquisition unit 422, and a comprehensive judgment unit 423. The environmental data change monitoring unit 421 is connected to the data monitoring module 1 and is also connected to the comprehensive judgment unit 423; the regulation instruction acquisition unit 422 is connected to the regulation module 3 and is also connected to the comprehensive judgment unit 423; the comprehensive judgment unit 423 is connected to the emergency handling sub-module 43;

[0071] The environmental data change monitoring unit 421 is used to monitor the change of the environmental data in the micro-hyperbaric oxygen chamber and generate environmental change data;

[0072] The regulation instruction acquisition unit 422 is used to acquire the regulation instruction data generated by the result analysis sub-module 31;

[0073] The comprehensive judgment unit 423 analyzes and judges the actual operating condition of the entire control system based on the environmental change data generated by the environmental data change monitoring unit 421 and the regulation instruction data acquired by the regulation instruction acquisition unit 422.

[0074] In this embodiment, the user safety judgment sub-module 41 and the operating condition judgment sub-module 42 in the emergency warning module 4 are respectively used to monitor and judge the actual treatment situation of the user and the operating condition of the equipment. The user safety judgment sub-module 41 mainly continuously monitors the user's physical sign data monitored by the physical sign data monitoring sub-module 11. When the user safety judgment sub-module 41 makes a judgment and analysis, the operator needs to set a time length in advance. When the user safety judgment sub-module 41 monitors that the user's physical sign data has been in the abnormal range within the set time length, the user safety judgment sub-module 41 will issue an emergency warning instruction to the emergency handling sub-module 43, and then quickly open the hatch of the treatment chamber through the emergency handling sub-module 43 and remind the operator by means of sound and light warning, so that when the user feels unwell during the treatment in the chamber, timely treatment feedback can be carried out;

[0075] The operating condition judgment sub-module 42 obtains the real-time monitored environmental data in the micro-hyperbaric oxygen chamber and the regulation instruction data generated by the result analysis sub-module 31 through the provided environmental data change monitoring unit 421 and the regulation instruction acquisition unit 422 respectively. Then, the comprehensive judgment unit 423 judges the operation of the equipment and the entire automatic regulation system according to the environmental data and the regulation instruction data. The comprehensive judgment unit 423 mainly determines the adjustment direction of the environmental data in the chamber by analyzing the regulation instruction data, and then judges whether the entire automatic regulation system is in a normal working state by monitoring the change of the environmental data in the chamber. If it is in a normal working state, the environmental data in the chamber will correspond to the regulation instruction data. For example, when it is analyzed that the regulation instruction data needs to increase the oxygen concentration in the chamber, if the entire automatic regulation system is working normally, the monitored oxygen concentration data will be on the rise. On the contrary, when the monitored oxygen concentration does not change or even shows a downward trend, it proves that the entire automatic regulation system is abnormal, and then an emergency warning is issued through the emergency treatment sub-module 43 to notify the operator to quickly verify and maintain the abnormal situation based on the actual situation.

[0076] Further, please refer to Figure 6 , the recording module 5 includes an archive establishment sub-module 51, a treatment data processing sub-module 52, and a recording construction sub-module 53. The treatment data processing sub-module 52 is connected to the data monitoring module 1; the recording construction sub-module 53 is connected to the treatment data processing sub-module 52 and is also connected to the archive establishment sub-module 51;

[0077] The archive establishment sub-module 51 establishes a personal treatment archive based on the collected user identity information;

[0078] The treatment data processing sub-module 52 is used to collect all the environmental data and user physical sign data in the micro-hyperbaric oxygen chamber during the process of collecting user information, and process the collected data to generate treatment statistical data;

[0079] The recording construction sub-module 53 is used to generate treatment record data based on the treatment time of the treatment statistical data of the treatment data processing sub-module 52 and store it in the personal treatment archive established by the archive establishment sub-module 51.

[0080] In this embodiment, the file creation sub-module 51 can create a corresponding personal treatment file by collecting and inputting user identity information, then collect all the treatment data of the corresponding user through the treatment data processing sub-module 52, and finally sort and input the collected treatment data through the record construction sub-module 53. The corresponding treatment data mainly includes the user's physical sign data monitored during the treatment and the corresponding environmental data. When sorting, a function graph with time as the abscissa and user characteristic data or environmental data as the ordinate can be established, so that medical staff can analyze the user's treatment situation based on the observation of the user's historical treatment data, and thus better adjust and formulate subsequent treatment plans.

[0081] The above-disclosed is only a preferred embodiment of the present invention. Of course, the scope of the rights of the present invention cannot be limited thereby. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.

Claims

1. A micro-hyperbaric oxygen chamber for promoting cell regeneration, characterized in that: It includes a data monitoring module, a data processing module, a control module, an emergency warning module and a recording module, wherein the data monitoring module is connected to the data processing module, the control module belongs to the data processing module and is connected to the emergency warning module, the emergency warning module is connected to the data processing module and is connected to the data monitoring module, and the recording module is connected to the data monitoring module; The data monitoring module is used to monitor the environmental data in the micro-hyperbaric oxygen chamber and the user's vital sign data; The data processing module is used to acquire the vital sign data and analyze and process the acquired vital sign data; The control module controls the treatment environment in the micro-hyperbaric oxygen chamber accordingly based on the judgment result of the data processing module; The emergency warning module is used to analyze and judge the environmental data in the micro-hyperbaric oxygen chamber and the user's vital sign data, and perform emergency processing and warning when an abnormality occurs based on the judgment result; The recording module generates treatment record data based on the environmental data in the micro-hyperbaric oxygen chamber and the user's vital sign data monitored during the treatment process in combination with the user's identity information.

2. The micro-hyperbaric oxygen chamber for promoting cell regeneration according to claim 1, characterized in that: The data monitoring module includes a vital sign data monitoring submodule and an environmental data monitoring submodule, the vital sign data monitoring submodule is connected to the data processing module and to the recording module; the environmental data monitoring submodule is connected to the recording module and to the emergency warning module; The vital sign data monitoring submodule is used to obtain the vital sign data of the user in the micro-hyperbaric oxygen chamber and perform real-time monitoring; The environmental data monitoring submodule is used to obtain environmental data in the micro-hyperbaric oxygen chamber and perform real-time monitoring.

3. The micro-hyperbaric oxygen chamber for promoting cell regeneration according to claim 2, characterized in that: The data processing module includes a vital sign data acquisition submodule and a vital sign data judgment submodule, wherein the vital sign data acquisition submodule is connected to the data monitoring module and to the vital sign data judgment submodule; the vital sign data judgment submodule is connected to the control module and to the emergency warning module; The vital sign data acquisition submodule is used to acquire the vital sign data monitored in real time; The physical sign data judgment submodule is used to compare and judge the acquired physical sign data with the set normal physical sign range data, and generate judgment result data.

4. The micro-hyperbaric oxygen chamber for promoting cell regeneration according to claim 3, characterized in that: The control module includes a result analysis submodule and a control terminal submodule, the result analysis submodule is connected to the data processing module and to the emergency warning module; the control terminal submodule is connected to the result analysis submodule; The result analysis submodule is used to analyze the judgment result data generated by the vital sign data judgment submodule and generate corresponding control instruction data; The control terminal submodule adjusts the treatment environment in the micro-hyperbaric oxygen chamber based on the control instruction data generated by the result analysis submodule.

5. The micro-hyperbaric oxygen chamber for promoting cell regeneration according to claim 4, characterized in that: The emergency warning module includes a user safety judgment submodule, an operation status judgment submodule and an emergency processing submodule, wherein the user safety judgment submodule is connected to the data processing module, the operation status judgment submodule is connected to the data monitoring module, and is connected to the control module; the emergency processing submodule is connected to the user safety judgment submodule, and is connected to the operation status judgment submodule; The user safety judgment submodule is used to continuously monitor the judgment result data generated by the vital sign data judgment submodule, and analyze and judge the user's health based on the monitoring results; The operating status judgment submodule analyzes and judges the operating status of the equipment based on the control instruction data generated by the result analysis submodule and the acquired environmental data; The emergency processing submodule completes emergency control and early warning of abnormal situations based on the judgment results of the user safety judgment submodule and the operation status judgment submodule.

6. The micro-hyperbaric oxygen chamber for promoting cell regeneration according to claim 5, characterized in that: The recording module includes a file establishment submodule, a treatment data processing submodule and a record construction submodule, wherein the treatment data processing submodule is connected to the data monitoring module; the record construction submodule is connected to the treatment data processing submodule and is connected to the file establishment submodule; The file establishment submodule establishes a personal treatment file based on the collected user identity information; The treatment data processing submodule is used to collect all environmental data in the micro-hyperbaric oxygen chamber and user vital sign data during the user data collection process, and process the collected data to generate treatment statistical data; The record building submodule is used to generate treatment record data based on the treatment statistical data of the treatment data processing submodule and store it in the personal treatment file established by the file establishing submodule.

7. The micro-hyperbaric oxygen chamber for promoting cell regeneration according to claim 6, characterized in that: The operation status judgment submodule includes an environmental data change monitoring unit, a control instruction acquisition unit and a comprehensive judgment unit. The environmental data change monitoring unit is connected to the data monitoring module and to the comprehensive judgment unit; the control instruction acquisition unit is connected to the control module and to the comprehensive judgment unit; the comprehensive judgment unit is connected to the emergency processing submodule; The environmental data change monitoring unit is used to monitor the environmental data changes in the micro-hyperbaric oxygen chamber and generate environmental change data; The control instruction acquisition unit is used to acquire the control instruction data generated by the result analysis submodule; The comprehensive judgment unit analyzes and judges the actual operation status of the entire control system based on the environmental change data generated by the environmental data change monitoring unit and the control instruction data acquired by the control instruction acquisition unit.

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