CN212592080U - Breathing mask and traditional Chinese medicine physique detection system - Google Patents
Breathing mask and traditional Chinese medicine physique detection system Download PDFInfo
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- CN212592080U CN212592080U CN201922235671.7U CN201922235671U CN212592080U CN 212592080 U CN212592080 U CN 212592080U CN 201922235671 U CN201922235671 U CN 201922235671U CN 212592080 U CN212592080 U CN 212592080U
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Abstract
The utility model discloses an intelligent traditional Chinese medicine constitution detection system, which comprises a respiratory wave sensor, a lung sound sensor, a data processing module, a storage module, a characteristic matching module, a fortune calculation module and an analysis module; the data processing module acquires information of two sensors to obtain a human body breathing rhythm model; the characteristic matching module carries out characteristic matching on the human body breathing rhythm model according to the built-in characteristic library to obtain instant physical condition data, the fortune computation module converts time into five-organ early warning signals, and the analysis module generates a physical monitoring report by combining the information. The application also provides a respiratory mask for excluding the influence of external environment on collecting respiratory wave signals and lung sound signals. The application gives consideration to the overall arrangement of the congenital constitution and the current constitution, and reflects the real health state of the human body.
Description
Technical Field
The utility model relates to a physique detecting system especially relates to a respirator and traditional chinese medical science physique detecting system.
Background
The existing physical examination approaches generally comprise a questionnaire method, a diagnosis method, a pulse diagnosis method, a multi-diagnosis and parameter method, a physical constitution identifier and a four-quadrant method of transportation and qi.
Questionnaires include filling in paper questionnaires or electronic questionnaires, which are usually a series of questions with fixed options, are not available to all, and give only rough judgment. Meanwhile, the information collected by the questionnaire method is limited to the recent condition of the user and cannot judge the congenital constitution. Because the design indexes of the questionnaire are not comprehensive enough, and the ambiguity and subjectivity of the user for filling the questionnaire, the current physique is inaccurate by simply depending on the indexes of the questionnaire.
For the inspection of constitutions, the tongue manifestation or the facial manifestation can only reflect the current partial status of constitutions, so the inspection result obtained by inspection is not necessarily accurate, and cannot be traced back to reflect the status of innate constitutions. Moreover, the tongue condition is susceptible to a variety of factors, such as: diet, menstrual period or state immediately after exercise, etc., so that the current physical condition cannot be accurately judged only by observing the tongue picture. The inspection methods for tongue and face images are not sufficient due to the influence of different environmental light. During manual analysis, due to insufficient experience or subjective angle, the analysis result is inaccurate, a professional doctor needs to make a visit, and automatic detection cannot be realized. However, in the existing method for analyzing constitutions by machine learning tongue and face, when the sample size is not large enough, the analysis is difficult to be accurate.
The pulse diagnosis method for obtaining the constitution of the user by manually or electronically analyzing the pulse information is not accurate per se because the constitution is not obviously represented on the pulse information and the pulse beat is easily influenced by other factors. The pulse-taking method can only reflect the current state of the user, but cannot reflect the congenital physical state, and medical knowledge storage is also needed during diagnosis.
The multi-diagnosis combined method combining inquiry, inspection and pulse diagnosis requires a long detection time, and can only reflect the current physical condition of the user, but not the congenital physical condition.
The above detection method and system device may have the following common problems:
the volume is bigger: the user can only detect in specific places such as hospitals, clinics, drug stores and the like, but cannot detect at home.
The convenience is not high: in the era of mobile internet, users hope to use mobile terminals to detect at any time.
Is greatly influenced by environmental factors: the collection of tongue and face images is easily affected by different illumination environments and background environments, so that the analysis is not accurate enough; when the pulse condition is collected, a user is easy to be nervous and uneasy in noisy environment to influence the pulse condition; it is also susceptible to environmental noise when collecting sound.
The sharing is not enough: after the user detects the report, the user usually takes a paper report, but cannot check the report at multiple terminals such as a mobile phone, a tablet, a PC and the like, and an interface is not provided for sharing the report to other auxiliary diagnostic systems, so that the data sharing performance is not enough.
Unbound season: the existing calculation of the current constitution is usually only an inherent algorithm, the current season of the current season is not combined, and the body states of people under different seasons of the season are also different and cannot be uniform. Therefore, the current physique measured by the existing detection method is not accurate enough, and the existing detection method has no great reference significance for the current season-saving nursing of users.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: not enough to prior art, the utility model provides a can detect system of congenital physique state and state of health now. The utility model also provides a respirator that can detect human respiratory wave signal and lung sound signal to and traditional chinese medical science physique detecting system based on this respirator.
The technical scheme is as follows: an intelligent traditional chinese medical science physique detecting system, this system includes:
the respiratory wave sensor is used for collecting respiratory wave signals of a human body;
the lung sound sensor is used for collecting a human lung sound signal;
the data processing module is used for drawing the human body respiratory wave signals collected by the respiratory wave sensor and the human body lung sound signals collected by the lung sound sensor into respiratory waveforms to obtain a human body respiratory rhythm model;
the storage module is used for storing the human body breathing rhythm model generated by the data processing module;
the characteristic matching module is used for storing the physique respiration rhythm characteristic library, acquiring a human body respiration rhythm model stored by the storage module, and matching the model with the physique respiration rhythm characteristic library to obtain instant physique state data;
the fortune computing module is used for converting time into a fortune structure according to the traditional Chinese medicine fortune theory and obtaining early warning signals of the five internal organs;
and the analysis module is used for acquiring and generating a constitution detection report according to the instant constitution state data in the characteristic matching module and the five-organ early warning signals in the fortune computation module.
Furthermore, the system faces to the mobile terminal and is used for acquiring and storing the physique detection report generated by the analysis module; the mobile terminal is used for obtaining and checking the generated physique detection report.
Further, the feature matching module is further configured to: and setting a detection time period, matching all human body breathing rhythm models in the time period with the constitution breathing rhythm characteristic library to obtain constitution numbers, and taking the constitution number with the highest occurrence probability in the time period as the constitution state in the time period.
Further, the fortune calculation module is to: converting time into a transportation structure, respectively acquiring the values of the trunk, branch, department, spring, main air, passenger air, middle transportation, four seasons and air, and judging the organs of the five internal organs needing early warning according to the middle transportation;
if the middle transport indicates that the solar cold water is too much, a heart and kidney early warning signal is sent out; if the middle transport is that the wind in the jueyin is too much, an early warning signal of the liver and spleen is sent out;
if the middle transport is too long, a heart-lung early warning signal is sent out; if the middle transportation indicates that yangming dryness and metal are too excessive, a liver and lung early warning signal is sent;
if the middle transportation indicates that the Taiyin wet soil is too much, a kidney and spleen early warning signal is sent; if the middle transportation indicates that the cold water in the sun is not in the reach, a kidney and spleen early warning signal is sent out;
if the middle transportation is that the liver and lung are too late, a liver and lung early warning signal is sent out; if the middle transport is not timely, a heart and lung early warning signal is sent out;
if the middle transportation indicates that yangming dryness is too late, an early warning signal of the liver and spleen is sent; if the middle-jiao transportation indicates that the Taiyin is deficient in the moist soil, a heart and kidney early warning signal is sent out.
Furthermore, the system also comprises a touch display screen, which is used for acquiring instructions and outputting the instructions to the storage module; and displaying the physique detection report generated by the analysis module.
Further, the system also comprises a microprocessor used for verifying the instruction acquired by the touch display screen.
Further, the system also comprises a printing module used for printing the constitution detection report.
The utility model also provides a respirator, this respirator includes: mask shell, bandage device, respiratory wave sensor, lung sound sensor; the mask shell is used for fitting the outline of the face, and at least one air hole for exchanging air is formed in the mask shell; the bandage device comprises bandages connected to two sides of the mask shell, and the positions of the bandages are flush with the heights of the ears relative to the face; the respiratory wave sensor is fixed on the concave surface of the mask shell and close to the mouth and nose of the human body and is used for collecting respiratory wave signals of the human body; the lung sound sensor is fixed on the concave surface of the mask shell and close to the mouth and nose of the human body and is used for collecting lung sound signals of the human body.
A traditional chinese medical science physique detecting system, include: in the breathing mask and the processing subsystem, a power supply module or an external power supply for supplying power is arranged in the breathing mask; breathing mask and processing subsystem are connected, processing subsystem embeds power module or external power supply that is used for the power supply, processing subsystem includes:
the data processing module is used for drawing the human respiratory wave signals and the human lung sound signals collected by the respiratory mask into respiratory waveforms to obtain a human respiratory rhythm model;
the storage module is used for storing the human body breathing rhythm model generated by the data processing module;
the characteristic matching module is used for storing the physique respiration rhythm characteristic library, acquiring a human body respiration rhythm model stored by the storage module, and matching the model with the physique respiration rhythm characteristic library to obtain instant physique state data;
the fortune computing module is used for converting time into a fortune structure according to the traditional Chinese medicine fortune theory and obtaining early warning signals of the five internal organs;
and the analysis module is used for acquiring and generating a constitution detection report according to the instant constitution state data in the characteristic matching module and the five-organ early warning signals in the fortune computation module.
Has the advantages that: the utility model discloses following beneficial effect has:
1. under the instant detection scene, the data of the respiratory wave sensor and the lung sound sensor are collected to draw the respiratory waveform to be matched with the built-in physique respiratory rhythm characteristic library, so that instant physique data are obtained, and compared with the facial diagnosis, the tongue diagnosis and the pulse diagnosis in the prior art, the breathing mask is more convenient and accurate, is not influenced by the ambient light intensity and does not need to contact the human body, and the utility model also provides a breathing mask which can detect in a specific space and eliminate the influence of the external environment;
2. the characteristic matching module can set a detection time period, namely, the system of the utility model supports long-acting physique detection, and can more accurately reflect the real health state of the system than the real-time detection;
3. the qi transportation detection module can calculate the human body congenital constitution through the traditional Chinese medicine qi transportation theory and give a personalized recuperation scheme for the corresponding congenital constitution in the constitution detection report;
4. the utility model discloses the system can be towards mobile terminal, convenient timely inquiry.
Description of the drawings:
FIG. 1 is a flow chart of the system of the present invention;
fig. 2 is a side view of a vertical touch detection terminal device according to embodiment 1 of the present invention;
FIG. 3 is a concave view and a side view of a respiratory mask of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the drawings and the following detailed description.
As shown in fig. 1, the intelligent system for detecting the physique of the traditional Chinese medicine comprises:
the respiratory wave sensor is used for collecting respiratory wave signals of a human body;
the lung sound sensor is used for collecting a human lung sound signal;
the data processing module is used for drawing the human body respiratory wave signals collected by the respiratory wave sensor and the human body lung sound signals collected by the lung sound sensor into respiratory waveforms to obtain a human body respiratory rhythm model;
the storage module is used for storing the human body breathing rhythm model generated by the data processing module;
the characteristic matching module is used for storing the physique respiration rhythm characteristic library, acquiring a human body respiration rhythm model stored by the storage module, and matching the model with the physique respiration rhythm characteristic library to obtain instant physique state data;
in one embodiment, the feature matching module is further configured to: and setting a detection time period, matching all human body breathing rhythm models in the time period with the constitution breathing rhythm characteristic library to obtain constitution numbers, and taking the constitution number with the highest occurrence probability in the time period as the constitution state in the time period.
The fortune computing module is used for converting time into a fortune structure according to the traditional Chinese medicine fortune theory and obtaining early warning signals of the five internal organs;
in one embodiment, the chance calculation module is to: converting time into a fortune structure, respectively acquiring values of a trunk, a branch, a department, a spring, main air, passenger air, middle transport, four seasons and qi, and judging the organs of the five internal organs needing early warning according to the middle transport:
if the middle transport indicates that the solar cold water is too much, a heart and kidney early warning signal is sent out; if the middle transport is that the wind in the jueyin is too much, an early warning signal of the liver and spleen is sent out;
if the middle transport is too long, a heart-lung early warning signal is sent out; if the middle transportation indicates that yangming dryness and metal are too excessive, a liver and lung early warning signal is sent;
if the middle transportation indicates that the Taiyin wet soil is too much, a kidney and spleen early warning signal is sent; if the middle transportation indicates that the cold water in the sun is not in the reach, a kidney and spleen early warning signal is sent out;
if the middle transportation is that the liver and lung are too late, a liver and lung early warning signal is sent out; if the middle transport is not timely, a heart and lung early warning signal is sent out;
if the middle transportation indicates that yangming dryness is too late, an early warning signal of the liver and spleen is sent; if the middle-jiao transportation indicates that the Taiyin is deficient in the moist soil, a heart and kidney early warning signal is sent out.
In one embodiment, the system faces to a mobile terminal and is used for acquiring and storing the physique detection report generated by the analysis module; the mobile terminal is used for obtaining and checking the generated physique detection report.
In one embodiment, the data processing module, the storage module, the feature matching module, the fortune computation module and the analysis module are connected with the respiratory wave sensor and the lung sound sensor in an embedded mode to form the detection terminal device.
In one embodiment, the system further comprises a touch display screen for acquiring instructions and outputting the instructions to the storage module; and displaying the physique detection report generated by the analysis module.
In one embodiment, the system further comprises a microprocessor for verifying the instructions obtained by the touch display screen.
In one embodiment, the system further comprises a printing module for printing the physical fitness test report.
Example 1
As shown in fig. 2, a vertical touch detection terminal device includes: housing 101, base 102, universal wheel 103, power interface 104, touch-sensitive display 105, print module 106, motherboard 107, switch 108, communication module 109, microprocessor 110, storage module 111, battery 112, speaker 113, respirator 114, data processing module 115, feature matching module 116, fortune calculating module 117, analysis module 118. Wherein, the battery is placed in the base, and the shell is installed in the base. The universal wheels are arranged on the base and have four universal wheels in total. The mainboard is connected with a switch, a communication module, a microprocessor, a storage module, a loudspeaker, a data processing module, a characteristic matching module, a fortune gas calculation module and an analysis module, the mainboard is connected with a battery, a touch display screen and a printing module, and the touch display screen, the switch, the communication module, the microprocessor, the storage module, the loudspeaker, the printing module and the like are indirectly connected with the battery through the mainboard. The power interface is connected with the battery and used for charging the battery by an external power supply. The mainboard and the battery are completely arranged in the shell, and the power interface, the touch display screen and the printing module are embedded in the shell. The breathing mask is hung on the outer side of the shell, and the breathing wave sensor and the lung sound sensor on the breathing mask are integrated on the inner side of the breathing mask and connected with the microprocessor.
Among the above components: the touch display screen has touch input and display output functions, can realize the input of birthdays, names, mobile phone numbers, sexes and questionnaires of users, and can display detection reports. The touch display screen reference selection mode is as follows: enteng JXT1200E, Lifan GQ-C-32A, and sable GS-FF-B-2B, GT96PG 218.
And the microprocessor is used for processing data input by a user, realizing the verification of an input format, and calling a corresponding picture according to a data result to generate a physique detection report. The reference type is ARM-A33.
And the storage module is used for realizing storage of data. The reference selection is as follows: custodon 64gTF card.
The communication module realizes information interaction with the mobile terminal, adopts the WIFI wireless module and the GPRS module, preferably adopts WIFI communication when a WIFI network exists, uses the GPRS module when no WIFI network or WIFI signals are not good, and can be expanded to a 5G module. The reference selection is as follows: an ESP2866 wireless module, an ATK-SIM800C GSM GPRS module, a WF-SIM800A GSM/GPRS module and an SLM 7504G module.
And the printing module provides a detection report printing function. The printer is selected as follows: DP-48F.
The power module comprises a battery and a charging module, provides power for the five modules, and can charge the battery through the charging module. The cell type selection reference is as follows: the Beran 3.7V polymer lithium battery has 10000 milliamperes. And the type selection of the charging module refers to: TP 4056.
The breath detection module comprises a breath wave sensor HKH-11C and a lung sound sensor HKY-06F.
The data processing module is used for drawing the human body respiratory wave signals collected by the respiratory wave sensor and the human body lung sound signals collected by the lung sound sensor into respiratory waveforms to obtain a human body respiratory rhythm model;
the characteristic matching module is used for storing the physique respiration rhythm characteristic library, acquiring a human body respiration rhythm model stored by the storage module, and matching the model with the physique respiration rhythm characteristic library to obtain instant physique state data;
the fortune computing module is used for converting time into a fortune structure according to the traditional Chinese medicine fortune theory and obtaining early warning signals of the five internal organs;
and the analysis module is used for acquiring and generating a constitution detection report according to the instant constitution state data in the characteristic matching module and the five-organ early warning signals in the fortune computation module.
The data processing module, the characteristic matching module, the fortune computation module and the analysis module are connected to the mainboard in an embedded mode by adopting a full-record ARM-A33 or ARM-A63 processor.
As shown in fig. 3, the respiratory mask includes: a mask shell 201, a strap device 202, a conduit 203, a conduit port 204, a respiratory wave sensor 205, a lung sound sensor 206, and ventilation holes 207. The mask shell is a transparent plastic shell which accords with human engineering and has a human face shape, the bandage device formed by the bandage and the bandage buckle is positioned on the two sides of the mask shell and is as high as the positions of ears, a data line and a power line of a sensor are arranged in a conduit, the joint of the conduit and the mask shell is a conduit port, a respiration sensor and a lung sound sensor are fixed on the conduit port, and the position of the respiration sensor and the lung sound sensor faces the mouth and the nose of a person but cannot touch the mouth and the nose of the person. The lower part of the mask is provided with air holes.
After a user turns on a power switch, the detection terminal device is started, a main interface of the detection system is automatically turned on, and a touch display screen plays a starting picture and a loudspeaker plays a voice operation prompt.
The user inputs name and mobile phone number according to the voice operation prompt, selects birthday and gender, and clicks the 'submit' button. After the microprocessor checks the validity of the user input, the detection terminal device stores the information in the storage module. And the fortune calculation module of the terminal converts the birthday into the congenital five-organ early warning.
And the user wears the breathing mask according to the prompt picture and starts to detect the breathing rhythm. The respiratory wave sensor and the lung sound sensor collect respiratory wave data B and lung sound data F once every 50ms, and the detection time T is saved to obtain a single-breath rhythm array [ B ]i,Fi,Ti]And i is the current detection serial number, and the detection terminal device stores the information in the storage module.
After the detection is finished for 1 minute, a touch display screen displays the prompt of the operation, the data processing module draws a respiratory wave image IMGB and a lung sound image IMGF to obtain a human body respiratory rhythm model, and the human body respiratory rhythm model is delivered to the storage module for storage; and the characteristic matching module is used for matching the human body breathing rhythm model with a built-in physique breathing characteristic library to obtain a quadrant X to which the detection result belongs.
And the analysis module generates a physique detection report according to the early warning information of the congenital five organs and the category corresponding to the physique number X, wherein the physique detection report comprises a detection result and a nursing scheme, and the early warning information of the congenital five organs, a respiratory wave map IMGB, a lung sound map IMGF and the physique detection report are displayed by a touch display screen.
And the user selects whether to print the report, if so, the microprocessor sends the data to the printing module, and the printing module prints the paper report. If the user selects no, the two-dimension code of the report appears in the screen, and the user can check the detection report on the mobile phone after scanning the code by the mobile phone.
If no operation is performed for 1 minute, the system automatically enters a standby screen to wait for the next detection.
Example 2
A wireless sleeping quality detection terminal device is similar to that of embodiment 1 in connection relationship of components, but does not have a touch display screen.
After the detection terminal device is started, a user opens a mobile phone APP registration account, scans a two-dimensional code on the detection terminal, configures a wireless network, binds the detection terminal device, and ensures that equipment is connected to the Internet.
The user inputs information such as name, birthday, gender, mobile phone number and the like to establish a health file. The fortune computing module converts the birthday into a fortune structure of five fortune and six fortune, namely the congenital constitution, and the fortune structure is stored by the storage module.
The user places the detection terminal device at the bedside or at the bedside. The detection terminal device can automatically judge whether the user is in a sleep state, if the detection is started by the sleep detection, the detection is not started if the detection is not started by the sleep detection.
When a user sleeps, the detection is started, the detection time interval is set, and the respiratory wave data B is collected by the respiratory wave sensor and the lung sound sensor every 500 millisecondsiAnd lung sound data FiFiltering, and recording the detection time TiTo obtain the respiration rhythm array [ B ] of the ith measurementi,Fi,Ti]And storing the data in a storage module.
A characteristic matching module in the detection terminal device matches the human body breathing rhythm model with a built-in physique breathing characteristic library to obtain a quadrant X to which a detection result belongsiWhile preserving the detection time T according to the detection time intervaliHour interval HiThe matching result [ X ] was recorded in 1 houri,Hi]. And continuously monitoring until the detected respiratory wave is not in the human body respiratory rhythm model under normal sleep, which indicates that the user is not in a sleep state, and stopping detection.
The user can check the breathing rhythm data and the physique state report and the nursing scheme on the mobile phone.
When the electric quantity of the terminal device is insufficient or the network fault is detected, the red light can flash to remind a user, and the light is not flashed any more after the fault is eliminated. When the device is normally used, the detection terminal device cannot emit any sound and any light, and the sleep of a user cannot be influenced.
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