WO2021112270A1 - Dispositif de psychothérapie permettant de détecter un signal d'onde cérébrale, système de psychothérapie permettant d'afficher et de stocker un signal d'onde cérébrale à l'aide de celui-ci, et système permettant de gérer un signal d'onde cérébrale au moyen d'un gestionnaire intermédiaire - Google Patents

Dispositif de psychothérapie permettant de détecter un signal d'onde cérébrale, système de psychothérapie permettant d'afficher et de stocker un signal d'onde cérébrale à l'aide de celui-ci, et système permettant de gérer un signal d'onde cérébrale au moyen d'un gestionnaire intermédiaire Download PDF

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WO2021112270A1
WO2021112270A1 PCT/KR2019/016872 KR2019016872W WO2021112270A1 WO 2021112270 A1 WO2021112270 A1 WO 2021112270A1 KR 2019016872 W KR2019016872 W KR 2019016872W WO 2021112270 A1 WO2021112270 A1 WO 2021112270A1
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eeg
measurement
psychotherapy
data
signal
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PCT/KR2019/016872
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English (en)
Korean (ko)
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이인태
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주식회사 휴먼라인
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Priority to PCT/KR2019/016872 priority Critical patent/WO2021112270A1/fr
Publication of WO2021112270A1 publication Critical patent/WO2021112270A1/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M21/00Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M21/00Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
    • A61M21/02Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis for inducing sleep or relaxation, e.g. by direct nerve stimulation, hypnosis, analgesia
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H20/00ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance
    • G16H20/70ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to mental therapies, e.g. psychological therapy or autogenous training
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H50/00ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics
    • G16H50/20ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H50/00ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics
    • G16H50/30ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for calculating health indices; for individual health risk assessment
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H80/00ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring

Definitions

  • the present invention relates to a psychotherapeutic device that senses an EEG signal that enables an effect on a user's psychotherapy and displays an EEG, and a psychotherapeutic system that displays and stores EEG signals using the apparatus.
  • Psychotherapy that can display EEG that enables mental stability and psychotherapy by downloading an application for a psychotherapy system through a treatment device and a personal terminal capable of wired/wireless communication and using a psychotherapy device connected through Bluetooth communication
  • It relates to a device and a psychotherapeutic system that displays and stores EEG signals using the device and an EEG signal management system through an intermediate manager.
  • EMDR Eye Movement Desensitization and Processing
  • This EMDR is performed through the simple method of stimulating, for example, the left and right palms, along with eye movements, with the doctor moving the finger left and right and the patient looking at the doctor's fingers with both eyes, causing the patient to move the eyeball from side to side at a constant rate. do.
  • EMDR is gradually being applied to many psychiatric treatments, and it is reported that it provides very satisfactory results to therapists and patients as it has a faster effect and a shorter treatment period compared to existing drug treatment methods.
  • the present invention was created in view of the above circumstances, and a psychotherapeutic apparatus for sensing an EEG signal capable of giving an effect to a user's psychotherapy and displaying EEG and an EEG signal using the apparatus. It relates to a psychotherapy system that displays and stores, by downloading an application for a psychotherapy system through a psychotherapy device and a personal terminal capable of wired/wireless communication, and using a psychotherapy device connected through Bluetooth communication for mental stability and psychotherapy An object of the present invention is to provide a psychotherapeutic device capable of displaying EEG that is made possible, and a psychotherapeutic system for displaying and storing EEG signals using the device.
  • Another object of the present invention is to provide an environment in which data such as heart rate, oxygen saturation, etc. can be measured as well as EEG signals to the individual, and thereby provide an environment in which the individual can check the physical condition.
  • An LED bar is provided at a position corresponding to the user's eye, and the LED bar is provided at a position corresponding to the user's left eye, as well as an operation button for operating an operation and a voice output means for outputting a voice signal.
  • a second LED row is disposed at a position corresponding to the user's right eye in addition to the LED row, and a protective film is provided on the side of the LED bar corresponding to the user's eye, and the protective film includes a diffuse reflection prevention film and a window film.
  • the psychotherapeutic device capable of EEG measurement characterized in that it comprises:
  • the LED bar It is installed on both eyes on the inner side of the body where the LED bar is installed and includes a sensing means for EEG measurement consisting of a pair of EEG measuring electrodes capable of measuring EEG, which is a kind of biosignal, and one grounding electrode,
  • USB interface for coupling to a personal computer or smartphone
  • It is connected to a personal computer or smart phone, and operates according to the measurement request signal of the user using the personal computer or smart phone, characterized in that the sensed brain wave signal is transmitted to the personal computer or smart phone,
  • the sensing means for measuring EEG is positioned so as to be in contact with the upper forehead of both eyes of the user, and is made of a material that allows electricity to pass through, and the grounding electrode is fixed in contact with the user's left earlobe when in use,
  • the electrocardiogram is characterized in that it is made through an electrocardiogram sensor mounted on the ear,
  • the brain wave is sensed through the sensing means for measuring the brain wave, and the brain wave signal is transmitted to the personal computer or smart phone to display the change of the brain wave before and after use of the psychotherapy device as a three-dimensional waveform by executing the brain stimulation operation,
  • the sensing means for measuring EEG provides the user's EEG measurement signal, oxygen saturation signal, pulse rate, and heart rate signal to the personal computer or smartphone, and measures the blood vessel age of the corresponding age group, thereby predicting hypertension or diabetic disease.
  • a psychotherapeutic device for sensing an EEG signal characterized in that it is possible.
  • the user wears the psychotherapy device according to the present invention on the face and detects the EEG through the sensing device for EEG detection that is in contact with the forehead above both eyes, and receives the light displayed through the LED bar. It is possible to accurately and comfortably execute brain stimulation motions just by looking with the eyes, so that the changes in the brain waves before and after use of the device can be seen in a variety of 3D waveforms and bar graphs.
  • the brain wave is detected using a psychotherapy device connected through Bluetooth communication, and the change of the brain wave is displayed as a three-dimensional waveform and a bar graph in various ways. This has the effect of enabling mental stability and psychological treatment.
  • the individual can promote mental and physical stability by clicking on the data obtained through the analysis result to execute the appropriate content for the data, and after executing the content (provided by the operator of the present invention), various signals such as EEG signals Since it can be measured and analyzed, there is an effect that the improvement effect of mental and physical conditions such as mental and physical stability through the contents of the present invention can be visually confirmed.
  • the middle manager who manages a plurality of individuals can manage specific individuals by field, meaningful data can be collected for each group according to the ability of the middle manager, and also the manager of the present invention can manage big data It has the effect of being able to serve as a manager who can collect and provide a platform to middle managers.
  • an individual can additionally collect bio-signal related data such as heart rate, blood vessel age, oxygen saturation, and electrocardiogram as well as brain waves, and through this, check the current state of the body through bio-signal measurement There is also the effect of being able to check the state of one's body management by uploading it.
  • bio-signal related data such as heart rate, blood vessel age, oxygen saturation, and electrocardiogram as well as brain waves
  • FIG. 1 and 2 are perspective views showing an external shape of a psychotherapy apparatus according to an embodiment of the present invention.
  • Figure 3 is an exploded perspective view of the body 10 in Figure 1;
  • Fig. 4 is a front view of the body 1 in Fig. 3;
  • FIG. 5 is a view for explaining the structure of the cushioning material 30 in FIG.
  • FIG. 6 is a block diagram showing the circuit configuration of the psychotherapy apparatus.
  • FIG. 7 is a view for explaining the operation of the psychotherapy apparatus.
  • FIGS. 8 and 9 are diagrams for explaining a focus adjustment operation of a light emitting point seen by a user's eyes
  • FIG. 10 is a conceptual diagram schematically illustrating a psychotherapeutic apparatus connected to a personal terminal through Bluetooth communication according to the present invention.
  • FIG. 11 is a diagram illustrating an example of an interface screen displayed on a personal terminal in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention.
  • FIG. 12 is a diagram illustrating an example of a pop-up window displayed when my EEG data file is touched in FIG. 11 .
  • FIG. 13 is a view showing an example of a screen and a 3D (three-dimensional) graph screen after clicking a frequency band in the pop-up window shown in FIG. 12 .
  • FIG. 14 is a graph of changes in brain index displayed when a brain function is selected in the pop-up window displayed in FIG. 12 .
  • 15 is an interface screen illustrating an example of an EEG preparation screen displayed when an EEG measurement is selected on the screen of FIG. 11 .
  • FIG. 14 is a view showing an example of a screen where EEG measurement is started when the user selects EEG measurement after contacting the EEG sensor of the psychotherapy device to the forehead and contacting the reference signal frequency measuring unit (ground unit) to the earlobe in FIG. to be.
  • EEG measurement is started when the user selects EEG measurement after contacting the EEG sensor of the psychotherapy device to the forehead and contacting the reference signal frequency measuring unit (ground unit) to the earlobe in FIG. to be.
  • FIG. 17 is a view similar to FIG. 16 as showing an interface screen in which EEG measurement is continuing in FIG. 15 .
  • FIG. 18 is a view showing an example of the EEG measurement completion screen in which the EEG measurement in FIG. 15 is completed.
  • 19 is a view showing an example of the EEG measurement result screen in which the EEG measurement in FIG. 15 is completed.
  • FIG. 20 is a diagram schematically illustrating a process of storing data in a server and a personal terminal when the data storage button is selected in FIG. 19 .
  • FIG. 21 is a detailed explanatory diagram of a side menu in the EEG measurement result screen of FIG. 19 .
  • FIG. 22 is a diagram illustrating an example of a comparison result data screen in the EEG measurement result screen of FIG. 19 .
  • FIG. 23 is a view showing an example of an interface screen for setting a brain index measurement item displayed on a personal terminal in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention to be.
  • FIG. 24 is a diagram showing an example of a more specific brain index display interface screen displayed on a personal terminal in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention.
  • 25 is a view for storing the EEG measurement result measured by the personal measurement device in the database of the cloud server in the psychotherapy system using the psychotherapy device that is connected through Bluetooth communication with the personal terminal according to the present invention and can display the brain waves. It is a conceptual diagram that explains the process.
  • FIG. 26 is a conceptual diagram schematically illustrating a process of accessing a database of a cloud server through a personal terminal connected to the cloud server through a communication network in FIG. 25 .
  • 27 is an IQ graph and three-dimensional EEG data provided in a psychotherapy system using a psychotherapeutic device that is connected through Bluetooth communication with a personal terminal according to the present invention and can display brain waves. It is a conceptual diagram schematically illustrating a process of analysis and output to a reporter.
  • FIG. 28 is a personal terminal according to the present invention connected through Bluetooth communication in a psychotherapy system using a psychotherapeutic device capable of displaying brain waves, managing and displaying a database for each member while connected to a cloud server through a personal terminal; It is a conceptual diagram showing the state.
  • 29 is a view showing an example of a state of use of a psychotherapy device capable of measuring actual brain waves in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention.
  • FIG. 30 is an example of a management platform system for EEG measurement signal big data through an individual and an intermediate manager in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention. It is a drawing.
  • FIG. 31 is a diagram illustrating an example of a screen for performing an EEG signal and a heart rate measurement result in the personal terminal of FIG. 30 .
  • FIG. 32 is a view showing an example of a screen for performing an EEG signal and a heart rate measurement result in the personal terminal of FIG. 30 and displaying an index such as a stress index.
  • FIG. 33 is a flowchart illustrating an example of a process of measuring an EEG signal and a heart rate in an individual and/or middle manager terminal in FIG. 30 .
  • FIG. 34 is a flowchart illustrating an example of a login process for performing EEG signal and heart rate measurement in the middle manager terminal in FIG. 30 .
  • 35 is a flowchart illustrating an example of a billing process after measuring an EEG signal and a heart rate in the middle manager terminal in FIG. 30 .
  • a body, a band for wearing the body on the face, and a cushioning material coupled to the inner surface of the body are provided, and the body includes an operation button and a voice for operating the operation of the device.
  • An LED bar is provided at a position corresponding to the user's eyes as well as a voice output means for outputting a signal, and the LED bar has a first LED column disposed at a position corresponding to the user's left eye and the user's right side
  • a second LED row is disposed at a position corresponding to the eye
  • a protective film is provided on the side corresponding to the user's eye of the LED bar
  • the protective film is provided with a diffuse reflection prevention film and a window film.
  • the LED bar It is installed on both eyes on the inner side of the body where the LED bar is installed and includes a sensing means for EEG measurement consisting of a pair of EEG measuring electrodes capable of measuring EEG, which is a kind of biosignal, and one grounding electrode,
  • USB interface for coupling to a personal computer or smartphone
  • It is connected to a personal computer or smart phone, and operates according to the measurement request signal of the user using the personal computer or smart phone, characterized in that the sensed brain wave signal is transmitted to the personal computer or smart phone,
  • the sensing means for measuring EEG is positioned so as to be in contact with the upper forehead of both eyes of the user, and is made of a material that allows electricity to pass through, and the grounding electrode is fixed in contact with the user's left earlobe when in use,
  • the electrocardiogram is characterized in that it is made through an electrocardiogram sensor mounted on the ear,
  • the brain wave is sensed through the sensing means for measuring the brain wave, and the brain wave signal is transmitted to the personal computer or smart phone to display the change of the brain wave before and after use of the psychotherapy device as a three-dimensional waveform by executing the brain stimulation operation,
  • the sensing means for measuring EEG provides the user's EEG signal, oxygen saturation signal, pulse rate, and heart rate signal to the personal computer or smart phone, and measures the blood vessel age of the corresponding age group to predict hypertension or diabetic disease.
  • a psychotherapeutic device for sensing an EEG signal characterized in that it is possible.
  • a personal terminal is connected to Bluetooth communication, an application for a psychotherapy device, a personal terminal for downloading the application through a wireless communication network, and a voice or touch through the personal terminal connected through a wireless communication network
  • a self-diagnosis process is performed based on the input and transmitted data according to the input requirements of the application for psychotherapy, and the result is transmitted as a score through a personal terminal.
  • EEG using a psychotherapy device connected through Bluetooth communication with a personal terminal including a psychotherapy system manager computer (server) that extracts treatment content from the database and supplies it to the psychotherapy device connected to the personal terminal in a streaming manner and outputs it In the psychotherapy system for displaying and storing a signal,
  • the EEG is measured through the EEG sensing means consisting of a pair of EEG measuring electrodes and one grounding electrode of the psychotherapy device.
  • the result is transmitted to the personal terminal or the psychotherapy device manager computer (server),
  • the EEG measurement and display program is mounted as an application on the personal terminal, and according to the user's selection, it measures EEG or displays the measured result data, and at the same time provides content according to the user's requirements,
  • the user executes the EEG measurement preparation process in order to perform the EEG measurement and display function provided by the app, then controls the EEG measurement to be performed for a predetermined time, and displays the EEG measurement result data as a three-dimensional graph or Control to display the brain index graph in the form of a bar graph, and when the EEG measurement result is displayed, control to display the comparison data of the past data and the present data on one screen according to the user's request,
  • the user is connected via Bluetooth to a personal terminal equipped with a psychotherapy device capable of measuring EEG and a program capable of displaying and storing EEG signals, and the personal terminal is connected to the EEG signal storage computer server.
  • the brain index measurement graph after a predetermined time after using the psychotherapy device for a specific item of the brain index measurement result can display the degree of change and save the display result in the computer (server),
  • the user is connected via Bluetooth to a personal terminal equipped with a psychotherapy device capable of measuring EEG and a program capable of displaying and storing EEG signals, and the personal terminal is connected to the EEG signal storage computer server.
  • the brain index measurement bar graph is displayed by dividing the user's mental state into various items by type And, when the corresponding item is selected by touch or voice, one or more contents provided in advance corresponding thereto are downloaded through a computer (server), and the content can be played by selecting a specific content by touch or voice,
  • the electrocardiogram is characterized in that it is made through an electrocardiogram sensor mounted on the ear,
  • the measurement result index is displayed in 2D or 3D graphic, and when the graphic is clicked, the content corresponding to the measurement result is displayed, and when the content is clicked, the corresponding content is immediately executed.
  • a treatment system is provided.
  • a personal terminal it is connected to a personal terminal through Bluetooth communication, an application for a psychotherapy device, a personal terminal that downloads the application through a wireless communication network, is connected through a wireless communication network, and is connected to voice or A self-diagnosis process is performed based on the data that is input and transmitted according to the input requirements of the application for psychotherapy using the touch input method, and the result is transmitted as a score through a personal terminal.
  • a psychotherapy device connected through Bluetooth communication with a personal terminal including a psychotherapy system manager computer (server) that extracts content for psychotherapy from the database and supplies it to the psychotherapy device connected to the personal terminal in a streaming manner to output it.
  • server psychotherapy system manager computer
  • the EEG is measured through the EEG sensing means consisting of a pair of EEG measuring electrodes and one grounding electrode of the psychotherapy device, and the result is is stored in the storage unit of the personal terminal,
  • the EEG measurement and display program is mounted as an application on the personal terminal, and according to the user's selection, it measures EEG or displays the measured result data, and at the same time provides content according to the user's requirements,
  • the application is executed, and the user executes the EEG measurement preparation process in order to perform the EEG measurement and display function provided by the app, then controls the EEG measurement to be performed for a predetermined time, and displays the EEG measurement result data as a three-dimensional graph or Control to display the brain index graph in the form of a bar graph, and when the EEG measurement result is displayed, control to display the comparison data of the past data and the present data on one screen according to the user's request,
  • the user is connected via Bluetooth to a personal terminal equipped with a psychotherapy device capable of measuring EEG and a program capable of displaying and storing EEG signals.
  • the brain index measurement graph is displayed after a predetermined time. can indicate the degree of change through
  • the electrocardiogram is characterized in that it is made through an electrocardiogram sensor mounted on the ear,
  • the measurement result index is displayed as a 2D or 3D graphic, and when the graphic is clicked, the content corresponding to the measurement result is displayed, and when the content is clicked, the corresponding content is immediately executed.
  • a terminal is provided.
  • the items displayed on the brain index measurement bar graph are frequency data measured by the sensing means for EEG measurement, and are delta waves, theta waves, alpha waves, SMR waves, M_beta waves, H_beta waves. It is characterized in that the brain index bar graph is divided into the right brain frequency band and the left brain frequency band, respectively, and converted and displayed in response to the beta wave and the gamma wave.
  • the items displayed on the brain index measurement bar graph are frequency data measured by the sensing means for EEG measurement, and are delta waves, theta waves, alpha waves, SMR waves, M_beta waves, and H_beta waves.
  • the brain index bar graph is divided into right brain frequency band and left brain frequency band, respectively, and converted and displayed.
  • one or more of the measured frequency data are combined and the combined frequency It is characterized in that the added new brain index graph corresponding to the data is displayed as an additional item.
  • a personal terminal it is connected to a personal terminal through Bluetooth communication, an application for a psychotherapy device, a personal terminal that downloads the application through a wireless communication network, is connected through a wireless communication network, and is connected to voice or A self-diagnosis process is performed based on the data that is input and transmitted according to the input requirements of the application for psychotherapy using the touch input method, and the result is transmitted as a score through a personal terminal.
  • server psychotherapy system manager computer
  • the EEG is measured through the EEG sensing means consisting of a pair of EEG measuring electrodes and one grounding electrode of the psychotherapy device. The result is transmitted to the personal terminal or the psychotherapy device manager computer (server),
  • the EEG measurement and display program is mounted as an application on the personal terminal, and according to the user's selection, it measures EEG or displays the measured result data, and at the same time provides content according to the user's requirements,
  • the user executes the EEG measurement preparation process in order to perform the EEG measurement and display function provided by the app, then controls the EEG measurement to be performed for a predetermined time, and displays the EEG measurement result data as a three-dimensional graph or Control to display the brain index graph in the form of a bar graph, and when the EEG measurement result is displayed, control to display the comparison data of the past data and the current data on one screen according to the user's request
  • the electrocardiogram is characterized in that it is made through an electrocardiogram sensor mounted on the ear,
  • the measurement result index is displayed in 2D or 3D graphic, and when the graphic is clicked, the content corresponding to the measurement result is displayed, and when the content is clicked, the corresponding content is immediately executed.
  • a treatment system is provided.
  • a personal terminal it is connected to a personal terminal through Bluetooth communication, an application for a psychotherapy device, a personal terminal that downloads the application through a wireless communication network, is connected through a wireless communication network, and is connected to voice or A self-diagnosis process is performed based on the data that is input and transmitted according to the input requirements of the application for psychotherapy using the touch input method, and the result is transmitted as a score through a personal terminal.
  • a psychotherapy system manager computer server
  • a personal terminal that is connected through Bluetooth communication with a psychotherapy device equipped with a measurement sensor and performs brain wave measurement, heart rate measurement, pulse measurement, blood sugar measurement, and oxygen saturation measurement through an interface screen;
  • middle manager server that executes statistics processing function for each member
  • It includes an EEG measurement signal processing system manager server or cloud server in which the signal measured through the psychotherapy device is connected through a network communication network through a personal terminal and uploaded, and the uploaded data is divided into a database and stored and managed in a separate database becomes,
  • the EEG measurement signal manager server distinguishes and displays the EEG measurement signal and the related graphic screen related to heart rate processing through the interface screen,
  • the middle manager server serves as a computer server for schools, government offices, private institutes, and insurance companies, and serves as a manager for managing individuals,
  • EEG is sensed through a sensing means for EEG measurement consisting of a pair of EEG measuring electrodes and one grounding electrode of the psychotherapy device, and brain stimulation is performed to detect changes in EEG before/after using the psychotherapy device. It is displayed as a three-dimensional waveform,
  • the result data is stored in the middle manager member database, the individual is informed of statistical data about his or her current state through the middle manager, and the EEG measurement signal system manager server
  • the big data format is informed of the aggregated statistical data, and the EEG signal system manager server classifies the uploaded data by age, gender, and occupation, excluding personal information, and classifies the EEG signal, oxygen saturation signal, pulse rate, and heart rate signal. It receives and classifies it as big data and provides it, measures the age of blood vessels of the relevant age group and predicts high blood pressure or diabetic disease through this. In case the biosignal measurement index for a specific individual exceeds the average value, it is a dangerous value.
  • EEG measurement signal management service through a middle manager server that processes EEG signals using a psychotherapy device, characterized in that it provides a management service that sends a message to the individual by push-mail, e-mail, or other alarm signal through a personal terminal system is provided.
  • the middle manager server not only the EEG signal and the related statistical screen related to heart rate processing through the interface screen. Rather, it is characterized in that information on heart rate, pulse rate, oxygen saturation, glycemic index, and blood vessel age is also statistically classified and displayed in 3D or 2D graphic form.
  • the electrocardiogram is characterized in that it is made through the electrocardiogram sensor mounted on the ear.
  • the measurement result index is displayed in 2D or 3D graphic, and when the corresponding graphic is clicked, the corresponding measurement result The corresponding content is displayed, and when the content is clicked, the corresponding content is executed immediately.
  • an application for a psychotherapy device a personal terminal that downloads the application through a wireless communication network, is connected through a wireless communication network, and is connected to voice or A self-diagnosis process is performed based on the data that is input and transmitted according to the input requirements of the application for psychotherapy using the touch input method, and the result is transmitted as a score through a personal terminal.
  • EEG measurement signal through an EEG measurement signal management system through an intermediate manager including a psychotherapy system administrator computer (server) that extracts psychotherapy content from the database and supplies it to the psychotherapy device connected to the personal terminal in a streaming manner
  • server psychotherapy system administrator computer
  • EEG heart rate measurement preparation stage
  • EEG/heart rate measurement is performed through the psychotherapy device, then EEG and heart rate measurement result data is saved, uploaded to the EEG measurement signal processing system manager server, and analysis data is sent to individuals for copying and printing , providing for sharing;
  • the individual is an individual belonging to the middle manager, including the step of storing the result data in the middle manager member database,
  • the individual is an individual belonging to a specific middle manager, displaying the manager screen when logging in with the middle manager ID and PW to which the individual belongs;
  • the middle manager manages the information about the individual he is managing by performing inquiry, search, and editing processes;
  • EEG is detected through the sensing device for EEG sensing of the psychotherapy device, and brain stimulation is performed to display the change of EEG before/after use of the psychotherapy device as a three-dimensional waveform,
  • the result data is stored in the middle manager member database, the individual is informed of statistical data about his or her current state through the middle manager, and the EEG measurement signal system manager server
  • the big data format is informed of the aggregated statistical data, and the EEG signal system manager server classifies the uploaded data by age, gender, and occupation, excluding personal information, and classifies the EEG signal, oxygen saturation signal, pulse rate, and heart rate signal. It receives and classifies it as big data and provides it, measures the age of blood vessels of the relevant age group and predicts high blood pressure or diabetic disease through this. In case the biosignal measurement index for a specific individual exceeds the average value, it is a dangerous value.
  • an EEG measurement signal management method using an EEG measurement signal management system through an intermediate manager server, characterized in that it provides a management service for sending a message to the individual by push mail, email, or other alarm signal through a personal terminal.
  • the intermediate manager server includes not only the EEG signal and related statistical screens related to heart rate processing through the interface screen, but also heart rate, pulse rate, It is characterized in that the information on oxygen saturation, glycemic index, and blood vessel age is also statistically classified and displayed.
  • the electrocardiogram is characterized in that it is made through the electrocardiogram sensor mounted on the ear.
  • the measurement result index is displayed in 2D or 3D graphic, and when the graphic is clicked, the content corresponding to the measurement result is displayed, When the content is clicked, it is characterized in that the content is executed immediately.
  • FIG. 1 is a perspective view showing an external shape of a psychotherapy apparatus according to an embodiment of the present invention.
  • FIG. 1 is a perspective view of the psychotherapy apparatus viewed from the top
  • FIG. 2 is a perspective view seen from the bottom.
  • the psychotherapeutic apparatus is configured to include a body, a band 20 coupled to both ends of the body, and a cushioning material 30 .
  • the band 20 is made of an elastic material.
  • the band 20 is for wearing the body on the user's face.
  • the body is worn at a position corresponding to the user's eyes.
  • the cushioning material 30 is made of a resilient material. The cushioning material 30 is for improving the contact feeling and adhesion between the body and the face surface.
  • a status display window 41 for displaying the operation state and operation menu of the device is provided at the center of the upper surface of the body.
  • a power/play button 42 and a volume control button 43 are provided on one side of the status display window 41 , and a movement button 44 and a menu button 45 are provided on the other side.
  • the movement button 44 is for moving the menu displayed on the status display window 41 up and down, and for moving the LED lighting position, which will be described later.
  • a USB terminal 46 is provided on the upper surface of the body.
  • the lower surface of the central portion of the lower surface of the body is curved upward, and a mounting portion (10a) for mounting the body on the user's nose is provided.
  • the earphone terminal 47 and the reset button 48 are installed on both sides of the mounting portion 10a, and a through hole 49 for outputting a voice signal is provided at a position corresponding to the internal speaker.
  • at least one vent 50 for dissipating the heat inside the body to the outside is provided on the bottom surface of the body.
  • a nonwoven fabric is attached to the inside of the vent 50 to block dust, etc. from flowing into the body.
  • the body includes a body 11 , an inner case 12 , and a front cover 13 .
  • the main body 11 has an opening 111 formed in the central portion, that is, a portion corresponding to the user's eyes, and the LCD panel and the keypad 14 constituting the status display window 41 are mounted on the upper surface. Seating holes 112 to 114 are provided for this.
  • the inner case 12 has a shape corresponding to the opening 111 of the body 11 .
  • a seating groove 121 for mounting the LED bar 15 is provided on the inner surface of the inner case 12
  • a support bar 122 for supporting the front cover 13 is provided on the outer surface of the inner case 12 .
  • fastening grooves 123 for fastening the inner case 12 to the main body 11 are provided at both ends of the inner case 12 .
  • the fastening groove 123 is fastened to the fastening protrusion 118 provided on the front surface of the main body 11 .
  • the LED bar 15 is configured by arranging a plurality of LEDs on a rectangular substrate.
  • the LED bar 15 is provided with a first LED column 151 corresponding to the user's left eye and a second LED column 152 corresponding to the user's right eye.
  • Each of the LED columns 151 and 152 includes, for example, 60 LEDs are arranged in a row.
  • the protective film 16 includes a diffuse reflection prevention film and a window film.
  • the diffuse anti-reflection film prevents the light emitted by the LED from being diffusely reflected, and the window film blocks a significant amount of visible light from the light emitted by the LED.
  • the window film employs a visible light blocking rate of, for example, 95%.
  • the substrate 17 includes first to third substrates 171 to 173 .
  • the reason why the substrate 17 is divided into a plurality is to install many circuit parts in a narrow space.
  • the first substrate 171 is disposed on the upper side of the inner case 11 , and the second and third substrates 172 and 173 are fastened to both sides of the main body 11 by fastening means (not shown).
  • the first substrate 171 is supported by the support groove 115 of the main body 11 and the support groove 131 of the front cover 13 .
  • the first to third substrates 171 to 173 are electrically coupled through a cable 174 .
  • a speaker 175 is electrically coupled to the second and third substrates 172 and 173 through wires (not shown), respectively.
  • the speaker 175 is mounted on the speaker holder 176 , and the speaker holder 176 is installed in the speaker seating groove 116 under the main body 11 .
  • the front cover 13 is configured to cover the front and side surfaces of the main body 11 .
  • the front cover 13 is fastened to the body 11 through a fastening means.
  • the side covers 18 are fastened to both ends of the main body 11 by fastening means (not shown).
  • the side cover 18 is provided with an insertion hole 181 into which a fixing pin (not shown) for fixing the band 20 is inserted and fixed, respectively.
  • a fastening protrusion 117 is installed in the central portion of the opening 111 of the main body 11, and the knob 19 is coupled thereto.
  • the knob 19 supports the device between the user's forehead when the device is worn on the user's face, and in particular, by blocking between the user's eyes, the light emitted from the first LED column 151 is transmitted to the user's right eye. It prevents the light reaching or emitted from the second LED column 152 from reaching the user's left eye.
  • the cushioning material 30 is coupled to the rear surface of the main body 11 through, for example, a double-sided adhesive tape.
  • the cushioning material 30 is composed of an elastic material such as a sponge.
  • the elastic material has a porous characteristic. Therefore, the elastic material is easily contaminated by dust, etc., the moisture permeation phenomenon is severe, and there is a possibility that bacteria and the like may multiply in large quantities.
  • the cushioning material 30 is configured to include an elastic material 31 , an outer shell 32 , and a finishing material 33 .
  • the outer skin is made of a moisture-proof material such as polyurethane.
  • the finishing material 33 is, for example, composed of a flame retardant film, the finishing material 33 is heat-sealed to the finished portion of the outer shell (32). Accordingly, in this embodiment, the cushioning material 30 prevents the elastic material 31 such as a sponge from being shielded from external air by the outer shell 32 and the finishing material 33, thereby preventing the elastic material 31 from being contaminated or exposed to moisture.
  • FIG. 6 is a block diagram showing the circuit configuration for the operation of the present device.
  • the same reference numerals are attached to parts substantially the same as those of FIGS. 1 to 5 .
  • the psychotherapeutic apparatus includes a control unit 210 , a key input unit 220 , a data storage unit 230 , an LED control unit 240 , and a voice output unit 250 .
  • the controller 210 controls the entire device.
  • the control unit 210 performs narration reproduction, analog/digital and digital/analog conversion operations of various input/output data, and synthesis operation of background music and narration information, in addition to the overall control operation.
  • the key input unit 220 is for operating the device, and as described with reference to FIG. 1 , a power/play button 42 , a volume control button 43 , a movement button 44 , and a menu button 45 are included.
  • the data storage unit 230 is for storing background music and narration information and scenario information.
  • the scenario information is information defining the operation sequence and time in relation to the driving of the LED bar 15 and reproduction of narration.
  • the LED control unit 240 controls the blinking operation of the LED provided in the LED bar 15 according to the control of the control unit 210 .
  • the LED bar 15 is provided with first and second LED columns 151 and 152, and for example, 60 LEDs are arranged on the first and second LED columns 151 and 152, respectively.
  • the LED control unit 240 turns on each of the LEDs provided in the first and second LED columns 151 and 152 of the LED bar 15 .
  • the LEDs of the first and second LED columns 151 and 152 are blinked by moving the lit LEDs one by one to the right, and after the final stage LED is lit, the lit LEDs are moved one by one to the left. do.
  • This LED blinking operation is performed until an LED driving stop command is applied from the control unit 210 .
  • the above-described LED blinking operation is recognized by the user as one light emitting point moving left and right on the LED bar 15 .
  • the LED that is initially turned on and driven can be selected by the user. The operation thereof will be described in more detail later.
  • the audio output unit 250 outputs the background music or narration information stored in the data storage unit 230 through the earphone terminal 47 of FIG. 1 or the speaker 175 of FIG. 3 .
  • the control unit 210 controls the driving of the LED control unit 240 and reads the background music and narration information stored in the data storage unit 230 and controls the output through the voice output unit 250 to perform psychotherapy operation. will run
  • the battery 270 , the charging unit 280 , and the power supply unit 290 are for supplying power to the device.
  • the USB terminal 46 is for coupling the present device to a USB port of a personal computer or the like.
  • the power supply unit 290 charges the charging unit 280 using external power input through the USB terminal 46 , and supplies power to the charging unit 280 or the battery 270 as operating power to the internal circuit unit.
  • the USB controller 260 controls data communication through the USB interface.
  • the USB control unit 260 executes an update and download function for the data storage unit 230 in connection with a device supporting a USB function, such as a personal computer or a smart phone.
  • the user can store desired background music or narration information in the data storage unit 230 by using the USB terminal 46 .
  • the stored information will be output through the audio output unit 250 as described above.
  • the psychotherapeutic device allows the user to selectively receive the desired treatment by setting the desired treatment items.
  • the user selects the menu button 45 in FIG. 1 while the device is turned on, treatment items selectable by the user are displayed on the status display window 41 .
  • the user may update the data storage unit 230 by connecting the device to a personal computer or smart phone.
  • the user can download a desired treatment item from the server using a personal computer or smart phone.
  • the data downloaded in this way can be downloaded to the psychotherapy device.
  • the psychotherapy device is coupled to a personal computer or smart phone through a USB interface.
  • the psychotherapy device functions as a single USB storage device. The user can download the data stored in the personal computer or smart phone to the psychotherapy device through the USB interface through a conventional method.
  • the control unit 210 When the user selects a desired treatment item and presses the power/regeneration button 42 in FIG. 6 , the control unit 210 reads data corresponding to the corresponding operation mode from the data storage unit 230 and reads data corresponding to the operation mode according to the treatment mode. action will be executed. That is, the control unit 210 controls the LED control unit 240 to sequentially blink and drive the LEDs provided in the LED bar 15 , and output background music or narration information through the voice output unit 250 .
  • FIG. 7 is an explanatory diagram for explaining the operation of the psychotherapeutic device, which schematically shows the form in which LEDs are arranged for the left and right pupils (A, B) of the user when the psychotherapy device, that is, the body is worn on the face. .
  • the control unit 210 When the body is worn on the face, the first LED column 151 is arranged on the front side of the left pupil (A) and the second LED column 152 is arranged on the front side of the right pupil (B).
  • the control unit 210 first provides initial lighting position information to the LED control unit 240 . Then, the control unit 210 outputs the background music and narration information stored in the data storage unit 230, for example, a voice signal for treating the user's psychotic symptoms, such as "remember the memory you want to forget", to the voice output unit.
  • the LED control unit 240 is driven and controlled based on the scenario information stored in the data storage unit 230 .
  • the LED control unit 240 sequentially turns on the LEDs from the LED 15a located on the left side to the LED 15b located on the right side, and then the LED 15b located on the right side again. ), the LEDs are sequentially turned on to the left side of the LED 15a. And, this operation is repeatedly executed until a driving stop command is applied from the control unit 210 . Then, the user's pupils A and B look at the turned on LED, and accordingly, the pupils A and B repeatedly reciprocate in sections A1 to A2 and B1 to B2, respectively.
  • control unit 210 may provide a flashing sound such as a beep sound in accordance with the flashing operation of the LED.
  • a flashing sound such as a beep sound in accordance with the flashing operation of the LED.
  • the provision of such a flashing sound provides a flashing sound only through the left earphone or speaker when the left LED 15a is turned on, and provides a flashing sound only through the right earphone or speaker when the right LED 15b is turned on. It is also preferably practiced.
  • the user looks at the LEDs located in the first LED column 151 with the left eye and the right eye looks at the LEDs located in the second LED column 152 with the user's right eye.
  • the light points by the LED do not coincide with one.
  • two LEDs are seen in the user's eyes. If the user performs eye movements in such a state, dizziness may result. .
  • the user selects the focus adjustment mode by using the menu button 45 .
  • it is desirable to implement the focus adjustment mode so that the user can preferentially select when turning on the device by manipulating the power/playback button 42 .
  • the user can perform a focus adjustment operation by using the volume control button 43 or the movement button 44 .
  • the controller 210 controls the LED controller 240 to turn on only the LED 15c corresponding to the central portion of the first LED column 151 and the second LED column 152 in FIG. 9 . Set to and switch to focus adjustment mode.
  • the control unit 210 turns on the LED in the lit state based on the LED 15c. side or B side.
  • the distance between the left and right LEDs that are turned on gradually decreases, so that the distance between the two phases visible to the user in FIG. 8 is gradually reduced, and the LED
  • the left and right lighting states of move in the B direction
  • the distance between the left and right LEDs gradually increases, so that the distance between the two phases visible to the user in FIG. 8 gradually increases. Accordingly, it is possible to adjust and set the number of visible clothes to one through a method of operating the volume control button 43 or the movement button 44 while the user wears the body on the face.
  • control unit 210 stores the lighting position information of the corresponding LED, and provides the stored LED position information as initial lighting position information of the LED to the LED control unit 240 during subsequent operation. do.
  • the user can perform eye movements accurately and comfortably just by wearing the psychotherapy device according to the present invention on his face and looking at the light displayed through the LED bar 15 with his eyes.
  • USB interface is used when the psychotherapy device is coupled to a personal computer or a smart phone, but a wireless communication method such as Bluetooth may be preferably employed as the coupling method.
  • the method of directly controlling the LED bar 15 from an external device using a wired or wireless communication method can be preferably applied to the psychotherapy apparatus.
  • FIG. 10 is a conceptual diagram schematically illustrating a psychotherapeutic apparatus connected to a personal terminal through Bluetooth communication according to the present invention.
  • the psychotherapy apparatus includes a body, a band for wearing the body on the face, and a cushioning material coupled to the inner surface of the body, and the body is configured to operate the device.
  • An LED bar is provided at a position corresponding to the user's eye
  • an LED bar is provided at a position corresponding to the user's left eye
  • a first LED column is arranged at a position corresponding to the user's left eye.
  • a second LED column is disposed at a position corresponding to the user's right eye
  • a protective film is provided on the side corresponding to the user's eye of the LED bar, and the protective film is provided with a diffuse reflection prevention film and a window film.
  • Sensing for EEG measurement composed of a pair of EEG measuring electrodes 121 and 122 and one grounding electrode 123 installed on both eyes on the inner side of the body where the LED bar is installed to measure EEG, which is a type of biosignal. means, including
  • USB interface for coupling to a personal computer or smart phone
  • It is connected to a personal computer or smart phone, and operates according to the measurement request signal of the user using the personal computer or smart phone, characterized in that the sensed EEG signal is transmitted to the personal computer or smart phone.
  • the sensing means for measuring EEG is positioned so as to be in contact with the upper forehead of both eyes of the user, and is made of a material that allows electricity to pass through, and the grounding electrode is fixed in contact with the user's left earlobe when in use.
  • an EEG measurement electrode of a sensing means for EEG measurement in contact with a user's forehead is prepared for measuring EEG in a state in which a personal terminal and a psychotherapy device are connected by Bluetooth communication (but not limited thereto).
  • Bluetooth communication but not limited thereto.
  • a program for measuring EEG that controls the overall EEG measurement according to the present invention and performs a process for providing an EEG measurement process and result display interface screen on a smartphone display screen 290 may be stored in a separate storage unit (not shown) included in the control unit 210 or may be mounted in a separate storage unit (or memory).
  • the EEG measurement program is a separate program from the operation program for performing the psychotherapy process, such as providing contents according to the existing eye movement and user's selection.
  • the content in order to provide the content according to the EEG measurement result, the content is provided through a computer (server) in a remote place.
  • server computer
  • the present invention is not limited thereto, and in FIG. 6 , a plurality of contents are stored in the memory device according to the memory capacity, and the contents according to the EEG measurement result may be directly provided by the psychotherapy device itself by the user's selection.
  • the EEG measurement result may be directly stored in the smartphone terminal storage unit, or may be selectively transmitted to a remote computer server for storage management.
  • the processing operation of the interface screen in the present invention may be possible by touch or voice.
  • FIG. 11 is a diagram illustrating an example of an interface screen displayed on a personal terminal in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention.
  • a screen capable of EEG measurement is displayed on the initial screen on the mobile smartphone screen S1.
  • a button for EEG measurement (B1) and my measurement data selection button (B2) are provided. The user can measure the EEG by clicking the EEG measurement button (B1-1).
  • the My Measurement Data selection button (B2) When the My Measurement Data selection button (B2) is clicked, the My Measurement Data list is displayed by date.
  • FIG. 12 is a diagram illustrating an example of a pop-up window displayed when my EEG data file is touched in FIG. 11 .
  • a pop-up window P1 is displayed.
  • frequency band frequency band
  • brain function (graph) graph
  • 3D (three-dimensional) graph are displayed.
  • FIG. 13 is a view showing an example of a screen and a 3D (three-dimensional) graph screen after clicking a frequency band in the pop-up window shown in FIG. 12 .
  • the user can click (or touch) the frequency band in the My Measurement Data pop-up window to view the right brain and left brain frequency bands on a large screen.
  • a navigation function button is also provided.
  • the 3D EEG graph can be viewed for the right brain and the left brain, respectively.
  • FIG. 14 is a graph of changes in brain index displayed when a brain function is selected in the pop-up window displayed in FIG. 12 .
  • the user can select a brain function item in the My Measurement Data pop-up window to view the change in the brain index.
  • 15 is an interface screen illustrating an example of an EEG preparation screen displayed when an EEG measurement is selected on the screen of FIG. 11 .
  • the EEG measurement preparation interface screen is displayed. That is, the three-dimensional EEG graph (G11) is displayed on the right brain (G12) and the left brain (G14), respectively, and the displayed graph can be played left and right by the play button (B12) (inactive during measurement),
  • the degree of change (G16) for each frequency band time is displayed, the items are various. (ie, delta wave, theta wave, alpha wave, SMR wave, M_beta wave, H_beta wave, beta wave, gamma wave are displayed). It is divided into right brain frequency band and left brain frequency band, respectively.
  • a playback area change display button B13 is provided.
  • the present invention has the first feature in that the display of such EEG is obtained through a sensor and displayed for each frequency as well as displayed as a brain index graph corresponding to each EEG.
  • a brain index graph display module program
  • the brain index graph item may be additionally displayed.
  • the type of brain index display may be enlarged and displayed. Of course, it can be simplified and reduced to several and displayed in the form of a report.
  • the user may select a specific item in the initial stage of EEG measurement and output the brain index graph.
  • the present result data may be displayed in comparison with the past data, or the present result data may be displayed compared to the average or normal data.
  • the wearing guidance screen G19 of the psychotherapy device for EEG measurement is displayed, and the current state guidance message display button window B11 is displayed (the message is changed and displayed, that is, EEG sensor monitoring or measurement start or measurement completion) is displayed), a guide for EEG measurement is displayed.
  • the voice is displayed.
  • the message “Wear the ear clip (that is, the part provided with the grounding electrode for EEG measurement of the psychotherapy device) on the earlobe” is output.
  • the message "EEG signal is being detected” is output.
  • the message (M1) is output. After that, click or touch the information button window (B11) in the state marked “Start measurement.” This starts EEG measurement.
  • FIG. 16 is a view showing an example of a screen where EEG measurement is started when the user contacts the EEG sensor of the psychotherapy apparatus on the forehead and the reference signal frequency measurement unit (ground) to the earlobe in FIG. 15 and selects EEG measurement to be.
  • the EEG measurement time is set to 2 minutes
  • the set time is displayed on the display unit G18. During this time, EEG is measured. If you move during measurement, an error may occur, so do not move for accurate measurement.
  • the EEG measurement proceeds in three steps: open eye measurement (40 seconds), closed eye measurement (40 seconds), and open eye measurement (40 seconds). However, it is not limited thereto.
  • the measurement time can be changed by clicking the setting button (3, 5, 10 minutes).
  • FIG. 17 is a view similar to FIG. 16 as showing an interface screen in which EEG measurement is continuing in FIG. 15 .
  • the remaining measurement time is displayed on the display unit G18.
  • the EEG graph and frequency band display button are displayed inactive.
  • FIG. 18 is a view showing an example of the EEG measurement completion screen in which the EEG measurement in FIG. 15 is completed.
  • FIG. 18 it shows a state of completion of EEG measurement.
  • the play buttons B12 and B13 are activated.
  • the measurement complete button (B11) is selected, it moves to the measurement completion result page.
  • a side menu is displayed, that is, various functions such as display of comparison data or sharing can be selected.
  • the degree of change by frequency band/time can be enlarged and displayed.
  • 19 is a view showing an example of the EEG measurement result screen in which the EEG measurement in FIG. 15 is completed.
  • a 3D graph and a graph of changes in brain index may be displayed.
  • the initial number of brain index graphs is 8, but is not limited thereto.
  • a data save button (B21) and a data delete (B22) button are provided at the lower part of the change graph of the brain index.
  • Data can be stored in the smartphone memory or on a remote server (of course, a login process is required).
  • various contents corresponding thereto are stored in a remote computer (server) and provided according to the user's request.
  • various contents by selecting one of the specific items of the brain index graph by touch or voice can be played back. After playback, the brain wave is sensed and measured again, and the data can be compared with that before content playback.
  • the user is connected to a personal terminal with a built-in psychotherapy device capable of EEG measurement and a program capable of displaying and storing EEG signals through Bluetooth, and the personal terminal is connected to the EEG signal storage computer server.
  • the brain index measurement bar graph is displayed by dividing the user's mental state into various items by type
  • a corresponding item is selected by touch or voice
  • one or more contents provided in advance are downloaded through a computer (server), and the content can be played by selecting specific content by touch or voice.
  • a self-diagnosis item that is, a questionnaire
  • a self-diagnostic item-based content provision service that allows content matching the score to be played can also be provided.
  • the corresponding content is provided, and the user can play the content to improve the brain index graph of the corresponding item based on the brain index.
  • This may be similar to providing content through the result of the self-diagnosis item.
  • this is a completely different method from the method according to the self-diagnosis item in that it provides an IQ graph based on EEG measurement and then provides various functions according to the selection of the IQ graph, and is a useful method characteristically proposed in the present invention. method.
  • FIG. 20 is a diagram schematically illustrating a process of storing data in a server and a personal terminal when the data storage button is selected in FIG. 19 .
  • measurement result data may be stored in a remote computer (server) 2110 under the selection of the button unit B311, and in the PC 110, the computer (server) 2110 ) in the customer measurement data can be called.
  • the customer's past data may be provided through a call center consultation, remote consultation through the Internet, or real-time online consultation, and other services may be provided in response to various customer requirements. There will be.
  • FIG. 21 is a detailed explanatory diagram of a side menu in the EEG measurement result screen of FIG. 19 .
  • the side menu pop-up window has the import, share, two three-dimensional graph views, two brain index graph views, first EEG data view, second EEG data view, settings, and main (home) buttons. provided
  • FIG. 22 is a diagram illustrating an example of a comparison result data screen in the EEG measurement result screen of FIG. 19 .
  • a comparison result data display interface screen can be viewed. That is, the 3D EEG graph can be viewed by subdividing the first and second left brain and right brain. You can also select and view data on a specific screen by magnifying the side menu.
  • call P121
  • share P122
  • two three-dimensional graph view P123
  • two brain index graph view P124
  • first EEG data view P125
  • second EEG data view P126
  • setting P127
  • a main (home) button P128, is provided. This side menu is provided only on the comparison result data screen. You can see the enlarged screen or graph data by clicking each button.
  • FIG. 23 is a view showing an example of an interface screen for setting a brain index measurement item displayed on a personal terminal in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention to be.
  • the user sets the brain index items (eg, sleep, depression, anxiety, mental stress, physical stress, stress resistance ability, cognition, and memory) and selects a desired item from memory. ).
  • the measurement time is also selected from among 2 minutes, 6 minutes, 10 minutes, 15 minutes, 20 minutes, and 30 minutes (2 minutes is selected). It is assumed that each brain index is pre-arranged so that data corresponding to the measured value is output according to a preset database.
  • FIG. 24 is a diagram showing an example of a more specific brain index display interface screen displayed on a personal terminal in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention.
  • the brain index measurement data is analyzed for depression, sleep, instability (left), instability (right), physical stress (left), physical stress (right), mental stress (left), mental stress (right). ), stress resistance ability, cognitive memory learning ability, and left and right brain balance are set and measured (Each graph is assumed to measure EEG and output matched data through a preset database.)
  • Measurement result analysis value (%) is, for example, depression 47, sleep 56, instability (left) 73, instability (right) 54, physical stress (left) 60, physical stress (right) 83, mental stress (left) 76, mental stress (right) 82, stress resistance ability 59, cognitive memory learning ability 90, left and right brain balance items were measured as 46 items.
  • the measured values can be divided at 10% intervals. Depression of 50% or less is judged to be severe, and less than 20% is considered to be very severe. A score of 80% or more is judged as good for the depression index. The same index applies to other items as well.
  • the opinion that maintaining the depression index above a certain percentage is helpful for mental health. This opinion is the same for other items. Meanwhile, this item is only an example and can be applied differently depending on the program setter, of course.
  • 25 is a view for storing the EEG measurement result measured by the personal measurement device in the database of the cloud server in the psychotherapy system using the psychotherapy device that is connected through Bluetooth communication with the personal terminal according to the present invention and can display the brain waves. It is a conceptual diagram that explains the process.
  • a cloud server 2110 may be accessed through a communication network through a mobile terminal 200 or a personal PC terminal 110 as a personal measurement device. It is possible to access the database 300 by inputting an ID and password through the login screens S210 and S110, respectively, through the mobile terminal 200 or the personal PC terminal 110, which is a personal measurement device.
  • the EEG when measuring EEG, although not shown through the mobile terminal 200 or personal PC terminal 110, which is a personal measurement device, the EEG is measured while connected to the psychotherapy device 10 of FIG. 10 through Bluetooth, and the EEG is measured.
  • the result data may be transmitted to and stored in the mobile terminal 200 , the personal PC terminal 110 , or the cloud computer server 2110 .
  • the cloud server 2110 is connected to the database 300 , and the database 300 is divided into a plurality of subgroups, and a plurality of small groups are divided into subgroups to store and manage data.
  • FIG. 26 is a conceptual diagram schematically illustrating a process of accessing a database of a cloud server through a personal terminal connected to the cloud server through a communication network in FIG. 25 .
  • a plurality of subgroups are provided in the database 300 of the cloud computer server 2110 .
  • an educational institution 310, a government office 320, and a company 330 are provided, respectively, an elementary school 311, a middle school 312, and a high school 313 are provided, and also a fire station, Suwon City Hall, Gyeonggi-do is provided, and also companies such as Dongwoodang, Omnihub, and Heliance are provided (for example, this is indicated and a database of various small groups may be provided).
  • 27 is an IQ graph and three-dimensional EEG data provided in a psychotherapy system using a psychotherapeutic device that is connected through Bluetooth communication with a personal terminal according to the present invention and can display brain waves. It is a conceptual diagram schematically illustrating a process of analysis and output to a reporter.
  • an EEG graph can be displayed by measuring the user's EEG through the EEG sensor of the psychotherapy device (G135), and the psychotherapeutic device (aka mental doctor (trade name) device according to the present invention) 3D EEG data can be compared through the screen before use (S136) and the screen after use (S138), and the step (S142) of outputting and transmitting as a report by analyzing the brain index state is performed, at this time the report Items displayed on the data screen (not shown) may be, for example, mental distraction and stress state, behavioral direction, emotional direction, left and right brain balance, and self-feedback ability.
  • the contents of the report data screen are not limited thereto, and the graph items may be implemented through the report function of the EEG program 2100 based on the EEG measurement result data. Users can compare their EEG results with past data. Alternatively, you can compare and view the graph of your result data by comparing it with the average or normal graph. When the graph of the G135 is clicked, one or more contents corresponding to the corresponding measurement graph are displayed, and it is possible to execute the contents by clicking the corresponding contents. The corresponding contents are prepared in advance by the operator in a database according to the measurement results.
  • the brain index graph can be displayed corresponding to the measured EEG frequency data, and the displayed data value is converted into a graph to be displayed, and the corresponding EEG graph is the measured EEG frequency data. It is of course possible that a new addition can be made by combining them.
  • FIG. 28 is a personal terminal according to the present invention connected through Bluetooth communication in a psychotherapy system using a psychotherapeutic device capable of displaying brain waves, managing and displaying a database for each member while connected to a cloud server through a personal terminal; It is a conceptual diagram showing the state.
  • the user requests through the operator or the manager at a remote location, and the operator or the manager of the cloud computer server 2110 through the personal PC terminal.
  • the database 300 By accessing the database 300, specific individual EEG measurement data can be viewed through the score display screen (S132) and the EEG date screen (S134).
  • the user can receive various services through the operator or administrator through the login process. For example, since EEG test data for each member is accumulated and managed to manage EEG state change, you can view 3D graph comparison data and brain index graph comparison data at any time.
  • users can receive eye movement and customized contents by analyzing EEG data (brain index), making it possible to manage their own mental health.
  • the data recorded in the cloud server using the device according to the present invention may be used as big data as various analysis data.
  • 29 is a view showing an example of a state of use of a psychotherapy device capable of measuring actual brain waves in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention.
  • the EEG sensors 121 and 122 are attached to and installed on the cushioning material 30 of the psychotherapy device 10 capable of EEG measurement, and are electrically connected to the control unit (not shown) through extensions having both sides extended.
  • the user contacts the EEG sensors 121 and 122 on their forehead, and then inserts the grounding sensor jack 127 into the jack connection part located on the lower left side of the psychotherapy device 10 capable of EEG measurement.
  • Ground sensor 123 located inside the holder part 125 located at the end of the wire connected through the electric wire 126 (the role of removing noise generated during EEG measurement, as well as the role of generating a reference frequency compared to EEG) part) to the user's left earlobe. This completes the preparation for EEG measurement.
  • the EEG measurement setting can be performed by executing the EEG measurement program 2100 of the personal terminal 200 connected through Bluetooth (but is not limited thereto, and a program for EEG measurement in the psychotherapy device 10 capable of EEG measurement) After the EEG measurement is completed, the result data is transmitted to the personal terminal 200 through Bluetooth, and optionally, it can also be transmitted to the remote computer server 2110 for storage and management. will be.
  • reference numeral 138 denotes a sensor capable of checking an electrocardiogram.
  • Reference numeral 13 denotes a sensing unit capable of measuring a pulse rate (heart rate) (refer to a pulse rate (heart rate) sensor 136 to be described later) and oxygen saturation (refer to an oxygen saturation measuring sensor 137 to be described later) by touching a finger.
  • FIG. 30 is an example of a management platform system for EEG measurement signal big data through an individual and an intermediate manager in a psychotherapy system using a psychotherapy device that is connected to a personal terminal and can display brain waves through Bluetooth communication according to the present invention. It is a drawing.
  • the management platform system of EEG measurement signal big data through individuals and middle managers using the psychotherapeutic device according to the present invention is
  • the middle manager server 500 and,
  • It includes a bank server and/or a billing server 400 .
  • the individual or consumer (member) smartphone terminal 200 or PC terminal 110 is connected to the psychotherapy device 10 equipped with an EEG sensor through Bluetooth communication.
  • the PC terminal 110 or the smartphone terminal 200 may execute various functions, for example, EEG measurement, heart rate measurement, pulse measurement, blood sugar measurement, oxygen saturation measurement, and the like through the interface screen S110.
  • this measurement is performed through the EEG signal sensor, and other heart rate measurement, pulse measurement, or oxygen saturation measurement (performed through the heart rate/pulse sensor 136 and oxygen saturation sensor 137).
  • a sensing unit is located on the upper surface of the device. (13) was installed. Blood vessel age measurement is processed by synthesizing the results measured by the electrocardiogram sensor 138 and other oxygen saturation measuring sensors 137 .
  • the sensors are installed in the psychotherapy device 10 (they can be installed by assembling a sensor having a related function on the PCB of the psychotherapy device 10), or a separate LED device is installed in the psychotherapy device 10 Therefore, it will be possible to emit LED light to the body of the measurer and measure heart rate, pulse rate, blood glucose, and oxygen saturation through the received radiated light.
  • the process of sensing a signal in the present invention may employ a previously developed sensing device (not shown), and then processing the measured signal will be possible through an operation program in the control unit of the psychotherapy device 10 .
  • the measurement signal is uploaded through the psychotherapy device 10, it will be processed by the EEG measurement signal processing system manager server 2110 and provided so that the processing result can be downloaded.
  • Unexplained reference numeral 222 denotes an electrocardiogram processing module that processes and displays an electrocardiogram
  • unexplained reference numeral 2222 denotes an oxygen saturation processing module that measures and processes oxygen saturation
  • Unexplained reference numeral 2223 denotes a heart rate processing module for processing the heart rate
  • unexplained reference numeral 2224 denotes a pulse rate processing module for processing and displaying a pulse rate
  • unexplained reference numeral 2225 denotes a blood vessel age processing module for determining and displaying the blood vessel age
  • reference numeral 2226 denotes a blood pressure processing program module that displays and processes blood pressure by determining the measured electrocardiogram, oxygen saturation, and heart rate.
  • the blood vessel age and blood pressure measurement are processed by the program, and the ECG, pulse rate, oxygen saturation, and heart rate programs are also processed.
  • the program for processing electrocardiogram, pulse rate, oxygen saturation, etc. generally uses the well-known functions of the device.
  • the sensor is used to process the measured result value through the program, and provides a 2D or 3D display function. .
  • the middle manager server 500 includes other middle manager servers 510, 520, and 530 divided by a plurality of job types, and the middle manager server stores information about a plurality of individuals and manages this information.
  • the middle manager server 500 may execute various functions, for example, statistical processing for each member through the interface screens S110-1, S110-2, and S110-3.
  • the EEG measurement signal processing system manager server 2110 functions as a cloud server, and after the signal measured through the psychotherapy device 10 is stored through a personal terminal or a smart phone terminal, the stored measurement data as well as the personal terminal or smart phone terminal It may be viewed through the interface screen of the phone terminal, and may be uploaded to the EEG measurement signal processing system manager server 2110 connected through a network communication network simultaneously or sequentially with storage. The uploaded data is divided into the database 300 and stored and managed in separate databases 310 , 320 , and 330 .
  • the manager server 2110 may display a service function through the interface screen S14.
  • the manager server 2110 may statistically classify and display information on heart rate, pulse rate, oxygen saturation, glycemic index, blood vessel age, etc. as well as related statistical screens related to EEG signal processing.
  • the middle manager server 500 can be classified by various groups, and serves as a manager who manages schools, government offices, academies, insurance companies, as well as numerous individuals, manages individual data for each group, and can extract statistical data. In addition, it is possible to utilize the measured data, and through this, it is possible to separately register as an intermediate manager in the EEG measurement signal processing system manager server 2110, pay for the cost, and receive a separate service. Middle managers can individually manage measurement information for individuals in a specific group.
  • EEG signals not limited thereto, pulse rate, heart rate, oxygen saturation
  • Bluetooth communication connection with the psychotherapy device 10 .
  • the measurement result can be viewed on a graphic screen, historical data and current data can be compared, and statistical data provided by the middle manager can be accessed by connecting to the middle manager server of the organization to which he belongs. you may see
  • the measured EEG signal may be uploaded in real time to the EEG signal processing system manager server to be managed as big data except for personal information.
  • FIG. 31 is a diagram illustrating an example of a screen for performing an EEG signal and a heart rate measurement result in the personal terminal of FIG. 30 .
  • an example of the EEG signal processing result screen in the personal terminal is displayed, the heart rate/EEG measurement index view function is displayed on the screen S210, and the EEG measurement is performed through the message display screen G210.
  • the related data can be displayed through the waveform screen W210 (similar to the EEG measurement result waveform data). Simultaneous view of function buttons on the screen (B410), heart rate view (B310), and EEG measurement index view (B1210) are exemplified.
  • FIG. 32 is a view showing an example of a screen for performing an EEG signal and a heart rate measurement result in the personal terminal of FIG. 30 and displaying an index such as a stress index.
  • EEG signal processing result screen in the personal terminal is displayed, and the heart rate (BPM)/EEG index viewing function is displayed on another (interface) screen S220, and related graphics and Exponential data is shown on the screen.
  • Simultaneous view of function buttons on the screen (B410), heart rate view (B310), and EEG measurement index view (B1210) are exemplified.
  • FIG. 33 is a flowchart illustrating an example of a process of measuring an EEG signal and a heart rate in an individual and/or middle manager terminal in FIG. 30 .
  • the EEG measurement signal processing management system when an individual logs in (S2), (the individual enters ID and PW on the initial web page of the management system operation (or by fingerprint recognition, etc.) If you log in or download the EEG signal processing program from your personal terminal and run it, it will be connected to the EEG signal processing management system (or middle manager server) and then, if you are an individual, EEG/heart rate (or oxygen saturation, Or blood vessel age measurement, etc.) and prepares for measurement (S4), and determines whether the state is ready (S6), and the determination of the ready state can be determined by looking at the network connection state between the devices and the program operation state.
  • EEG/heart rate or oxygen saturation, Or blood vessel age measurement, etc.
  • EEG/heart rate measurement is performed through the psychotherapy device 10 (S8), and thereafter, EEG/heart rate measurement result data is stored and uploaded (S10).
  • data is stored and managed in the manager server, and personal information is excluded.
  • FIG. 34 is a flowchart illustrating an example of a login process for performing EEG signal and heart rate measurement in the middle manager terminal in FIG. 30 .
  • the program when an individual attempts to measure EEG/heart rate through the psychotherapeutic device 10, the program is operated in a personal terminal or PC terminal, and the ready state for EEG measurement is completed ( In the network connection state), if an individual belonging to the middle manager logs in with the middle manager ID and PW, the manager screen is displayed, and the EEG measurement program (actually a program that can perform various additional functions in addition to EEG measurement) If the name is limited), after the login (S22) process, the platform (referring to a web environment for measurement, management or inquiry of brain waves and various data, etc., but not limited thereto) Initial web screen (not shown) is displayed (S24), and then the manager screen is displayed (S26), and functions such as data inquiry/search/output can be selected on the manager screen (S28).
  • the platform referring to a web environment for measurement, management or inquiry of brain waves and various data, etc., but not limited thereto
  • Initial web screen (not shown) is displayed (S24), and then the manager screen is displayed (S26), and
  • a member registration step (S32) is performed, and a middle manager registration request (S34) is performed, which is a request process for becoming an intermediate manager.
  • the EEG measurement signal system manager server requests to display the contract details and agree to the middle manager registration request (S36). Thereafter, through the consent of the requester, a middle manager ID is assigned and PW registration is managed (S38).
  • 35 is a flowchart illustrating an example of a billing process after measuring an EEG signal and a heart rate in the middle manager terminal in FIG. 30 .
  • the middle manager screen is displayed afterward (S44), and when a member statistics data search is requested (S46), the billing status for the middle manager is checked and charged It is determined whether it is in the completion state (S48). After that, if the billing is completed, the member statistics data requested by the middle manager are displayed, and the middle manager can then manage the information about the individual he is managing by inquiring/searching/editing, etc. If the billing is not completed, the payment completion status is determined (S47), and when the payment is completed through the bank server 400 or the billing server, the service is provided.
  • a measurement signal processing program that receives and processes biological signals such as an individual's EEG signal, heart rate, and oxygen saturation through the control unit by installing other measurement sensors on the PCB in addition to the EEG sensor is built-in did.
  • biological signals such as an individual's EEG signal, heart rate, and oxygen saturation
  • an individual can view data about his or her current status through his or her terminal or PC terminal, and can be informed of statistical data (by group) about his or her current status through an intermediate manager.
  • the EEG measurement signal system manager server the statistical data collected in the big data format can be received.
  • the EEG signal system manager server classifies the uploaded data by age, gender, and occupation, excluding personal information, receives EEG signals, oxygen saturation signals, pulse rate, and heart rate signals, and classifies them as big data and provides them. In addition, it is possible to measure the age of blood vessels in the corresponding age group, and through this, it will be possible to predict diseases such as high blood pressure and diabetes.
  • biosignal measurement index for a specific individual exceeds the average value and is a dangerous value, a message is sent to the individual by push mail, e-mail, or other alarm signal (for example, your EEG is a warning level, or your The blood pressure index is at a warning level, or a message stating "Get your blood pressure checked immediately, get an EEG scan immediately" message can be printed), and various management services can be provided through individual terminals.
  • the user wears the psychotherapy device according to the present invention on his/her face, detects EEG through a sensing device for EEG sensing that is in contact with the forehead above both eyes, and only looks at the light displayed through the LED bar with the eyes.
  • a sensing device for EEG sensing that is in contact with the forehead above both eyes
  • the brain wave is detected using a psychotherapy device connected through Bluetooth communication, and the change of the brain wave is displayed as a three-dimensional waveform and a bar graph in various ways. This allows for mental stability and psychological treatment.
  • the individual can promote mental and physical stability by clicking on the data obtained through the analysis result to execute the appropriate content for the data, and after executing the content (provided by the operator of the present invention), various signals such as EEG signals Since it can be measured and analyzed, the effect of improving mental and physical conditions such as mental and physical stability through the contents of the present invention can be visually confirmed.
  • the middle manager who manages a plurality of individuals can manage specific individuals by field, meaningful data can be collected for each group according to the ability of the middle manager, and also the manager of the present invention can manage big data can serve as a manager who can collect and provide a platform to middle managers.
  • an individual can additionally collect bio-signal related data such as heart rate, blood vessel age, oxygen saturation, and electrocardiogram as well as brain waves, and through this, check the current state of the body through bio-signal measurement You can check your body management status by uploading it.
  • bio-signal related data such as heart rate, blood vessel age, oxygen saturation, and electrocardiogram as well as brain waves

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Abstract

La présente invention se rapporte à un dispositif de psychothérapie capable de mesurer des ondes cérébrales, comprenant un corps, une bande et un matériau d'amortissement. Le corps comprend : une barre de DEL ; un film de protection ; un moyen de détection de mesure d'ondes cérébrales comprenant une électrode de mise à la masse et une paire d'électrodes de mesure d'ondes cérébrales installées sur les deux régions d'œil du côté interne du corps sur lequel la barre de DEL est installée de sorte à mesurer des ondes cérébrales qui sont un type de biosignal ; et une interface USB pour coupler celui-ci à un ordinateur personnel ou à un téléphone intelligent. Le dispositif de psychothérapie est raccordé à un ordinateur personnel ou à un téléphone intelligent de sorte à fonctionner, en utilisant l'ordinateur personnel ou le téléphone intelligent, selon un signal demandant une mesure des ondes cérébrales de l'utilisateur. Le dispositif de psychothérapie transmet le signal d'onde cérébrale détecté à l'ordinateur personnel ou au téléphone intelligent et effectue un électrocardiogramme au moyen d'un capteur d'électrocardiogramme monté sur l'oreille de l'utilisateur. Le dispositif de psychothérapie détecte des ondes cérébrales par le biais du moyen de détection de mesure d'ondes cérébrales, effectue une opération de stimulation cérébrale et transmet un signal d'onde cérébrale à l'ordinateur personnel ou au téléphone intelligent de telle sorte que des changements dans les ondes cérébrales avant/après l'utilisation du dispositif de psychothérapie soient affichés dans une forme d'onde tridimensionnelle. Le moyen de détection de mesure d'ondes cérébrales fournit un signal de mesure d'onde cérébrale, un signal de saturation en oxygène, une fréquence du pouls et un signal de rythme cardiaque, qui sont associés à l'utilisateur, à l'ordinateur personnel ou au téléphone intelligent et mesure l'âge vasculaire d'un groupe d'âges approprié, ce qui permet de prédire l'hypertension ou la maladie diabétique.
PCT/KR2019/016872 2019-12-02 2019-12-02 Dispositif de psychothérapie permettant de détecter un signal d'onde cérébrale, système de psychothérapie permettant d'afficher et de stocker un signal d'onde cérébrale à l'aide de celui-ci, et système permettant de gérer un signal d'onde cérébrale au moyen d'un gestionnaire intermédiaire WO2021112270A1 (fr)

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PCT/KR2019/016872 WO2021112270A1 (fr) 2019-12-02 2019-12-02 Dispositif de psychothérapie permettant de détecter un signal d'onde cérébrale, système de psychothérapie permettant d'afficher et de stocker un signal d'onde cérébrale à l'aide de celui-ci, et système permettant de gérer un signal d'onde cérébrale au moyen d'un gestionnaire intermédiaire

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20050021759A (ko) * 2003-08-26 2005-03-07 주식회사 헬스피아 뇌파를 측정하는 이동통신단말기 및 측정된 뇌파에 대한처방을 수행하는 방법
US20110245633A1 (en) * 2010-03-04 2011-10-06 Neumitra LLC Devices and methods for treating psychological disorders
KR20180009728A (ko) * 2016-07-19 2018-01-29 주식회사 휴먼라인 정신치료장치 및 개인단말기와 블루투스통신을 통해 연결된 정신치료장치를 이용한 정신치료시스템
KR20180045101A (ko) * 2016-10-24 2018-05-04 (주)락싸 실사와 컴퓨터 그래픽스 영상을 이용한 생체 정보 표시 시스템 및 그의 표시 방법
KR20180098840A (ko) * 2017-02-27 2018-09-05 (주)코아메소드 실시간 심리 치료 시스템 및 그 방법
KR102054445B1 (ko) * 2018-09-18 2019-12-10 주식회사 휴먼라인 뇌파신호를 센싱하는 정신치료장치 및 그 장치를 이용하여 뇌파신호를 표시및 저장하는 정신치료시스템 및 중간관리자를 통한 뇌파신호 관리시스템

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20050021759A (ko) * 2003-08-26 2005-03-07 주식회사 헬스피아 뇌파를 측정하는 이동통신단말기 및 측정된 뇌파에 대한처방을 수행하는 방법
US20110245633A1 (en) * 2010-03-04 2011-10-06 Neumitra LLC Devices and methods for treating psychological disorders
KR20180009728A (ko) * 2016-07-19 2018-01-29 주식회사 휴먼라인 정신치료장치 및 개인단말기와 블루투스통신을 통해 연결된 정신치료장치를 이용한 정신치료시스템
KR20180045101A (ko) * 2016-10-24 2018-05-04 (주)락싸 실사와 컴퓨터 그래픽스 영상을 이용한 생체 정보 표시 시스템 및 그의 표시 방법
KR20180098840A (ko) * 2017-02-27 2018-09-05 (주)코아메소드 실시간 심리 치료 시스템 및 그 방법
KR102054445B1 (ko) * 2018-09-18 2019-12-10 주식회사 휴먼라인 뇌파신호를 센싱하는 정신치료장치 및 그 장치를 이용하여 뇌파신호를 표시및 저장하는 정신치료시스템 및 중간관리자를 통한 뇌파신호 관리시스템

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