WO2021143174A1 - Souris intelligente ayant des fonctions d'indice physiologique et de détection de pression - Google Patents

Souris intelligente ayant des fonctions d'indice physiologique et de détection de pression Download PDF

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Publication number
WO2021143174A1
WO2021143174A1 PCT/CN2020/115568 CN2020115568W WO2021143174A1 WO 2021143174 A1 WO2021143174 A1 WO 2021143174A1 CN 2020115568 W CN2020115568 W CN 2020115568W WO 2021143174 A1 WO2021143174 A1 WO 2021143174A1
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WO
WIPO (PCT)
Prior art keywords
thumb
mouse
side wall
pillar
pressure detection
Prior art date
Application number
PCT/CN2020/115568
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English (en)
Chinese (zh)
Inventor
余翔易
王刚
袁柳
涂吉
郭雨
王英华
陈勤琴
谭羡无
白然
谢海永
丰雷
冯媛
Original Assignee
中国电子科技集团公司电子科学研究院
首都医科大学附属北京安定医院
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 中国电子科技集团公司电子科学研究院, 首都医科大学附属北京安定医院 filed Critical 中国电子科技集团公司电子科学研究院
Publication of WO2021143174A1 publication Critical patent/WO2021143174A1/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
    • A61B5/16Devices for psychotechnics; Testing reaction times ; Devices for evaluating the psychological state
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0354Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of 2D relative movements between the device, or an operating part thereof, and a plane or surface, e.g. 2D mice, trackballs, pens or pucks
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/038Control and interface arrangements therefor, e.g. drivers or device-embedded control circuitry

Definitions

  • the present disclosure relates to the technical field of electronic equipment, and in particular to a smart mouse with physiological indicators and pressure detection functions.
  • the purpose of the present disclosure includes, for example, providing a smart mouse with physiological indicators and pressure detection functions, and a method for using the smart mouse to detect the physiological indicators of the user, so as to facilitate the detection of the health of the human body and prevent diseases. .
  • Mouse body including housing and control components
  • the sensor component is arranged in the housing and is communicatively connected with the control component, and the sensor component is adapted to collect at least one human physiological index and transmit it to the control component.
  • the sensor component includes at least one of a pulse sensor, an electrical skin sensor, and a body temperature sensor.
  • the sensor assembly includes at least one pulse sensor
  • the housing includes a thumb area side wall, an outer surface of the thumb area side wall is adapted to contact a thumb, and the at least one pulse sensor is provided on the thumb Area side walls.
  • the smart mouse with physiological indicators and pressure detection functions further includes:
  • the thumb fixing device is arranged on the side wall of the thumb area, and the thumb fixing device is configured to limit the thumb.
  • the thumb fixing device includes:
  • a first pillar, one end of the first pillar is connected to the side wall of the thumb area;
  • a second pillar, one end of the second pillar is connected to the side wall of the thumb region, and the second pillar and the first pillar are spaced up and down;
  • a rotating shaft passing through the other end of the first pillar and the other end of the second pillar;
  • a splint the splint is located between the first pillar and the second pillar and passes through the rotating shaft;
  • the first pillar, the second pillar, the splint, and the side wall of the thumb area define a receiving chamber, and the thumb is adapted to extend into the receiving chamber.
  • the thumb fixing device further includes:
  • a spring one end of the spring is connected to one end of the splint, and the other end of the spring is connected to the side wall of the thumb area, and the spring is configured to push the thumb to move toward the side wall of the thumb area.
  • the thumb fixing device includes:
  • Finger cuff connected with the side wall of the thumb area
  • the elastic member is arranged in the finger cuff, the elastic member is opposite to the side wall of the thumb area, and the elastic member is configured to push the thumb to move toward the side wall of the thumb area.
  • the side wall of the thumb area is curved and recessed toward the inside of the housing.
  • the housing includes an outer surface of the left button, an outer surface of the right button, and a front surface of the mouse, and the front surface of the mouse is opposite to the palm of the hand;
  • the electrical skin sensor includes:
  • the first electrode member is arranged on the outer surface of the left button or the front surface of the mouse, and the first electrode member is suitable for contacting the index finger, the middle finger, the ring finger or the palm of the hand;
  • the second electrode element is arranged spaced apart from the first electrode element, the second electrode element is arranged on the outer surface of the right button or the front of the mouse, and the second electrode element is suitable for contacting the index finger, middle finger, ring finger or Palm touch.
  • the smart mouse further includes a data processing module configured to process the at least one human physiological index received from the sensor component before transmitting it to the control component.
  • a method for detecting a user's physiological index using the above-mentioned smart mouse with physiological index and pressure detection function includes:
  • the physiological indicators of the human body are transmitted to the electronic device that is communicatively connected with the smart mouse, so that the electronic device processes the received physiological indicators of the human body to determine the health state of the human body.
  • the sensor component collecting at least one physiological indicator of the human body includes: collecting the pulse of the user of the smart mouse; collecting the skin feeling characteristics of the user; and collecting the body temperature of the user.
  • the sensor component that transmits human physiological indicators to the electronic device communicatively connected with the smart mouse includes: the sensor component converts the collected human physiological indicators into electrical signals and transmits the data to the smart mouse. Processing module, the data processing module processes the electrical signal and sends it to the transmission module of the control component, and the transmission module transmits the processed electrical signal to the electronic device together with the signal of the original circuit module of the smart mouse.
  • the processing of the electrical signal by the data processing module includes extracting multiple features from the electrical signal.
  • the method further includes: the electronic device puts the extracted multiple features into the trained classification model, and calculates the physical and mental state index.
  • the sensor component is arranged on the mouse body, so that the user of the smart mouse can be performed on the smart mouse during the normal use of the smart mouse by office workers.
  • Long-term collection of physiological indicators, and analysis and comparison of human physiological indicators to know the user's physical and mental state in time, so as to discover some short-term and long-term symptoms of disease, and protect physical and mental health.
  • FIG. 1 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • FIG. 2 is a schematic diagram of the structure of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • FIG. 3 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • FIG. 4 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • FIG. 5 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • Fig. 6 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • FIG. 7 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • FIG. 8 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure
  • FIG. 9 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure.
  • Fig. 10 is a schematic structural diagram of a smart mouse with physiological indicators and pressure detection functions in an embodiment of the present disclosure.
  • Pulse sensor 10 body temperature sensor 40
  • the smart mouse 1 with physiological indicators and pressure detection functions includes: a mouse body and a sensor component.
  • the mouse body includes a housing and a control assembly.
  • the mouse body can implement conventional functions of a mouse.
  • the mouse body can include a mouse original circuit module, a transmission module, and a data cable.
  • the sensor component can be arranged inside or on the surface of the casing and communicated with the control component.
  • the sensor component is adapted to collect at least one physiological indicator of the human body and transmit it to the control component.
  • the “communication connection” mentioned above can be understood as a direct communication connection, that is, the sensor component directly transmits the collected human physiological indicators to the control component;
  • the “communication connection” can also be an indirect communication connection That is, the sensor component communicates with the control component through middleware.
  • the sensor component can first transmit the collected human physiological indicators to the data processing module, and the data processing module processes the human physiological indicator signals before transmitting to the control component .
  • the following beneficial effects can be achieved: through the improvement of the mouse, a sensor component is provided on the mouse body, so that the conventional functions of the smart mouse 1 are used by office workers, that is, the advantages of the prior art mouse are realized.
  • the user of the smart mouse 1 can be collected for long-term physiological indicators, and the physiological indicators of the human body can be analyzed and compared, and the user’s physical and mental state can be learned in time, so as to find some short-term and long-term disease signs. Protect physical and mental health.
  • the smart mouse 1 provided according to some embodiments of the present disclosure includes a mouse body and a sensor component.
  • the sensor assembly may include at least one of the pulse sensor 10, the electrical skin sensor 20, and the body temperature sensor 40.
  • the pulse sensor 10 may be configured to detect the pulse of the user of the smart mouse 1
  • the skin electrical sensor 20 may be configured to detect the skin sensory characteristics of the user of the smart mouse 1
  • the body temperature sensor 40 may be configured to detect the user of the smart mouse 1.
  • Body temperature may be configured to detect the user of the smart mouse 1.
  • the body temperature sensor 40 may be arranged in the housing, and the body temperature sensor 40 may be arranged close to the palm of the hand, so as to collect the body temperature of the user.
  • the body temperature sensor 40 may be an infrared temperature sensor for detecting body temperature.
  • the sensor assembly may include at least one pulse sensor 10. It can be understood that the number of pulse sensors 10 included in the sensor assembly may be one or more.
  • the housing of the mouse body of the smart mouse 1 may include the outer surface of the left button, the outer surface of the right button, the side wall a of the thumb area, and the front surface b of the mouse.
  • the various components in the sensor assembly can be arranged on the housing of the mouse body in the following manner, for example: the pulse sensor 10 is arranged on the side wall a of the thumb area, the electrical skin sensor 20 is arranged on the outer surface of the left button and the right button, and body temperature The sensor 40 is arranged on the front b of the mouse. It can be understood that the setting method of each component in the sensor assembly is not limited to this, and can be changed according to specific user requirements.
  • the outer surface of the side wall a of the thumb area is adapted to be in contact with the thumb, and at least one pulse sensor 10 is provided in the side wall a of the thumb area.
  • the pulse sensor 10 can be arranged on the thumb area side wall a such that its surface is flush with the thumb area side wall a or slightly exceeds the surface of the thumb area side wall a, so as to ensure that the user’s thumb is at the level of the thumb when using the smart mouse. comfortability.
  • the pad of the thumb of most smart mice 1 can contact at least one pulse sensor 10 in the grip posture.
  • the outer surface of the side wall a of the thumb area is suitable for contact with the thumb” mentioned here is described on the basis of the grip state of most mouse users, which refers to the position of the side wall a of the thumb area. description of.
  • the pulse sensor 10 may be provided on the outer surface of the side wall a in the thumb area.
  • the pulse sensor 10 may be embedded on the outer surface of the side wall a of the thumb area or pasted on the outer surface of the side wall a of the thumb area, and the pad of the thumb may be attached to the pulse sensor 10.
  • the pulse sensor 10 may be provided on the inner surface of the side wall a of the thumb area.
  • the pulse sensor 10 may be embedded on the inner surface of the side wall a in the thumb area or pasted on the inner surface of the side wall a in the thumb area.
  • the pulse sensor 10 may be a contact photoplethysmography sensor.
  • the smart mouse 1 with physiological indicators and pressure detection functions may further include a thumb fixing device 30.
  • the thumb fixing device 30 is provided on the side wall a of the thumb area, and the thumb fixing device 30 may be configured to confine the thumb at a position corresponding to the pulse sensor 10 on the side wall a of the thumb area. As a result, the robustness of the detection signal of the pulse sensor 10 can be improved.
  • the thumb fixing device 30 may include: a first pillar 31, a second pillar (hidden by the first pillar 31 ), a rotating shaft 33 and a splint 32.
  • the first pillar 31 and the second pillar are arranged on both sides of the user's thumb to clamp the thumb, and the two may have the same or similar structure to maintain the stability of the thumb.
  • One end of the first pillar 31 is connected to the thumb area side wall a
  • one end of the second pillar is connected to the thumb area side wall a
  • the second pillar and the first pillar 31 are spaced up and down.
  • the rotating shaft 33 passes through the other end of the first pillar 31 and the other end of the second pillar.
  • the clamping plate 32 is located between the first pillar 31 and the second pillar and passes through the rotating shaft 33.
  • the U-shaped structure formed by the first pillar 31, the second pillar and the splint 32 connected by the rotating shaft 33 and the side wall a of the thumb area define a receiving chamber, and the thumb is suitable for extending into the receiving chamber.
  • the first pillar 31, the second pillar (hidden by the first pillar 31 ), the rotating shaft 33 and the clamping plate 32 may be configured to form a lever member that rotates around the rotating shaft 33. When one end of the splint 32 is pushed by the thumb, it will press the thumb at the other end due to the principle of leverage.
  • the thumb fixing device 30 may further include a spring 34, one end of the spring 34 is connected to one end of the splint 32, and the other end of the spring 34 is connected to the side wall a of the thumb region, and the spring 34 is configured to Push the thumb toward the side wall a of the thumb area.
  • the splint 32 is pressed by the spring 34 against the thumb.
  • the thumb fixing device 30 may include a finger sleeve and an elastic member.
  • the finger cuff is connected with the side wall a of the thumb area.
  • the elastic member is arranged in the finger cuff, and the elastic member is opposite to the side wall a of the thumb area, and the elastic member is configured to push the thumb to move toward the side wall a of the thumb area and press the thumb to closely fit the pulse sensor 10.
  • the side wall a of the thumb area may be curved and recessed toward the inside of the housing.
  • the side wall a of the thumb area is designed to fit the shape of the thumb with an ergonomic structure, and guide the pad of the thumb to contact the pulse sensor 10.
  • the electrical skin sensor 20 includes a first electrode member 21 and a second electrode member 22.
  • the first electrode member 21 and the second electrode member 22 are both arranged on the front surface b of the mouse and are suitable for contact with the palm of the hand.
  • a temperature sensor 40 is also provided on the mouse front b, and the first electrode member 21 and the second electrode member 22 may be symmetrically arranged with respect to the temperature sensor 40 on the mouse front b.
  • the first electrode member 21 is provided on the outer surface of the left key, and the first electrode member 21 is adapted to contact the index finger, the middle finger or the ring finger; the second electrode member 22 and the first electrode member 21 are arranged at intervals, the second electrode member 22 is arranged on the outer surface of the right button, and the second electrode member 22 is suitable for contacting the index finger, the middle finger or the ring finger.
  • the first electrode element 21 and the second electrode element 22 are both impedance measuring electrodes, and both are used to detect the impedance of the human skin.
  • the smart mouse 1 with physiological indicators and pressure detection functions provided according to an embodiment of the present disclosure may also include a warning device.
  • the warning device can be configured to: when the electronic device analyzes and compares the human physiological indexes detected by the sensor assembly, the result is outside the preset value range of the human physiological indexes, and then sends a warning to the user of the smart mouse; When the result is within the preset value range of human physiological indicators, no warning will be given.
  • the warning device can be a warning light, a buzzer device or other devices that can be integrated in the smart mouse 1.
  • the warning issued by the warning device may be the flashing of a light or the sound of a buzzer device.
  • the smart mouse with physiological indicators and pressure detection functions is the above-mentioned smart mouse with physiological indicators and pressure detection functions.
  • Methods of detecting physiological indicators include:
  • the sensor component collects at least one physiological index of the human body
  • the sensor component transmits the physiological indicators of the human body to the control component to analyze and compare the physiological indicators of the human body to determine the health state of the human body.
  • control component can analyze and compare the physiological indicators of the human body to determine the health of the human body, or the control component can transmit the physiological indicators of the human body to the electronic device, and the electronic device can analyze and compare the physiological indicators of the human body to determine the human body’s health. health status.
  • the sensor component collects the physiological indicators of the human body and converts it into electrical signals and transmits them to the control component.
  • the control component transmits the electrical signals to the electronic device.
  • the electronic device can put multiple features into the trained classification model, can calculate the physical and mental state index, and present it to the user.
  • a sensor component is arranged on the mouse body, so that when office workers normally use the normal functions of the smart mouse, the user of the smart mouse can be used for long-term collection of physiological indicators, and Analyze and compare the physiological indicators of the human body, and learn the user's physical and mental state in time, so as to find some short-term and long-term disease signs to protect physical and mental health.
  • the smart mouse with physiological indicators and pressure detection functions further includes a data processing module.
  • the sensor component collects human physiological indicators and converts them into electrical signals and transmits them to the data processing module.
  • the data processing module processes the electrical signals. Then it is sent to the transmission module of the control component, and the transmission module transmits the processed electrical signal together with the signal of the original circuit module of the mouse to the electronic device.
  • the original mouse circuit module is the circuit responsible for mouse movement and clicking functions.
  • the processing of the electrical signal by the data processing module includes extracting multiple features from the electrical signal.
  • the electronic device can put multiple features into the trained classification model, can calculate the physical and mental state index, and present it to the user.
  • the smart mouse 1 with physiological indicators and pressure detection functions includes: a mouse body, a sensor component, and a data processing module.
  • the mouse body includes a housing and a control assembly.
  • the mouse body can realize the conventional functions of the mouse, and the control component can include the original circuit module of the mouse, the transmission module and the data line.
  • the original mouse circuit module is the circuit responsible for mouse movement and clicking functions.
  • One end of the data line is communicatively connected with the transmission module, the other end of the data line is communicatively connected with electronic equipment (such as a computer), and the original circuit module of the mouse is communicatively connected with the transmission module.
  • the data processing module communicates with the transmission module.
  • the sensor assembly includes a pulse sensor 10, an electrical skin sensor 20 and a body temperature sensor 40.
  • the pulse sensor 10, the skin sensor 20, and the body temperature sensor 40 are all in communication connection with the data processing module.
  • the pulse sensor 10 may be configured to detect the pulse of the user of the smart mouse 1
  • the electrical skin sensor 20 may be configured to detect the skin sensory characteristics of the user of the smart mouse 1
  • the body temperature sensor 40 may be configured to detect the body temperature of the user of the smart mouse 1. .
  • the body temperature sensor 40 may be arranged in the housing, and the body temperature sensor 40 may be arranged close to the palm of the hand.
  • the body temperature sensor 40 may be an infrared temperature sensor.
  • the housing may include a main body structure, a left button and a right button. Both the left button and the right button can be movably connected to the main structure. Both the left button and the right button are impedance measuring electrodes to form an electrical skin sensor 20 for detecting human skin impedance.
  • the main structure includes a thumb area side wall a, the outer surface of the thumb area side wall a is suitable for contact with the thumb, and the pulse sensor 10 is provided on the thumb area side wall a.
  • the pulse sensor 10 is provided on the thumb area side wall a.
  • the outer surface of the side wall a of the thumb area is suitable for contact with the thumb” mentioned here is described on the basis of the grip state of most mouse users, which refers to the position of the side wall a of the thumb area. description of.
  • the pulse sensor 10 may be provided on the outer surface of the side wall a in the thumb area.
  • the pulse sensor 10 may be embedded on the outer surface of the side wall a of the thumb area or pasted on the outer surface of the side wall a of the thumb area, and the pad of the thumb may be attached to the pulse sensor 10.
  • the sensor component collects physiological indicators of the human body and converts it into electrical signals and transmits them to the data processing module.
  • the data processing module processes the electrical signals and sends them to the transmission module of the control component.
  • the transmission module will process the electrical signals.
  • the signal of the original circuit module of the mouse is transmitted to the electronic device together.
  • the processing of the electrical signal by the data processing module includes extracting multiple features from the electrical signal.
  • the electronic device can put multiple features into the trained classification model, can calculate the physical and mental state index, and present it to the user.
  • the difference from the foregoing embodiment is that the side wall a of the thumb area is curved and recessed toward the inside of the housing. Therefore, the side wall a of the thumb area is designed to fit the shape of the thumb with an ergonomic structure, and guide the pad of the thumb to contact the pulse sensor 10.
  • the smart mouse 1 with physiological indicators and pressure detection functions further includes a thumb fixing device 30, which is provided in the thumb area On the side wall a, the thumb fixing device 30 is configured to define the thumb to improve the robustness of the pulse sensor 10 to detect signals.
  • the thumb fixing device 30 includes a first pillar 31, a second pillar, a rotating shaft 33 and a splint 32.
  • One end of the first pillar 31 is connected to the side wall a of the thumb area.
  • One end of the second pillar is connected to the side wall a of the thumb area, and the second pillar and the first pillar 31 are spaced up and down.
  • the rotating shaft 33 passes through the other end of the first pillar 31 and the other end of the second pillar.
  • the clamping plate 32 is located between the first pillar 31 and the second pillar and passes through the rotating shaft 33.
  • the first pillar 31, the second pillar, the splint 32, and the side wall a of the thumb area define a receiving chamber, and the thumb is adapted to extend into the receiving chamber. When one end of the splint 32 is pushed by the thumb, it will press the thumb at the other end due to the principle of leverage.
  • the thumb fixing device 30 may further include: a spring 34, one end of the spring 34 is connected to one end of the splint 32, and the other of the spring 34 One end is connected to the thumb area side wall a, and the spring 34 is configured to push the thumb to move toward the thumb area side wall a.
  • the splint 32 is pressed by the spring 34 against the thumb.
  • the thumb fixing device 30 may include a finger sleeve and an elastic member.
  • the finger cuff is connected with the side wall a of the thumb area.
  • the elastic member is arranged in the finger cuff, and the elastic member is opposite to the side wall a of the thumb area, and the elastic member is configured to push the thumb to move toward the side wall a of the thumb area and press the thumb to closely fit the pulse sensor 10.
  • the electrical skin sensor 20 includes a first electrode member 21 and a second electrode member 22 arranged at intervals.
  • the first electrode part 21 and the second electrode part 22 are both arranged on the front side b of the mouse of the main structure. Both the first electrode part 21 and the second electrode part 22 can be in contact with the palm of the hand for detecting human skin impedance.
  • the embodiments of the present disclosure provide a smart mouse with physiological indicators and pressure detection functions and a method for using the smart mouse to detect physiological indicators.
  • the sensor component is set on the mouse body, so that when office workers use the normal functions of the smart mouse, the user of the smart mouse can be collected for long-term physiological indicators, and the physiological indicators of the human body can be analyzed By comparison, the user’s physical and mental state can be obtained in time, so that some short-term and long-term disease signs can be found to protect physical and mental health.

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Abstract

La présente invention concerne une souris intelligente ayant des fonctions d'indice physiologique et de détection de pression. La souris intelligente ayant les fonctions d'indice physiologique et de détection de pression comprend un corps de souris et un ensemble capteur. Le corps de souris comprend une coque et un ensemble de commande. L'ensemble capteur est disposé sur la coque et est en connexion de communication avec l'ensemble de commande. L'ensemble capteur est adapté pour acquérir au moins un indice physiologique humain et transmettre l'indice physiologique humain à l'ensemble de commande. Selon la présente invention, au moyen d'une amélioration apportée à une souris, un ensemble capteur est disposé sur le corps de souris, de sorte que, dans un processus selon lequel un employé de bureau utilise normalement des fonctions classiques de la souris intelligente, des indices physiologiques de l'utilisateur de la souris intelligente puissent être acquis à long terme, que les états physiologiques et mentaux de l'utilisateur puissent être connus dans le temps au moyen d'une analyse et d'une comparaison des indices physiologiques humains, que certains symptômes de maladie à court terme et à long terme soient découverts, et que la santé physique et psychologique soit assurée.
PCT/CN2020/115568 2020-01-16 2020-09-16 Souris intelligente ayant des fonctions d'indice physiologique et de détection de pression WO2021143174A1 (fr)

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CN202020088170.0 2020-01-16
CN202020088170.0U CN211827210U (zh) 2020-01-16 2020-01-16 一种具有生理指标与压力检测功能的智能鼠标

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Citations (5)

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