WO2017147977A1 - Dispositif monté en surface de surveillance de la santé - Google Patents

Dispositif monté en surface de surveillance de la santé Download PDF

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Publication number
WO2017147977A1
WO2017147977A1 PCT/CN2016/079073 CN2016079073W WO2017147977A1 WO 2017147977 A1 WO2017147977 A1 WO 2017147977A1 CN 2016079073 W CN2016079073 W CN 2016079073W WO 2017147977 A1 WO2017147977 A1 WO 2017147977A1
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Prior art keywords
user
patch
monitoring device
health monitoring
sensor
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PCT/CN2016/079073
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English (en)
Chinese (zh)
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孙碧茜
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孙碧茜
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Publication of WO2017147977A1 publication Critical patent/WO2017147977A1/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons

Definitions

  • the present invention relates to the field of medical devices, and in particular to M+A medical patches, cardiovascular and cerebrovascular diseases monitors, and automatic calling devices.
  • the present invention provides a novel patch-type health monitoring device.
  • a patch type health monitoring device comprising: a sensor assembly including a sensor for collecting health data from a user's body; a communication component, the communication component for patch health Monitoring equipment communication with the outside world, memory, storage
  • the memory stores instructions for execution by the processor; and a processor.
  • the processor executes instructions to: acquire sensor output data from the sensor component; process the sensor output data to generate the user's health data; determine, based on the health data, whether the user's body is abnormal; and when determining that the user's body is abnormal, The first aid information in the form of a voice is automatically generated; and the first aid information in the form of a voice is sent to the corresponding processor via the communication component.
  • the first aid information includes the generated health data of the user and the identity information of the user stored in the memory.
  • the senor includes at least one of: an electrocardiographic sensor, a brain wave sensor, a myoelectric sensor, a temperature sensor, a motion sensor, an accelerometer, a gyroscope, or a respiratory system detector .
  • the patch-type health monitoring device further includes a location determining component for determining a location of the patch-type health monitoring device, wherein the generated first-aid information includes a location of the user determined according to the location determining component information.
  • the patch-type health monitoring device further includes a speaker, and wherein the processor is further configured to: alert the user to a potential health threat to the outside through the speaker when it is determined that the user's body is abnormal.
  • the processor is further configured to: play a self-rescue or first aid knowledge through the speaker voice when it is determined that the user's body is abnormal.
  • the patch health monitoring device further includes an active call component, wherein the user can actively issue the first aid request by turning on the active call component.
  • the active call component includes a button or a pressure sensor.
  • the patch-type health monitoring device further includes an LED lamp for indicating the remaining level of the power of the patch-type health monitoring device.
  • the sensor assembly includes an electrocardiographic sensor, a brain wave sensor, and a myoelectric sensor for monitoring a heart, brain, and muscle activity of a user, respectively, and the user's health data includes the user.
  • ECG data, brain wave data and myoelectric data includes the user.
  • the patch health monitoring device further includes a microphone and a counter terrorism component, and when the user encounters a terrorist attack, the user can use the counter terrorism component to trigger the anti-terrorism function of the patch health monitoring device.
  • the processor is further configured to: when the anti-terrorism function is triggered, issue a request for help to the corresponding rescue party, the request for help includes location information of the user; and turn off the sound of the patch-type health monitoring device Function; using the human body to sense the current to notify the user whether the request for help is accepted; and establishing a communication connection with the rescuer to enable the rescuer to know the scene and collect evidence through the microphone.
  • the counter terrorism component is a button on a patch-type health monitoring device or a pressure sensor in a patch-type health monitoring device.
  • the respective processing party includes a smart home robot associated with the user.
  • the smart home robot is able to notify the user's family in time when it is determined from the health data that the user's healthy life is threatened.
  • the patch-type health monitoring device may further include a SIM card, and wherein the emergency information in the form of voice may be transmitted to the corresponding processor by a telephone call established with the corresponding processor via the SIM card.
  • the patch type health monitoring device can effectively solve the disadvantages of low accuracy of the monitoring data under certain conditions and being susceptible to environmental influences.
  • the patch-type health monitoring device can measure the real-time location of the user through a location determining component (eg, a GPS component).
  • a location determining component eg, a GPS component.
  • the patch health monitoring device can automatically implement a wireless alarm and deliver the detected information.
  • the emergency center collects electronic voice signals and conducts targeted work according to the information obtained, thereby effectively shortening the rescue time and reducing the high mortality and high disability rate caused by cardiovascular and cerebrovascular diseases.
  • FIG. 1 is a schematic diagram showing the functional structure of a patch type health monitoring device according to an embodiment of the present disclosure
  • FIG. 2 is a schematic diagram showing the functional structure of a patch type health monitoring device according to another embodiment of the present disclosure
  • FIG. 3 illustrates an example flow diagram of the operation of a patch-type health monitoring device in accordance with an embodiment of the present disclosure
  • FIG. 4 illustrates an example flow diagram of the operation of a patch-type health monitoring device in accordance with another embodiment of the present disclosure
  • FIG. 5 illustrates an example flow diagram of the operation of a tiled health monitoring device with an active call function, in accordance with yet another embodiment of the present disclosure
  • FIG. 6 illustrates an example flow diagram of the operation of a patch-type health monitoring device with anti-terrorism functionality, in accordance with yet another embodiment of the present disclosure
  • FIG. 7 shows an exemplary compositional structure diagram of a health monitoring system in accordance with an embodiment of the present disclosure.
  • the present disclosure describes a patch-type health monitoring device comprising: a sensor assembly including a sensor for collecting health data from a user's body; a communication component for a patch-type health monitoring device and the outside world A communication, a memory, a memory stores instructions for execution by the processor; and a processor.
  • the processor executes instructions to: acquire sensor output data from the sensor component; process the sensor output data to generate the user's health data; determine, based on the health data, whether the user's body is abnormal; and when determining that the user's body is abnormal, The first aid information in the form of a voice is automatically generated; and the first aid information in the form of a voice is sent to the corresponding processor via the communication component.
  • FIG. 1 shows a functional block diagram of a patch type health monitoring device 100 according to an embodiment of the present disclosure.
  • a patch-type health monitoring device 100 includes a memory 101, a processor 102, a sensor component 103, and a communication component 104.
  • Memory 101 can be a volatile storage device or a non-volatile storage device that stores various instructions and data for execution and use by processor 102.
  • instructions stored in the memory 101 for execution by the processor 102 to implement various operations and functions of the present disclosure may be stored.
  • Processor 102 executes instructions in memory 101 to implement various functions and operations.
  • Sensor assembly 103 can include a variety of different types of sensors for collecting various different types of health data from a user's body.
  • various sensors included in the sensor assembly 103 may include at least one of: an electrocardiographic sensor, a brain wave sensor, a myoelectric sensor, a temperature sensor, a motion sensor, an accelerometer, a gyroscope, or a respiratory system Detector.
  • the ECG sensor can detect and collect data on various health indicators of the user's heart.
  • the communication component 104 can include implementing the patch health monitoring device 100 and the outside world using various communication protocols (eg, Wi-Fi protocol, Bluetooth protocol, GSM, CDMA, TD-LTE, FD-LTE, LTE-A, etc.) Communication circuit or chip for communication.
  • communication component 104 is shown separate from the processor 102 in the embodiments herein, in other implementations
  • the communication component 104 can also be partially integrated or fully integrated with the processor 102.
  • a baseband processing circuit implementing the Bluetooth protocol can be integrated with the processor 102.
  • communication component 104 can also include various types of antenna components (not shown) for transmitting/receiving radio frequency signals.
  • processor 102 first acquires sensor output data (eg, raw heart waves, brainwave data, etc. measured from the user) from sensor component 103.
  • the processor 102 then processes the sensor output data to generate health data for the user (eg, determined user heart rate data, etc.).
  • the processor 102 determines from the health data whether an abnormal condition has occurred in the user's body.
  • the processor 102 can automatically generate first aid information in the form of speech and send the first aid information in the form of speech to the respective processing party (eg, data center, emergency center, etc.) via the communication component 104.
  • the first aid information may include, for example, health information of the generated user and identity information of the user stored in the memory 101, and the like.
  • FIG. 2 shows a functional block diagram of a patch type health monitoring device 200 according to another embodiment of the present disclosure.
  • the patch-type health monitoring device 200 includes a memory 201, a processor 202, a sensor component 203, and a communication component 204 similar to the memory 101, the processor 102, the sensor component 103, and the communication component 104 of FIG. .
  • These components in Figure 2 are also capable of implementing the functions or operations described with reference to Figure 1.
  • the patch-type health monitoring device 200 can include one or more of a location determining component 205, a speaker 206, an active calling component 207, an LED indicator 208, a microphone 209, a counter-terrorism component 210, and a SIM card 211.
  • the patch health monitoring device 200 can include a location determining component 205 for determining a geographic location of the tiled health monitoring device 200.
  • the location determining component 205 can be, for example, one or more of a Global Positioning System (GPS) component, a Beidou navigation positioning component, a GLONASS navigation positioning component, or a GNSS positioning component.
  • GPS Global Positioning System
  • Beidou navigation positioning component a Beidou navigation positioning component
  • GLONASS navigation positioning component a GLONASS navigation positioning component
  • GNSS positioning component GNSS positioning component
  • the patch health monitoring device 200 can include a speaker 206.
  • the processor 202 can be configured to alert the user to potential health threats through the speaker 206 when it is determined that the user's body is abnormal. For example, when the processor 202 detects an abnormality in the heartbeat, brainwave, or myoelectric wave, the alarm and speaker functions are turned on to alert the user to a potential health threat and cause concern to the surrounding. At this time, the processor 202 can also instruct the speaker 206 to voice play self-rescue or first-aid knowledge so that the person around the user or the user himself takes certain measures to help the user out of danger.
  • the patch-type health monitoring device 200 may not be self-rescue or first-aid knowledge of its own voice, but a portable computing device (eg, a mobile phone, tablet) that is carried with the user via a communication component 204 (eg, a Bluetooth transmission component).
  • a computer or other computing device communicates to play self-help and first aid common sense through an application (App) installed on the mobile phone or other computing device, which can be pre-stored in an app of a mobile phone or other computing device.
  • App application
  • the patch health monitoring device 200 can include an active call component 207.
  • the active call component 207 can be, for example, a button on the patch health monitoring device 200, and the user can press the button for a certain amount of time to turn on the active call component.
  • the active call component 207 can also be a pressure sensor. When the processor 202 determines that the pressure data detected by the pressure sensor exceeds a certain threshold, the processor 202 can determine that the user is attempting to make an active call and immediately to the first aid. The center sends out emergency information.
  • the patch-type health monitoring device 200 can include an LED light 208 for indicating the remaining level of power of the health-detection patch 200.
  • the color of the LED light can indicate the remaining amount of power of the patch 200. For example, green can indicate that the battery is fully charged and does not need to be charged; orange can indicate that the battery is low, please pay attention to timely charging; and red can indicate that the battery is insufficient. Please charge as soon as possible to avoid the work failure of the patch 200.
  • the patch-type health monitoring device 200 can include a microphone 209 and a counter-terrorism component 210.
  • Microphone 209 can be used to collect audio data from an external environment.
  • the anti-terrorism module 210 can be used to implement when the user is protected from infringement while in special circumstances Effectively out of danger of anti-terrorism.
  • the processor 202 can cause the speaker to turn off to mechanically alert the body to stimulate the output of the body confirmation signal by sensing current.
  • the sound monitoring in the counter-terrorism component 210 can be turned on according to the prompt (for example, using the microphone 209).
  • the counter terrorism component 210 can be, for example, a button or pressure sensor on the patch health monitoring device 200, and the anti-terrorism function can be triggered by those specific conditions as described above with respect to the active call component.
  • the patch-type health monitoring device 200 can include a SIM card 211.
  • the SIM card 211 may include, for example, a conventional SIM card, a Micro SIM card, or a Nano SIM card, as well as any other user identification card developed in the future.
  • the first-aid information in the form of speech is transmitted to the respective processor by a telephone call established with the corresponding processor via the SIM card 211.
  • the patch health monitoring device 200 optionally includes a pre-processing module 212.
  • the sensor output data in sensor component 203 is not directly transmitted to processor 202, but is first received by pre-processing module 212.
  • the pre-processing module 212 then performs corresponding pre-processing on the received data before transmitting the data to the processor 202.
  • the pre-processing module 212 includes A/D conversion units, shaping units, and amplifiers in series to implement A/D conversion, waveform shaping, and amplification functions, respectively.
  • patch-type health monitoring device 200 of FIG. 2 is illustrated as including a plurality of components to implement different functions, respectively, the present disclosure is not limited thereto.
  • Other embodiments in accordance with the present disclosure may include some of the plurality of components 201-212 shown in FIG. 2 to implement a portion of the functions or operations. These other embodiments are not specifically described for the sake of brevity.
  • the term "corresponding processor" as recited herein may include an emergency center, an alarm center, a portable computing device carried by the user, a data center associated with the patch-type health monitoring device, and the like.
  • the patch-type health monitoring device can transmit the first-aid information in the form of a voice to a portable computing device (eg, a mobile phone) carried by the user and relay the emergency information in the form of voice to the emergency center or the alarm center, etc. via the portable computing device. Correlation Rescue handling unit.
  • the patch-type health monitoring device may have its own SIM card and associated circuitry supporting the SIM for remote telephone calls, such as described above, such that the patch-type health monitoring device may be via a patch
  • the SIM card included in the health monitoring device directly sends the first-aid information about the user to the emergency rescue center such as the emergency center or the alarm center.
  • FIG. 3 illustrates an example flow diagram of a method 300 of operation of a patch-type health monitoring device in accordance with an embodiment of the present disclosure.
  • the flow chart shown in Figure 3 includes the following steps:
  • the processor of the patch-type health monitoring device may acquire sensor output data from a sensor component (eg, an electrocardiographic sensor, a brain wave sensor, a myoelectric sensor, etc.);
  • a sensor component eg, an electrocardiographic sensor, a brain wave sensor, a myoelectric sensor, etc.
  • the processor may process the sensor output data to generate health data of the user
  • the processor may determine, according to the health data, whether the user's body is abnormal
  • step 340 when it is determined that the user's body is abnormal, the processor may automatically generate emergency information in the form of a voice;
  • the processor can transmit first aid information in the form of speech to the respective processing party via the communication component.
  • FIG. 4 illustrates an example flow diagram of an operational method 400 of a patch-type health monitoring device in accordance with another embodiment of the present disclosure.
  • the flow chart shown in Figure 4 includes the following steps:
  • the processor of the patch-type health monitoring device may acquire sensor output data from a sensor component (eg, an electrocardiographic sensor, a brain wave sensor, a myoelectric sensor, etc.);
  • a sensor component eg, an electrocardiographic sensor, a brain wave sensor, a myoelectric sensor, etc.
  • the processor may process the sensor output data to generate health data of the user
  • the processor may determine, according to the health data, whether the user's body is abnormal
  • step 440 when it is determined that the user's body is abnormal, the processor may alert the user to the potential health threat through the speaker;
  • step 450 the speaker can automatically voice play the self-rescue or first aid knowledge stored in the hand from the patch-type health monitoring device or the user.
  • FIG. 5 illustrates an example flow diagram of an operational method 500 of a patch-type health monitoring device having an active call-in function, in accordance with yet another embodiment of the present disclosure.
  • the flow chart shown in Figure 5 includes the following steps:
  • step 510 the patch health monitoring device can be powered on and working normally
  • step 520 regardless of whether the patch-type health monitoring device detects an abnormality, the user may actively issue a first-aid request by turning on the active calling component as long as the user feels uncomfortable;
  • the corresponding processing party may receive the first aid request and process accordingly.
  • FIG. 6 illustrates an example flow diagram of an operational method 600 of a patch-type health monitoring device with anti-terrorism functionality, in accordance with yet another embodiment of the present disclosure.
  • the flowchart shown in Fig. 6 includes the following steps.
  • step 610 the patch health monitoring device can be powered on and functioning properly.
  • the patch-type health monitoring device determines if its anti-terrorism function is triggered (eg, whether a trigger signal from the counter-terrorism component is received).
  • the patch health monitoring device may issue a request for help to the corresponding rescue party in step 630.
  • the request for help may include, for example, location information of the user.
  • step 640 the sounding function of the patch-type health monitoring device can be turned off (eg, the speaker is disabled and the vibration function of the device is disabled).
  • the patch-type health monitoring device uses the human-aware current to notify the user whether the request for help is accepted.
  • the patch-type health monitoring device can cause the user to be not noticed by the robber or terrorist and silently complete the transmission and acceptance notification of the request for help.
  • the patch-type health monitoring device can establish a communication connection with the rescuer to enable the rescuer to know the scene and collect evidence through the microphone.
  • the patch-type health monitoring device disclosed herein can transmit first-aid information to a mobile phone APP via a communication component (eg, a Bluetooth module) via a processor and pass the encoded wireless transmitting module and the encoded wireless receiving module Send emergency information remotely to the data center.
  • the data center receives the distress signal and retrieves the data to monitor whether the signal is terminated within two minutes. If the signal is terminated, the data center further confirms whether the signal was artificially aborted or the device was removed. If the signal is not terminated within two minutes, the information system will automatically call back the pre-stored number to see if someone has answered it. If someone answers, the data center further confirms the user's condition and assistance, and provides next steps as needed. If no one answers, the system will automatically retrieve data to contact the alarm center, emergency center and/or their patient's family to track the investigation and confirm the user's situation.
  • a communication component eg, a Bluetooth module
  • the user of the patch-type health monitoring device disclosed herein can input and store basic information such as name, age, emergency phone list, and home address through the user interface of the portable computing device to the patch-type health monitoring device.
  • basic information such as name, age, emergency phone list, and home address
  • a memory for example, a memory chip. Users can also store this basic information on applications installed on portable computing devices.
  • the patch-type health monitoring device can be in interactive communication with the smart robot.
  • Intelligent robots can understand human language, dialogue with operators in human language, and form an external environment in which it can "survive” in its own “consciousness.” It can analyze the situation, adjust its own actions to meet all the requirements of the operator, formulate the desired action, and complete the action under the condition of insufficient information and rapid changes in the environment.
  • This electronic device can be connected to an intelligent robot.
  • the home robot detects that the owner's healthy life is threatened, the family of the helper can be notified in time. If the family is at home, the intelligent robot can knock on the door and issue a warning to draw attention. If the family member is away from home, the intelligent robot can issue an alert on behalf of the helper, like the family, the call center to call the phone to describe the situation, send text messages and helper photos for further assistance.
  • FIG. 7 illustrates an exemplary composition of a health monitoring system 700 in accordance with an embodiment of the present disclosure.
  • health monitoring system 700 can include health detection device 710, data center 720, customer information center 730, a user's portable computing device (eg, a cell phone or tablet, etc.), and another computing device 750 (eg, , doctor or hospital computing equipment).
  • the health detecting device 710 may be, for example, the patch type health monitoring device 100 or 200 as shown in FIG. 1 or FIG. 2, but may also be various other types of health detecting functions having communication functions with the outside world. device.
  • the health detecting device 710 first monitors various data parameters (eg, body temperature, blood pressure, electrocardiogram, electroencephalogram data, etc.) related to the user's physical health, and via The communication component or module transmits the monitored data information to another device (e.g., the user's portable computing device 740). The other device then transmits the data information to the data center 720 via its own communication component or module.
  • the user's health detection device 710 can also send the data information directly to the data center for processing.
  • data center 720 collects these data information and performs an analysis process. At the same time, data center 720 communicates with customer information center 730 to verify, match, and verify the customer's identity information.
  • data center 720 may also send the results to customer information center 730 after the analysis process is complete.
  • the data center 720 (or, optionally, the customer information center 730) can feed back the result information to the user's portable computing device 740 and/or another computing device 750 at the physician's end.
  • the portable computing device 740 can communicate with another computing device 750 at the physician's end via a communication platform established by the data center 720 (or, optionally, the customer information center 730).
  • the portable computing device 740 can communicate directly with another computing device 750 at the physician's end using other means of communication (eg, the Internet or telephone voice, etc.).
  • the health monitoring system 700 shown in FIG. 7 can not only enable the doctor or the hospital to know the physical health data of the user in time through the collection and feedback of the data center 720 when the user's health detecting device 710 detects the abnormal data, thereby ensuring that the user is in the user. Get timely and accurate treatment in crisis situations, and also be able to detect the user's health through the data center 720. And the data is fed back to the doctor and the user so that the doctor can easily understand the user's physical health and give their own advice.
  • the patch-type health monitoring device is used to monitor a specific operation method and embodiment of a user's cardiovascular and cerebrovascular diseases (eg, heart disease, stroke, etc.), although the present disclosure does not Limited to this.
  • the sensor assembly in the patch-type health monitoring device may have an electrocardiographic sensor, an electroencephalogram sensor, and a myoelectric sensor.
  • the ECG sensor can be used to monitor the heart rate of the user's activity, and integrate other data to derive the user's activity intensity, and finally calculate the energy consumed by the user every day.
  • Brainwave sensors can be used to detect neuronal activity in the brain. Neuronal activity reaches the cerebral cortex through ion conduction, and the conductive electrode attached to the head can sense this weak voltage change.
  • the myoelectric sensor can be used to detect the time limit and amplitude of the motor unit potential, whether there is spontaneous electrical activity in a quiet state, and the waveform and amplitude of the muscle contraction. Therefore, the EMG sensor can distinguish between neurogenic damage and myogenic damage; record electrical activity when the muscle is still or contracted, and use electrical stimulation to examine nerve and muscle excitation and conduction functions; determine peripheral nerves, neurons, and neuromuscular junctions. And the functional state of the muscle itself.
  • the health data detected via these sensors can be transmitted to the user terminal via the communication module, displayed on the app, or used for contact and data center analysis between the user and the physician and to provide subsequent related assistance.
  • the operation of the patch-type health monitoring device includes the following steps.
  • S101 The chest is in contact with the patch, the heart sensor, the brain wave sensor and the myoelectric sensor detect the heart, the brain and the muscle activity, and convert the detected information into an electrical signal and transmit it to the preprocessing module.
  • S102 The preprocessing module preprocesses the heart, nerve and muscle activity information detected by the sensor and transmits it to the processor.
  • S103 The processor filters, classifies, compares, and counts the ECG, EEG, and EMG information preprocessed by the preprocessing module, generates health result information, and transmits the information to the communication component (for example, a Bluetooth module).
  • S104 A communication component (eg, a Bluetooth module) transmits result information generated by the processor to the user terminal.
  • S105 when the processor detects an electrocardial wave, an electroencephalogram wave or a myoelectric wave abnormality, it will be turned on The alarm and speaker functions alert the user to potential health threats and draw attention to the surrounding.
  • the signal can be released by the mobile app, and self-help and first aid common sense can be played to help the helper out of danger.
  • S106 The physical condition of the emergency center user is played by voice and needs first aid.
  • the location determination component sends the patient specific location information from the device to the mobile device attempting to talk to it by SMS, and is accurate to the last fifty meters from the patient.

Abstract

La présente invention décrit un dispositif monté en surface de surveillance de la santé (100, 200), comprenant un ensemble détecteur (103, 203), l'ensemble détecteur (103, 203) impliquant un détecteur destiné à la collecte des données de santé provenant du corps d'un utilisateur ; un ensemble communication (104, 204), l'ensemble communication (104, 204) servant à la communication du dispositif monté en surface de surveillance de la santé (100, 200) avec l'extérieur ; une mémoire (101, 201) destinée au stockage d'une instruction à exécuter par un processeur (102, 202) ; et le processeur (102, 202). Le processeur (102, 202) exécute l'instruction : d'acquérir les données de sortie du détecteur à partir de l'ensemble détecteur (103, 203) ; de traiter les données de sortie du détecteur afin de générer des données de santé de l'utilisateur ; sur la base des données de santé, de déterminer le fait que le corps de l'utilisateur présente une anomalie ; de générer automatiquement l'information d'urgence sous une forme vocale lorsqu'il est déterminé que le corps de l'utilisateur est anormal ; et d'envoyer l'information d'urgence sous la forme vocale à une partie de traitement correspondante par l'intermédiaire de l'ensemble communication (104, 204).
PCT/CN2016/079073 2016-02-29 2016-04-12 Dispositif monté en surface de surveillance de la santé WO2017147977A1 (fr)

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