WO2017128500A1 - Système et procédé de secours de blessé basé sur un casque numérique - Google Patents

Système et procédé de secours de blessé basé sur un casque numérique Download PDF

Info

Publication number
WO2017128500A1
WO2017128500A1 PCT/CN2016/076662 CN2016076662W WO2017128500A1 WO 2017128500 A1 WO2017128500 A1 WO 2017128500A1 CN 2016076662 W CN2016076662 W CN 2016076662W WO 2017128500 A1 WO2017128500 A1 WO 2017128500A1
Authority
WO
WIPO (PCT)
Prior art keywords
wounded
injured person
priority
person
sick
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2016/076662
Other languages
English (en)
Chinese (zh)
Inventor
张贯京
陈兴明
葛新科
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Huake Anycheck Information Technologies Ltd
Original Assignee
Shenzhen Huake Anycheck Information Technologies Ltd
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.)
Filing date
Publication date
Application filed by Shenzhen Huake Anycheck Information Technologies Ltd filed Critical Shenzhen Huake Anycheck Information Technologies Ltd
Publication of WO2017128500A1 publication Critical patent/WO2017128500A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0002Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network
    • A61B5/0004Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network characterised by the type of physiological signal transmitted
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording for evaluating the cardiovascular system, e.g. pulse, heart rate, blood pressure or blood flow
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Measuring devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/11Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Measuring devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/11Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
    • A61B5/1112Global tracking of patients, e.g. by using GPS
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Measuring devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/11Measuring movement of the entire body or parts thereof, e.g. head or hand tremor or mobility of a limb
    • A61B5/1123Discriminating type of movement, e.g. walking or running
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6802Sensor mounted on worn items
    • A61B5/6803Head-worn items, e.g. helmets, masks, headphones or goggles
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/74Details of notification to user or communication with user or patient; User input means
    • A61B5/746Alarms related to a physiological condition, e.g. details of setting alarm thresholds or avoiding false alarms
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/74Details of notification to user or communication with user or patient; User input means
    • A61B5/7465Arrangements for interactive communication between patient and care services, e.g. by using a telephone network
    • A61B5/747Arrangements for interactive communication between patient and care services, e.g. by using a telephone network in case of emergency, i.e. alerting emergency services
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41HARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
    • F41H1/00Personal protection gear
    • F41H1/04Protection helmets
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2503/00Evaluating a particular growth phase or type of persons or animals

Definitions

  • the invention relates to the field of human life emergency rescue, in particular to a rescue system and method for a wounded and sick person based on a digital helmet.
  • the rescue of soldiers or disaster relief personnel during the mission is mainly through the SOS method, passively waiting for rescue personnel to come to the rescue.
  • This kind of rescue mode has the following drawbacks: (1) For the wounded and sick who can't automatically report the alarm, they can only wait passively for discovery. The waiting time is long, and it is easy to delay the best time for gold rescue, resulting in increased mortality or the presence of the wounded and sick. After the sequelae; (2) SOS way for help, the rear medical staff can not perceive the injury of the wounded and sick, when a large number of wounded and sick people need first aid, can not be according to the severity of the injury of the wounded and sick, and graded ambulance.
  • the single-person digital helmet system has been hailed as the second brain of the majority of officers and men. Its function is getting stronger and stronger, playing an increasingly important role in war or post-disaster relief.
  • the existing individual digital helmet system cannot monitor and automatically assess the injury status of the wounded and sick in military operations or disaster relief, and cannot be based on the wounded and sick.
  • the situation of the injury sends a corresponding first-aid priority information to the rear medical emergency center to assist the rear medical emergency center to develop an effective emergency plan, so that the rear medical emergency center can not quickly and effectively carry out the classification of the wounded and sick.
  • the main object of the present invention is to provide a rescue system and method for a wounded and sick person based on a digital helmet, which aims to solve the technical problem that the prior art cannot automatically assess the injury situation of the wounded and the sick to determine the priority level of the first aid for the wounded and sick.
  • the present invention provides a victim helmet rescue system based on a digital helmet, the system comprising:
  • a pulse monitoring module configured to detect a pulse beat number of a wounded person's carotid artery by a pulse sensor integrated on the digitized helmet, and determine a first aid priority of the injured person when the number of beats of the injured carotid artery is greater than a predetermined number of times Positioning the position information of the wounded and sick person for the first priority and opening the positioning unit integrated on the digitized helmet;
  • the respiratory monitoring module is configured to detect the number of breaths per minute of the injured person by the respiratory sensor integrated in the digitized helmet when the number of pulse beats of the injured patient's carotid artery is not more than a predetermined number of times, and the number of beats of the injured person and the beat pulse When the number of breaths is zero, it is determined that the first aid priority of the injured person is the fourth priority and the position information of the injured person is located by the positioning unit;
  • the action monitoring module is configured to control the panoramic camera integrated on the digitized helmet to monitor whether the wounded and the sick person walks upright when the number of breaths is within a predetermined range, and determine the first aid priority of the wounded and sick person when the injured person walks upright Prioritizing and locating the position information of the injured person through the positioning unit;
  • the eye monitoring module is configured to control the voice device integrated on the digitized helmet to issue a voice instruction for guiding the wounded person's eyes to close when the injured person does not walk upright, and determine the wounded and sick person when the injured person performs eye closing according to the voice instruction.
  • the first aid priority is the second priority and the position information of the injured person is located by the positioning unit;
  • the alarm help module is used to send the first aid priority and position information of the wounded and sick to the medical emergency unit of the rear emergency command center through the communication unit integrated in the digital helmet to monitor the injury situation of the wounded and the emergency plan. .
  • the respiratory monitoring module is further configured to determine whether the respiratory number of the wounded and the patient is within a predetermined range when the number of beats and the number of breaths of the injured person are not zero, and when the number of breaths of the injured person is not within the predetermined range
  • the emergency priority of the injured person is determined as the first priority and the position information of the injured person is located by the positioning unit.
  • the action monitoring module is further configured to: determine, by the panoramic camera, the human body image of the injured person and detect the walking state of the injured person from the human body image of the injured person to determine whether the injured person is standing upright walk.
  • the eye monitoring module is further configured to control the panoramic camera to monitor an eye contact state of the wounded and the sick to determine whether the injured person can perform eye closing according to the voice instruction, and when the injured person cannot perform eye closing according to the voice instruction. It is determined that the first aid priority of the injured person is the first priority.
  • the alarm forbidden module is further configured to send the number of pulse beats and the number of breaths of the injured person to the medical emergency platform of the rear emergency command center through the communication unit.
  • the present invention also provides a rescue method for a wounded person based on a digital helmet, the method comprising the steps of: detecting a pulse beat number of a carotid artery of a wounded person by a pulse sensor integrated on the digitized helmet; When the number of pulse beats of the injured patient's carotid artery is greater than the predetermined number of times, it is determined that the first aid priority of the injured person is the first priority and the positioning unit integrated on the digitized helmet is positioned to locate the position information of the wounded and sick; When the pulse rate of the patient's carotid artery is not more than the predetermined number of times, the respiratory sensor integrated in the digital helmet detects the number of breaths per minute of the injured person; when the number of beats and the number of breaths of the injured person are zero, Determining that the victim's first aid priority is the fourth priority and positioning the injured person's position information through the positioning unit; when the number of breaths is within the predetermined range,
  • the digital helmet-based ambulance rescue method further comprises the steps of: determining whether the respiratory number of the wounded and the patient is within a predetermined range when the number of beats or the number of breaths of the injured person is not zero; The number of breaths of the member is not within the predetermined range, and the emergency priority of the injured person is determined to be the first priority and the position information of the injured person is located by the positioning unit.
  • the step of controlling the panoramic camera integrated on the digitized helmet to monitor whether the injured person walks upright comprises the steps of: ingesting a human body image of the victim through the panoramic camera; from the human body image of the injured person The walking state of the wounded and sick is detected to determine whether the wounded and the sick are walking upright.
  • the digital helmet-based ambulance rescue method further comprises the steps of: controlling the panoramic camera to monitor a patient's eye closure state to determine whether the victim can perform eye closure according to a voice instruction; When the eye is closed according to the voice instruction, the first aid priority of the injured person is determined as the first priority.
  • the digitized helmet-based ambulance ambulance method further comprises the step of transmitting the number of pulse beats and the number of breaths of the victim to the medical emergency platform of the rear emergency command center through the communication unit.
  • the digital helmet-based ambulance ambulance system and method of the present invention can monitor the physical condition of the user during military operations or post-disaster rescue, and evaluate the injury of the wounded and the first aid to the rear.
  • the medical emergency platform of the command center issues the corresponding level of help information, vital signs information and location information of the wounded and sick, so that the emergency first aid command center can formulate emergency plans, and dispatch medical resources for first aid according to the injury and geographical location of the wounded and sick. Ensure that the injury of the wounded and sick is controlled within one hour of the gold rescue and reduce the number of casualties. The wounded and sick who cannot be automatically alerted if the injury is serious can be rescued without waiting passively.
  • FIG. 1 is a schematic diagram of an application environment of a preferred embodiment of a rescue helmet system for a digitized helmet according to the present invention
  • Figure 2 is a schematic structural view of the preferred embodiment of the digitized helmet of Figure 1;
  • Figure 3 is a functional block diagram of a preferred embodiment of the ambulance ambulance system of Figure 2;
  • FIG. 4 is a flow chart of a preferred embodiment of a rescue method for a wounded patient based on a digital helmet according to the present invention.
  • the digitized helmet of the present invention can be worn by any user who needs to use the digitized helmet.
  • the term "users" as used in the present invention include, but are not limited to, those who use digital helmets, such as combat commanders and soldiers who use digital helmets in military operations or combat readiness tasks, and high-intensity and high-risk operations (such as aerial work). And athletes who use digital helmets when participating in high-intensity intense sports, and those who need to use the digital helmet of the present invention.
  • the embodiments of the present invention are only described in detail by taking the wounded and sick in the combat mission or the post-disaster rescue mission as an example.
  • FIG. 1 it is a schematic diagram of an application environment of a preferred embodiment of the injured helmet rescue system based on the digital helmet of the present invention.
  • the ambulance ambulance system 10 is installed and operated on a digitized helmet 1 worn on a user's head.
  • the digitized helmet 1 is not turned on, the digitized helmet 1 is in a dormant state, which is a low-radiation, low-power, non-working mode, and thus does not affect the health of the user.
  • the digitized helmet 1 communicates wirelessly with the medical emergency platform 2 disposed at the rear emergency command center via the communication network 3.
  • the communication network 3 is a remote wireless communication network, including but not limited to a wireless transmission network such as a GSM network, a GPRS network, or a CDMA.
  • the medical emergency platform 2 can be a monitor, a computer device, a server, or the like.
  • the ambulance ambulance system 10 is configured to monitor the physical condition of the user during military operations or post-disaster rescue and evaluate the injury of the injured person, and issue a corresponding level of help information to the medical emergency platform 2 of the rear emergency command center.
  • the vital signs and location information of the wounded and sick so that the emergency first-aid command center can make emergency plans, and dispatch medical resources according to the injury and geographical location of the wounded and sick to carry out first-aid to ensure the injury of the wounded and sick within one hour of the gold rescue. Control and reduce the number of casualties, for the injured and injured can not automatically alarm the wounded and sick people do not need to wait for the rescue to be rescued.
  • the digitized helmet 1 includes, but is not limited to, a wounded and ambulance ambulance system 10, a pulse sensor 11, a respiration sensor 12, a positioning unit 13, a panoramic camera 14, a communication unit 15, a sounding device 16, and a memory. 17 and the microprocessor 18.
  • the pulse sensor 11, the respiration sensor 12, the positioning unit 13, the panoramic camera 14, the communication unit 15, the sounding device 16, and the memory 17 are electrically connected to the microprocessor 18, and can pass through the microprocessor 18 and the wounded and sick
  • the ambulance system 10 performs information interaction.
  • the pulse sensor 11 is integrated on the digitized helmet 1 for detecting the number of pulse beats of the injured person's carotid artery and transmitting the pulse number of the injured patient's carotid artery to the microcontroller 18.
  • the pulse sensor 11 is located on the inner liner of the digitized helmet 1 corresponding to the neck position of the human body, and the pulse sensor 11 is a high-sensitivity array pulse sensor or a photoelectric pulse sensor. Detect the number of pulse beats in the human carotid artery.
  • the respiration sensor 12 is integrated on the digitized helmet 1 for sensing the number of breaths of the victim and transmitting the number of breaths of the victim to the microcontroller 18.
  • the respiration sensor 12 is located on the inner liner of the digitized helmet 1 corresponding to the position of the nose of the human body.
  • the respiration sensor 12 is a carbon nanotube-based respiration sensor capable of detecting the number of breaths of the human body.
  • the positioning unit 13 is configured to locate the geographic location information of the injured person.
  • the positioning unit 13 can be a GPS positioning module, a Beidou positioning module or other chip with a positioning function, and can accurately locate the position information of the wounded and sick. , including the latitude and longitude information of the victim and the patient.
  • the panoramic camera 14 is integrated on the digitized helmet 1 for capturing and monitoring the eye-closed state of the wounded and sick.
  • the panoramic camera 14 is disposed at the head forehead position of the digitized helmet 1, which is a 360 degree panoramic camera or a 360 degree rotating camera.
  • the communication unit 15 is a wireless communication interface with remote wireless communication function, and is used for sending the first aid priority, the number of pulse beats, the number of breaths and the position information of the injured person to the medical emergency platform 2 of the rear emergency command center. Monitor the injury situation of the wounded and sick, so that the rear emergency command center can immediately grasp the injury situation of the wounded and sick to develop the best emergency plan.
  • the sounding device 16 can be a woofer or speaker for issuing a voice command that directs the user's eyes to close.
  • the memory 17 can be a read only memory ROM, an electrically erasable memory EEPROM, or a flash memory FLASH or the like.
  • the microprocessor 18 can be a microcontroller (MCU), a data processing chip, or an information processing unit having data processing functions.
  • MCU microcontroller
  • data processing chip a data processing chip
  • information processing unit having data processing functions.
  • the ambulance ambulance system 10 includes, but is not limited to, a pulse monitoring module 101, a respiratory monitoring module 102, a motion monitoring module 103, an eye monitoring module 104, and an alarm help module 105.
  • the module referred to in the embodiment of the present invention refers to a series of computer program instruction segments that can be executed by the microprocessor 18 of the digitized helmet 1 and capable of performing a fixed function, which is stored in the memory 17 of the digitized helmet 1. in.
  • the pulse monitoring module 101 is configured to detect the pulse beat number of the injured patient's carotid artery through the pulse sensor 11 integrated on the digitized helmet 1 .
  • the pulse sensor 11 starts detecting the carotid pulse signal of the victim, and the pulse monitoring module 101 is from the pulse sensor 11. Get the number of pulse beats in the carotid artery of the victim.
  • the pulse monitoring module 101 is further configured to determine whether the number of pulse beats of the injured person's carotid artery is greater than a predetermined number of times (for example, 120 times), and determine the injury when the number of pulse beats of the injured patient's carotid artery is greater than a predetermined number of times.
  • the first aid priority of the patient is the first priority, and the positioning unit 13 is turned on to locate the position information of the injured person.
  • the respiratory monitoring module 102 is configured to detect the number of breaths per minute of the injured person by the respiratory sensor 12 integrated on the digitized helmet 1 when the number of pulse beats of the injured patient's carotid artery is not greater than (less than or equal to) a predetermined number of times.
  • the breathing sensor 12 starts detecting the number of breaths per minute of the injured person, and the respiratory monitoring module 102 is from the respiratory sensor 12. Get the number of breaths per minute for the victim.
  • the respiratory monitoring module 102 is further configured to determine whether the number of beats and the number of breaths of the injured person are zero, and when the number of beats and the number of breaths of the injured person are zero, the first aid priority of the injured person is determined as The fourth priority is used, and the position information of the injured person is located by the positioning unit 13.
  • the respiratory monitoring module 102 is further configured to determine whether the number of breaths is within a predetermined range when the number of beats and the number of breaths of the injured person are not zero.
  • the predetermined range is between 10 and 29 times
  • the normal person's breathing frequency is generally between 10 and 29 times, and if the patient's respiratory rate is less than 10 times or greater than 29 times, the abnormality is abnormal. .
  • the respiratory monitoring module 102 determines that the first aid priority of the victim is the first priority, and passes the The positioning unit 13 locates the position information of the injured person.
  • the action monitoring module 103 is configured to control the panoramic camera 14 integrated on the digitized helmet 1 to monitor the walking state of the injured person to determine whether the injured person walks upright.
  • the action monitoring module 103 controls the panoramic camera 14 to take the human body image of the wounded and sick person, and detects the walking state of the wounded and sick from the human body image of the wounded and the sick to determine whether the wounded and the sick person walks upright.
  • the action monitoring module 103 determines that the first aid priority of the injured person is the third priority, and locates the position information of the injured person through the positioning unit 13.
  • the eye monitoring module 104 is configured to control the sounding device 16 integrated on the digitized helmet 1 to issue a voice instruction for guiding the wounded person's eyes to close, and to monitor the wounded person's eyes through the panoramic camera 14.
  • the closed state is used to determine whether the injured person has closed the eye according to the voice instruction.
  • the eye monitoring module 104 determines that the emergency priority of the injured person is the second priority, and locates the position information of the injured person through the positioning unit 13.
  • the eye monitoring module 104 determines that the victim's first aid priority is the first priority.
  • the alarm help module 105 is configured to send the first aid priority, the number of pulse beats, the number of breaths, and the position information of the victim to the medical emergency platform 2 of the rear emergency command center through the communication unit 15 so that the rear emergency command center can treat the injury
  • the staff's injury situation is monitored, so that the rear emergency command center can immediately grasp the injury situation of the wounded and sick to develop the best emergency plan, so that the rear emergency command center can quickly and effectively carry out the classification of the wounded and sick.
  • the present invention also provides a rescue method for a wounded and a patient based on a digital helmet, which can monitor the physical condition of the user during military operations or disaster relief, and evaluate the injury of the wounded and sick, and
  • the medical emergency platform 2 of the rear emergency command center issues the corresponding level of help information, vital signs and position information of the wounded and sick, so that the emergency first aid command center can formulate emergency plans, and dispatch medical resources according to the injury and geographical location of the wounded and sick.
  • First-aid to ensure that the injury of the wounded and sick is controlled within one hour of the gold rescue and reduce the number of casualties. The wounded and sick who can not automatically report the alarm can be rescued without waiting passively.
  • FIG. 4 it is a flow chart of a preferred embodiment of the rescue method for a wounded and sick person based on the digital helmet of the present invention.
  • the wounded and ambulance ambulance method is applied to the digital helmet 1 worn by the soldier shown in FIG. 1 , in combination with FIG. 1 , FIG. 2 and FIG. 3 , the method includes but is not limited to, step S40 Go to step S54:
  • Step S40 detecting the pulse beat number of the injured patient's carotid artery by a pulse sensor integrated on the digitized helmet; specifically, when the digital helmet 1 is turned on by the medical emergency platform 2, the pulse sensor 11 starts detecting the injury.
  • the patient's carotid pulse signal, the pulse monitoring module 101 acquires the pulse beat number of the injured patient's carotid artery from the pulse sensor 11.
  • step S41 it is determined whether the number of pulse beats is greater than a predetermined number of times; specifically, the pulse monitoring module 101 determines whether the number of pulse beats of the injured carotid artery is greater than a predetermined number of times (for example, 120 times). If the number of pulse beats is greater than the predetermined number of times, step S42 is performed; if the number of beats is not greater than (less than or equal to) the predetermined number of times, step S43 is performed.
  • a predetermined number of times for example, 120 times.
  • Step S42 determining that the first-aid priority of the injured person is the first priority, and turning on the positioning unit to locate the position information of the injured person; specifically, when the number of pulse beats is greater than the predetermined number of times, the pulse monitoring module 101 determines the injury The first aid priority of the member is the first priority, and the positioning unit 13 is turned on to locate the position information of the injured person.
  • Step S43 detecting the number of breaths per minute of the injured person by the respiratory sensor integrated in the digitized helmet; in the embodiment, when the control command sent by the medical helmet 1 by the medical emergency platform 2 is turned on, the respiratory sensor 12 starts detecting The number of breaths per minute of the patient is measured, and the respiratory monitoring module 102 obtains the number of breaths per minute of the victim from the respiratory sensor 12.
  • step S44 it is determined whether the number of pulse beats and the number of breaths are both zero; in the embodiment, the respiratory monitoring module 102 determines whether the number of beats and the number of breaths of the injured person are both zero. If the number of beats and the number of breaths of the victim are zero (indicating that the victim has died and no first aid is needed), step S45 is performed; if the number of beats or the number of breaths of the victim is not zero, the steps are performed. S46.
  • Step S45 determining that the first-aid priority of the injured person is the fourth priority, and locating the position information of the injured person through the positioning unit; specifically, when the number of pulse beats and the number of breaths are zero, the respiratory monitoring module 102 The first aid priority of the injured person is determined to be the fourth priority, and the position information of the injured person is located by the positioning unit 13.
  • step S46 it is determined whether the number of breaths is within a predetermined range; specifically, when the number of beats or the number of breaths of the injured person is not zero, the respiratory monitoring module 102 determines whether the number of breaths of the injured person is within a predetermined range. If the number of breaths of the injured person is within the predetermined range, step S47 is performed; if the number of breaths of the injured person is not within the predetermined range, the process returns to step S42.
  • Step S47 controlling the panoramic camera integrated on the digitized helmet to monitor the walking state of the wounded and sick; specifically, when the number of breaths of the wounded and sick are within a predetermined range, the action monitoring module 103 monitors the wounded and sick by integrating the panoramic camera 14 Walking state.
  • the action monitoring module 103 detects the walking state of the wounded and sick from the body image of the injured person taken by the panoramic camera 14.
  • step S48 it is determined whether the injured person walks upright; in the embodiment, the action monitoring module 103 determines whether the injured person can walk upright according to the walking state of the injured person. If the injured person can walk upright, step S49 is performed; if the injured person cannot walk upright, step S50 is performed.
  • Step S49 determining that the first-aid priority of the injured person is the third priority, and locating the position information of the injured person through the positioning unit; specifically, when the injured person can walk upright, the action monitoring module 103 determines the wounded and sick person's The first aid priority is the third priority, and the position information of the injured person is located by the positioning unit 13.
  • Step S50 controlling the sounding device to issue a voice instruction for guiding the eye of the injured person to close; specifically, when the injured person cannot walk upright, the eye monitoring module 104 controls the sounding device 16 integrated on the digitized helmet 1 to guide the eye of the injured person. Closed voice command.
  • step S51 the panoramic camera is controlled to detect the eye-closed state of the injured person; in the embodiment, the eye monitoring module 104 detects the eye-closed state of the injured person from the eye image acquired by the panoramic camera 14.
  • step S52 it is determined whether the injured person performs eye closure according to the voice instruction.
  • the eye monitoring module 104 determines whether the injured person performs eye closing according to the voice instruction according to the eye closed state of the injured person. If the injured person performs eye closing according to the voice instruction, step S53 is performed; if the injured person performs eye closing according to the voice instruction, the process returns to step S42.
  • Step S53 determining that the first-aid priority of the injured person is the second priority, and locating the position information of the injured person through the positioning unit; specifically, when the injured person can perform eye closing according to the voice instruction, the eye monitoring module 104 determines The first aid priority of the injured person is the second priority, and the position information of the injured person is located by the positioning unit 13.
  • Step S54 the first aid priority level and the location information of the victim are sent to the medical emergency platform of the emergency command center through the communication unit; in the embodiment, the alarm help module 105 transmits the first aid priority and the position information of the wounded and sick through communication. Unit 15 is sent to the medical emergency platform 2 of the rear emergency command center.
  • the alarm help module 105 also sends the pulse beat number and the number of breaths of the wounded and sick person to the medical emergency platform 2 of the rear emergency command center through the communication unit 15 , so that the rear emergency command center monitors the injury situation of the wounded and sick, thereby It is convenient for the rear emergency command center to immediately grasp the injury situation of the wounded and sick to develop the best emergency plan, so that the rear emergency command center can quickly and effectively carry out the classification and rescue of the wounded and sick.

Landscapes

  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Physiology (AREA)
  • Animal Behavior & Ethology (AREA)
  • Veterinary Medicine (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Physics & Mathematics (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Medical Informatics (AREA)
  • Molecular Biology (AREA)
  • Surgery (AREA)
  • Public Health (AREA)
  • General Health & Medical Sciences (AREA)
  • Cardiology (AREA)
  • Dentistry (AREA)
  • Oral & Maxillofacial Surgery (AREA)
  • Pulmonology (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)
  • Critical Care (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Emergency Medicine (AREA)
  • Nursing (AREA)
  • Radar, Positioning & Navigation (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • General Engineering & Computer Science (AREA)

Abstract

L'invention concerne un système (10) et un procédé de secours de blessé basé sur un casque numérique (1). Le procédé comprend les étapes suivantes : utiliser un capteur de pouls (11) pour détecter et compter les pulsations de l'artère carotide d'un blessé (S40) ; si le nombre de pulsations de la carotide du blessé est supérieur à un nombre prédéterminé, alors attribuer une priorité de secours d'urgence de niveau 1 au blessé (S42) ; utiliser un capteur de respiration (12) pour détecter et compter le nombre de respirations par minute du blessé (S43) ; si le nombre d'impulsions et le nombre de respirations du blessé sont tous deux nuls, alors attribuer une priorité de secours d'urgence de niveau 4 au blessé (S45) ; si le blessé peut marcher debout, alors attribuer une priorité de secours d'urgence de niveau 3 au blessé (S49) ; si le blessé peut suivre une instruction vocale pour fermer les yeux donnée par un dispositif de haut-parleur (16), alors attribuer une priorité de secours d'urgence de niveau 2 au blessé (S53) ; et envoyer, au moyen d'une unité de communication (15), le niveau de priorité de secours d'urgence à un centre de commande de secours d'urgence arrière (S54). Le procédé permet d'obtenir une surveillance en temps réel et une évaluation automatique d'un état de lésion subi par un blessé et d'attribuer un niveau de priorité de secours d'urgence au blessé.
PCT/CN2016/076662 2016-01-30 2016-03-18 Système et procédé de secours de blessé basé sur un casque numérique Ceased WO2017128500A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201610068401.XA CN105534502B (zh) 2016-01-30 2016-01-30 基于数字化头盔的伤病员救护系统及方法
CN201610068401.X 2016-01-30

Publications (1)

Publication Number Publication Date
WO2017128500A1 true WO2017128500A1 (fr) 2017-08-03

Family

ID=55814457

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/076662 Ceased WO2017128500A1 (fr) 2016-01-30 2016-03-18 Système et procédé de secours de blessé basé sur un casque numérique

Country Status (2)

Country Link
CN (1) CN105534502B (fr)
WO (1) WO2017128500A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109872514A (zh) * 2017-12-04 2019-06-11 上海救要救信息科技有限公司 安全应急响应系统

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105534501A (zh) * 2016-01-30 2016-05-04 深圳市易特科信息技术有限公司 基于智能腕表的伤病员救护系统及方法
CN120783747B (zh) * 2025-07-15 2026-03-17 南方医科大学南方医院 一种急救团队实时语音指令分析与协作优化方法及系统

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5228449A (en) * 1991-01-22 1993-07-20 Athanasios G. Christ System and method for detecting out-of-hospital cardiac emergencies and summoning emergency assistance
CN101169840A (zh) * 2006-10-26 2008-04-30 杰弗里·J·克劳森 用于紧急医疗情况调度系统的退出协议的方法和系统
CN101417163A (zh) * 2008-11-21 2009-04-29 山西虹安科技股份有限公司 个人应急救援防护生命保障系统
CN102341799A (zh) * 2009-03-02 2012-02-01 杰弗里·J·克劳森 用于急救医疗调度的诊断和介入工具
US20120203076A1 (en) * 2011-02-08 2012-08-09 Jean Pierre Fatta Portable Physiological Data Monitoring Device
CN103077324A (zh) * 2013-01-29 2013-05-01 郑静晨 医疗数据处理方法和医疗数据处理装置
CN103565430A (zh) * 2012-07-24 2014-02-12 北京大学人民医院 一种严重创伤救治预警通讯系统

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103416100B (zh) * 2011-03-03 2017-02-15 瑞典爱立信有限公司 用于支持紧急通信的重新建立的方法、设备、系统和计算机程序产品
JP2012203550A (ja) * 2011-03-24 2012-10-22 Nec Corp 情報処理装置、プログラムならびに方法
US8849237B2 (en) * 2011-05-11 2014-09-30 Qualcomm Incorporated Priority registration for in-vehicle emergency call service
JP4934752B1 (ja) * 2011-05-31 2012-05-16 拓平 若山 救援支援システム
CN104997522A (zh) * 2015-07-31 2015-10-28 深圳市前海安测信息技术有限公司 基于数字化头盔的心理监测及缓解系统和方法
CN105167785A (zh) * 2015-07-31 2015-12-23 深圳市前海安测信息技术有限公司 基于数字化头盔的疲劳监测及预警系统和方法

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5228449A (en) * 1991-01-22 1993-07-20 Athanasios G. Christ System and method for detecting out-of-hospital cardiac emergencies and summoning emergency assistance
CN101169840A (zh) * 2006-10-26 2008-04-30 杰弗里·J·克劳森 用于紧急医疗情况调度系统的退出协议的方法和系统
CN101417163A (zh) * 2008-11-21 2009-04-29 山西虹安科技股份有限公司 个人应急救援防护生命保障系统
CN102341799A (zh) * 2009-03-02 2012-02-01 杰弗里·J·克劳森 用于急救医疗调度的诊断和介入工具
US20120203076A1 (en) * 2011-02-08 2012-08-09 Jean Pierre Fatta Portable Physiological Data Monitoring Device
CN103565430A (zh) * 2012-07-24 2014-02-12 北京大学人民医院 一种严重创伤救治预警通讯系统
CN103077324A (zh) * 2013-01-29 2013-05-01 郑静晨 医疗数据处理方法和医疗数据处理装置

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109872514A (zh) * 2017-12-04 2019-06-11 上海救要救信息科技有限公司 安全应急响应系统

Also Published As

Publication number Publication date
CN105534502A (zh) 2016-05-04
CN105534502B (zh) 2019-05-03

Similar Documents

Publication Publication Date Title
CN106550054A (zh) 救援系统及救援方法
JP2008503268A5 (fr)
CN107705514A (zh) 穿戴式预警救援设备及预警救援系统
CN106529139A (zh) 基于虚拟现实的远程急救控制系统及方法
WO2016197385A1 (fr) Système d'alarme et procédé permettant de surveiller la chute accidentelle d'un corps humain
CN111161863A (zh) 远程医疗数据共享平台
WO2017140024A1 (fr) Système et procédé de surveillance de saignement de plaie
CN203693571U (zh) 救护车远程监护医疗系统
KR101754576B1 (ko) 탈착 디바이스를 이용한 생체 신호 분석 시스템 및 방법
CN108937886A (zh) 一种医院患者安全管理方法及系统
WO2018088695A1 (fr) Dispositif vestimentaire pour empêcher la chute et système de gestion de risque de chute l'utilisant
WO2017128839A1 (fr) Système de secours aux blessés et procédé basé sur une montre-bracelet intelligente
CN104873280A (zh) 一种老年人健康监控和定位系统
WO2017128500A1 (fr) Système et procédé de secours de blessé basé sur un casque numérique
CN114795147A (zh) 一种集群式生命体征监测系统及监测方法
KR20160101508A (ko) 독거노인 위급상황 관리시스템
WO2017128841A1 (fr) Casque de sauvetage électronique multifonctionnel
WO2017071036A1 (fr) Casque de numérisation destiné à soulager le stress psychologique dont souffrent les militaires
CN118542662A (zh) 一种居家养老用急救联动系统
US12220256B2 (en) Autonomous event assistant device
CN211432857U (zh) 群体生理信息监护系统
CN108492525A (zh) 一种多信息融合的室内人体跌倒定位监测救助方法及系统
CN204734551U (zh) 一种老年人健康监控和定位系统
CN114271576A (zh) 一种基于物联网的健康安全监测安全帽及其监测方法
CN111009105B (zh) 基于智能穿戴设备的通信方法及系统

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16887382

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 16887382

Country of ref document: EP

Kind code of ref document: A1