CN215308182U - CPR first aid gloves - Google Patents

CPR first aid gloves Download PDF

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Publication number
CN215308182U
CN215308182U CN202120967941.8U CN202120967941U CN215308182U CN 215308182 U CN215308182 U CN 215308182U CN 202120967941 U CN202120967941 U CN 202120967941U CN 215308182 U CN215308182 U CN 215308182U
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China
Prior art keywords
glove
cpr
inner layer
bluetooth
oled
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Expired - Fee Related
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CN202120967941.8U
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Chinese (zh)
Inventor
郑彤欣
郭陈淳
谢思晴
张子旭
王佩怡
谷敏
马瑞辰
林兆花
张宗海
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Beijing Normal University Zhuhai
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Beijing Normal University Zhuhai
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Priority to CN202120967941.8U priority Critical patent/CN215308182U/en
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Publication of CN215308182U publication Critical patent/CN215308182U/en
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Abstract

The utility model relates to the technical field of first-aid equipment, in particular to a CPR first-aid glove, which is integrally shaped like a half-sleeve glove and comprises a glove inner layer and a glove outer layer, wherein the outer side of a thumb of the glove is open from top to bottom, the edge of a tiger mouth of the glove is open from the thumb end to the forefinger end, and magic tapes are symmetrically arranged on the edges of the two openings; a film pressure sensor, a main control board, a Bluetooth and GPS positioning chip, an OLED screen, an OLED indicator lamp, an electromagnetic induction type charger, an MP3 player and a buzzer are arranged between the inner layer and the outer layer of the half-sleeved glove; the heart pressing schematic diagram is arranged on the palm center surface; the wrist pulse position of the half-sleeve glove is provided with an oximeter and a heart rate monitor biosensor; the utility model designs a CPR emergency device which can be carried by a patient, when the glove monitors that the heart of the patient is abnormal, the glove can send an alarm to attract attention, and when a rescuer rescues, the voice broadcasting system can guide CPR operation of the rescuer and assist the rescuer in performing cardiopulmonary resuscitation on the patient.

Description

CPR first aid gloves
Technical Field
The utility model relates to the technical field of emergency equipment, in particular to CPR emergency gloves.
Background
Sudden cardiac arrest is clinically referred to as sudden cardiac death. The affected sites and the affected time are random, and the affected people are various and complex. The primary and effective means of rescuing the patient is cardiopulmonary resuscitation. According to statistics, the total number of people dying from sudden cardiac arrest in China is about 54.4 thousands of people, and the success rate of pre-hospital first aid is less than 1 percent (1). To this end, the high mortality rate of patients is summarized by several reasons:
1. to cure untimely
The gold rescue time frame for cardiac arrest is 4 minutes, beyond which the patient's survival rate decreases at a rate of around 10% per minute. In this golden time period, the probability of success of rescue and treatment by only relying on the medical institution to go to the site is almost 0.
2. Is not aware of the treatment measures
The patients fall to the ground in sudden illness, people in the environment are more than the public, and the on-site cardiopulmonary resuscitation technology is not known or mastered, so that the rescue time is delayed.
3. The self reason of the rescuer
Even if the rescuer is in charge of cardiopulmonary resuscitation, the rescuer may become tense under pressure and may be influenced, or the rescuer may fail to perform the rescue due to insufficient strength. Therefore, the portable cardiopulmonary resuscitation emergency device, namely the CPR emergency gloves, is designed in the project, the heart rate of the patient is detected in real time, the probability that the patient is found and treated in time can be improved under the condition of sudden illness, and the life of the patient is saved. Meanwhile, the success rate of rescue is improved through the voice playing prompting function, and the on-site cardiopulmonary resuscitation is indirectly popularized to the public.
In order to enable a patient with the hidden danger of cardiac arrest to timely perform cardiopulmonary resuscitation when sudden cardiac arrest occurs and improve the CPR success rate, the project focuses on designing a CPR emergency device which can be carried by the patient. The CPR first-aid device takes the half-sleeved gloves as a carrier, mainly integrates the technologies of heart rate monitoring, voice broadcasting, wireless transmission and the like, when the gloves monitor that the heart of a patient is abnormal, an alarm is sent out to attract attention, and meanwhile, the condition and the positioning of the patient are sent to an emergency contact through the APP function of the mobile phone; when the rescuer rescues, the voice broadcasting system can provide CPR operation guidance for the rescuer and assist the rescuer in performing cardiopulmonary resuscitation on the patient.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a CPR first-aid glove, which solves the problem that the prior selenium drum device proposed in the background art does not have a device for automatically cleaning waste powder and a device for processing the waste powder.
In order to achieve the purpose, the utility model provides the following technical scheme: a CPR first aid glove is in a half-sleeve shape and comprises a glove inner layer and a glove outer layer, the outer side of a thumb of the glove is open from top to bottom, the edge of a tiger mouth of the glove is open from the thumb end to the forefinger end, and magic tapes are symmetrically arranged on the edges of the two openings;
thin film pressure sensors are arranged at the palm center of the half-sleeve glove and between the inner layer of the glove and the outer layer of the glove;
the palm surface of the half-sleeve glove is provided with a heart pressing schematic diagram;
a fixing hole A is formed in the wrist pulse position and the inner layer of the half-sleeve glove, and an oximeter and a heart rate monitor biosensor are arranged in the fixing hole A;
a main control board, a Bluetooth and a GPS positioning chip are arranged at the back of the hand, between the inner layer of the glove and the outer layer of the glove;
a fixing hole B is formed in the back of the hand and the outer layer of the half-sleeve glove, and an OLED screen, an OLED indicator lamp, an electromagnetic induction type charger, an MP3 player and a buzzer are arranged in the fixing hole B;
the main control board is respectively electrically connected with the film pressure sensor, the oximeter and the heart rate monitor biosensor, the electromagnetic induction type charger, the buzzer, the MP3 player, the Bluetooth, the GPS positioning chip, the OLED screen and the OLED indicator lamp;
the oximeter and the heart rate monitor biosensor are electrically connected with the buzzer and the OLED screen respectively;
the thin film pressure sensor is electrically connected with the OLED indicating lamp;
the Bluetooth is electrically connected with the GPS positioning chip;
the inner layer of the glove is made of silica gel.
Preferably, magic tapes are symmetrically arranged on the edge between the mutual contact surfaces of the inner layer and the outer layer of the glove. The parts are convenient to disassemble, and the inner layer and the outer layer of the glove are cleaned and replaced;
preferably, the inner layer and the outer layer of the glove are respectively provided with a fixed clamping groove corresponding to the pressure sensor, the main control board, the Bluetooth and the GPS positioning chip; the disassembly and the assembly of each part are convenient.
Preferably, the contact surface between the oximeter and heart rate monitor biosensor and the outer layer of the glove and the inner side of the fixing hole A are provided with silica gel clamping grooves.
Preferably, heat insulation grooves are formed in the inner sides of the fixing clamping grooves and the fixing holes B of the Bluetooth and GPS positioning chips. When the gloves work, the main control panel, the Bluetooth, the GPS positioning chip, the OLED screen, the OLED indicating lamp, the MP3 player, the buzzer and the electromagnetic induction type charger can generate heat, and the heat insulation groove can avoid scalding hands.
The utility model has the beneficial effects that: the master control Arduino development board sends out data requests through receiving heart rate abnormal short message instructions and the Bluetooth module, and each module sends back sensor information in sequence after receiving the data requests. The GPRS module sends positioning and alarming information to the emergency contact; the buzzer triggers and attracts surrounding people for rescue, the guide view on the gloves guides rescuers, and the voice broadcasting module carries out intelligent voice guidance on the cardiac resuscitation process; the pressure sensor monitors the cardiac resuscitation pressure and the OLED indicator light warns the cardiac resuscitation pressure to assist the cardiac resuscitation to be correctly and efficiently implemented; the success rate of the first aid is improved to the maximum extent.
Drawings
FIG. 1 is an exploded schematic view of the present invention;
FIG. 2 is a perspective view of the present invention;
in the figure: 1. an outer layer of the glove; 2. an inner layer of the glove; 3. a thin film pressure sensor; 4. a schematic diagram of cardiac compression; 5. a fixing hole A; 6. oximetry and heart rate monitor biosensors; 7. a fixing hole B; 8. a main control board; 9. bluetooth; 10. a GPS positioning chip; 11. an OLED screen; 12. an OLED indicator light; 13. an MP3 player; 14. a buzzer; 15. an electromagnetic induction type charger; 16. fixing the clamping groove; 17. a heat insulation groove; 18. silica gel draw-in groove.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-2, the present invention provides the following:
a CPR first aid glove is in a half-sleeve shape and comprises a glove inner layer and a glove outer layer, the outer side of a thumb of the glove is open from top to bottom, the edge of a tiger mouth of the glove is open from the thumb end to the forefinger end, and magic tapes are symmetrically arranged on the edges of the two openings;
thin film pressure sensors are arranged at the palm center of the half-sleeve glove and between the inner layer of the glove and the outer layer of the glove;
the palm surface of the half-sleeve glove is provided with a heart pressing schematic diagram;
a fixing hole A is formed in the wrist pulse position and the inner layer of the half-sleeve glove, and an oximeter and a heart rate monitor biosensor are arranged in the fixing hole A;
a main control board, a Bluetooth and a GPS positioning chip are arranged at the back of the hand, between the inner layer of the glove and the outer layer of the glove;
a fixing hole B is formed in the back of the hand and the outer layer of the half-sleeve glove, and an OLED screen, an OLED indicator lamp, an electromagnetic induction type charger, an MP3 player and a buzzer are arranged in the fixing hole B;
the main control board is respectively electrically connected with the film pressure sensor, the oximeter and the heart rate monitor biosensor, the electromagnetic induction type charger, the buzzer, the MP3 player, the Bluetooth, the GPS positioning chip, the OLED screen and the OLED indicator lamp;
the oximeter and the heart rate monitor biosensor are electrically connected with the buzzer and the OLED screen respectively;
the thin film pressure sensor is electrically connected with the OLED indicating lamp;
the Bluetooth is electrically connected with the GPS positioning chip;
the inner layer of the glove is made of silica gel.
Preferably, magic tapes are symmetrically arranged on the edge between the mutual contact surfaces of the inner layer and the outer layer of the glove. The parts are convenient to disassemble, and the inner layer and the outer layer of the glove are cleaned and replaced;
preferably, the inner layer and the outer layer of the glove are respectively provided with a fixed clamping groove corresponding to the pressure sensor, the main control board, the Bluetooth and the GPS positioning chip; the disassembly and the assembly of each part are convenient.
Preferably, the contact surface between the oximeter and the heart rate monitor biosensor and the outer layer of the glove and the inner side of the fixing hole A are provided with silica gel clamping grooves for fixing the oximeter and the heart rate monitor biosensor.
Preferably, heat insulation grooves are formed in the inner sides of the fixing clamping grooves and the fixing holes B of the Bluetooth and GPS positioning chips. When the gloves work, the main control panel, the Bluetooth, the GPS positioning chip, the OLED screen, the OLED indicating lamp, the MP3 player, the buzzer and the electromagnetic induction type charger can generate heat, and the heat insulation groove can avoid scalding hands.
The functions of the components are as follows:
1. a thin film pressure sensor: the device is used for monitoring the pressing frequency and force of a rescuer and feeding back information in an emergency mode.
2. Oximeter and heart rate monitor biosensor: for monitoring heart rate in real time. If the arrhythmia is not normal for a long time, the patient is prompted to seek medical treatment urgently.
OLED screen: the heart pressure alarm is used for displaying time and heart rate, and the feedback information reminds a rescuer of adjusting the heart pressure and frequency to carry out correct rescue.
OLED indicator: used for feeding back information to remind the rescuer to adjust the heart pressure, frequency and the like. When the rescue is carried out correctly, the green light is turned on, and when the operation is not proper, the red light is turned on.
5. Magic tape: the glove is convenient for users to wear and reduces the time for rescuers to take off the gloves.
6. Electromagnetic induction type charger: use wireless charging mode, it is more convenient and safe.
The working principle is as follows:
the working principle of the CPR first-aid glove is that an intelligent system is arranged in the glove, and a smart phone system is carried to trigger under an emergency mode to realize multifunction. The heart rate can be monitored in real time in daily life according to the pulse blood oxygen; under the condition that abnormal heart rate is detected, the Bluetooth module is combined with a GPS (global positioning system) to realize the purpose of informing the heart rate condition of the emergency contact and accurately positioning; by triggering the buzzer and the MP3 player, the attention of peripheral potential rescuers is aroused, and CPR technical operation voice guidance is performed on the potential rescuers;
when a rescuer performs CPR first aid according to guidance, the film pressure sensor in the glove can detect the pressing force of the rescuer on a patient, the OLED indicator light displays that the feedback pressing force is too large, suitable or too small, and the OLED indicator light can light a red light to play a role in warning when the pressing force is too large, so that the pressing force of the rescuer is in a suitable range. Therefore, the success rate of rescue is improved as much as possible in the gold rescue time of sudden cardiac arrest of a patient.
In daily life, the CPR first aid gloves can be used for users to check time, count steps, measure heart rate, detect sleep quality and the like, and synchronize data into a mobile phone APP.
When the heart rate is abnormal, i.e. the heart is suddenly stopped, the cardiopulmonary resuscitation first aid gloves immediately start working.
1. Continuously giving out alarm sound to enable people around to notice the abnormity of the patient, and simultaneously prompting the rescuer to tear down the gloves of the patient by the voice prompt system.
2. And sending the positioning and body health condition of the patient to the emergency contact through the mobile phone APP.
3. When the system detects that the CPR first-aid gloves are torn down, the voice prompt system starts to prompt the rescuer to carry out rescue operation, and meanwhile, the information feedback system feeds back information such as the pressing force, the pressing frequency and the like on the screen of the CPR first-aid gloves. When the operation is correct, the indicator lamp on the screen can light green; when the operation is not proper, the indicating lamp can light up red. The work will not stop until the professional medical personnel reach the CPR first aid gloves.
This novel product CPR first aid gloves that project was planned to design, it is different with cardiopulmonary resuscitation first aid device on the carrier greatly on the market, in similar main part function, combine present high and new technology, with the product more humanized, the user life of laminating more.
(1) Portable, light and comfortable
The gloves are used as carriers, are portable to carry, and influence the normal daily life of a patient to a small extent. In emergency, the patient can be effectively rescued in a short time.
(2) Convenient to disassemble and ensure cleanness
The display screen module in the CPR first aid glove adopts detachable design, so that the electronic elements in the glove can be conveniently charged, set and the like. Meanwhile, the user can clean and replace the gloves regularly, and the cleanness and comfort of the gloves are guaranteed.
(3) Simple and easy to understand, and can be used as a hand-held tool
The intelligent gloves pass through the bluetooth mode and are connected with cell-phone APP, and only need once networking configuration, the automatic butt joint data in later stage. The mobile phone operation interface is simple and clear in design, the information feedback areas are obviously distinguished, and the emergency contact can know the physical changes and health conditions of the patient at any time and any place through the mobile phone.
(4) Multiple modules with strong mutual inductance
The product has diversified modules, and in the emergency use process, the voice and the screen are in audio-visual cooperation, so that the device has stronger interaction and complete guiding process, and can guide rescuers to rescue in multiple ways.
(5) Multiple functions, optimized experience
This money gloves except carry out supplementary first aid under emergency, in daily life, the user also can utilize gloves monitoring self rhythm of the heart, looks over daily time etc. richenes life experience.
(6) The price is universal, and the convenience is brought to people
The project controls the manufacturing cost of the product, generalizes the price to reach the price accepted by the common people, and ensures the product
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (5)

1. A CPR first aid glove having the overall shape of a half-sleeve glove comprising an inner glove layer and an outer glove layer, wherein: the outer side of the thumb of the glove is in an opening shape from top to bottom and from the thumb end to the forefinger end at the edge of the tiger part of the glove, and magic tapes are symmetrically arranged at the edges of the two openings;
thin film pressure sensors are arranged at the palm center of the half-sleeve glove and between the inner layer of the glove and the outer layer of the glove;
the palm surface of the half-sleeve glove is provided with a heart pressing schematic diagram;
a fixing hole A is formed in the wrist pulse position and the inner layer of the half-sleeve glove, and an oximeter and a heart rate monitor biosensor are arranged in the fixing hole A;
a main control board, a Bluetooth and a GPS positioning chip are arranged at the back of the hand, between the inner layer of the glove and the outer layer of the glove;
a fixing hole B is formed in the back of the hand and the outer layer of the half-sleeve glove, and an OLED screen, an OLED indicator lamp, an electromagnetic induction type charger, an MP3 player and a buzzer are arranged in the fixing hole B;
the main control board is respectively electrically connected with the film pressure sensor, the oximeter and the heart rate monitor biosensor, the electromagnetic induction type charger, the buzzer, the MP3 player, the Bluetooth, the GPS positioning chip, the OLED screen and the OLED indicator lamp;
the oximeter and the heart rate monitor biosensor are electrically connected with the buzzer and the OLED screen respectively;
the thin film pressure sensor is electrically connected with the OLED indicating lamp;
the Bluetooth is electrically connected with the GPS positioning chip;
the inner layer of the glove is made of silica gel.
2. A CPR emergency glove according to claim 1, wherein: magic tapes are symmetrically arranged on the edge between the mutual contact surfaces of the inner layer and the outer layer of the glove.
3. A CPR emergency glove according to claim 1, wherein: the glove inner layer and the glove outer layer are respectively provided with a fixed clamping groove corresponding to the pressure sensor, the main control board, the Bluetooth and the GPS positioning chip.
4. A CPR emergency glove according to claim 1, wherein: contact surface between oximeter and heart rate monitor biosensor and the gloves skin and fixed orifices A inboard are equipped with the silica gel draw-in groove.
5. A CPR emergency glove according to claim 3, wherein: and heat insulation grooves are arranged on the inner sides of the fixing clamping grooves and the fixing holes B of the Bluetooth and GPS positioning chips.
CN202120967941.8U 2021-05-07 2021-05-07 CPR first aid gloves Expired - Fee Related CN215308182U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120967941.8U CN215308182U (en) 2021-05-07 2021-05-07 CPR first aid gloves

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120967941.8U CN215308182U (en) 2021-05-07 2021-05-07 CPR first aid gloves

Publications (1)

Publication Number Publication Date
CN215308182U true CN215308182U (en) 2021-12-28

Family

ID=79597938

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120967941.8U Expired - Fee Related CN215308182U (en) 2021-05-07 2021-05-07 CPR first aid gloves

Country Status (1)

Country Link
CN (1) CN215308182U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20211228

CF01 Termination of patent right due to non-payment of annual fee