WO2022174568A1 - Vêtement de surveillance d'électrocardiogramme - Google Patents

Vêtement de surveillance d'électrocardiogramme Download PDF

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Publication number
WO2022174568A1
WO2022174568A1 PCT/CN2021/115187 CN2021115187W WO2022174568A1 WO 2022174568 A1 WO2022174568 A1 WO 2022174568A1 CN 2021115187 W CN2021115187 W CN 2021115187W WO 2022174568 A1 WO2022174568 A1 WO 2022174568A1
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WO
WIPO (PCT)
Prior art keywords
ecg
electrode
collecting
monitoring
monitoring suit
Prior art date
Application number
PCT/CN2021/115187
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English (en)
Chinese (zh)
Inventor
吴征瑜
杨雪芳
甘建斌
张家宝
胡雪艳
陈嘉琪
陈正文
Original Assignee
深圳诺康医疗科技股份有限公司
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Publication of WO2022174568A1 publication Critical patent/WO2022174568A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D10/00Pyjamas; Nightdresses
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/12Surgeons' or patients' gowns or dresses
    • A41D13/1236Patients' garments
    • A41D13/1245Patients' garments for the upper part of the body
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/12Surgeons' or patients' gowns or dresses
    • A41D13/1236Patients' garments
    • A41D13/1281Patients' garments with incorporated means for medical monitoring
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/72Signal processing specially adapted for physiological signals or for diagnostic purposes
    • A61B5/7203Signal processing specially adapted for physiological signals or for diagnostic purposes for noise prevention, reduction or removal

Definitions

  • the present disclosure relates to an electrocardiogram detection system, in particular to an electrocardiogram detection and electrocardiogram monitoring suit.
  • an ECG monitoring suit comprising: a first ECG acquisition electrode, serving as a differential signal electrode, arranged on the inside of the monitoring suit and above the position of the human heart; a second ECG collection electrode; an acquisition electrode, serving as another differential signal electrode, is arranged on the inside of the monitoring suit below the position corresponding to the human heart; a third ECG collecting electrode, serving as a reference electrode, is arranged on the inside of the monitoring suit at a position below the second electrode; and
  • the first ECG signal collecting seat is arranged at a different position on the outside of the monitoring suit from the first, second and third ECG collecting electrodes, and includes three electrode buckles, and the three electrode buckles are respectively embedded in the insulation through insulation.
  • the wires in the monitoring suit are connected to the first, second and third ECG acquisition electrodes so as to transmit the ECG signals obtained from the first, second and third ECG acquisition electrodes to the first ECG The first ECG signal collection box on the signal collection base.
  • the first, second and third ECG collecting electrodes are respectively the first, second and third ECG collecting electrode strips, which are sewed parallel to each other or fixed on the monitoring suit by heat pressing. back for direct contact with the user's skin when the monitoring suit is being worn.
  • the second and third ECG collecting electrode strips extend from the back of the monitoring suit to the side of the monitoring suit.
  • the ECG monitoring suit further comprises: a first ECG collecting electrode female buckle, which is arranged on the inside of the monitoring suit at a position on the upper right chest corresponding to the position of the human heart, and is connected with the first female button attached to the position on the right chest of the human body.
  • the male buckle of the removable ECG electrode sheet is fastened;
  • the female buckle of the second ECG acquisition electrode is arranged on the inside of the monitoring suit and corresponds to the position of the left abdomen of the human body, and is connected with the second removable heart pad pasted on the left abdominal position of the human body.
  • the male buckle of the electric electrode sheet is fastened;
  • the female buckle of the third ECG collection electrode is arranged on the inside of the monitoring suit and corresponds to the position of the right abdomen of the human body, and is connected with the third removable ECG electrode sheet pasted on the right abdomen of the human body.
  • the three electrode buckles of the first ECG signal collecting base are also respectively connected with the first, second and third ECG collecting electrode female buckles respectively through insulated wires embedded in the monitoring suit, so that The electrocardiographic signals obtained from the first, second and third removable electrocardiographic electrode sheets are transmitted to the first electrocardiographic signal collection box fastened on the first electrocardiographic signal collecting base.
  • the ECG monitoring suit further comprises: a first ECG collecting electrode female buckle, which is arranged on the inside of the monitoring suit at a position on the upper right chest corresponding to the position of the human heart, and is connected with the first female button attached to the position on the right chest of the human body.
  • the male buckle of the removable ECG electrode sheet is fastened;
  • the female buckle of the second ECG acquisition electrode is arranged on the inside of the monitoring suit and corresponds to the position of the left abdomen of the human body, and is connected with the second removable heart pad pasted on the left abdominal position of the human body.
  • the male buckle of the electric electrode sheet is fastened;
  • the female buckle of the third ECG collection electrode is arranged on the inside of the monitoring suit and corresponds to the position of the right abdomen of the human body, and is connected with the third removable ECG electrode sheet pasted on the right abdomen of the human body.
  • a second electrocardiographic signal collecting seat which is arranged at a position different from the first electrocardiographic signal collecting seat on the outside of the monitoring suit, which includes three electrode buckles, and the three electrode buckles pass through insulation correspondingly.
  • the lead embedded in the monitoring suit is snapped with the first, second and third ECG collecting electrode female buckles, so as to obtain the ECG signal from the first, second and third removable ECG electrode pads It is transmitted to the first electrocardiographic signal collection box buckled on the second electrocardiographic signal collecting base.
  • the first, second and third ECG collecting electrodes are respectively the first, second and third ECG collecting electrode female buckles connected to the wires, and the first ECG collecting electrode female
  • the buckle is arranged on the inner side of the monitoring suit at the right chest position above the position of the human heart, and is fastened with the male buckle of the first removable ECG electrode pad pasted on the right chest position of the human body
  • the second and third ECG The collection electrode female buckles are arranged on the inner side of the monitoring suit and correspond to the left and right abdominal positions of the human body, and are respectively fastened with the male buckles of the second and third removable ECG electrode sheets pasted on the left and right abdominal positions of the human body.
  • the buckle seats of the first, second and third ECG collecting electrode female buckles are sewn or riveted to the front of the monitoring suit so that the female buckles face inward.
  • the ECG monitoring suit according to the present disclosure wherein the width of the first, second and third ECG collection electrode strips is 6-8 cm, and the width of the non-conductive region between the first and second ECG collection electrode strips is 9-11 cm.
  • the first ECG signal collecting base is arranged on the left chest, and the second ECG signal collecting base is arranged at the middle position of the chest.
  • the first, second and third ECG collecting electrode strips are conductive fabrics including silver.
  • the first, second and third ECG collection electrode strips are in contact with a large area of the human body, and the first, second and third ECG collection electrode strips are not fixed to the human body
  • the first ECG signal collection seat is arranged on the front chest, which can conveniently and effectively collect the human body's ECG signal without affecting the user's sleep, and ensures the reliability of physiological parameter measurement.
  • the ECG monitoring suit significantly improves the user experience.
  • the female buckles of the first, second and third ECG collecting electrodes are arranged on the front and inner side of the ECG monitoring suit, and the ECG signals are collected by the male buckles of the removable electric electrode pads, which are very useful for the back ECG signals. Very weak users are more practical, and it is more convenient for standing users to collect ECG signals.
  • Figure 1 shows a schematic front view of an ECG monitoring suit according to a first exemplary embodiment of the present invention
  • Figure 2 shows a schematic view of the back of the ECG monitoring suit according to the first exemplary embodiment of the present invention
  • FIG. 3 is a schematic front view of an ECG monitoring suit according to a second exemplary embodiment of the present invention.
  • FIG. 4 is a schematic front view of an ECG monitoring suit according to a third exemplary embodiment of the present invention.
  • first, second, third, etc. may be used in the present disclosure to describe various pieces of information, such as the first ECG signal and the second ECG signal, such information should not be limited to these terms, the first ECG signal
  • the electrical signal may be referred to as the second ECG signal, and vice versa. These terms are only used to distinguish the same type of information from each other.
  • the word "if” as used herein can be interpreted as "at the time of” or "when” or “in response to determining.”
  • the existing pajamas shield the human body and the whole ECG monitoring suit is made of non-conductive material.
  • the electrodes for collecting ECG signals are fixed at the position of the user's chest, only electrodes connected with wires can be extended from the underside of the front of the pajamas to the user's chest. If the user wears such pajamas to monitor physiological parameters during sleep, he can only keep the supine position all the time, and cannot change the sleeping position at will, so as to prevent the electrodes from falling off the human body. This greatly affects the user's sleep comfort.
  • an electrocardiogram monitoring suit is provided.
  • the ECG monitoring suit can be used to conveniently collect ECG signals.
  • FIG. 1 is a schematic front view of an ECG monitoring suit according to a first exemplary embodiment of the present invention.
  • FIG. 2 is a schematic view of the back of the ECG monitoring suit according to the first exemplary embodiment of the present invention.
  • the ECG monitoring suit 100 is made of a non-conductive thin clothing material.
  • the ECG monitoring suit includes a first ECG acquisition electrode 111 , a second ECG acquisition electrode 112 and a third ECG acquisition electrode 113 .
  • the first ECG collection electrode 111 , the second ECG collection electrode 112 and the third ECG collection electrode 113 are the first, second and third ECG collection electrode strips, respectively, that is, the ECG collection electrode is a kind of strip. strip electrodes. Therefore, the same reference numerals as the ECG acquisition electrodes are also used when referring to the ECG acquisition electrode strips.
  • the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 are used as a pair of differential signal electrodes, which are respectively arranged at the upper and lower ends of the inner side of the ECG monitoring suit corresponding to the position of the human heart, so that the upper and lower ends of the human heart can be obtained. Differential ECG signal.
  • the first ECG acquisition electrode 111 is arranged as a differential signal electrode on the inside of the monitoring suit 100 and above the position corresponding to the human heart.
  • the second ECG acquisition electrode 112 is arranged as another differential signal electrode on the inner side of the monitoring suit and below the position of the human heart.
  • the ECG signal is a typical human body electrical signal, which is a comprehensive reflection of the electrical activity of countless myocardial cells of the heart.
  • the ECG signal appears as a potential difference signal on the body surface.
  • a number of physiological parameters of the human body such as blood pressure, heart rate, etc., can be measured according to the collected ECG signals.
  • the first ECG collecting electrode 111 and the second ECG collecting electrode 112 can form a capacitor, and the capacitive coupling body of the two can form a capacitor.
  • Table of ECG potentials When the user wears the ECG monitoring suit, the non-conductive area between the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 corresponds to the position of the heart.
  • the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 are closely attached to the user's body without space, and can measure the potential difference between the upper and lower positions of the heart.
  • the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 can extend along the lateral direction of the ECG monitoring suit as ECG acquisition electrode strips.
  • the lateral direction of the ECG monitoring suit refers to the direction perpendicular to the central axis of the user's body when the user is wearing the ECG monitoring suit, such as the lateral direction shown in FIG. 1 .
  • the lateral direction of the ECG monitoring suit is a direction parallel to the hem of the ECG monitoring suit.
  • the third ECG collecting electrode 113 is used as a reference electrode, and is arranged inside the monitoring suit at a position below the second ECG collecting electrode 112 .
  • a first ECG signal collecting seat 120 is also arranged, which is located on the outside of the monitoring suit at a different position from the first, second and third ECG collecting electrodes, for example, at the upper left chest of the monitoring suit, which is suitable for Using sleep won't make a difference.
  • the first ECG signal collecting base 120 includes three electrode buttons, such as a first electrode button 121 , a second electrode button 122 and a third electrode button 123 as shown in FIG. 1 .
  • the side of the first electrode buckle 121 facing the inside of the monitoring suit is connected to the first ECG acquisition electrode 111 through the first wire 131 embedded in the monitoring suit, and the side of the second electrode buckle 122 facing the inside of the monitoring suit is embedded in the monitoring suit through insulation.
  • the second lead 132 in the monitoring suit is connected to the second ECG collecting electrode 112, and the third electrode buckle 123 faces the inner side of the monitoring suit through the third lead 133 embedded in the monitoring suit and the third ECG collecting electrode through insulation. 113 connected.
  • the first ECG collection electrode 111 , the second ECG collection electrode 112 and the third ECG collection electrode 113 respectively transmit the ECG signals collected from the human body surface to the first ECG signal collection through the connected wires.
  • a pair of corresponding first ECG signal collection boxes (not shown) are buckled on the first ECG signal collection base 120 , and the first ECG signal collection box has the first electrode buckle 121 and the second electrode buckle 121 .
  • the electrode buckles in the first ECG signal collection box are female buckles; otherwise, when the first electrode buckle 121 , the second electrode buckle When the buckle 122 and the third electrode buckle 123 are female buckles, the electrode buckles in the first ECG signal collection box are male buckles.
  • the method of three electrical contacts can also be used. In this way, the method of three point contacts is also used in the corresponding ECG signal collection box.
  • the first ECG signal collection box receives the ECG signals transmitted from the three ECG collection electrodes through the first ECG signal collection base
  • the first ECG signal collection box collects the signals, filters, amplifies, and removes the signals.
  • the noise After the noise, it is transmitted to the back-end platform (mobile APP, supporting host, etc.) wirelessly in real time or in a centralized manner for analysis and storage, and backup can also be stored in the local memory.
  • the back-end platform mobile APP, supporting host, etc.
  • the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 are closely attached to the user's body, which can conveniently collect the user's ECG signal.
  • the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 are closely attached to the user's body, which ensures the reliability of the acquired signal and thus the accuracy of measuring physiological parameters.
  • the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 do not need to be fixed on any part of the human body, and there is no restraint on the user's movements, postures and postures, and does not interfere with the user's sleep, thus ensuring the user's sleep quality.
  • the ECG monitoring suit significantly improves the user experience.
  • the ECG electrode belt is made of conductive material. Considering the comfort, silver fiber conductive cloth is preferred.
  • the electrodes can be fixed on the clothes by stitching, or by hot pressing and other methods.
  • the ECG electrode strip can also be realized by using silver paste printing and dyeing, or a new type of PET+silver paste composite material.
  • ECG lead strips located on the back, while extending to the side of the torso.
  • the electrode strip function consists of a differential signal electrode and a reference electrode. Considering the change of the user's lying posture, the priority distribution is as follows: the upper and middle electrode strips are differential signal electrodes, and the lower electrode is the reference electrode (for example, the right leg drive electrode).
  • the differential signal electrodes should be distributed on both sides of the heart position, preferably up and down the corresponding position of the heart.
  • the width of the first ECG collecting electrode 111, the second ECG collecting electrode 112 and the distance between the insulating interval between the first ECG collecting electrode 111 and the second ECG collecting electrode 112 have a significant effect on collecting ECG signals. Significantly affected.
  • the experimental results show that the width range of the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 is 6-8 cm, which can ensure a clear waveform, no clutter and easy identification of wave peaks, and is usually set to 7 cm. If it exceeds this range, there may be no obvious peaks in the waveform graph, so that the user's ECG signal cannot be accurately collected.
  • the widths of the first ECG collecting electrodes 111 and the second ECG collecting electrodes 112 are in the range of 6-8 centimeters, which not only ensures the quality of the collection, but also saves costs.
  • the experimental results show that the distance of the insulating interval between the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 has a significant impact on the acquisition of ECG signals.
  • the first ECG acquisition electrode 111 and the second ECG acquisition electrode 112 for acquiring ECG signals are respectively located at the upper and lower ends of the heart to obtain the best signal quality.
  • Too wide or too narrow spacing between insulating intervals will result in too much signal clutter or too small amplitude.
  • the preferred distance of the insulation interval of the ECG monitoring suit is 9-11 cm, usually set to 10 cm.
  • the ECG signal waveform collected by the ECG monitoring suit with the non-conductive area of this width has obvious peaks and a large signal-to-noise ratio.
  • the first ECG collecting electrode strip 111 , the second ECG collecting electrode strip 112 and the third ECG collecting electrode strip 113 are conductive fabrics containing silver, such as conductive cloth. Conductive fabrics are conductors that function as potential difference signal measurements.
  • the conductive fabric can not only capacitively couple with the human body but also make the ECG monitoring suit more comfortable because the conductive fabric is relatively thin and flexible.
  • the material of the conductive fabric includes silver. Silver is very malleable and has the highest electrical conductivity of all metals, making it suitable for use as a metal conductor in conductive fabrics.
  • FIG. 3 is a schematic front view of an ECG monitoring suit according to a second exemplary embodiment of the present invention.
  • the ECG monitoring suit includes a first ECG acquisition electrode, a second ECG acquisition electrode and a third ECG acquisition electrode, which are the first ECG acquisition electrode female buckle 311 and the second ECG acquisition electrode, respectively.
  • the female button 312 and the third ECG collecting electrode female button 313 are the ECG acquisition electrode. That is, the ECG acquisition electrode is a kind of ECG acquisition electrode female buckle.
  • the first ECG collecting electrode female buckle 311 and the second ECG collecting electrode female buckle 312 are used as a pair of differential signal electrodes, which are respectively arranged at the upper and lower ends of the inner side of the ECG monitoring suit corresponding to the position of the human heart, so as to pass the corresponding
  • the first and second removable ECG electrode pads (not shown) acquire differential ECG signals at the upper and lower ends of the human heart position.
  • the first ECG collecting electrode female buckle 311 is arranged as a differential signal electrode on the inside of the monitoring suit 100 above the position of the human heart corresponding to the human heart, and is fastened with the male buckle of the first removable ECG electrode sheet, thereby Obtain the ECG signal collected by the first removable ECG electrode pad.
  • the second ECG collecting electrode female buckle 312 is arranged as another differential signal electrode on the inner side of the monitoring suit below the position of the human heart corresponding to the human heart, and is fastened with the male buckle of the second removable ECG electrode sheet, so as to obtain the second removable ECG electrode. Remove the ECG signal collected by the ECG electrode pads.
  • the third ECG collecting electrode female buckle 313 is used as a reference electrode, and is fastened with the male buckle of the third removable ECG electrode sheet, so as to obtain the reference ECG signal collected by the third removable ECG electrode sheet.
  • a first ECG signal collecting base 320 is also arranged, which is located on the outside of the monitoring suit at a different position from the first, second and third ECG collecting electrodes, for example, at the center of the chest on the front of the monitoring suit.
  • the first ECG signal collecting base 320 includes three electrode buttons, such as a first electrode button 321 , a second electrode button 322 and a third electrode button 323 as shown in FIG. 3 .
  • the side of the first electrode buckle 321 facing the inside of the monitoring suit is connected to the first ECG collecting electrode female buckle 311 through the first wire 331 embedded in the monitoring suit, and the side of the second electrode buckle 322 facing the inside of the monitoring suit is buried through insulation.
  • the second wire 332 implanted in the monitoring suit is connected to the second ECG collecting electrode female buckle 312, and the third electrode buckle 323 is connected to the third wire 333 embedded in the monitoring suit through insulation on the side of the third electrode buckle 323 facing the inner side of the monitoring suit.
  • the ECG collecting electrode female buckle 313 is connected.
  • the first ECG collecting electrode female buckle 311 , the second ECG collecting electrode female buckle 312 and the third ECG collecting electrode female buckle 313 respectively connect the removable ECG electrode pads from the body surface through their respective wires.
  • the collected ECG signals are transmitted to the corresponding first electrode buckles 321 , second electrode buckles 322 and third electrode buckles 323 on the first ECG signal collecting base 320 .
  • a pair of corresponding first ECG signal collection boxes are buckled on the first ECG signal collection base 320 , and the first ECG signal collection box has the first electrode buckle 321 , the first electrode buckle 321 , the first ECG signal collection box The electrode buttons corresponding to the second electrode button 322 and the third electrode button 323 .
  • the electrode buckles in the first ECG signal collection box are female buckles; otherwise, when the first electrode buckle 321 , the second electrode buckle When the buckle 322 and the third electrode buckle 323 are female buckles, the electrode buckles in the first ECG signal collection box are male buckles.
  • the method of three electrical contacts can also be used. In this way, the method of three point contacts is also used in the corresponding ECG signal collection box.
  • the first ECG signal collection box receives the ECG signals transmitted from the three ECG collection electrodes through the second ECG signal collection base
  • the first ECG signal collection box collects the signals, filters, amplifies, and removes the signals. After the noise, it is transmitted to the back-end platform (mobile APP, supporting host, etc.) wirelessly in real time or in a centralized manner for analysis and storage, and backup can also be stored in the local memory.
  • the back-end platform mobile APP, supporting host, etc.
  • the first ECG signal collecting seat 320 can be arranged on the front side of the chest, and the first ECG signal collecting seat 320 can be collected by collecting the ECG on the opposite side of the first ECG signal collecting seat 320.
  • the wires connected to the female electrode buckles are bypassed from the back of the monitoring suit and connected to the corresponding electrode buckles on the first ECG signal collecting base 320 .
  • ECG monitoring suit shown in Figure 3 can continuously monitor ECG signals even when the user is active during the day, eliminating the possibility that the electrode straps of the monitoring suit shown in Figure 1 cannot fit the user's body well in the standing state. defect.
  • FIG. 4 is a schematic front view of an ECG monitoring suit according to a third exemplary embodiment of the present invention.
  • the difference between the embodiment shown in FIG. 4 and the embodiment shown in FIG. 1 is that a group of ECG acquisition components are added to the front of the monitoring suit.
  • the ECG monitoring suit further includes a first ECG collecting electrode female buckle 411 , a second ECG collecting electrode female buckle 412 and a third ECG collecting electrode female buckle 413 .
  • the first ECG collecting electrode female buckle 411 and the second ECG collecting electrode female buckle 412 are used as a pair of differential signal electrodes, which are respectively arranged at the upper and lower ends of the inner side of the ECG monitoring suit corresponding to the position of the human heart, so as to pass the corresponding
  • the first and second removable ECG electrode pads (not shown) acquire differential ECG signals at the upper and lower ends of the human heart position.
  • the first ECG collecting electrode female buckle 411 is arranged as a differential signal electrode on the inside of the monitoring suit 100 and above the position of the human heart, and is fastened with the male buckle of the first removable ECG electrode sheet, thereby Obtain the ECG signal collected by the first removable ECG electrode pad.
  • the second ECG collecting electrode female buckle 412 is arranged as another differential signal electrode inside the monitoring suit below the position corresponding to the human heart, and is fastened with the male buckle of the second removable ECG electrode sheet, so as to obtain the second removable ECG electrode. Remove the ECG signal collected by the ECG electrode pads.
  • the third ECG collecting electrode female buckle 413 is used as a reference electrode, and is fastened with the male buckle of the third removable ECG electrode sheet, so as to obtain the reference ECG signal collected by the third removable ECG electrode sheet.
  • a second ECG signal collecting base 420 is also arranged, which is located on the outside of the monitoring suit at a different position from the first, second and third ECG collecting electrodes, for example, at the center of the chest on the front of the monitoring suit.
  • the second ECG signal collecting base 420 includes three electrode buttons, such as a first electrode button 421 , a second electrode button 422 and a third electrode button 423 as shown in FIG. 4 .
  • the side of the first electrode button 421 facing the inner side of the monitoring suit is connected to the first ECG collecting electrode female button 411 through the first wire 431 embedded in the monitoring suit, and the side of the second electrode button 422 facing the inner side of the monitoring suit is buried through insulation.
  • the second wire 432 implanted in the monitoring suit is connected to the second ECG collecting electrode female buckle 412, and the third electrode buckle 423 is connected to the third wire 433 embedded in the monitoring suit through insulation on the side of the third electrode buckle 423 facing the inner side of the monitoring suit.
  • the ECG collecting electrode female buckle 413 is connected.
  • the first ECG collecting electrode female buckle 411 , the second ECG collecting electrode female buckle 412 and the third ECG collecting electrode female buckle 413 respectively connect the removable ECG electrode pads from the body surface through their respective connected wires.
  • the collected ECG signals are transmitted to the corresponding first electrode buckles 421 , second electrode buckles 422 and third electrode buckles 423 on the second ECG signal collecting base 420 .
  • a pair of corresponding second ECG signal collection boxes are buckled on the second ECG signal collection base 420 , and the second ECG signal collection box has the first electrode buckle 421 , the first electrode buckle 421 and the second ECG signal collection box.
  • the electrode buttons corresponding to the second electrode button 422 and the third electrode button 423 are male buckles, the electrode buckles in the second ECG signal collection box are female buckles.
  • the electrode buckles in the second ECG signal collection box are male buckles.
  • the second ECG signal collecting base 420 includes three electrode buckles, the method of three electrical contacts can also be used.
  • the method of three point contacts is also used in the corresponding ECG signal collection box.
  • the second ECG signal collection box receives the ECG signals transmitted from the three ECG collection electrodes through the second ECG signal collection base
  • the second ECG signal collection box collects the signals, filters, amplifies, and removes the signals.
  • the noise After the noise, it is transmitted to the back-end platform (mobile APP, supporting host, etc.) wirelessly in real time or in a centralized manner for analysis and storage, and backup can also be stored in the local memory.
  • the back-end platform mobile APP, supporting host, etc.
  • the second ECG signal collection base 420 is used here, it is also possible to directly connect the second ECG signal collection base 420 and the first ECG signal collection base 120 instead of using a separate second ECG signal collection base 420 . Two in one.
  • the user can achieve better ECG monitoring by using one monitoring suit according to the needs of his own posture.
  • the objects of the present disclosure can also be achieved by running a program or set of programs on any computing device.
  • the computing device may be a known general purpose device. Therefore, the objects of the present disclosure can also be achieved merely by providing a program product containing program code for implementing the method or apparatus. That is, such a program product also constitutes the present disclosure, and a storage medium in which such a program product is stored also constitutes the present disclosure.
  • the storage medium can be any known storage medium or any storage medium developed in the future.
  • each component or each step can be decomposed and/or recombined. These disaggregations and/or recombinations should be considered equivalents of the present disclosure. Also, the steps of executing the above-described series of processes can naturally be executed in chronological order in the order described, but need not necessarily be executed in chronological order. Certain steps may be performed in parallel or independently of each other.

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Abstract

L'invention concerne un vêtement de surveillance d'électrocardiogramme (100), comprenant : une première électrode d'acquisition d'électrocardiogramme (111, 311) utilisée en tant qu'électrode de signal différentiel et agencée au niveau de la partie supérieure du côté interne du vêtement de surveillance correspondant à la position d'un coeur humain ; une deuxième électrode d'acquisition d'électrocardiogramme (112, 312) utilisée comme autre électrode de signal différentiel et agencée au niveau de la partie inférieure du côté interne du vêtement de surveillance correspondant à la position du coeur humain ; une troisième électrode d'acquisition d'électrocardiogramme (113, 313) utilisée comme électrode de référence et disposée à une position au-dessous de la seconde électrode sur le côté interne du vêtement de surveillance ; et un premier siège d'acquisition de signal d'électrocardiographie (120, 320) disposé à une position différente de celles des première, deuxième et troisième électrodes d'acquisition d'électrocardiogramme sur le côté externe du vêtement de surveillance, et comprenant trois boutons d'électrode, les trois boutons d'électrode étant connectés respectivement et de manière correspondante aux première, deuxième et troisième électrodes d'acquisition d'électrocardiogramme au moyen de fils isolés et intégrés dans le vêtement de surveillance, de façon à transmettre des signaux d'électrocardiographie obtenus à partir des première, deuxième et troisième électrodes d'acquisition d'électrocardiogramme à une première boîte d'acquisition de signal d'électrocardiographie bouclée sur le premier siège d'acquisition de signal d'électrocardiographie (120, 320).
PCT/CN2021/115187 2021-02-18 2021-08-29 Vêtement de surveillance d'électrocardiogramme WO2022174568A1 (fr)

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WO2023044667A1 (fr) * 2021-09-23 2023-03-30 Fibret (Shanghai) Smart Technology Co., Ltd. Vêtement de surveillance du sommeil et système de surveillance du sommeil

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