CN110051326A - A kind of detection of electrons patch and measuring device based on class skin matrix - Google Patents

A kind of detection of electrons patch and measuring device based on class skin matrix Download PDF

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Publication number
CN110051326A
CN110051326A CN201910253356.9A CN201910253356A CN110051326A CN 110051326 A CN110051326 A CN 110051326A CN 201910253356 A CN201910253356 A CN 201910253356A CN 110051326 A CN110051326 A CN 110051326A
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CN
China
Prior art keywords
patch
conductive film
detection
electrons
patch conductive
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Pending
Application number
CN201910253356.9A
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Chinese (zh)
Inventor
程寰宇
邱东海
杨洪波
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Yongkang Guoke Rehabilitation Engineering Technology Co Ltd
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Yongkang Guoke Rehabilitation Engineering Technology Co 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.)
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Priority to CN201910253356.9A priority Critical patent/CN110051326A/en
Publication of CN110051326A publication Critical patent/CN110051326A/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/24Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
    • 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

Abstract

The present invention discloses a kind of detection of electrons patch and measuring device based on class skin matrix, wherein the detection of electrons patch based on class skin matrix includes: the first flexible substrate;First patch conductive film, the second patch conductive film and third patch conductive film, it is separately positioned on the first flexible substrate, pass through waveform microstructure brazing between first patch conductive film, the second patch conductive film and third patch conductive film, and the first patch conductive film, the second patch conductive film and third patch conductive film include regularly arranged multiple topological structures, also by waveform microstructure brazing between each node of topological structure;Second flexible substrate is encapsulated on the first patch conductive film, the second patch conductive film and third patch conductive film.Flexible electronic detection patch of the present invention is contacted using waveform micro-structure, it can be achieved that being bonded completely with the skin of user, so that user feels comfortable, and can detect the electricity physiological signal of user for a long time.

Description

A kind of detection of electrons patch and measuring device based on class skin matrix
Technical field
The present invention relates to field of biomedicine technology, and in particular to a kind of detection of electrons patch based on class skin matrix and Measuring device.
Background technique
Biological integrated-optic device can be used for integrating various sensors or electronics diagnosing and treating apparatus, by with human skin It is in close contact, can measure the electricity physiological signal of human body, which may be used as the diagnosis of clinical practice and/or control It treats.
Biological integrated electronic detection device traditional at present generally passes through the immobilising devices such as cap or belt or adhesive tape will be electric Solution matter gel electrode or metal electrode are fixed on human skin, since the metal electrode of electrolyte gel electrode and rigidity is direct It is contacted with human skin, it is easy to allergic reaction be caused to human skin, and during human motion, electrode and fixation There are certain air gaps between device, so, by the fixed electrode of cap, belt or adhesive tape, so that electrode and human skin Contact, not only it is difficult to ensure that electrode is fitted on human skin completely, and then causes the detection accuracy of electricity physiological signal poor, and And by the fixed electrode of immobilising device, human skin can be made to generate discomfort.
Summary of the invention
Therefore, the embodiment of the invention provides a kind of detection of electrons patches based on class skin matrix, to solve existing skill Biological integrated electronic detection device in art is contacted by immobilising device with human skin, and human skin is not only be easy to cause Allergic reaction, and it is easy to cause human skin to generate discomfort, and then cause the detection accuracy of electricity physiological signal also poor The problem of.
For this purpose, the embodiment of the invention provides following technical solutions:
According in a first aspect, the embodiment of the invention provides a kind of detection of electrons patch based on class skin matrix, first Flexible substrate;First patch conductive film, the second patch conductive film and third patch conductive film, it is soft to be separately positioned on described first Property matrix on, for the skin contact by first flexible substrate and user, and then the electricity for detecting the user is raw Manage signal;Pass through wave between the first patch conductive film, the second patch conductive film and the third patch conductive film Shape microstructure brazing, and the first patch conductive film, the second patch conductive film and the third patch conductive film include Regularly arranged multiple topological structures, also by the waveform microstructure brazing between each node of the topological structure; Second flexible substrate is encapsulated on the first patch conductive film, the second patch conductive film and the third patch conductive film.
With reference to first aspect, in first aspect first embodiment, the topological structure is triangle topology structure, structure Each side at the triangle topology structure is the waveform micro-structure.
With reference to first aspect, in first aspect second embodiment, the topological structure is square topologies structure, described Each side of square topologies structure is the waveform micro-structure.
With reference to first aspect, in first aspect third embodiment, the wave crest or trough of the waveform micro-structure are Default radian.
With reference to first aspect, in the 4th embodiment of first aspect, the waveform micro-structure has predetermined width.
With reference to first aspect, in the 5th embodiment of first aspect, the first patch conductive film is measuring electrode, institute Stating the second patch conductive film is grounding electrode, and the third patch conductive film is reference electrode.
5th embodiment with reference to first aspect, it is conductive in second patch in first aspect sixth embodiment Engagement pad is provided on film, the engagement pad is exposed at the outside of first flexible substrate Yu second flexible substrate.
With reference to first aspect, in the 7th embodiment of first aspect, first flexible substrate and second flexibility Matrix is made of transparent insulation dielectric layer.
According to second aspect, the embodiment of the present invention provides a kind of measuring device, including any one of the above embodiment institute The detection of electrons patch based on class skin matrix stated.
Technical solution of the embodiment of the present invention, has the advantages that
The present invention provides a kind of detection of electrons patch and measuring device based on class skin matrix, wherein being based on class skin base The detection of electrons patch of body includes: the first flexible substrate;First patch conductive film, the second patch conductive film and third patch are conductive Film is separately positioned on the first flexible substrate, the first patch conductive film, the second patch conductive film and third patch conductive film it Between by waveform microstructure brazing, and the first patch conductive film, the second patch conductive film and third patch conductive film include rule The multiple topological structures then arranged, also by waveform microstructure brazing between each node of topological structure;Second flexible base Body is encapsulated on the first patch conductive film, the second patch conductive film and third patch conductive film.Flexible electronic detection patch of the present invention Piece is contacted using waveform micro-structure, it can be achieved that being bonded completely with the skin of user, so that user feels comfortable, and energy Enough electricity physiological signals for detecting user for a long time.
Detailed description of the invention
It, below will be to specific in order to illustrate more clearly of the specific embodiment of the invention or technical solution in the prior art Embodiment or attached drawing needed to be used in the description of the prior art be briefly described, it should be apparent that, it is described below Attached drawing is some embodiments of the present invention, for those of ordinary skill in the art, before not making the creative labor It puts, is also possible to obtain other drawings based on these drawings.
Fig. 1 is the structural schematic diagram of biopolymer in the embodiment of the present invention;
Fig. 2 is the first structure diagram of the detection of electrons patch based on class skin matrix in the embodiment of the present invention;
Fig. 3 is the circuit connection diagram of flexible patch conductive film in the embodiment of the present invention;
Fig. 4 is the schematic diagram of intermediate cam of embodiment of the present invention shape topological structure;
Fig. 5 A is the schematic diagram of rectangular topological structure in the embodiment of the present invention;
Fig. 5 B is the schematic diagram of diamond shape topological structure in the embodiment of the present invention;
Fig. 6 is the enlarged diagram of medium wave of embodiment of the present invention shape wave micro-structure;
Fig. 7 A is the measuring signal schematic diagram of traditional electrode in the embodiment of the present invention;
Fig. 7 B is the measuring signal schematic diagram of the detection of electrons patch based on class skin matrix in the embodiment of the present invention.
Appended drawing reference:
The first flexible substrate of 21-;The second flexible substrate of 22-;23- the first patch conductive film;
24- the second patch conductive film;25- third patch conductive film;26- engagement pad.
Specific embodiment
In order to make the object, technical scheme and advantages of the embodiment of the invention clearer, below in conjunction with the embodiment of the present invention In attached drawing, technical scheme in the embodiment of the invention is clearly and completely described, it is clear that described embodiment is A part of the embodiment of the present invention, instead of all the embodiments.Based on the embodiments of the present invention, those skilled in the art are not having Every other embodiment obtained under the premise of creative work is made, shall fall within the protection scope of the present invention.
Embodiment 1
The composite material of hard and the soft structures composition found in biology provides spirit for building novel synthetic material Sense.Fig. 1 is the structural schematic diagram of biopolymer.As shown in Figure 1, the solid line for connecting each solid dot indicates the glue in biosystem Former albumen and elastin laminin, these collagens and elastin laminin are filled in biological tissue, and biological tissue is made to have elasticity.It is logical The structure of imitated biological tissue is crossed, flexible bionic object structure can be constructed, to realize the mechanicalness to skin or biological tissue The simulation of energy, enables flexible bionic object structure and the Nonlinear extension performance of skin or biological tissue to match.
The combination flexible bionic object structure of detection of electrons patch based on class skin matrix in the embodiment of the present invention can be with The Nonlinear extension performance of skin or biological tissue matching, as shown in Fig. 2, specifically including: the first flexible substrate 21, first patch Piece conductive film 23, the second patch conductive film 24, third patch conductive film 25 and the second flexible substrate 22, wherein the first patch is led Electrolemma 23, the second patch conductive film 24 and third patch conductive film 25 are located at the first flexible substrate 21, the second flexible substrate Between 22.The detection of electrons patch based on class skin matrix in the present embodiment can be used for detecting fetal heartbeat signal.
First flexible substrate 21, contacts for the skin attachement with user, and the first flexible substrate 21 herein is using saturating Bright insulation dielectric layer, first flexible substrate 21 with a thickness of 5 μm, itself have certain tensility.
First patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25, are separately positioned on first On flexible substrate 21, for the skin contact by the first flexible substrate 21 and user, and then the electro physiology of user is detected Signal.Wherein, the first patch conductive film 23 is used as measuring electrode, and the second patch conductive film 24 is used as grounding electrode, third patch Conductive film 25 is used as reference electrode.Due to the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 It is located between the first flexible substrate 21 and the second flexible substrate 22, and the first flexible substrate 21 is for the skin with user Contact, so, in Fig. 2, the first patch conductive film 23 constitutes first etc. with the skin of user and the first flexible substrate 21 Capacitor is imitated, the skin and the first flexible substrate 21 of third patch conductive film 25 and user also constitute the second equivalent capacity, the One equivalent capacity constitutes capacitor loop after connecting with the second equivalent capacity and external circuit, in Fig. 2, representation in dotted line frame First equivalent capacity and the second equivalent capacity, constitute capacitor loop after connecting with external circuit, which can be equivalent to The right circuit structure in Fig. 2.Therefore, the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25, By the skin contact of the first flexible substrate 21 and user, and then detect the electricity physiological signal of user.Electro physiology herein Signal (EP) respectively includes ECG signal (ECG), electromyogram signal (EMG) and electro-oculogram signal (EOG), it is, of course, also possible to For other electricity physiological signals (EP), different electricity physiological signals is measured, the detection of electrons patch based on class skin matrix will be with The skin attachement of user's different parts contacts.
In a specific embodiment, the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film By waveform microstructure brazing between 25, as shown in figure 3, for the first patch conductive film 23, the second patch conductive film 24 and the The circuit connection diagram of three patch conductive films 25, a patch conductive film 23, the second patch conductive film 24 and third in Fig. 3 By waveform microstructure brazing between patch conductive film 25, which can be enhanced draftability.
In a specific embodiment, the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 include regularly arranged multiple topological structures, is connected between each node of each topological structure also by waveform micro-structure It connects.Multiple topological structures herein are triangle topology structure, as shown in figure 4, each side for constituting triangle topology structure is Waveform micro-structure, in Fig. 4, the structure in dotted line frame is a triangle topology structure.
In a specific embodiment, the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 include regularly arranged multiple topological structures, is connected between each node of each topological structure also by waveform micro-structure It connects.As shown in figs. 5 a-b, multiple topological structures herein are square topologies structure or diamond shape topological structure, in fig. 5, side Each side of shape topological structure is waveform micro-structure, and the structure in dotted line frame is a square topologies structure, in figure 5B, water chestnut Each side of shape topological structure is waveform micro-structure, and the structure in dotted line frame is a diamond shape topological structure.Certainly, this implementation Topological structure in example further includes other kinds of topological structure, is not limited.
In Fig. 6, be Fig. 4, Fig. 5 A, in Fig. 5 B each waveform micro-structure enlarged diagram, waveform micro-structure Wave crest or trough are default radian, which has predetermined width.Default radian is θ, and wavy radius is R, predetermined width W, the predetermined width in the present embodiment is preferably 30 μm.
In a specific embodiment, it is conductive to be encapsulated in the first patch conductive film 23, the second patch for the second flexible substrate 22 On film 24 and third patch conductive film 25.The second flexible substrate 22 herein is also to be made of transparent insulation dielectric layer.Herein The material of insulation dielectric layer can be silica gel material, or the insulation of the material of other dielectric constants with higher is selected to be situated between Electric layer.
In a specific embodiment, engagement pad 26 is provided on the second patch conductive film 24, engagement pad 26 is exposed at The outside of first flexible substrate 21 and the second flexible substrate 22.
In a specific embodiment, in Fig. 2, the skin contact of the first flexible substrate 21 and user, the first patch Conductive film 23 and third patch conductive film 25 constitute equivalent capacity with the skin of user respectively.
In Fig. 2, the detection of electrons patch based on class skin matrix in the embodiment of the present invention, the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 are coupled to skin by the first flexible substrate 21.It should be based on class skin The detection of electrons patch of skin matrix is equivalent to sensor, displacement current (Jdrε0DE (t) dt, wherein εrIt is opposite Jie of material Electric constant, ε0It is permittivity of vacuum, E (t) is time-varying electric field) incude in the flexible patch conductive film close to skin, so, First patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 do not connect with the skin of user directly Touching, but charge transmission is carried out indirectly, and then detects the electricity physiological signal (EP) of user.In the present embodiment based on class skin Coarse with user and irregular surface skin contact may be implemented in the detection of electrons patch of skin matrix, and elasticity modulus is 20kPa, the Elasticity of the low modulus also avoid any restrictions to user's skin proper motion.Base in the present embodiment Three flexible patch conductive films are depended in the structure of the detection of electrons patch of class skin matrix, it is relevant with silicone insulation Waveform micro-structure (interconnection line) and anisotropic conductive film (ACF) are connected to peripheral contacts pad 26 (pad) to carry out external number According to acquisition.This layout minimizes the bending stress in active material, and for the exposure of engagement pad 26 to allow in conjunction with ACF, ACF will Three flexible patch conductive films are connected to measuring circuit to carry out signal acquisition.According to the finite element analysis of mechanics, structure is drawn Extend to about 30% elongation strain (elastic deformation limit of skin causes the maximum principal strain in metal to be only 0.8%, be less than Au 1% breaking strain).
The detection of electrons patch based on class skin matrix in the embodiment of the present invention passes through the first flexible substrate 21 and use The skin contact of person, and then detected using the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 The electricity physiological signal of user, since the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 are adopted Made with multiple regularly arranged topological structures, and between each node of each topological structure by waveform microstructure brazing The spring function for obtaining the first patch conductive film 23, the second patch conductive film 24 and third patch conductive film 25 increases, stretchable Property preferably contacts, it can be achieved that being bonded completely with the skin of user, also, user is made to feel more satisfied comfort, The electricity physiological signal of user can be detected for a long time.
Embodiment 2
The embodiment of the present invention provides a kind of electricity physiological signal measurement method, in embodiment 1 based on class skin matrix Detection of electrons patch, specifically comprise the following steps:
Detection of electrons patch based on class skin is placed in water-soluble polymer by the first step.By Double-layer flexible matrix The detection of electrons patch based on class skin for the composite material being related to, which is placed in water-soluble polymer, provides interim supporting function. Water-soluble polymer herein is also known as water-soluble resin or water soluble polymer, is a kind of hydrophilic high molecular material, in water In can dissolve or be swollen and form solution or dispersion liquid.So flexible electronic detection patch is placed in water-soluble polymer, In order to enhance its hydrophily, and then enhance the viscosity of flexible electronic detection patch.Water-soluble polymer in the present embodiment can be with For polyvinyl alcohol (PVA).Water-soluble polymer herein can be water-soluble adhesive tape.The polyvinyl alcohol (PVA) is insulating materials, Its dielectric constant with higher, and there is biggish draftability and big adhesive force, it can be achieved that strong signal couple, adaptation Skin deformation, and firm viscosity is formed on the skin.
Detection of electrons patch based on class skin is placed on the predetermined patterns of user by second step.Predetermined patterns packet Include heartbeat position and/or muscle sites and/or the eyes of class skin.Such as: if using the electricity based on class skin matrix The ECG signal (ECG) of son detection patch detection user, is placed on user for the detection of electrons patch based on class skin Chest, if using based on class skin matrix detection of electrons patch detection user electromyogram signal (EMG), will be based on The detection of electrons patch of class skin is placed on the right forearm of user, if pasted using the detection of electrons based on class skin matrix Piece detects the electro-oculogram signal (EMG) of user, and the detection of electrons patch based on class skin is placed on to the eyes skin of user On skin region.
Third step is sprayed onto the back that water-soluble polymer is dissolved on the detection of electrons patch based on class skin using clear water Lining measures the electricity physiological signal of the predetermined patterns so that the detection of electrons based on class skin is fitted on predetermined patterns.By water The purpose of the back sheet dissolution of soluble polymer is so that ultra-thin detection of electrons patch and user based on class skin are pre- If the skin at position is bonded contact completely, if fitting is bad, will lead in the EEG signals of user there are high background noise, So needing to examine at flexible electronic patch conductive film for successfully installing the detection of electrons patch based on class skin Water-soluble polymer is completely dissolved critically important.
4th step carries out disinfection sterilizing to the detection of electrons patch based on class skin, in case measuring the pre- of user again If the electricity physiological signal at position.The measurement method of electricity physiological signal in the present embodiment can repeat the shifting for realizing 10 circulations It removes, sterilizes and re-apply the detection of electrons patch based on class skin matrix in embodiment 1.It is different by 70% in the present embodiment Propyl alcohol sterilizes.Such as: if intending to measure the electromyogram signal (EMG) of user in advance, by the present embodiment based on The detection of electrons patch of class skin is placed on the chest of user in advance, after obtaining the EMG signal of user, to current base Carry out disinfection sterilizing in the detection of electrons patch of class skin, then the repeatedly first step, place it in second predetermined patterns into Row measurement electricity physiological signal, so carry out disinfection sterilizing, and the electricity physiological signal for repeatedly measuring user's different parts may be implemented. Therefore, largely, the electricity physiological signal measurement method in the present embodiment can be realized repeatedly to user's different parts Electricity physiological signal measures, and not only takes full advantage of the detection of electrons patch based on class skin matrix, that is, reduces electronics inspection The use cost of patch is surveyed, while being carried out disinfection sterilizing using sterilised object to the detection of electrons patch based on class skin, is also increased Strong electrical security.
Embodiment 3
A kind of measuring device is provided in the embodiment of the present invention, including the electronics based on class skin matrix in embodiment 1 Detect patch.
The detection of electrons patch based on class skin matrix in embodiment 1 is raw as the electricity of the different parts of acquisition user Signal is managed, therefore it collects electricity physiological signal and also needs to amplify by preposition side's amplifier as signal acquisition port, and Low-pass filter is filtered, so, measuring device further includes preamplifier, low-pass filter, analog-digital converter, divides Class device, oscillograph etc..
By using Pearson correlation coefficient (r), can directly by the present embodiment in the detection of electrons of class skin matrix The performance of patch is compared with the performance of conventional conductive gel or the metal electrode of directly contact skin.In the present embodiment Detection of electrons patch based on class skin matrix is prepared in configuration: 1cm × 1cm FS electrode, the area of waveform micro-structure cover Lid rate is 25%, the silicon substrate of the silicon insulating layer of 5 μ m-thicks and 5 μ m-thicks.From the detection of electrons patch based on class skin matrix The ECG signal of the metal electrode of the r ≈ 98% of the ECG signal of piece, very close conventional conductive gel or directly contact skin Value (r ≈ 99%).The major defect of traditional metal electrode is it vulnerable to caused by the variation of the capacitive coupling as caused by movement The influence of pseudomorphism.In order to minimize this influence, electrode must keep being in close contact with skin during movement.Traditional gold Belong to electrode and use rigid electrode, there is lesser air gap, and the base in the present embodiment at electrode and the skin interface of user Thin, the soft and stretchable characteristic possessed by the detection of electrons patch of class skin matrix makes it possible to conformal on bodily surfaces Contact, and skin deformation can be adapted in real time, motion artifacts can be reduced to the maximum extent by coupling with the skin of user.Such as Shown in Fig. 7 A and Fig. 7 B, within the time of 0s-10s, it can be seen that the detection of electrons based on class skin matrix in the present embodiment The EES signal of patch detection is not influenced substantially by noise signal caused by human motion, and traditional electrode is because of human motion Biggish noise signal is generated, therefore, traditional electrode is more obvious to human motion.
Obviously, the above embodiments are merely examples for clarifying the description, and does not limit the embodiments.It is right For those of ordinary skill in the art, can also make on the basis of the above description it is other it is various forms of variation or It changes.There is no necessity and possibility to exhaust all the enbodiments.And it is extended from this it is obvious variation or It changes still within the protection scope of the invention.

Claims (9)

1. a kind of detection of electrons patch based on class skin matrix characterized by comprising
First flexible substrate;
First patch conductive film, the second patch conductive film and third patch conductive film are separately positioned on the described first flexible base On body, for the skin contact by first flexible substrate and user, and then the electro physiology letter of the user is detected Number;
It is micro- by waveform between the first patch conductive film, the second patch conductive film and the third patch conductive film Structure connection, and the first patch conductive film, the second patch conductive film and the third patch conductive film include rule Multiple topological structures of arrangement, also by the waveform microstructure brazing between each node of the topological structure;
Second flexible substrate is encapsulated in the first patch conductive film, the second patch conductive film and the third patch conductive film On.
2. the detection of electrons patch according to claim 1 based on class skin matrix, which is characterized in that the topological structure For triangle topology structure, each side for constituting the triangle topology structure is the waveform micro-structure.
3. the detection of electrons patch according to claim 1 based on class skin matrix, which is characterized in that the topological structure For square topologies structure, each side of the square topologies structure is the waveform micro-structure.
4. the detection of electrons patch according to claim 1 based on class skin matrix, which is characterized in that the waveform is micro- The wave crest or trough of structure are default radian.
5. the detection of electrons patch according to claim 3 based on class skin matrix, which is characterized in that the waveform is micro- Structure has predetermined width.
6. the detection of electrons patch according to claim 1 based on class skin matrix, which is characterized in that first patch Conductive film is measuring electrode, and the second patch conductive film is grounding electrode, and the third patch conductive film is reference electrode.
7. the detection of electrons patch according to claim 6 based on class skin matrix, which is characterized in that in second patch It is provided with engagement pad on piece conductive film, the engagement pad is exposed at the outer of first flexible substrate and second flexible substrate Portion.
8. the detection of electrons patch according to claim 1 based on class skin matrix, which is characterized in that described first is flexible Matrix and second flexible substrate are made of transparent insulation dielectric layer.
9. a kind of measuring device, which is characterized in that including such as the skin matrix of any of claims 1-8 based on class Detection of electrons patch.
CN201910253356.9A 2019-03-29 2019-03-29 A kind of detection of electrons patch and measuring device based on class skin matrix Pending CN110051326A (en)

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103445763A (en) * 2013-08-26 2013-12-18 华中科技大学 Epidermal-electronics-based health monitoring system
CN105326495A (en) * 2015-10-19 2016-02-17 杨军 Method for manufacturing and using wearable flexible skin electrode
CN106463814A (en) * 2014-07-01 2017-02-22 Mc10股份有限公司 Conformal electronic devices
CN106510692A (en) * 2016-11-15 2017-03-22 中国科学院力学研究所 Stretchable flexible electrode and preparation method thereof
CN107887079A (en) * 2016-11-03 2018-04-06 成都柔电云科科技有限公司 The preparation method of epidermis electrode
CN108324274A (en) * 2018-03-14 2018-07-27 浙江大学 A kind of class skin multi-channel surface myoelectric pole and preparation method thereof based on reticular structure design
CN108378844A (en) * 2017-03-21 2018-08-10 成都柔电云科科技有限公司 A kind of portable cardiac detection device and cardioelectric monitor system based on electronics epidermis
CN108553102A (en) * 2018-03-14 2018-09-21 浙江大学 A kind of flexible extensible multichannel convex surface myoelectricity pole and preparation method thereof

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103445763A (en) * 2013-08-26 2013-12-18 华中科技大学 Epidermal-electronics-based health monitoring system
CN106463814A (en) * 2014-07-01 2017-02-22 Mc10股份有限公司 Conformal electronic devices
CN105326495A (en) * 2015-10-19 2016-02-17 杨军 Method for manufacturing and using wearable flexible skin electrode
CN107887079A (en) * 2016-11-03 2018-04-06 成都柔电云科科技有限公司 The preparation method of epidermis electrode
CN106510692A (en) * 2016-11-15 2017-03-22 中国科学院力学研究所 Stretchable flexible electrode and preparation method thereof
CN108378844A (en) * 2017-03-21 2018-08-10 成都柔电云科科技有限公司 A kind of portable cardiac detection device and cardioelectric monitor system based on electronics epidermis
CN108324274A (en) * 2018-03-14 2018-07-27 浙江大学 A kind of class skin multi-channel surface myoelectric pole and preparation method thereof based on reticular structure design
CN108553102A (en) * 2018-03-14 2018-09-21 浙江大学 A kind of flexible extensible multichannel convex surface myoelectricity pole and preparation method thereof

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
QIANG MA ET AL.: "A nonlinear mechanics model of bio-inspired hierarchical lattice materials consisting of horseshoe microstructures", 《JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS》 *

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Application publication date: 20190726