JP2011036524A - Electrode for living body - Google Patents

Electrode for living body Download PDF

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JP2011036524A
JP2011036524A JP2009188222A JP2009188222A JP2011036524A JP 2011036524 A JP2011036524 A JP 2011036524A JP 2009188222 A JP2009188222 A JP 2009188222A JP 2009188222 A JP2009188222 A JP 2009188222A JP 2011036524 A JP2011036524 A JP 2011036524A
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living body
electrode
detection unit
biological
contact
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JP5434356B2 (en
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Yosuke Sakao
要祐 坂尾
Mariko Kato
真理子 加藤
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NEC Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an electrode for a living body which makes close contact with a living body regardless of a region to be measured. <P>SOLUTION: The electrode 100 for a living body is configured to cover the circumference of a holding part 20 having a resilience and a thickness such as a sponge with a detecting part 10 having conductive properties and flexibility such as a fabric made of a conductive fiber for detecting the difference in electrical potentials of the living body. In addition, the electrode 100 is disposed inside clothes to make contact with the living body. The holding part 20 and the detecting part 10 have elasticity and flexibility to keep the contact between the living body and the detecting part 10. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、生体情報を計測するための生体用電極に関する。   The present invention relates to a biological electrode for measuring biological information.

筋電位や皮膚表面電気抵抗などの電気活動や生体情報を計測するために、皮膚表面に接触させる生体用電極が知られている。例えば、特許文献1では、衣服や肌着に取り付けられた生体用電極により、生体情報を計測する方法が開示されている。   In order to measure electrical activity such as myoelectric potential and skin surface electrical resistance and biological information, biological electrodes that are brought into contact with the skin surface are known. For example, Patent Document 1 discloses a method of measuring biological information using biological electrodes attached to clothes or underwear.

特開2002−035141号公報JP 2002-035141 A

しかしながら、特許文献1に開示されている構成では、生体情報を計測する部位によっては、生体用電極を皮膚などの生体に密着させることが困難な場合があった。従って、測定する部位によらず、生体用電極を生体に密着させるために好適な新たな方法が求められている。   However, in the configuration disclosed in Patent Document 1, it may be difficult to make the living body electrode adhere to a living body such as skin depending on the part where the biological information is measured. Accordingly, there is a need for a new method suitable for bringing the living body electrode into close contact with the living body regardless of the site to be measured.

本発明は、上記問題点に鑑みてなされたものであり、測定する部位によらずに生体に密着する生体用電極を提供することを目的とする。   The present invention has been made in view of the above problems, and an object of the present invention is to provide a living body electrode that is in close contact with a living body regardless of a site to be measured.

上記目的を達成するため、本発明の第1の観点に係る生体用電極は、
生体に接触し、当該生体の電位を検出する検出部と、
前記生体に接触するように前記検出部を押圧して、当該生体と当該検出部との接触を保持する保持部と、を備えることを特徴とする。
In order to achieve the above object, a biomedical electrode according to the first aspect of the present invention comprises:
A detection unit that contacts the living body and detects the potential of the living body;
And a holding unit that holds the contact between the living body and the detection unit by pressing the detection unit so as to contact the living body.

本発明によれば、生体情報を測定することができる。   According to the present invention, biological information can be measured.

本発明の実施形態に係る生体用電極の構成を示す斜視図である。It is a perspective view which shows the structure of the biomedical electrode which concerns on embodiment of this invention. 生体用電極を生体接触面側から見た斜視図である。It is the perspective view which looked at the electrode for living bodies from the living body contact surface side. 生体用電極の配線状態を示す図である。It is a figure which shows the wiring state of the electrode for biological bodies. 生体用電極を衣服に取り付ける取付例を示す図である。It is a figure which shows the example of attachment which attaches the electrode for biological bodies to clothes. 生体用電極を衣服に固定する例を示す図である。It is a figure which shows the example which fixes the biomedical electrode to clothes.

以下、本発明の実施形態に係る生体用電極について説明する。図1及び図2は、本発明の実施の形態に係る生体用電極100の構成例を示す図である。図1及び図2に示すように、生体用電極100は、検出部10と、保持部20と、接続部30等と、から構成される。   Hereinafter, a biological electrode according to an embodiment of the present invention will be described. 1 and 2 are diagrams showing a configuration example of a biological electrode 100 according to an embodiment of the present invention. As shown in FIGS. 1 and 2, the biological electrode 100 includes a detection unit 10, a holding unit 20, a connection unit 30, and the like.

検出部10は、生体の電位を検出して、筋肉の筋電位等の生体情報を測定する。検出部10は、生体と接触する接触面12と導線等が接続される接続面11とを備える。接続面11側には、導線等が接続される接続部30があり、当該接続部30を通じて、検出部10に電力が供給され、また、検出部10が検出した生体情報が後述する測定装置40に渡される。   The detection unit 10 detects the biological potential and measures biological information such as muscle myoelectric potential. The detection unit 10 includes a contact surface 12 that comes into contact with a living body and a connection surface 11 to which a conducting wire or the like is connected. On the connection surface 11 side, there is a connection part 30 to which a conducting wire or the like is connected, power is supplied to the detection part 10 through the connection part 30, and biological information detected by the detection part 10 is described later. Passed to.

検出部10は、生体の電位を検出するために、接触面12側の一部又は全部に電極を備える。検出部10は、例えば、腕の筋肉の筋電位を検出することができるが、腕に限定されず、任意の部位の電位や生体情報を検出・測定することができる。生体用電極100で検出される電位変化は数10μV〜数mVであり、筋電位の周波数帯は2kHz〜10kHzである。   The detection unit 10 includes electrodes on a part or all of the contact surface 12 side in order to detect the potential of the living body. For example, the detection unit 10 can detect the myoelectric potential of the muscle of the arm, but is not limited to the arm, and can detect and measure the potential and biological information of an arbitrary part. The potential change detected by the biological electrode 100 is several tens of μV to several mV, and the frequency band of the myoelectric potential is 2 kHz to 10 kHz.

検出部10は、生体への密着性をよくするために、可撓性、もしくは、柔軟性を有する素材で形成される。また、接触面12は、導電性を有する素材で形成される。このため、検出部10は、例えば、導電性繊維の布から形成される。   The detection unit 10 is formed of a material having flexibility or flexibility in order to improve adhesion to a living body. The contact surface 12 is formed of a conductive material. For this reason, the detection part 10 is formed from the cloth of a conductive fiber, for example.

検出部10は、図1及び図2に示すように、後述する保持部20の周囲を覆うように、例えば、筒状や球状に形成される。検出部10は、内包された保持部20から押圧されるため、一定以上の弾性と厚さとを備える。このため、検出部10と生体との密着が保持される。   As shown in FIGS. 1 and 2, the detection unit 10 is formed in, for example, a cylindrical shape or a spherical shape so as to cover the periphery of a holding unit 20 described later. Since the detection unit 10 is pressed from the included holding unit 20, the detection unit 10 has a certain level of elasticity and thickness. For this reason, the close contact between the detection unit 10 and the living body is maintained.

なお、検出部10の数、検出部10と生体との接触方法、及び、接触部位は任意である。   In addition, the number of the detection parts 10, the contact method of the detection part 10 and a biological body, and a contact part are arbitrary.

保持部20は、検出部10に内包されるように構成される。保持部20は、例えば、スポンジ、綿、ゴム、バネ、ウレタン、ゲル、液体もしくは気体を内包する物質、また、パウダービーズなどの粉末等の、所定以上の弾性を備える素材で形成される。   The holding unit 20 is configured to be included in the detection unit 10. The holding unit 20 is formed of a material having elasticity of a predetermined level or more, such as a sponge, cotton, rubber, spring, urethane, gel, a substance containing liquid or gas, or powder such as powder beads.

保持部20は、押圧する検出部10が所定以上の厚さになるように一定以上の厚みを備える。検出部10及び保持部20は柔軟性及び弾性を備えるため、検出部10と生体との密着性が保持される。   The holding | maintenance part 20 is provided with thickness more than fixed so that the detection part 10 to press becomes thickness more than predetermined. Since the detection unit 10 and the holding unit 20 have flexibility and elasticity, the adhesion between the detection unit 10 and the living body is held.

保持部20は、導電性スポンジや導電性ゲルなどの導電性素材で形成されてもよい。検出部10の接触面12の導電性が弱いために、生体の電気活動を接続部30に充分に送れない場合であっても、保持部20が導電性の素材であれば導電性を補うことができる。   The holding part 20 may be formed of a conductive material such as a conductive sponge or a conductive gel. Even if the electrical activity of the living body cannot be sufficiently sent to the connection unit 30 due to the weak conductivity of the contact surface 12 of the detection unit 10, the conductivity should be compensated if the holding unit 20 is a conductive material. Can do.

なお、保持部20は、複数の素材を組み合わせた素材で形成することもできる。   In addition, the holding | maintenance part 20 can also be formed with the raw material which combined the several raw material.

接続部30は後述する導線50が接続され、接続部30及び導線50を通じて、データの送受信や電力の供給が行われる。導線50が引っ張られるなどして接続部30に外力が負荷される場合であっても、接続部30と導線50との接続が維持されるように、接続部30は、所定以上の強度を有する。   The connecting portion 30 is connected to a conducting wire 50 described later, and data is transmitted and received and power is supplied through the connecting portion 30 and the conducting wire 50. Even when an external force is applied to the connecting portion 30 by pulling the conducting wire 50 or the like, the connecting portion 30 has a predetermined strength or more so that the connection between the connecting portion 30 and the conducting wire 50 is maintained. .

図3は、生体用電極100の配線状態を示す図である。同図に示すように、生体用電極100と測定装置40とは導線50により接続され、生体用電極100が備える検出部10が検出した電位を示す情報が、導線50を通じて、測定装置40に送られる。また、測定装置40から生体用電極100に電力が供給される。   FIG. 3 is a diagram illustrating a wiring state of the biological electrode 100. As shown in the figure, the biological electrode 100 and the measuring device 40 are connected by a conducting wire 50, and information indicating the potential detected by the detection unit 10 included in the living body electrode 100 is sent to the measuring device 40 through the conducting wire 50. It is done. In addition, power is supplied from the measuring device 40 to the biological electrode 100.

測定装置40は、CPU(図示せず)、メモリ(図示せず)等を備え、検出部10が検出した電位を測定する。CPUは、メモリ等に記憶されるプログラムやデータに基づいて、指示やデータの転送等を行い、生体用電極100及び測定装置40を制御する。また、CPUは、生体用電極100により連続的に測定される電位(検出結果)に基づいて筋肉の活動状態(生体活動に関する指標データ)を算出し、算出結果を測定装置40に送信する処理を実行する。   The measurement device 40 includes a CPU (not shown), a memory (not shown), and the like, and measures the potential detected by the detection unit 10. The CPU controls the living body electrode 100 and the measurement device 40 by performing instructions and data transfer based on programs and data stored in a memory or the like. Further, the CPU calculates a muscle activity state (index data related to life activity) based on a potential (detection result) continuously measured by the living body electrode 100 and transmits the calculation result to the measurement device 40. Execute.

また、図3に示すように、一対の生体用電極100と測定装置40とが接続されて、測定装置40において、各生体用電極100で検出された電位から電位差が測定される。一般に、生体のインピーダンスは非常に高いため、検出された電位差はインピーダンスに変換される。そして、増幅器等により、電圧が増幅されて、筋電波形が処理される。また、増幅された波形には様々な雑音(ノイズ)が重畳されているため、所定のフィルタにより範囲外の周波数成分が除去される。   Further, as shown in FIG. 3, a pair of living body electrodes 100 and a measuring device 40 are connected, and the measuring device 40 measures a potential difference from the potential detected by each living body electrode 100. In general, since the impedance of a living body is very high, the detected potential difference is converted into impedance. Then, the voltage is amplified by an amplifier or the like, and the myoelectric waveform is processed. Further, since various noises (noise) are superimposed on the amplified waveform, frequency components outside the range are removed by a predetermined filter.

なお、CPUにおいて、算出される生体活動に関する指標データとしては、例えば、整流化平均値(ARV:Averaged Rectified Value)、RMS(Root Mean Square Value)、積分値、平均周波数(MPF:Mean Power Frequency)、メジアン周波数(Median Frequency)等が挙げられるが、算出される生体活動に関する指標データはここに例示したものに限定されない。   In addition, in CPU, as index data regarding the calculated biological activity, for example, rectified average value (ARV), RMS (Root Mean Square Value), integral value, average frequency (MPF: Mean Power Frequency) , Median frequency, and the like, but the index data relating to the calculated biological activity is not limited to those exemplified here.

導線50は、生体用電極100が備える接続部30と測定装置40とを接続する。導線50を通じて、測定装置40から生体用電極100に電力が供給され、また、生体用電極100が備える検出部10が検出した電位を示す情報が測定装置40に供給される。導線50の長さ及び太さは任意であり、例えば銅から形成される。導線50は、例えば、同軸構造、ツイストペア構造からなる。また、導線50は、接続が維持されるように、所定以上の強度を有する。   The conducting wire 50 connects the connection unit 30 included in the biological electrode 100 and the measuring device 40. Electric power is supplied from the measurement device 40 to the biological electrode 100 through the lead wire 50, and information indicating the potential detected by the detection unit 10 included in the biological electrode 100 is supplied to the measurement device 40. The length and thickness of the conducting wire 50 are arbitrary, and are formed from, for example, copper. The conducting wire 50 has, for example, a coaxial structure or a twisted pair structure. Moreover, the conducting wire 50 has a predetermined strength or more so that the connection is maintained.

なお、生体用電極100と測定装置40とを無線接続して、データの送受信や電力の供給を行うこともできる。   The living body electrode 100 and the measurement device 40 can be wirelessly connected to transmit / receive data and supply power.

次に、生体用電極100を衣服等に取り付けて、電位を測定する方法について説明する。   Next, a method for measuring the potential by attaching the biological electrode 100 to clothes or the like will be described.

図4は、生体用電極100を衣服60に取り付ける取付例を示す図である。生体用電極100は、生体と接触するように、衣服60の内側に取り付けられて、固定される。   FIG. 4 is a diagram illustrating an attachment example in which the biomedical electrode 100 is attached to the garment 60. The living body electrode 100 is attached and fixed inside the garment 60 so as to come into contact with the living body.

生体用電極100は、スポンジなどの弾力と厚みを有する保持部20の周囲を、導電性繊維による布などの導電性と柔軟性を有する検出部10で覆う構成からなる。また、生体用電極100は、充分な圧力を獲得できる厚さと弾力性を備える。さらに、生体用電極100は、生体に密着することが可能である表面の柔軟性を備える。   The living body electrode 100 is configured to cover the periphery of the holding portion 20 having elasticity and thickness such as sponge with a detecting portion 10 having conductivity and flexibility such as cloth made of conductive fibers. In addition, the living body electrode 100 has a thickness and elasticity that can obtain a sufficient pressure. Furthermore, the biomedical electrode 100 has surface flexibility that allows it to be in close contact with the living body.

つまり、生体用電極100は柔軟性及び弾性を備えるため、生体用電極100が衣服60の内側に設置されると、生体用電極100と生体との密着性が保持される。例えば、生体が動く、もしくは、衣服60がずれる場合であっても、生体用電極100は適度な弾性等を備えるため、密着性が保持される。密着性が保持されるため、測定装置40からの制御により、生体用電極100は、生体の電位を容易に検出することができる。   That is, since the living body electrode 100 has flexibility and elasticity, when the living body electrode 100 is installed inside the garment 60, the adhesion between the living body electrode 100 and the living body is maintained. For example, even when the living body moves or the clothes 60 are displaced, the living body electrode 100 has appropriate elasticity and the like, so that the adhesion is maintained. Since the adhesion is maintained, the living body electrode 100 can easily detect the potential of the living body under the control of the measuring device 40.

なお、生体用電極100を衣服60に固定する方法に任意である。例えば、図5に示すように、生体用電極100に凸ホック70を、衣服60に凹ホック71を、それぞれ取り付けて、凸ホック70と凹ホック71とを接続することにより、生体用電極100を衣服60に固定することもできる。また、接着剤、マジックテープ(登録商標)、ボタン等により、生体用電極100を衣服60に固定することもできる。   The method for fixing the biological electrode 100 to the clothes 60 is arbitrary. For example, as shown in FIG. 5, the convex hook 70 is attached to the biological electrode 100, the concave hook 71 is attached to the garment 60, and the convex hook 70 and the concave hook 71 are connected to each other. It can also be fixed to the garment 60. Further, the living body electrode 100 can be fixed to the garment 60 with an adhesive, Velcro (registered trademark), a button, or the like.

また、生体用電極100を取り付ける位置は、衣服60の腕部に限定されず、任意である。   In addition, the position where the biological electrode 100 is attached is not limited to the arm portion of the garment 60 and is arbitrary.

以上説明したように、本実施形態に係る生体用電極100によれば、測定する生体の部位によらず、生体用電極100を生体に密着させることができる。このため、正確な生体情報を測定することができる。   As described above, according to the biological electrode 100 according to the present embodiment, the biological electrode 100 can be brought into close contact with the living body regardless of the part of the living body to be measured. For this reason, accurate biological information can be measured.

なお、本発明は上記実施の形態に限定されず、種々の変形及び応用が可能である。   In addition, this invention is not limited to the said embodiment, A various deformation | transformation and application are possible.

検出部10及び保持部20のサイズ、厚さ、及び、形状は、任意である。   The size, thickness, and shape of the detection unit 10 and the holding unit 20 are arbitrary.

また、検出部10及び保持部20を、通気性を有する素材で形成することもできる。   Moreover, the detection part 10 and the holding | maintenance part 20 can also be formed with the raw material which has air permeability.

また、生体用電極100及び測定装置40のサイズ、厚さ、及び、形状は、任意である。   Moreover, the size, thickness, and shape of the biological electrode 100 and the measuring device 40 are arbitrary.

また、検出部10の接続面12に粘着性を持たせることもできる。   In addition, the connection surface 12 of the detection unit 10 can be made sticky.

本発明は、筋電位や皮膚表面電気抵抗などの電気活動や生体情報を計測するための様々な生体用電極に適用することができる。   The present invention can be applied to various living body electrodes for measuring electrical activity such as myoelectric potential and skin surface electrical resistance and biological information.

100 生体用電極
10 検出部
11 接続面
12 接触面
20 保持部
30 接続部
40 測定装置
50 導線
60 衣服
70 凸ホック
71 凹ホック
DESCRIPTION OF SYMBOLS 100 Biological electrode 10 Detection part 11 Connection surface 12 Contact surface 20 Holding part 30 Connection part 40 Measuring apparatus 50 Conductor 60 Clothes 70 Convex hook 71 Concave hook

Claims (4)

生体に接触し、当該生体の電位を検出する検出部と、
前記生体に接触するように前記検出部を押圧して、当該生体と当該検出部との接触を保持する保持部と、を備える、
ことを特徴とする生体用電極。
A detection unit that contacts the living body and detects the potential of the living body;
A holding unit that presses the detection unit so as to come into contact with the living body and holds the contact between the living body and the detection unit;
A biomedical electrode.
前記検出部は、前記保持部を覆い、
前記保持部は、前記検出部が所定以上の厚さとなるように、覆われた内側から前記検出部を押圧する、
ことを特徴とする請求項1に記載の生体用電極。
The detection unit covers the holding unit,
The holding unit presses the detection unit from the covered inside so that the detection unit has a thickness greater than or equal to a predetermined thickness.
The biomedical electrode according to claim 1.
前記保持部は、所定以上の弾性と厚さとを備える、
ことを特徴とする請求項1又は2に記載の生体用電極。
The holding part has a predetermined elasticity or more.
The biomedical electrode according to claim 1, wherein the biomedical electrode is provided.
前記保持部は、導電性を有する素材から形成される、
ことを特徴とする請求項1乃至3のいずれか1項に記載の生体用電極。
The holding portion is formed from a conductive material.
The living body electrode according to any one of claims 1 to 3, wherein the living body electrode is a living body electrode.
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JP2015504338A (en) * 2011-11-25 2015-02-12 ヤン,チャンミン Objects, methods and systems for detecting good heartbeat and electrode contact
JP2015100673A (en) * 2013-11-28 2015-06-04 日本電信電話株式会社 Clothing for bioelectric signal monitor
KR20150145630A (en) * 2014-06-20 2015-12-30 한국기계연구원 Stretchable electrode and devices using the same
KR20150146083A (en) * 2014-06-20 2015-12-31 한국기계연구원 Stretchable electrode and detecting devices using the same
JP2016087116A (en) * 2014-11-05 2016-05-23 日本電信電話株式会社 Biological interface and patch type electrode
JP2016097674A (en) * 2014-11-26 2016-05-30 金寶電子工業股▲ふん▼有限公司 Fabric structure
JP2016179250A (en) * 2016-07-11 2016-10-13 日本電信電話株式会社 Bioelectric signal monitoring clothing
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JP2018114302A (en) * 2014-01-28 2018-07-26 日本電信電話株式会社 Biosignal detection garment
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JP2020121008A (en) * 2019-01-31 2020-08-13 国立研究開発法人産業技術総合研究所 Electrode body array placeable in garment and garment

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JP2018114302A (en) * 2014-01-28 2018-07-26 日本電信電話株式会社 Biosignal detection garment
KR20150146083A (en) * 2014-06-20 2015-12-31 한국기계연구원 Stretchable electrode and detecting devices using the same
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JP2016087116A (en) * 2014-11-05 2016-05-23 日本電信電話株式会社 Biological interface and patch type electrode
JP2016097674A (en) * 2014-11-26 2016-05-30 金寶電子工業股▲ふん▼有限公司 Fabric structure
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JPWO2017007021A1 (en) * 2015-07-08 2018-03-29 日本電信電話株式会社 Biological and wearable electrodes
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WO2017203685A1 (en) 2016-05-27 2017-11-30 国立研究開発法人科学技術振興機構 Electronic functional member, electronic component, and wearable device
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JP2016179250A (en) * 2016-07-11 2016-10-13 日本電信電話株式会社 Bioelectric signal monitoring clothing
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JP2020121008A (en) * 2019-01-31 2020-08-13 国立研究開発法人産業技術総合研究所 Electrode body array placeable in garment and garment
JP7137844B2 (en) 2019-01-31 2022-09-15 国立研究開発法人産業技術総合研究所 Garment deployable electrode body array and garment

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