JP2589013Y2 - Glove-type coated sensor for physiological response measurement - Google Patents

Glove-type coated sensor for physiological response measurement

Info

Publication number
JP2589013Y2
JP2589013Y2 JP1990112114U JP11211490U JP2589013Y2 JP 2589013 Y2 JP2589013 Y2 JP 2589013Y2 JP 1990112114 U JP1990112114 U JP 1990112114U JP 11211490 U JP11211490 U JP 11211490U JP 2589013 Y2 JP2589013 Y2 JP 2589013Y2
Authority
JP
Japan
Prior art keywords
glove
sensor
measured
person
measurement
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
JP1990112114U
Other languages
Japanese (ja)
Other versions
JPH0470003U (en
Inventor
恒之 阿部
恵子 互
充恵 大坪
裕美 寺下
美恵子 大須賀
太海 下野
Original Assignee
株式会社 資生堂
三菱電機 株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 株式会社 資生堂, 三菱電機 株式会社 filed Critical 株式会社 資生堂
Priority to JP1990112114U priority Critical patent/JP2589013Y2/en
Publication of JPH0470003U publication Critical patent/JPH0470003U/ja
Application granted granted Critical
Publication of JP2589013Y2 publication Critical patent/JP2589013Y2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Description

【考案の詳細な説明】 〔産業上の利用分野〕 本考案は、生理反応測定用の手袋型被覆センサーに関
し、さらに詳しくは外気温や照明等の影響を除外するこ
とができる生理反応測定用の手袋型被覆センサーに関
し、医療分野やストレスマネージメント等健康・スポー
ツ関連産業において利用できる。
[Detailed Description of the Invention] [Industrial field of application] The present invention relates to a glove-type covered sensor for physiological reaction measurement, and more specifically for a physiological reaction measurement capable of excluding the effects of outside air temperature and lighting. The glove type coated sensor can be used in the health care and sports related industries such as the medical field and stress management.

〔従来の技術〕[Conventional technology]

従来、外気温の影響を受け易い末梢皮膚温、皮膚電気
反応、容積脈波等の生理反応の測定に際しては、恒温恒
湿の環境下で測定を行う必要があった。さらに、容積脈
波の測定を、簡便で精度の高い光学的な手段で行う場合
には、そのセンサー部に外部の光が入らないようにする
必要があった。
Conventionally, it has been necessary to perform measurement in a constant temperature and constant humidity environment when measuring peripheral skin temperature, skin electrical reaction, volume pulse wave, and other physiological reactions that are easily affected by outside air temperature. Furthermore, when the volume pulse wave is measured by a simple and highly accurate optical means, it is necessary to prevent external light from entering the sensor section.

従来の生理反応測定用のセンサーは、外気温に影響を
受け易い剥き出し型であり、かつ各種の生理反応毎に個
別のセンサーを独立して設置するものであった。
A conventional sensor for measuring a physiological reaction is a bare type that is easily affected by the outside air temperature, and an individual sensor is separately installed for each physiological reaction.

〔考案が解決しようとする問題点〕[Problems to be solved by the invention]

一般的に、外気温の影響を受け易い末梢皮膚温、皮膚
電気反応、心電図、容積脈波等の生理反応の測定に際し
ては、恒温恒湿の環境下で測定を行う必要がある。さら
に、容積脈波の測定を、簡便で精度の高い光学的な手段
で行う場合には、そのセンサー部に外部の光が入らない
ようにする必要もある。
Generally, in measuring peripheral skin temperature, skin electric reaction, electrocardiogram, plethysmogram, and other physiological reactions that are easily affected by outside air temperature, it is necessary to perform measurement in a constant temperature and constant humidity environment. Further, when the volume pulse wave is measured by a simple and highly accurate optical means, it is necessary to prevent external light from entering the sensor section.

ところが上述した如き、従来技術で多数の生理反応測
定を同時に行う場合には、外気温の影響を受けて正確な
生理反応の測定が行えず、もしくは室内を恒温恒湿にす
るための設備を要していた。また多数のセンサーを一つ
一つ個別に装着しなければならないため、手間のかかる
問題があった。このため、測定操作に手間取ることはも
ちろん、被測定者にも負担がかかるという問題があり、
測定データのノイズ原因ともなっていた。
However, as described above, when a large number of physiological response measurements are performed simultaneously by the conventional technique, accurate physiological response measurement cannot be performed due to the influence of the outside temperature, or equipment for keeping the room at a constant temperature and humidity is required. Was. In addition, a large number of sensors have to be individually mounted, which is a troublesome task. For this reason, there is a problem that not only the measurement operation is time-consuming but also the subject is burdened,
It was also a cause of noise in the measurement data.

本考案の技術的課題は、上記の問題点を解消した生理
反応測定用の手袋型被覆センサーを提供することにあ
る。
A technical problem of the present invention is to provide a glove-type covered sensor for measuring a physiological reaction, which solves the above problems.

〔考案の技術的課題を解決するために講じた技術的手段〕[Technical measures taken to solve the technical problem of the invention]

技術的課題を解決するために講じた技術的手段は、被
測定者の手に装着され、被測定者本人の生理反応を測定
する手袋であって、該手袋の内面側の所定位置に複数の
生理反応センサーを内蔵し、該センサーと測定機器とを
結ぶ導線を配設し、この導線は手袋本体の二重皮の間を
通過して、被測定者の手に触れないようにしたことであ
る。
Technical means taken to solve the technical problem is a glove that is attached to the hand of the person to be measured and measures the physiological reaction of the person to be measured, and a plurality of gloves are provided at predetermined positions on the inner surface side of the glove. By incorporating a physiological response sensor and providing a lead wire that connects the sensor and the measuring device, this lead wire passes between the double skins of the glove body and is not touched by the person to be measured. is there.

〔作用〕[Action]

本考案は、センサーを手袋の内部にあらかじめセット
したので、被測定者が手をこの手袋内に挿入するだけ
で、センサーが正しい位置に確実に当接し、かつ被測定
者の手は外気温や照明の影響を受けないものとなる。
In the present invention, since the sensor is set inside the glove in advance, the person to be measured simply inserts his/her hand into the glove so that the sensor abuts at the correct position, and the hand of the person to be measured is not exposed to outside temperature or It will not be affected by lighting.

〔実施例〕〔Example〕

本考案を図面の実施例について説明すると、第1図は
本考案の一実施例の平面図、第2図は要部の拡大縦断面
図、第3図は被測定者の手を掌側から見て測定ポイント
を示した平面図である。
The present invention will be described with reference to the embodiments of the drawings. Fig. 1 is a plan view of an embodiment of the present invention, Fig. 2 is an enlarged vertical sectional view of an essential part, and Fig. 3 is the palm of a person to be measured. It is a top view showing a measurement point when viewed.

第1図において、手袋本体1はゴアテックス(登録商
標)、伸縮性のある合成樹脂繊維ニット、木綿あるいは
毛糸の如く、伸縮性と通気性・保温性があって、手に柔
らかく密着可能な素材で形成される。また手型の大小に
対応すべく、いくつかのサイズを用意しても良い。
In FIG. 1, the glove body 1 is a material such as GORE-TEX (registered trademark), stretchable synthetic resin fiber knit, cotton or wool, which has stretchability, breathability and heat retention, and which can be softly adhered to the hand. Is formed by. In addition, several sizes may be prepared to correspond to the size of the hand mold.

この手袋本体1の内部は、第2図に示すように適宜二
重に形成され、かつ第3図に示すようなポイント対応位
置には予めセンサー2が設置されている。ここでセンサ
ーの設置位置は、測定ポイント対応位置であればよく、
必ずしも手の掌側である必要はない。また1本の指に、
複数のセンサーを設置することも可能である。
The inside of the glove body 1 is appropriately doubled as shown in FIG. 2, and the sensor 2 is installed in advance at the point corresponding position as shown in FIG. Here, the sensor installation position may be any position corresponding to the measurement point,
It does not necessarily have to be on the palm side of the hand. Again with one finger,
It is also possible to install multiple sensors.

次にセンサーの具体例として、脈波、皮膚温、心電
図、マイクロバイブレーション、皮膚電気活動の測定が
可能であり、そのためにはそれぞれ既存の対応するセン
サーを配設すればよい。既存のセンサーとしては、例え
ば脈波の場合、光電式センサー、レーザー式センサーが
あり、皮膚温の場合は、サーミスタ、熱電対、半導体セ
ンサーがあり、心電図(ECG)の場合は、電極があり、
マイクロバイブレーション(MV)の場合は、加速度セン
サーがある。皮膚電気活動には通電法と電位法があるの
で、通電法の場合、通電可能な電極、電位法の場合、通
常の電極などを用いることができる。
Next, as specific examples of the sensor, pulse wave, skin temperature, electrocardiogram, microvibration, and electrodermal activity can be measured, and for that purpose, existing corresponding sensors may be provided. As existing sensors, for example, in the case of pulse waves, there are photoelectric sensors, laser sensors, in the case of skin temperature, there are thermistors, thermocouples, semiconductor sensors, in the case of electrocardiogram (ECG), there are electrodes,
In the case of microvibration (MV), there is an acceleration sensor. Since there are an energization method and an electric potential method in the electrodermal activity, an electrode that can be energized in the energization method and an ordinary electrode in the electric potential method can be used.

上記のセンサーには導線3が接続され、この導線3は
手袋本体の甲側に位置する二重皮4a、4bの間を通過し
て、窓5から手袋本体1の外に出て、コネクターへ接続
されることとなる。
A lead wire 3 is connected to the above sensor, and the lead wire 3 passes between the double skins 4a and 4b located on the upper side of the glove body, goes out of the glove body 1 through the window 5, and is connected to the connector. Will be connected.

このため、被測定者が手袋本体1に手を挿入すると、
各センサーが被測定者のデータを自動的に計測し、計測
器本体(図示しない)にて必要なデータ分析が行われ
る。
Therefore, when the person to be measured inserts his/her hand into the glove body 1,
Each sensor automatically measures the data of the person to be measured, and the necessary data analysis is performed by the measuring instrument body (not shown).

〔考案の効果〕[Effect of device]

よって本考案によれば、特に外気温に影響を受け易い
皮膚温測定や、特に照明装置などからの光の影響を受け
易い脈派の測定において正確な測定が可能となる。
Therefore, according to the present invention, it is possible to perform accurate measurement in skin temperature measurement that is particularly susceptible to the outside air temperature and pulse rate measurement that is particularly susceptible to the light from the lighting device.

さらに本考案は、センサーを予め手袋本体に設置して
いるので、センサー装着の手間がかからず、被測定者に
無理を強いることがなく、生理反応の測定結果も正確で
信頼性を高める等の優れた効果がある。
Furthermore, since the present invention pre-installs the sensor on the glove body, it does not take time to put on the sensor, it does not force the person to be measured, and the measurement result of physiological response is accurate and enhances reliability. Has an excellent effect.

【図面の簡単な説明】[Brief description of drawings]

第1図は本考案の一実施例の平面図、第2図は要部の拡
大縦断面図、第3図は被測定者の手を掌側から見て測定
ポイントを示した平面図である。 1……手袋本体、2……センサー 3……導線、4a、4b……二重皮 5……窓
FIG. 1 is a plan view of an embodiment of the present invention, FIG. 2 is an enlarged vertical sectional view of an essential part, and FIG. 3 is a plan view showing measurement points when the hand of the person to be measured is viewed from the palm side. .. 1...Glove body, 2...Sensor 3...Lead wire, 4a, 4b...Double skin 5...Window

フロントページの続き (51)Int.Cl.6 識別記号 FI A61B 5/0478 (72)考案者 互 恵子 東京都品川区西五反田3丁目9番1号 資生堂五反田ビル 株式会社資生堂ビュ ーティーサイエンス研究所内 (72)考案者 大坪 充恵 東京都品川区西五反田3丁目9番1号 資生堂五反田ビル 株式会社資生堂ビュ ーティーサイエンス研究所内 (72)考案者 寺下 裕美 兵庫県尼崎市塚口本町8丁目1番1号 三菱電機株式会社中央研究所内 (72)考案者 大須賀 美恵子 兵庫県尼崎市塚口本町8丁目1番1号 三菱電機株式会社中央研究所内 (72)考案者 下野 太海 兵庫県尼崎市塚口本町8丁目1番1号 三菱電機株式会社中央研究所内 (56)参考文献 実開 昭58−185206(JP,U) 実公 昭60−41211(JP,Y2)Continuation of front page (51)Int.Cl. 6 Identification symbol FI A61B 5/0478 (72) Creator Keiko Mutsuko 3-9-1 Nishigotanda, Shinagawa-ku, Tokyo Shiseido Gotanda Building Shiseido Beauty Science Institute (72) Inventor Mitsue Otsubo 3-9-1, Nishigotanda, Shinagawa-ku, Tokyo Shiseido Gotanda Building Shiseido Beauty Science Laboratory Co., Ltd. (72) Inventor Hiromi Terashita 8-1-1 Tsukaguchihonmachi, Amagasaki City, Hyogo Prefecture Mitsubishi Electric Co., Ltd. Central Research Laboratory (72) Inventor Mieko Osuga 8-1-1 Tsukaguchi Honcho, Amagasaki City, Hyogo Prefecture Mitsubishi Electric Co., Ltd. Central Research Laboratory (72) Inventor Takai Shimono 8-1, Tsukaguchi Honcho, Amagasaki City, Hyogo Prefecture No. 1 in the Central Research Laboratory of Mitsubishi Electric Corporation (56) Bibliography Shou 58-185206 (JP, U) Suiho 60-41211 (JP, Y2)

Claims (1)

(57)【実用新案登録請求の範囲】(57) [Scope of utility model registration request] 【請求項1】被測定者の手に装着され、被測定者本人の
生理反応を測定する手袋であって、該手袋の内面側の所
定位置に複数の生理反応センサーを内蔵し、該センサー
と測定機器とを結ぶ導線を配設し、この導線は手袋本体
の二重皮の間を通過して、被測定者の手に触れないよう
にしたことを特徴とする生理反応測定用の手袋型被覆セ
ンサー
1. A glove that is attached to the hand of a person to be measured and measures the physiological reaction of the person to be measured, the glove including a plurality of physiological reaction sensors at predetermined positions on the inner surface side of the glove. A glove type for physiological reaction measurement, characterized in that a conducting wire connecting to a measuring device is provided, and the conducting wire passes between the double skins of the glove body so as not to come into contact with the person to be measured. Coating sensor
JP1990112114U 1990-10-29 1990-10-29 Glove-type coated sensor for physiological response measurement Expired - Lifetime JP2589013Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1990112114U JP2589013Y2 (en) 1990-10-29 1990-10-29 Glove-type coated sensor for physiological response measurement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1990112114U JP2589013Y2 (en) 1990-10-29 1990-10-29 Glove-type coated sensor for physiological response measurement

Publications (2)

Publication Number Publication Date
JPH0470003U JPH0470003U (en) 1992-06-22
JP2589013Y2 true JP2589013Y2 (en) 1999-01-20

Family

ID=31859616

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1990112114U Expired - Lifetime JP2589013Y2 (en) 1990-10-29 1990-10-29 Glove-type coated sensor for physiological response measurement

Country Status (1)

Country Link
JP (1) JP2589013Y2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003504141A (en) * 1999-07-21 2003-02-04 ダニエル デイヴィッド、 Physiological measurement system comprising a garment in the form of a sleeve or glove and a sensing device incorporated in the garment

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58185206U (en) * 1982-06-05 1983-12-09 興和株式会社 Biological potential distribution measurement electrode
JPS6041211U (en) * 1983-08-30 1985-03-23 日本メンテナンス株式会社 Hopper for concrete pouring

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003504141A (en) * 1999-07-21 2003-02-04 ダニエル デイヴィッド、 Physiological measurement system comprising a garment in the form of a sleeve or glove and a sensing device incorporated in the garment

Also Published As

Publication number Publication date
JPH0470003U (en) 1992-06-22

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