JP2009201918A - Pulse wave detecting device - Google Patents

Pulse wave detecting device Download PDF

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Publication number
JP2009201918A
JP2009201918A JP2008049791A JP2008049791A JP2009201918A JP 2009201918 A JP2009201918 A JP 2009201918A JP 2008049791 A JP2008049791 A JP 2008049791A JP 2008049791 A JP2008049791 A JP 2008049791A JP 2009201918 A JP2009201918 A JP 2009201918A
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Prior art keywords
light
finger
pulse wave
light emitting
receiving unit
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Japanese (ja)
Inventor
Hiroshi Shimizu
洋 清水
Tomohiro Ihashi
朋寛 井橋
Kenji Ogasawara
健治 小笠原
Kazuo Kato
一雄 加藤
Kazusane Sakumoto
和実 佐久本
Akira Takakura
昭 高倉
Eriko Noguchi
江利子 野口
Hiroyuki Masaki
広幸 政木
Saburo Manaka
三郎 間中
Tamotsu Maezawa
保 前沢
Keisuke Tsubata
佳介 津端
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Seiko Instruments Inc
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Seiko Instruments Inc
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Priority to JP2008049791A priority Critical patent/JP2009201918A/en
Publication of JP2009201918A publication Critical patent/JP2009201918A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a pulse wave detecting device capable of stably detecting a pulse wave with a simple configuration. <P>SOLUTION: The pulse wave detecting device is provided with: a light emitting part 23 for radiating light toward a finger; and a light receiving part 24 for receiving the light at a position corresponding to the side of the finger, which is reflected from the finger in the light radiated from the light emitting part. The pulse wave detecting device includes a light guide body 31 to have contact with at least the side surface of the finger by an area wider than the light emission area of the light emitting part. The light radiated from the light emitting part is radiated against the finger by way of the light guide body. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、脈波検出装置に関するものである。   The present invention relates to a pulse wave detection device.

従来から、脈波や脈拍数などの脈波情報を検出、表示可能な脈波検出装置が知られている。また、光を用いて脈波を検出する脈波検出装置には、一般的に反射型および透過型が知られている。反射型の脈波検出装置は、例えばLED(Light Emitting Diode)などで構成された発光部から指表面に向けて光を照射する一方、指(血管)から反射してきた光をPD(Photo Diode)などで構成された受光部で受光することにより、血量変化を受光量の変化として検出し、その検出結果に基づいて脈波や脈拍数などを検出できるようになっている(例えば、特許文献1参照)。図7に示すように、この特許文献1の脈波計測装置(脈波検出装置)は、脈波検出部100の表面が平坦に形成されたガラス板からなる透光板101で構成され、透光板101の外側表面102に指(指の腹)Fを密着させた状態で、LED(発光部)103が指Fに向けて光を発すると、フォトトランジスタ(受光部)104が、LED103が発した光のうち指Fの側から反射してくる光を受光できるようになっている。
また、透過型の脈波検出装置は、図8に示すように、発光部203と受光部204とが指Fを介して対向する位置に配され、発光部203から指Fに向かって照射された光のうち、指Fを透過してきた光を受光部204で受光することにより脈波などを検出するものがある。
特開平9−108192号公報
Conventionally, a pulse wave detection device capable of detecting and displaying pulse wave information such as a pulse wave and a pulse rate is known. In addition, a reflection type and a transmission type are generally known as pulse wave detection devices that detect a pulse wave using light. A reflection-type pulse wave detection device irradiates light toward a finger surface from a light emitting unit composed of, for example, an LED (Light Emitting Diode) or the like, while PD (Photo Diode) reflects light reflected from a finger (blood vessel). By receiving the light with a light receiving unit configured by the above, it is possible to detect a change in blood volume as a change in the amount of received light, and to detect a pulse wave or a pulse rate based on the detection result (for example, Patent Documents) 1). As shown in FIG. 7, the pulse wave measuring device (pulse wave detecting device) of Patent Document 1 is composed of a translucent plate 101 made of a glass plate in which the surface of the pulse wave detecting unit 100 is formed flat. When the LED (light emitting unit) 103 emits light toward the finger F in a state where the finger (finger belly) F is in close contact with the outer surface 102 of the optical plate 101, the phototransistor (light receiving unit) 104 is replaced by the LED 103. Of the emitted light, the light reflected from the finger F side can be received.
Further, as shown in FIG. 8, the transmission type pulse wave detection device is arranged at a position where the light emitting unit 203 and the light receiving unit 204 are opposed to each other through the finger F, and is irradiated from the light emitting unit 203 toward the finger F. Among the received light, there is one that detects a pulse wave or the like by receiving light transmitted through the finger F by the light receiving unit 204.
JP-A-9-108192

ところで、上述した特許文献1の反射型の脈波検出装置では、指Fを測定面(透光板101)に載置するだけで手軽に測定できるものの、発光部103と受光部104とが同一面内に配置されており、発光部103と受光部104との間に形成される光路が狭くなり、計測される脈波の波形が乱れやすく、安定した計測ができないという問題があった。
一方、透過型の脈波検出装置は、発光部203と受光部204とが指Fを挟んで直線的に配置されているため、皮膚表面の反射光ノイズの影響を受けにくく、光が指Fの内部を透過するため脈波の検出性が高いが、発光部203と受光部204とを図9のように配置すると、指や爪に負担がかかる虞や、指Fを挟むためのクリップ構造が必要になり操作性に劣るという問題があった。
By the way, in the reflection type pulse wave detection device of Patent Document 1 described above, the light emitting unit 103 and the light receiving unit 104 are the same although the finger F can be easily measured simply by placing it on the measurement surface (translucent plate 101). There is a problem that the optical path formed between the light emitting unit 103 and the light receiving unit 104 becomes narrow, the waveform of the measured pulse wave is easily disturbed, and stable measurement cannot be performed.
On the other hand, in the transmission type pulse wave detection device, since the light emitting unit 203 and the light receiving unit 204 are linearly arranged with the finger F interposed therebetween, the light is hardly affected by reflected light noise on the skin surface. However, if the light emitting unit 203 and the light receiving unit 204 are arranged as shown in FIG. 9, there is a risk that a finger or nail may be burdened, or a clip structure for pinching the finger F There is a problem that the operability is inferior.

そこで、本発明は、簡易な構成で、脈波を安定して検出することができる脈波検出装置を提供するものである。   Therefore, the present invention provides a pulse wave detection device capable of stably detecting a pulse wave with a simple configuration.

上記の課題を解決するために、本発明に係る脈波検出装置は、指に向けて光を照射する発光部と、該発光部より照射された光のうち前記指の側から反射してくる光を前記指の腹部に対応した位置で受光可能な受光部と、を備えた脈波検出装置において、前記発光部の発光面積より広い面積で前記指の少なくとも側面に接する導光体を備え、前記発光部より照射された光が前記導光体を経由して前記指に照射されることを特徴としている。   In order to solve the above-described problem, a pulse wave detection device according to the present invention reflects a light emitting unit that emits light toward a finger and the light emitted from the light emitting unit from the finger side. A light-receiving unit that can receive light at a position corresponding to the abdomen of the finger, and includes a light guide that is in contact with at least the side surface of the finger in an area wider than the light-emitting area of the light-emitting unit, The light emitted from the light emitting unit is emitted to the finger through the light guide.

このように構成することで、指には導光体との接触面全体から光が照射されることとなり、その光のうち指の腹部側に反射された光を受光部で受光することにより脈波を検出することができる。つまり、従来の反射型よりも発光部と受光部との間に形成される光路を広く(多く)確保することができ、安定した脈波計測をすることができる。
また、導光体と指の側面とを接触させるように指を配置するだけで脈波を検出できる。つまり、従来の透過型のように指や爪に負担をかけることがなく、簡易な構成で脈波を検出することができる。
With this configuration, the finger is irradiated with light from the entire contact surface with the light guide, and the light reflected on the abdomen side of the finger is received by the light receiving unit. Waves can be detected. That is, the optical path formed between the light emitting part and the light receiving part can be ensured wider (more) than in the conventional reflection type, and stable pulse wave measurement can be performed.
Further, the pulse wave can be detected simply by placing the finger so that the light guide and the side surface of the finger are in contact with each other. That is, the pulse wave can be detected with a simple configuration without placing a burden on the finger or the nail unlike the conventional transmission type.

また、本発明に係る脈波検出装置は、前記導光体が、前記受光部を取り巻くように形成されていることを特徴としている。
このように構成することで、発光部と受光部との間に形成される光路をより広く(多く)確保することができ、より安定した脈波計測をすることができる。
Moreover, the pulse wave detection device according to the present invention is characterized in that the light guide is formed so as to surround the light receiving portion.
By comprising in this way, the optical path formed between a light emission part and a light-receiving part can be ensured more widely (many), and more stable pulse wave measurement can be performed.

また、本発明に係る脈波検出装置は、前記導光体における前記指との接触面以外の面が、反射面加工処理されていることを特徴としている。
このように構成することで、発光部より照射された光が接触面以外の面で反射され、その光を導光体における指との接触面の略全面から指に向かって光を照射することができる。つまり、指に対して複数の箇所から光が照射されることとなり、受光部との間に光路が複数形成され、脈波を安定して検出することができる。また、発光部より照射された全ての光が接触面から指に照射され、光の利用効率を向上させることができる。
The pulse wave detection device according to the present invention is characterized in that a surface other than a contact surface with the finger in the light guide is subjected to a reflective surface processing.
By comprising in this way, the light irradiated from the light emission part is reflected in surfaces other than a contact surface, and the light is irradiated toward a finger from the substantially whole surface of a contact surface with the finger in a light guide. Can do. That is, light is irradiated to the finger from a plurality of locations, and a plurality of optical paths are formed between the light receiving unit and the pulse wave can be detected stably. Moreover, all the light irradiated from the light emission part is irradiated to a finger | toe from a contact surface, and the utilization efficiency of light can be improved.

また、本発明に係る脈波検出装置は、前記導光体の前記接触面が、前記受光部が配置された側に向かって前記指を載置する領域が狭まるように内側に傾斜したテーパ形状に形成されていることを特徴としている。
このように構成することで、指を載置したときに導光体と指との密着性を高めることができる。つまり、発光部より照射された光を、導光体を介して受光部で受光して脈波を検出する際に、外光などのノイズの影響を低減することができ、精度良く脈波を検出することができる。
Further, in the pulse wave detection device according to the present invention, the contact surface of the light guide is tapered so that a region where the finger is placed narrows toward a side where the light receiving unit is disposed. It is characterized by being formed.
By comprising in this way, the adhesiveness of a light guide and a finger can be improved when a finger is mounted. In other words, when the light emitted from the light emitting unit is received by the light receiving unit via the light guide and the pulse wave is detected, the influence of noise such as external light can be reduced, and the pulse wave can be accurately detected. Can be detected.

さらに、本発明に係る脈波検出装置は、指に向けて光を照射する発光部と、該発光部より照射された光のうち前記指の側から反射してくる光を受光可能な受光部と、を備えた脈波検出装置において、前記指の側面に対応した位置に前記発光部が複数設けられ、前記指の腹部に対応した位置に設けられた前記受光部で前記光の反射光を受光可能に構成されていることを特徴としている。   Furthermore, the pulse wave detection device according to the present invention includes a light emitting unit that emits light toward a finger, and a light receiving unit that can receive light reflected from the finger side out of light emitted from the light emitting unit. And a plurality of the light emitting portions are provided at positions corresponding to the side surfaces of the finger, and the reflected light of the light is reflected by the light receiving portion provided at a position corresponding to the abdomen of the finger. It is configured to be capable of receiving light.

このように構成することで、発光部と受光部との間に形成される光路を確実に複数確保することができる。したがって、従来の反射型よりも光路を多く確保できるため、安定した脈波計測をすることができる。
また、発光部および受光部が配置された箇所に指の側面および腹部を接触させるように指を配置するだけで脈波を検出できる。つまり、従来の透過型のように指や爪に負担をかけることがなく、簡易な構成で脈波を検出することができる。
With this configuration, a plurality of optical paths formed between the light emitting unit and the light receiving unit can be reliably ensured. Accordingly, since more optical paths can be secured than in the conventional reflection type, stable pulse wave measurement can be performed.
Further, the pulse wave can be detected simply by placing the finger so that the side surface and the abdomen of the finger are brought into contact with the place where the light emitting unit and the light receiving unit are arranged. That is, the pulse wave can be detected with a simple configuration without placing a burden on the finger or the nail unlike the conventional transmission type.

本発明に係る脈波検出装置によれば、指には導光体との接触面全体から光が照射されることとなり、その光のうち指の腹部側に反射された光を受光部で受光することにより脈波を検出することができる。つまり、従来の反射型よりも発光部と受光部との間に形成される光路を広く(多く)確保することができ、安定した脈波計測をすることができる効果がある。
また、導光体と指の側面とを接触させるように指を配置するだけで脈波を検出できる。つまり、従来の透過型のように指や爪に負担をかけることがなく、簡易な構成で脈波を検出することができる効果がある。
According to the pulse wave detection device of the present invention, the finger is irradiated with light from the entire contact surface with the light guide, and the light reflected from the abdomen side of the finger is received by the light receiving unit. By doing so, the pulse wave can be detected. That is, the optical path formed between the light emitting unit and the light receiving unit can be secured wider (more) than the conventional reflective type, and there is an effect that stable pulse wave measurement can be performed.
Further, the pulse wave can be detected simply by placing the finger so that the light guide and the side surface of the finger are in contact with each other. That is, there is an effect that a pulse wave can be detected with a simple configuration without placing a burden on a finger or a nail unlike a conventional transmission type.

(第一実施形態)
次に、本発明に係る脈波検出装置の第一実施形態を図1〜図4に基づいて説明する。
(First embodiment)
Next, a first embodiment of a pulse wave detection device according to the present invention will be described with reference to FIGS.

(脈波検出装置)
図1は、脈波検出装置の概略構成ブロック図である。
図1に示すように、脈波検出装置10は、指Fに光を照射して、その反射光を受光し、その検出結果を信号化する脈波検出部11と、脈波検出部11からの信号を受信して各種演算などを実行するCPU12と、CPU12による演算結果から脈波の波形などを表示する表示部13と、CPU12に対して各種設定条件などを与えるための入力部14と、デジタル信号に変換された脈波データなどを記憶しておくRAMで構成された記憶部15と、CPU12に対してクロックを供給する発振部16と、を備えている。
(Pulse wave detector)
FIG. 1 is a schematic block diagram of the pulse wave detection device.
As shown in FIG. 1, the pulse wave detection device 10 irradiates light on the finger F, receives the reflected light, and converts the detection result into a signal from the pulse wave detection unit 11 and the pulse wave detection unit 11. CPU 12 for receiving various signals and performing various calculations, a display unit 13 for displaying the waveform of a pulse wave from the calculation result by CPU 12, an input unit 14 for giving various setting conditions to CPU 12, A storage unit 15 including a RAM that stores pulse wave data converted into a digital signal and the like, and an oscillation unit 16 that supplies a clock to the CPU 12 are provided.

なお、脈波検出部11以外を構成する各部は、例えば、パーソナルコンピュータで構成され、入力部14がキーボード、表示部13がディスプレイにそれぞれ対応するようになっている。また、脈波検出部11以外を腕時計タイプの装置で構成してもよいし、脈波検出部11からの情報をもとにテレビにその結果を表示するようにしてもよい。   In addition, each part which comprises other than the pulse wave detection part 11 is comprised with a personal computer, for example, the input part 14 respond | corresponds to a keyboard and the display part 13 corresponds to a display, respectively. Further, a part other than the pulse wave detection unit 11 may be constituted by a wristwatch type device, or the result may be displayed on the television based on the information from the pulse wave detection unit 11.

(脈波検出部)
図2は、脈波検出部11の斜視図である。
図2に示すように、脈波検出部11は、箱型のセンサケース21と、センサケース21の上面21aに載置された、例えばLEDからなる発光部23と、同じくセンサケース21の上面に載置され、発光部23と接続されている導光体31と、センサケース21の内部に構成された部品収納空間22内に配置され、例えばPDからなる受光部24と、を備えている。なお、センサケース21における指Fの長手方向に沿う長さは、指Fの第一関節と略同等の長さで形成されている。
(Pulse wave detector)
FIG. 2 is a perspective view of the pulse wave detection unit 11.
As shown in FIG. 2, the pulse wave detection unit 11 includes a box-shaped sensor case 21, a light emitting unit 23 made of, for example, an LED placed on the upper surface 21 a of the sensor case 21, and the upper surface of the sensor case 21. A light guide 31 that is placed and connected to the light emitting unit 23 and a light receiving unit 24 that is disposed in a component storage space 22 that is configured inside the sensor case 21 and is made of, for example, a PD. Note that the length along the longitudinal direction of the finger F in the sensor case 21 is formed to be approximately the same length as the first joint of the finger F.

また、センサケース21の上面21aには、透光性のガラス板で構成された透光板29が取り付けられており、透光板29に指Fの腹部を密着させるようになっている。また、透光板29の部品収納空間22側には、受光部24が指Fを指向するように配置されている。また、発光部23および受光部24は、部品収納空間22内に配置された回路基板(不図示)に接続されている。この回路基板を介して、CPU12と通信可能に構成されており、受光部24の検出結果を演算し、脈波などを表示できるようになっている。   Further, a translucent plate 29 made of a translucent glass plate is attached to the upper surface 21 a of the sensor case 21, and the abdomen of the finger F is brought into close contact with the translucent plate 29. Further, the light receiving unit 24 is disposed on the component housing space 22 side of the translucent plate 29 so that the finger F is directed. The light emitting unit 23 and the light receiving unit 24 are connected to a circuit board (not shown) arranged in the component storage space 22. The circuit 12 is configured to be communicable with the CPU 12 so that the detection result of the light receiving unit 24 can be calculated and a pulse wave or the like can be displayed.

導光体31は平面視で略U字状に形成されており、受光部24を取り囲むようにセンサケース21の上面21aに配置されている。このU字状の内側領域に指Fを載置できるようになっている。導光体31は水平断面が略U字状の立体形状に形成されており、指Fとの接触面32は発光部23からの光を透光可能な透光面で構成されている。接触面32は発光部23の発光面積よりも大きい面積を有しており、指Fは発光部23の発光面積よりも大きい面積の接触面32に接するように構成されている。   The light guide 31 is formed in a substantially U shape in plan view, and is disposed on the upper surface 21 a of the sensor case 21 so as to surround the light receiving unit 24. The finger F can be placed on the U-shaped inner region. The light guide 31 is formed in a three-dimensional shape having a substantially U-shaped horizontal cross section, and the contact surface 32 with the finger F is formed of a light-transmitting surface capable of transmitting light from the light emitting unit 23. The contact surface 32 has an area larger than the light emitting area of the light emitting unit 23, and the finger F is configured to contact the contact surface 32 having an area larger than the light emitting area of the light emitting unit 23.

この接触面32は、受光部24が配置された側に向かって指Fを載置する領域が狭まるように内側(受光部24側)に傾斜したテーパ形状に構成されている。また、導光体31における接触面32以外の面34はミラー処理(反射面加工処理)がなされていて光を反射できるようになっている。
そして、導光体31のU字状の頂部側面33に発光部23が接続されており、発光部23から照射された光が、導光体31の内部を反射しながら進み、接触面32より指Fに向かって照射されるようになっている。
The contact surface 32 is formed in a tapered shape inclined inwardly (toward the light receiving unit 24) so that a region where the finger F is placed narrows toward the side where the light receiving unit 24 is disposed. Further, the surface 34 other than the contact surface 32 in the light guide 31 is subjected to mirror processing (reflection surface processing) so that light can be reflected.
The light emitting unit 23 is connected to the U-shaped top side surface 33 of the light guide 31, and the light emitted from the light emitting unit 23 travels while reflecting inside the light guide 31, and from the contact surface 32. Irradiation is directed toward the finger F.

(作用)
次に、脈波検出部11に指Fを載置して脈波を検出する作用を説明する。
図3は脈波検出部11に指Fを載置したとき斜視図であり、図4は図3のA−A線に沿う断面図(一部正面図)である。
図3、図4に示すように、脈波検出部11のセンサケース21の上面21aに指Fを押え付けるようにして密着させる。このとき指先を導光体31の頂部側に突き当てるように載置する。すると、指Fの腹部35が透光板29に当接するように配置され、指Fの側面36,36が導光体31の接触面32に当接するように配置される。
(Function)
Next, an operation of detecting a pulse wave by placing the finger F on the pulse wave detection unit 11 will be described.
3 is a perspective view when the finger F is placed on the pulse wave detector 11, and FIG. 4 is a cross-sectional view (partially front view) along the line AA in FIG.
As shown in FIGS. 3 and 4, the finger F is brought into close contact with the upper surface 21 a of the sensor case 21 of the pulse wave detection unit 11. At this time, the fingertip is placed so as to abut on the top side of the light guide 31. Then, the abdomen 35 of the finger F is disposed so as to contact the translucent plate 29, and the side surfaces 36, 36 of the finger F are disposed so as to contact the contact surface 32 of the light guide 31.

このように指Fを脈波検出部11に配置した状態で、発光部23から光を照射する。発光部23から照射された光は、導光体31の内部に照射され、その光は接触面32以外の面34で反射されながら導光体31の内部略全域に広がる。そして、透光性の接触面32より指Fの側面36,36に対してその光が照射される。   In this state, the light is emitted from the light emitting unit 23 with the finger F placed on the pulse wave detecting unit 11. The light emitted from the light emitting unit 23 is irradiated to the inside of the light guide 31, and the light is reflected by the surface 34 other than the contact surface 32 and spreads over substantially the entire inside of the light guide 31. Then, the light is applied to the side surfaces 36 and 36 of the finger F from the translucent contact surface 32.

すると、照射された光は指Fの内部において血管(血液)や脂肪や筋といった組織により吸収、拡散および反射され、照射された光の一部が指Fの腹部35を通過して、その下方に配置されている受光部24で検出される。受光部24で検出された光は、血管の脈動による血液量の変化に伴い変動する。受光部24は、光を受光するとともに、受光量の変化に応じた脈波信号を生成して、CPU12に出力する。   Then, the irradiated light is absorbed, diffused, and reflected by tissues such as blood vessels (blood), fats and muscles inside the finger F, and a part of the irradiated light passes through the abdomen 35 of the finger F and below it. Is detected by the light receiving unit 24 arranged in the. The light detected by the light receiving unit 24 fluctuates with a change in blood volume due to blood vessel pulsation. The light receiving unit 24 receives light, generates a pulse wave signal corresponding to a change in the amount of received light, and outputs the pulse wave signal to the CPU 12.

つまり、指F内部の毛細血管の血流変動に応じて、発光部23から照射された光の反射光の光量が変動するため、受光部24は毛細血管の脈動、すなわち脈波に応じた反射光の受光が可能となる。これにより、受光部24は脈波信号の生成が行える。   That is, since the amount of reflected light of the light emitted from the light emitting unit 23 varies according to the blood flow variation of the capillary blood vessel inside the finger F, the light receiving unit 24 reflects the pulsation of the capillary blood vessel, that is, the reflection according to the pulse wave. Light can be received. Thereby, the light receiving unit 24 can generate a pulse wave signal.

ここで、指Fに対して導光体31を用いて複数の箇所から光を照射するようにしたため、発光部23と受光部24との間に形成される光路を複数確保することができ、例えば、指Fのある箇所に圧力がかかり、その部分の血流が止まってしまうような場合でも、他の箇所の血流を検出することができ、安定して脈波を検出することができる。   Here, since light is emitted from a plurality of locations using the light guide 31 to the finger F, a plurality of optical paths formed between the light emitting unit 23 and the light receiving unit 24 can be secured, For example, even when pressure is applied to a location where the finger F is present and blood flow in that portion stops, blood flow in other locations can be detected, and pulse waves can be detected stably. .

本実施形態によれば、発光部23の発光面積より広い面積で形成された接触面32を有し、指Fの側面36に接するように構成された導光体31を備え、発光部23より照射された光が導光体31の内部を経由して指Fに照射され、指Fの腹部35に対応した位置に設けられた受光部24でその反射光を受光可能に構成した。したがって、指Fには導光体31の接触面32全体から光が照射されることとなり、その光のうち指Fの腹部35側に反射された光を受光部24で受光することにより脈波を検出することができる。つまり、従来の反射型よりも発光部23と受光部24との間に形成される光路を広く(多く)確保することができ、安定した脈波計測をすることができる。   According to the present embodiment, the light guide 31 includes the light guide 31 that has the contact surface 32 formed in a larger area than the light emission area of the light emitting unit 23 and is configured to contact the side surface 36 of the finger F. The irradiated light is applied to the finger F through the light guide 31, and the reflected light can be received by the light receiving unit 24 provided at a position corresponding to the abdomen 35 of the finger F. Accordingly, the finger F is irradiated with light from the entire contact surface 32 of the light guide 31, and the light reflected by the abdomen 35 side of the finger F among the light is received by the light receiving unit 24, thereby the pulse wave. Can be detected. That is, the optical path formed between the light emitting unit 23 and the light receiving unit 24 can be widened (larger) than the conventional reflection type, and stable pulse wave measurement can be performed.

また、導光体31と指Fの側面36とを接触させるように指を配置するだけで脈波を検出できる。つまり、従来の透過型のように指や爪に負担をかけることがなく、簡易な構成で脈波を検出することができる。   Further, the pulse wave can be detected simply by placing the finger so that the light guide 31 and the side surface 36 of the finger F are brought into contact with each other. That is, the pulse wave can be detected with a simple configuration without placing a burden on the finger or the nail unlike the conventional transmission type.

また、導光体31を、受光部24を取り巻くように平面視略U字状に形成したため、発光部23と受光部24との間に形成される光路をより広く(多く)確保することができ、より安定した脈波計測をすることができる。   In addition, since the light guide 31 is formed in a substantially U shape in plan view so as to surround the light receiving unit 24, it is possible to secure a wider (more) optical path formed between the light emitting unit 23 and the light receiving unit 24. And more stable pulse wave measurement.

また、導光体31における指Fとの接触面32以外の面34をミラー処理したため、発光部23より照射された光が導光体31の内部で反射され、その光を導光体31における指Fとの接触面32の略全面から指Fに向かって光を照射することができる。つまり、指Fに対して複数の箇所から光が照射されることとなり、受光部24との間に光路が複数形成され、脈波を安定して検出することができる。   Further, since the surface 34 other than the contact surface 32 with the finger F in the light guide 31 is mirrored, the light emitted from the light emitting unit 23 is reflected inside the light guide 31 and the light is reflected in the light guide 31. Light can be irradiated toward the finger F from substantially the entire contact surface 32 with the finger F. That is, light is irradiated to the finger F from a plurality of locations, and a plurality of optical paths are formed between the light receiving unit 24 and the pulse wave can be detected stably.

さらに、導光体31の接触面32を受光部24が配置された側に向かって指Fを載置する領域が狭まるように内側に傾斜したテーパ形状に形成したため、指Fを載置したときに導光体31と指Fとの密着性を高めることができる。つまり、発光部23より照射された光を、導光体31を介して受光部24で受光して脈波を検出する際に、外光などのノイズの影響を低減することができ、S/N比の向上を図ることができ、精度良く脈波を検出することができる。   Furthermore, since the contact surface 32 of the light guide 31 is formed in a tapered shape inclined inward so that the region where the finger F is placed narrows toward the side where the light receiving unit 24 is disposed, when the finger F is placed In addition, the adhesion between the light guide 31 and the finger F can be improved. That is, when the light emitted from the light emitting unit 23 is received by the light receiving unit 24 via the light guide 31 and the pulse wave is detected, the influence of noise such as external light can be reduced. The N ratio can be improved, and the pulse wave can be detected with high accuracy.

(第二実施形態)
次に、本発明に係る脈波検出装置の第二実施形態を図5に基づいて説明する。なお、本実施形態は第一実施形態と発光部の構成が異なるのみでその他の構成ついては略同一であるため、同一箇所には同一符号を付して詳細な説明は省略する。
(Second embodiment)
Next, a second embodiment of the pulse wave detection device according to the present invention will be described with reference to FIG. In addition, since this embodiment differs from 1st embodiment only in the structure of a light emission part, and it is substantially the same about other structures, the same code | symbol is attached | subjected to the same location and detailed description is abbreviate | omitted.

(脈波検出部)
図5は、脈波検出部111の斜視図である。
図5に示すように、脈波検出部111は、箱型のセンサケース121と、センサケース121の上面121aに載置された、複数の発光部123(本実施形態では3個)と、センサケース121の内部に構成された部品収納空間122内に配置された受光部24と、を備えている。なお、センサケース121における指Fの長手方向に沿う長さは、指Fの第一関節と略同等の長さで形成されている。
(Pulse wave detector)
FIG. 5 is a perspective view of the pulse wave detection unit 111.
As shown in FIG. 5, the pulse wave detection unit 111 includes a box-shaped sensor case 121, a plurality of light emitting units 123 (three in the present embodiment) placed on the upper surface 121 a of the sensor case 121, and a sensor And a light receiving unit 24 disposed in a component storage space 122 configured inside the case 121. Note that the length along the longitudinal direction of the finger F in the sensor case 121 is formed to be approximately the same length as the first joint of the finger F.

また、センサケース121の上面121aには、透光性のガラス板で構成された透光板29が取り付けられており、透光板29に指Fの腹部を密着させるようになっている。また、透光板29の部品収納空間22側には、受光部24が指Fを指向するように配置されている。また、発光部123および受光部24は、部品収納空間122内に配置された回路基板(不図示)に接続されている。この回路基板を介して、CPU12と通信可能に構成されており、受光部24の検出結果を演算し、脈波などを表示できるようになっている。   In addition, a translucent plate 29 made of a translucent glass plate is attached to the upper surface 121 a of the sensor case 121 so that the abdomen of the finger F is in close contact with the translucent plate 29. Further, the light receiving unit 24 is disposed on the component housing space 22 side of the translucent plate 29 so that the finger F is directed. The light emitting unit 123 and the light receiving unit 24 are connected to a circuit board (not shown) arranged in the component storage space 122. The circuit 12 is configured to be communicable with the CPU 12 so that the detection result of the light receiving unit 24 can be calculated and a pulse wave or the like can be displayed.

3個の発光部123は、受光部24を取り囲むようにセンサケース121の上面121aに配置されている。発光部123は、受光部24が配置された側に光を照射できる発光面123aが配されており、3個の発光部123で囲まれた領域に指Fを載置できるようになっている。   The three light emitting units 123 are arranged on the upper surface 121 a of the sensor case 121 so as to surround the light receiving unit 24. The light emitting unit 123 is provided with a light emitting surface 123 a that can irradiate light on the side where the light receiving unit 24 is disposed, and a finger F can be placed in an area surrounded by the three light emitting units 123. .

(作用)
次に、脈波検出部111に指Fを載置して脈波を検出する作用を説明する。
図6は脈波検出部111に指Fを載置したときの正面図(一部断面図)である。
図6に示すように、脈波検出部111のセンサケース121の上面121aに指Fを押え付けるようにして密着させる。このとき指Fの側面36を3個の発光部123の発光面123aに当接するように載置する。つまり、指Fの腹部35が透光板29に当接するように配置され、指Fの側面36,36が発光部123の発光面123aに当接するように配置される。
(Function)
Next, the operation of placing the finger F on the pulse wave detector 111 and detecting the pulse wave will be described.
FIG. 6 is a front view (partially sectional view) when the finger F is placed on the pulse wave detector 111.
As shown in FIG. 6, the finger F is brought into close contact with the upper surface 121 a of the sensor case 121 of the pulse wave detection unit 111. At this time, the side surface 36 of the finger F is placed so as to contact the light emitting surfaces 123 a of the three light emitting units 123. That is, the abdomen 35 of the finger F is disposed so as to contact the translucent plate 29, and the side surfaces 36, 36 of the finger F are disposed so as to contact the light emitting surface 123 a of the light emitting unit 123.

このように指Fを脈波検出部111に配置した状態で、3個の発光部123からそれぞれ光を照射する。つまり、発光部123から照射された光は、指Fの側面36に対して照射される。   With the finger F placed on the pulse wave detection unit 111 in this way, light is emitted from each of the three light emitting units 123. That is, the light emitted from the light emitting unit 123 is applied to the side surface 36 of the finger F.

すると、照射された光は指Fの内部において血管(血液)や脂肪や筋といった組織により吸収、拡散および反射され、照射された光の一部が指Fの腹部35を通過して、その下方に配置されている受光部24で検出される。受光部24で検出された光は、血管の脈動による血液量の変化に伴い変動する。受光部24は、光を受光するとともに、受光量の変化に応じた脈波信号を生成して、CPU12に出力する。   Then, the irradiated light is absorbed, diffused, and reflected by tissues such as blood vessels (blood), fats and muscles inside the finger F, and a part of the irradiated light passes through the abdomen 35 of the finger F and below it. Is detected by the light receiving unit 24 arranged in the. The light detected by the light receiving unit 24 fluctuates with a change in blood volume due to blood vessel pulsation. The light receiving unit 24 receives light, generates a pulse wave signal corresponding to a change in the amount of received light, and outputs the pulse wave signal to the CPU 12.

つまり、指F内部の毛細血管の血流変動に応じて、発光部123から照射された光の反射光の光量が変動するため、受光部24は毛細血管の脈動、すなわち脈波に応じた反射光の受光が可能となる。これにより、受光部24は脈波信号の生成が行える。   That is, since the amount of reflected light of the light emitted from the light emitting unit 123 varies according to the blood flow variation of the capillary blood vessel inside the finger F, the light receiving unit 24 reflects the pulsation of the capillary blood vessel, that is, the reflection according to the pulse wave. Light can be received. Thereby, the light receiving unit 24 can generate a pulse wave signal.

ここで、複数の発光部123を配置して、指Fに対して複数の箇所から光を照射するようにしたため、発光部123と受光部24との間に形成される光路を複数確保することができ、例えば、指Fのある箇所に圧力がかかり、その部分の血流が止まってしまうような場合でも、他の箇所の血流を検出することができ、安定して脈波を検出することができる。   Here, since the plurality of light emitting units 123 are arranged so that the finger F is irradiated with light from a plurality of locations, a plurality of optical paths formed between the light emitting unit 123 and the light receiving unit 24 are ensured. For example, even when pressure is applied to a location where the finger F is present and blood flow in that portion stops, blood flow in other locations can be detected, and pulse waves can be detected stably. be able to.

なお、発光部123の発光面123aを指Fの側面36に沿うように曲面形状にしてもよい。このようにすると、脈波検出装置111に指Fを載置したときに、発光面123aと指Fとの密着性を高めることができる。つまり、発光部123より照射された光を受光部24で受光して脈波を検出する際に、外光などのノイズの影響を低減することができ、S/N比の向上を図ることができ、精度良く脈波を検出することができる。   The light emitting surface 123a of the light emitting unit 123 may be curved so as to follow the side surface 36 of the finger F. In this way, when the finger F is placed on the pulse wave detection device 111, the adhesion between the light emitting surface 123a and the finger F can be improved. That is, when the light emitted from the light emitting unit 123 is received by the light receiving unit 24 and a pulse wave is detected, the influence of noise such as external light can be reduced, and the S / N ratio can be improved. The pulse wave can be detected with high accuracy.

本実施形態によれば、指Fの側面36に対応した位置に発光部123を複数設け、指Fの腹部36に対応した位置に設けられた受光部24で反射光を受光可能に構成したため、発光部123と受光部24との間に形成される光路を確実に複数確保することができる。したがって、従来の反射型よりも光路を多く確保できるため、安定した脈波計測をすることができる。   According to the present embodiment, a plurality of light emitting units 123 are provided at positions corresponding to the side surfaces 36 of the finger F, and reflected light can be received by the light receiving unit 24 provided at a position corresponding to the abdomen 36 of the finger F. A plurality of optical paths formed between the light emitting unit 123 and the light receiving unit 24 can be ensured reliably. Accordingly, since more optical paths can be secured than in the conventional reflection type, stable pulse wave measurement can be performed.

また、発光部123および受光部24が配置された箇所に指Fの側面36および腹部35を接触させるように指Fを配置するだけで脈波を検出できる。つまり、従来の透過型のように爪を傷つけることなどがなく、簡易な構成で脈波を検出することができる。   Further, the pulse wave can be detected simply by placing the finger F so that the side surface 36 and the abdomen 35 of the finger F are brought into contact with the place where the light emitting unit 123 and the light receiving unit 24 are arranged. That is, the pulse wave can be detected with a simple configuration without damaging the nail as in the conventional transmission type.

尚、本発明の技術範囲は上述した実施形態に限られるものではなく、本発明の趣旨を逸脱しない範囲において種々の変更を加えることが可能である。すなわち、本実施形態で挙げた具体的な形状、構成などは一例に過ぎず、適宜変更が可能である。   The technical scope of the present invention is not limited to the above-described embodiments, and various modifications can be made without departing from the spirit of the present invention. That is, the specific shape, configuration, and the like given in the present embodiment are merely examples, and can be changed as appropriate.

例えば、本実施形態では、導光体の接触面をテーパ形状に形成した場合の説明をしたが、指の形状に合わせた曲面形状としてもよい。
また、本実施形態では、導光体に対して発光部を1個取り付けた場合の説明をしたが、導光体に複数の発光部を接続させてもよい。
For example, although the case where the contact surface of the light guide is formed in a tapered shape has been described in the present embodiment, a curved surface shape that matches the shape of the finger may be used.
Moreover, although this embodiment demonstrated the case where one light emission part was attached with respect to the light guide, you may connect a some light emission part to a light guide.

本発明の実施形態における脈波検出装置の概略構成ブロック図である。It is a schematic block diagram of a pulse wave detection device in an embodiment of the present invention. 本発明の第一実施形態における脈波検出部の斜視図である。It is a perspective view of the pulse wave detection part in a first embodiment of the present invention. 本発明の第一実施形態における脈波検出部に指を配置したときの斜視図である。It is a perspective view when a finger | toe is arrange | positioned at the pulse-wave detection part in 1st embodiment of this invention. 図3のA−A線に沿う断面図(一部、正面図)である。It is sectional drawing (a part, front view) in alignment with the AA of FIG. 本発明の第二実施形態における脈波検出部の斜視図である。It is a perspective view of the pulse wave detection part in a second embodiment of the present invention. 本発明の第二実施形態における脈波検出部に指を配置したときの断面図(一部、正面図)である。It is sectional drawing when a finger is arrange | positioned at the pulse-wave detection part in 2nd embodiment of this invention (a part, front view). 従来の反射型の脈波検出部に指を配置したときの説明図である。It is explanatory drawing when a finger | toe is arrange | positioned to the conventional reflection type pulse wave detection part. 従来の透過型の脈波検出部に指を配置したときの説明図である。It is explanatory drawing when a finger | toe is arrange | positioned to the conventional transmission type pulse wave detection part.

符号の説明Explanation of symbols

10…脈波検出装置 11…脈波検出部 23…発光部 24…受光部 31…導光体32…接触面 35…指の腹部 36…指の側面 111…脈波検出部 123…発光部 F…指   DESCRIPTION OF SYMBOLS 10 ... Pulse wave detection apparatus 11 ... Pulse wave detection part 23 ... Light emission part 24 ... Light reception part 31 ... Light guide 32 ... Contact surface 35 ... Abdominal part of a finger | toe 36 ... Side surface of a finger 111 ... Pulse wave detection part 123 ... Light emission part F …finger

Claims (5)

指に向けて光を照射する発光部と、
該発光部より照射された光のうち前記指の側から反射してくる光を前記指の腹部に対応した位置で受光可能な受光部と、を備えた脈波検出装置において、
前記発光部の発光面積より広い面積で前記指の少なくとも側面に接する導光体を備え、
前記発光部より照射された光が前記導光体を経由して前記指に照射されることを特徴とする脈波検出装置。
A light emitting unit that emits light toward the finger;
In the pulse wave detection device comprising: a light receiving unit capable of receiving light reflected from the finger side of light emitted from the light emitting unit at a position corresponding to the abdomen of the finger;
A light guide that is in contact with at least a side surface of the finger in an area wider than a light emitting area of the light emitting unit;
The pulse wave detection device, wherein the light irradiated from the light emitting unit is irradiated to the finger through the light guide.
前記導光体が、前記受光部を取り巻くように形成されていることを特徴とする請求項1に記載の脈波検出装置。   The pulse wave detection device according to claim 1, wherein the light guide is formed so as to surround the light receiving unit. 前記導光体における前記指との接触面以外の面が、反射面加工処理されていることを特徴とする請求項1に記載の脈波検出装置。   The pulse wave detection device according to claim 1, wherein a surface other than a contact surface with the finger in the light guide is subjected to a reflection surface processing. 前記導光体の前記接触面が、前記受光部が配置された側に向かって前記指を載置する領域が狭まるように内側に傾斜したテーパ形状に形成されていることを特徴とする請求項1または2に記載の脈波検出装置。   The contact surface of the light guide is formed in a tapered shape inclined inward so that a region on which the finger is placed narrows toward a side where the light receiving unit is disposed. 3. The pulse wave detection device according to 1 or 2. 指に向けて光を照射する発光部と、
該発光部より照射された光のうち前記指の側から反射してくる光を受光可能な受光部と、を備えた脈波検出装置において、
前記指の側面に対応した位置に前記発光部が複数設けられ、
前記指の腹部に対応した位置に設けられた前記受光部で前記光の反射光を受光可能に構成されていることを特徴とする脈波検出装置。
A light emitting unit that emits light toward the finger;
In the pulse wave detection device comprising: a light receiving unit capable of receiving light reflected from the finger side of the light emitted from the light emitting unit;
A plurality of the light emitting portions are provided at positions corresponding to the side surfaces of the fingers;
The pulse wave detection device, wherein the light receiving unit provided at a position corresponding to the abdomen of the finger is configured to receive the reflected light of the light.
JP2008049791A 2008-02-29 2008-02-29 Pulse wave detecting device Withdrawn JP2009201918A (en)

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