JP6012198B2 - Capillary blood collection tool - Google Patents

Capillary blood collection tool Download PDF

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JP6012198B2
JP6012198B2 JP2012036328A JP2012036328A JP6012198B2 JP 6012198 B2 JP6012198 B2 JP 6012198B2 JP 2012036328 A JP2012036328 A JP 2012036328A JP 2012036328 A JP2012036328 A JP 2012036328A JP 6012198 B2 JP6012198 B2 JP 6012198B2
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憲一 岩佐
憲一 岩佐
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日精株式会社
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Description

本発明は、糖尿病患者などの採血に使用するキャピラリー採血具に関する。   The present invention relates to a capillary blood collection device used for blood collection of a diabetic patient or the like.

従来のキャピラリー採血具として、軸方向にストレートな筒状本体の先端部から毛細管現象を利用して血液を吸収するものが知られている(例えば、特許文献1,2参照)。また、毛細管現象を利用して血液を吸収する筒状本体を高分子材料から製作し、かつ、筒状本体の内面を親水性に処理し、また筒状本体内の所定の位置には吸引した血液量を所定の位置で止めるために液状封止用樹脂を配置し、この液状封止用樹脂の挿入を容易にするために筒状本体の吸引側先端部には外側に向かうに従って広がるテーパー面状の端部加工を施したものが知られている(例えば、特許文献3参照)。   As a conventional capillary blood collection device, one that absorbs blood from the distal end portion of a cylindrical main body that is straight in the axial direction by using a capillary phenomenon is known (for example, see Patent Documents 1 and 2). In addition, a cylindrical body that absorbs blood using capillary action is manufactured from a polymer material, and the inner surface of the cylindrical body is treated to be hydrophilic, and sucked to a predetermined position in the cylindrical body. In order to stop the blood volume at a predetermined position, a liquid sealing resin is arranged, and in order to facilitate the insertion of the liquid sealing resin, a tapered surface that widens toward the outside on the suction side tip of the cylindrical body What performed the shape edge part process is known (for example, refer patent document 3).

特開平9−43154号公報Japanese Patent Laid-Open No. 9-43154 特開2002−350432号公報JP 2002-350432 A 特開2005−342198号公報JP 2005-342198 A

しかしながら、従来のキャピラリー採血具は、基本的にはいずれも軸方向にストレートな筒状本体の端部から血液を吸い上げる構成であり、また特許文献3では、液状封止用樹脂の挿入を容易にするために筒状本体の吸引側先端部に外側に向かうに従って広がるテーパー面状の端部加工を施しているが、端部以外の内面が基本的には軸方向にほぼストレートな孔となっているため、毛細管現象による吸い上げが必ずしも効果的ではなかった。しかも、ほぼ一定の血液量を吸い上げて採血を効果的に行うためには、液状封止用樹脂を内部に挿入配置する必要があり、構造が複雑なものとなっていた。   However, all conventional capillary blood collection devices are basically configured to suck blood from the end of a cylindrical body that is straight in the axial direction. In Patent Document 3, it is easy to insert a liquid sealing resin. In order to do this, the end part of the tapered surface that widens toward the outside is applied to the suction side tip of the cylindrical main body, but the inner surface other than the end is basically a straight hole in the axial direction Therefore, siphoning by capillary action is not always effective. In addition, in order to suck up a substantially constant amount of blood and perform blood collection effectively, it is necessary to insert and arrange a liquid sealing resin inside, which makes the structure complicated.

本発明の目的は、毛細管現象による吸い上げを一層効果的に行うことができるようにしたキャピラリー採血具を提供するにある。   An object of the present invention is to provide a capillary blood sampling device that can perform suction more effectively by capillary action.

本発明は上記目的を達成するために、毛細管現象を利用して血液を吸い上げる筒状本体を有したキャピラリー採血具において、前記筒状本体の吸い上げ側先端部に透明または半透明のプラスチック樹脂製の毛細管吸引筒部を形成し、前記毛細管吸引筒部の中心部に吸引採血保持孔を形成し、前記吸引採血保持孔は、反吸い上げ側に向かって徐々に内径を小さくした逆テーパー面を有して形成すると共に、前記吸引採血保持孔は、吸い上げ側の内径をA、反吸い上げ側の内径をB、軸長をCとしたとき、0.5≦A≦1.5[mm]、0.4≦B≦1.4[mm]、2.0≦C≦6.0[mm]として形成し、前記毛細管吸引筒部の前記吸引採血保持孔先端部における吸い上げ側の内径部に、0.15〜0.30[mm]のR面取り加工を施し、更に、前記筒状本体には、前記毛細管吸引筒部の前記反吸い上げ側に位置する部分に中間筒部を形成し、前記中間筒部には、前記吸引採血保持孔の前記反吸い上げ側と連通し前記内径Bよりも径を増大した中間室を形成したことを特徴とする。 In order to achieve the above object, the present invention provides a capillary blood collection device having a cylindrical main body that draws blood using capillary action, and is made of a transparent or translucent plastic resin at the suction side tip of the cylindrical main body. A capillary suction tube portion is formed, and a suction blood collection holding hole is formed at the center of the capillary suction tube portion, and the suction blood collection holding hole has a reverse tapered surface with an inner diameter gradually decreasing toward the anti-suction side. co, the prior SL sucking blood holding hole to form Te, when the inner diameter of the wicking side a, the anti-siphoning the side of the inner diameter B, and the axial length was C, 0.5 ≦ a ≦ 1.5 [ mm], 0.4 ≦ B ≦ 1.4 [mm], 2.0 ≦ C ≦ 6.0 [mm], and on the suction side inner diameter portion of the suction blood collection holding hole tip of the capillary suction tube portion, R-chamfering of 0.15-0.30 [mm] Furthermore, the cylindrical main body is formed with an intermediate cylindrical portion at a portion located on the anti-sucking side of the capillary suction cylindrical portion, and the intermediate cylindrical portion includes the anti-sucking side of the suction blood collection holding hole. An intermediate chamber having a larger diameter than the inner diameter B is formed.

このような構成によれば、毛細管吸引筒部の中心部に逆テーパー面を形成しているため、その吸い上げ側先端部を血液に接触すると、毛細管現象によって血液を効果的に吸い上げることができる。このとき、毛細管吸引筒部における吸引採血保持孔は、全体が逆テーパー面を利用した簡単な構成で所定の採血量を一層効果的に、かつ容易に得ることができる。また、毛細管吸引筒部の中心部に逆テーパー面を形成するに際して、内径A、内径B、軸長Cを上述のように最適な寸法に設定しているため、その吸い上げ側先端部を血液に接触すると、毛細管現象によって血液を効果的に吸い上げることができる。このとき、毛細管吸引筒部における吸引採血保持孔の容積は、内径A、内径B、軸長Cによってほぼ決定することができるので、逆テーパー面を利用した簡単な構成で所定の採血量を一層効果的に、かつ容易に得ることができる。更に、R面取り加工により、前記毛細管吸引筒部への採血がスムーズかつ、確実に行われる。更に又、毛細管吸引筒部の吸い上げ側先端部を血液に接触すると、吸引採血保持孔に形成した逆テーパー面による毛細管現象によって吸引採血保持部へと効果的に吸い上げることができ、しかも、毛細管吸引筒部の毛細管現象によって吸い上げられる血液は吸引採血保持孔を満たすが、中間室側への毛細管現象による吸い上げは殆ど生じることがないので、所定の採血量を簡単な構成で容易に得ることができる。 According to such a structure, since the reverse taper surface is formed in the center part of a capillary suction cylinder part, when the suction side front-end | tip part contacts blood, blood can be sucked up effectively by a capillary phenomenon. At this time, the suction blood collection holding hole in the capillary suction tube portion can obtain a predetermined blood collection amount more effectively and easily with a simple configuration using a reverse tapered surface as a whole. In addition, when forming the reverse tapered surface at the center of the capillary suction tube portion, the inner diameter A, the inner diameter B, and the shaft length C are set to the optimum dimensions as described above. When in contact, blood can be effectively sucked up by capillary action. At this time, since the volume of the suction blood collection holding hole in the capillary suction tube portion can be substantially determined by the inner diameter A, the inner diameter B, and the shaft length C, a predetermined blood collection amount can be further increased with a simple configuration using a reverse tapered surface. It can be obtained effectively and easily. Furthermore, blood collection into the capillary suction tube portion is smoothly and reliably performed by the R chamfering process. Furthermore, when the tip of the suction side of the capillary suction cylinder is brought into contact with blood, it can be effectively sucked into the suction blood collection holding part by capillary action due to the reverse tapered surface formed in the suction blood collection holding hole. The blood sucked up by the capillary action of the tube portion fills the suction blood collection holding hole, but since the sucking up by the capillary action to the intermediate chamber side hardly occurs, a predetermined blood collection amount can be easily obtained with a simple configuration. .

本発明によるキャピラリー採血具によれば、毛細管吸引筒部の中心部に逆テーパー面を形成するため、その吸い上げ側先端部を血液に接触すると、毛細管現象によって血液を効果的に吸い上げることができる。このとき、毛細管吸引筒部における吸引採血保持孔は、全体が逆テーパー面を利用した簡単な構成で所定の採血量を一層効果的に、かつ容易に得ることができる。   According to the capillary blood sampling device of the present invention, since the reverse tapered surface is formed at the center of the capillary suction tube portion, blood can be sucked up effectively by capillary action when the suction side tip is brought into contact with blood. At this time, the suction blood collection holding hole in the capillary suction tube portion can obtain a predetermined blood collection amount more effectively and easily with a simple configuration using a reverse tapered surface as a whole.

本発明の一実施の形態によるキャピラリー採血具の側面図である。It is a side view of the capillary blood collection tool by one embodiment of the present invention. 図1に示したキャピラリー採血具の要部を拡大した断面図である。It is sectional drawing to which the principal part of the capillary blood collection tool shown in FIG. 1 was expanded.

以下、本発明の実施の形態を図面に基づいて説明する。   Hereinafter, embodiments of the present invention will be described with reference to the drawings.

図1は、キャピラリー採血具を示しており、全体はポリプロピレンなどのプラスチック樹脂製で透明もしくは半透明の筒状本体として構成され、患者の血液に接触させて毛細管現象を利用して吸い上げる毛細管吸引筒部1と、その後方に設けた中間筒部2と、図示しない分析装置側と接続する接続筒部3とを有し、各部1〜3は詳細を後述する中心部の空部で連通している。   FIG. 1 shows a capillary blood collection device, which is entirely made of a plastic resin such as polypropylene, and is configured as a transparent or translucent cylindrical main body. Part 1, an intermediate cylinder part 2 provided behind it, and a connecting cylinder part 3 connected to the analyzer side (not shown). Yes.

毛細管吸引筒部1は、全体的な外観は先細形状であるが、軸方向の中心部には中間筒部2側に向かって徐々に径を縮小した逆テーパー面4を有し、かつ、ほぼ所定の採血量となる容積とした吸引採血保持孔5を形成している。   The capillary suction tube portion 1 has a tapered shape as a whole, but has a reverse tapered surface 4 whose diameter is gradually reduced toward the intermediate tube portion 2 side in the central portion in the axial direction. A suction blood collection holding hole 5 having a predetermined volume of blood collection is formed.

中間筒部2も全体として円筒状であり、毛細管吸引筒部1側の端部は吸引採血保持孔5の逆テーパー面4の延長ではなく、吸引採血保持孔5に比べて開口面積を急激大きくしている。また、この開口面積を急激大きくした部分を起点として、接続筒部3側に向かって徐々に径を大きくしたテーパー面6を有し、かつ比較的に大きな容積を持つようにした中間室7を形成している。また中間筒部2の軸方向長は、毛細管吸引筒部1の軸方向長に比べて大きくしており、キャピラリー採血具単位としての取り扱いを容易にしている。 An intermediate tubular portion 2 also generally cylindrical, the ends of the capillary suction tube unit 1 side rather than the extension of the reverse tapered surface 4 of the suction blood holding hole 5, abruptly opening area than suction blood collection holding hole 5 It is getting bigger. Further, an intermediate chamber 7 having a tapered surface 6 having a diameter gradually increasing toward the connecting tube portion 3 starting from a portion where the opening area is suddenly increased, and having a relatively large volume. Is forming. In addition, the axial length of the intermediate tube portion 2 is larger than the axial length of the capillary suction tube portion 1 to facilitate handling as a capillary blood collection tool unit.

接続筒部3は図示しない分析装置側の接続部に対応して接続可能な外観構造と、吸引採血保持孔5および中間室7に連通し分析装置へと導く開口8とを有している。   The connecting tube portion 3 has an external structure that can be connected to a connecting portion on the analyzer side (not shown), and an opening 8 that communicates with the suction blood collection holding hole 5 and the intermediate chamber 7 and leads to the analyzer.

さらに、毛細管吸引筒部1および中間筒部2の詳細について図2を用いて説明する。毛細管吸引筒部1に形成した逆テーパー面4の中心軸に対する傾きは4.3度程度に選定しており、吸引採血保持孔5における左方の吸い上げ側の内径をAとし、一方、吸引採血保持孔5における右方の反吸い上げ側端の内径をBとし、また吸引採血保持孔5の軸長をCとして示している。ここで内径A=0.90[mm]であるが、望ましくは0.5≦A≦1.5[mm]であり、内径B=0.60[mm]であるが、望ましくは0.4≦B≦1.4[mm]であり、軸長C=4.0[mm]であるが、望ましくは2.0≦C≦6.0[mm]である。吸引採血保持孔5における左方の吸い上げ側の内径部には、0.15[mm]のR面取り加工を施したが、望ましくは0.15〜0.30[mm]である。 Further, the details of the capillary suction tube portion 1 and the intermediate tube portion 2 will be described with reference to FIG. The inclination with respect to the central axis of the reverse tapered surface 4 formed in the capillary suction tube portion 1 is selected to be about 4.3 degrees, and the inner diameter of the suction side of the suction blood collection holding hole 5 is A, while the suction blood collection The inner diameter of the right anti-suction side end of the holding hole 5 is indicated by B, and the axial length of the suction blood collection holding hole 5 is indicated by C. Here, the inner diameter A = 0.90 [mm], preferably 0.5 ≦ A ≦ 1.5 [mm], and the inner diameter B = 0.60 [mm], but preferably 0.4 ≦ B ≦ 1.4 [mm] and the axial length C = 4.0 [mm], but preferably 2.0 ≦ C ≦ 6.0 [mm]. The inner diameter portion on the left suction side of the suction blood collection holding hole 5 has been subjected to R chamfering of 0.15 [mm], preferably 0.15 to 0.30 [mm].

このように筒状本体の吸い上げ側に設けた毛細管吸引筒部1は、その中心部に逆テーパー面4を形成するに際して、内径A、内径B、軸長Cを上述のように設定したため、その吸い上げ先端部を血液に接触すると、毛細管現象によって血液を吸い上げることができる。単に、筒状本体にストレートな孔を形成した場合に比べて、効果的な毛細管現象によって素早く吸い上げることができる。このとき、毛細管吸引筒部1における吸引採血保持孔5の容積は、内径A、内径B、軸長Cによってほぼ決定することができるので、簡単な構成で採血量が不安定になることなく所定の採血量を容易に吸い上げることができる。また、毛細管吸引筒部1を透明または半透明のポリプロピレンなどのプラスチック樹脂製とすると、採血状況を容易に確認することができる。   In this way, the capillary suction tube portion 1 provided on the suction side of the tubular body has the inner diameter A, the inner diameter B, and the shaft length C set as described above when the reverse tapered surface 4 is formed at the center thereof. When the suction tip is brought into contact with blood, blood can be sucked up by capillary action. Compared to the case where a straight hole is simply formed in the cylindrical main body, it can be quickly sucked up by an effective capillary phenomenon. At this time, since the volume of the suction blood collection holding hole 5 in the capillary suction tube portion 1 can be substantially determined by the inner diameter A, the inner diameter B, and the shaft length C, the blood collection amount can be determined with a simple configuration without being unstable. The amount of blood collected can be sucked up easily. If the capillary suction tube portion 1 is made of a plastic resin such as transparent or translucent polypropylene, the blood collection status can be easily confirmed.

また毛細管吸引筒部1の後方に形成した中間筒部2には、毛細管吸引筒部1の逆テーパー面4における右端の反吸い上げ側の内径Bに対して、内径を急激に増大した中間室7を形成しているため、毛細管吸引筒部1の吸い上げ側先端部を血液に接触すると、吸引採血保持孔5に形成した逆テーパー面4による毛細管現象によって吸引採血保持孔5へと効果的に吸い上げることができると同時に、毛細管吸引筒部1の毛細管現象によって吸い上げられる血液で吸引採血保持孔5を満たすが、中間筒部2側への毛細管現象による吸い上げは殆ど生じない。   An intermediate chamber 7 having an inner diameter abruptly increased with respect to the inner diameter B on the opposite end of the reverse suction surface 4 of the capillary suction cylinder portion 1 with respect to the inner diameter B on the side opposite to the suction side is formed in the intermediate cylinder portion 2 formed behind the capillary suction cylinder portion 1. Therefore, when the tip of the suction side of the capillary suction tube portion 1 comes into contact with blood, it is effectively sucked into the suction blood collection holding hole 5 by capillary action due to the reverse tapered surface 4 formed in the suction blood collection holding hole 5. At the same time, the suction blood collection holding hole 5 is filled with blood sucked up by the capillary phenomenon of the capillary suction tube portion 1, but suction by the capillary phenomenon toward the intermediate tube portion 2 hardly occurs.

ここで、内径Bに対して内径を急激に増大した中間室7とは、吸引採血保持孔5だけでなく中間室7内まで積極的に毛細管現象によって血液を吸い込むのを中止するものであり、内径の増大の程度は適宜設定することができる。こうして吸い上げられる血液は、ほぼ吸引採血保持孔5だけを満たす所定容積の採血量となる。仮に、少量が吸引採血保持孔5から中間室7内に入り込んだとしても、特に問題とはならない。従って、中間筒部2は、採血量に応じて容積を決定するのではなく、主に取り扱いの面からその長さおよび大きさを決定することができる。   Here, the intermediate chamber 7 in which the inner diameter is suddenly increased with respect to the inner diameter B is to stop actively sucking blood not only through the suction blood collection holding hole 5 but also into the intermediate chamber 7 by capillary action, The degree of increase in the inner diameter can be set as appropriate. The blood sucked up in this way has a predetermined volume of blood collected that almost fills only the suction blood collection holding hole 5. Even if a small amount enters the intermediate chamber 7 from the suction blood collection holding hole 5, there is no particular problem. Therefore, the intermediate cylinder part 2 can determine the length and size mainly from the aspect of handling rather than determining the volume according to the blood collection amount.

また、筒状本体は、透明または半透明のポリプロピレンなどのプラスチック樹脂製としているため、逆テーパー面4を有する吸引採血保持孔5や中間室7を一体的に簡単に構成することができ、従来のように採血量を決めるために別部材の液状封止用樹脂を配置する必要はなく、その挿入のための加工も不要となり、構成を簡略化することができる。   Further, since the cylindrical main body is made of a plastic resin such as transparent or translucent polypropylene, the suction blood collection holding hole 5 having the reverse tapered surface 4 and the intermediate chamber 7 can be simply and integrally configured. Thus, it is not necessary to dispose a liquid sealing resin as a separate member in order to determine the amount of blood collected, and processing for the insertion is not necessary, and the configuration can be simplified.

1 毛細管吸引筒部
2 中間筒部
3 接続部
4 逆テーパー面
5 吸引採血保持孔
6 テーパー面
7 中間室
8 開口
DESCRIPTION OF SYMBOLS 1 Capillary suction cylinder part 2 Intermediate | middle cylinder part 3 Connection part 4 Reverse taper surface 5 Suction blood collection holding hole 6 Tapered surface 7 Intermediate chamber 8 Opening

Claims (1)

毛細管現象を利用して血液を吸い上げる筒状本体を有したキャピラリー採血具において、
前記筒状本体の吸い上げ側先端部に透明または半透明のプラスチック樹脂製の毛細管吸引筒部を形成し、前記毛細管吸引筒部の中心部に吸引採血保持孔を形成し、前記吸引採血保持孔は、反吸い上げ側に向かって徐々に内径を小さくした逆テーパー面を有して形成すると共に、前記吸引採血保持孔は、吸い上げ側の内径をA、反吸い上げ側の内径をB、軸長をCとしたとき、0.5≦A≦1.5[mm]、0.4≦B≦1.4[mm]、2.0≦C≦6.0[mm]として形成し、前記毛細管吸引筒部の前記吸引採血保持孔先端部における吸い上げ側の内径部に、0.15〜0.30[mm]のR面取り加工を施し、更に、前記筒状本体には、前記毛細管吸引筒部の前記反吸い上げ側に位置する部分に中間筒部を形成し、前記中間筒部には、前記吸引採血保持孔の前記反吸い上げ側と連通し前記内径Bよりも径を増大した中間室を形成したことを特徴としたキャピラリー採血具。


In a capillary blood collection tool having a cylindrical body that sucks blood using capillary action,
A capillary suction cylinder part made of transparent or translucent plastic resin is formed at the suction side tip of the cylindrical main body, a suction blood collection holding hole is formed at the center of the capillary suction cylinder part, and the suction blood collection holding hole is , co to form a reverse tapered surface gradually reduced inner diameter toward the non siphoning side, before Symbol sucking blood holding holes, the inner diameter of the wicking side a, the inner diameter of the anti-siphoning side B, the axial length And C ≦ 0.5 ≦ A ≦ 1.5 [mm], 0.4 ≦ B ≦ 1.4 [mm], 2.0 ≦ C ≦ 6.0 [mm], and the capillary tube An inner diameter portion on the suction side of the suction blood collection holding hole tip of the suction tube portion is subjected to R chamfering of 0.15 to 0.30 [mm], and further, the capillary suction tube portion is provided on the tubular body. An intermediate tube portion is formed in a portion located on the anti-sucking side of the intermediate tube portion, Capillary blood collection device which is characterized in that to form an intermediate chamber which is increased diameter than the inner diameter B communicating with the anti-wicking side of the suction blood holding hole.


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