以下、図面を参照して、本発明の実施の形態を説明する。なお、図面の寸法比率は、説明の都合上、誇張されて実際の比率とは異なる場合がある。また、以下の説明において、液体投与具の操作側(押圧する側)を「基端側」、液体を投与する側(針管が突出する側)を「先端側」と称す。
<第1実施形態>
Embodiments of the present invention will be described below with reference to the drawings. In addition, the dimension ratio of drawing is exaggerated on account of description, and may differ from an actual ratio. In the following description, the operation side (pressing side) of the liquid administration device is referred to as “base end side”, and the liquid administration side (side from which the needle tube protrudes) is referred to as “distal end side”.
<First Embodiment>
図1,2に示す第1実施形態に係る液体投与具10は、液体を生体内に投与するための医療用器具である。投与する液体は、使用目的に応じて適宜選択されるが、例えば、造血剤、ワクチン、ホルモン製剤、抗リウマチ剤、抗ガン剤、麻酔剤、血液凝固防止剤、ゲル化製剤等、主に皮下注射される薬剤が挙げられる。
A liquid administration device 10 according to the first embodiment shown in FIGS. 1 and 2 is a medical instrument for administering a liquid into a living body. The liquid to be administered is appropriately selected depending on the purpose of use, but for example, hematopoietics, vaccines, hormone preparations, anti-rheumatic agents, anti-cancer agents, anesthetics, anticoagulants, gelled preparations, etc. Examples include drugs that are injected.
液体投与具10は、液体の投与に用いられる本体部20と、液体の投与の際に本体部20から取り外されるキャップ30(保護部材)とを備えている。本体部20は、内部に液体を収容する構造体21(下部ハウジング)と、構造体21から液体を吐出させる操作を行うための操作部材40(上部ハウジング)と、構造体21に対して移動可能に設けられるカバー部材50と、カバー部材50を先端方向へ付勢する第1コイルバネ22と、操作部材40を構造体21に対して移動させる力を作用させる第2コイルバネ23と、を備えている。
The liquid administration device 10 includes a main body 20 that is used for liquid administration, and a cap 30 (protective member) that is removed from the main body 20 when the liquid is administered. The main body 20 is movable with respect to the structure 21 (lower housing) that stores liquid therein, an operation member 40 (upper housing) for performing an operation of discharging liquid from the structure 21, and the structure 21. The cover member 50 is provided, the first coil spring 22 that urges the cover member 50 in the distal direction, and the second coil spring 23 that applies a force that moves the operation member 40 relative to the structure 21. .
構造体21は、内部に液体を収容可能な筒状のシリンジ60(収容体)と、シリンジ60の先端に取り付けられる針管61と、シリンジ60の内部に対して摺動可能に配置されるガスケット62と、シリンジ60の外周に配置されてシリンジ60を支持する内側部材70と、内側部材70の外側に配置される外側部材80とを備えている。
The structure 21 includes a cylindrical syringe 60 (container) that can accommodate a liquid therein, a needle tube 61 attached to the tip of the syringe 60, and a gasket 62 that is slidably disposed with respect to the inside of the syringe 60. And an inner member 70 that is disposed on the outer periphery of the syringe 60 and supports the syringe 60, and an outer member 80 that is disposed outside the inner member 70.
シリンジ60は、基端側に基端開口部63が形成され、先端側に液体が通過する吐出口64が形成されている。針管61は、内部の流路がシリンジ60の吐出口64と連通するようにシリンジ60の先端に固定されており、先端に鋭利な針先が形成されている。ガスケット62は、シリンジ60の内壁面65に密着して液密性を維持しつつ、シリンジ60の軸方向に沿って摺動可能に配置される。ガスケット62がシリンジ60の内部を先端方向へ移動することで、シリンジ60とガスケット62によって規定される空間内の液体を、シリンジ60の吐出口64を介して針管61から吐出させることができる。
The syringe 60 has a proximal end opening 63 formed on the proximal end side and a discharge port 64 through which liquid passes on the distal end side. The needle tube 61 is fixed to the distal end of the syringe 60 so that the internal flow path communicates with the discharge port 64 of the syringe 60, and a sharp needle tip is formed at the distal end. The gasket 62 is disposed so as to be slidable along the axial direction of the syringe 60 while being in close contact with the inner wall surface 65 of the syringe 60 and maintaining liquid tightness. By moving the gasket 62 in the distal direction inside the syringe 60, the liquid in the space defined by the syringe 60 and the gasket 62 can be discharged from the needle tube 61 through the discharge port 64 of the syringe 60.
内側部材70は、シリンジ60の外周を囲む支持孔71が形成されており、この支持孔71にシリンジ60が嵌合して、シリンジ60が支持されている。
The inner member 70 is formed with a support hole 71 surrounding the outer periphery of the syringe 60, and the syringe 60 is fitted into the support hole 71 so that the syringe 60 is supported.
外側部材80は、内側部材70の外周を囲むように形成されるとともに、構造体21の外周面の一部を構成する。シリンジ60、内側部材70および外側部材80は、互いに連結若しくは接着されており、一体的に移動する構造をなしている。
The outer member 80 is formed so as to surround the outer periphery of the inner member 70 and constitutes a part of the outer peripheral surface of the structure 21. The syringe 60, the inner member 70, and the outer member 80 are connected or bonded to each other and have a structure that moves integrally.
操作部材40は、使用者が押圧するための押圧部41と、ガスケット62に連結される押し子42と、押圧部41から先端方向へ延在する2つの基端側係合部43とを備えている。
The operating member 40 includes a pressing portion 41 for a user to press, a pusher 42 connected to the gasket 62, and two proximal-side engaging portions 43 extending from the pressing portion 41 in the distal direction. ing.
押圧部41は、先端側が開口し、基端側が閉じた筒形状で形成されており、外側部材80の外周面を囲む筒状の押圧用筒部45と、押圧用筒部45の基端側の開口を塞ぐように平面状に形成される押圧用基端部46とを備えている。押圧用筒部45は、外側部材80の外周面と摺動可能である。
The pressing portion 41 is formed in a cylindrical shape that is open at the distal end side and closed at the proximal end side, and has a cylindrical pressing cylindrical portion 45 that surrounds the outer peripheral surface of the outer member 80, and a proximal end side of the pressing cylindrical portion 45. And a pressing base end portion 46 formed in a planar shape so as to close the opening. The pressing cylinder 45 is slidable with the outer peripheral surface of the outer member 80.
押し子42は、押圧用基端部46の内面の中心から先端方向へ延在し、先端に、ガスケット62が連結する凸部42Aが形成されている。
The pusher 42 extends from the center of the inner surface of the pressing base end portion 46 toward the distal end, and a convex portion 42A to which the gasket 62 is connected is formed at the distal end.
2つの基端側係合部43は、押し子42を挟んで対向するように位置し、いずれも先端方向へ向かって延在している。各々の基端側係合部43の先端には、互いに離れる方向(操作部材40の径方向外側)に突出する基端側爪部44が形成されている。各々の基端側爪部44の先端面には、径方向外側ほど基端側へ傾くように第2傾斜面44Aが形成される。そして、各々の基端側爪部44の基端面である基端側爪部基端面44Bは、押圧用基端部46から延在している部位に対する角度αが、略90度で形成される。
The two proximal end side engaging portions 43 are positioned so as to face each other with the pusher 42 interposed therebetween, and both extend in the distal direction. At the tip of each base end side engaging portion 43, a base end side claw portion 44 that protrudes away from each other (outward in the radial direction of the operation member 40) is formed. 44 A of 2nd inclined surfaces are formed in the front end surface of each base end side nail | claw part 44 so that it may incline to a base end side toward the radial direction outer side. And the base end side nail | claw base end surface 44B which is a base end surface of each base end side nail | claw part 44 is formed with the angle (alpha) with respect to the site | part extended from the base end part 46 for a press at about 90 degree | times. .
カバー部材50は、筒状のカバー筒部51と、カバー筒部51の先端側の開口を塞ぐように形成される平面状のカバー先端部52とを備えている。カバー筒部51は、外側部材80の内周面と摺動可能である。カバー部材50の内部には、第1コイルバネ22が配置されており、第1コイルバネ22の先端部がカバー先端部52の内面に接し、基端部が構造体21の内側部材70に接している。この第1コイルバネ22は、軸方向に収縮された状態で配置され、これによって、カバー部材50を先端方向へ付勢している。カバー部材50の基端には、径方向外側へ突出する返し部53が形成されている。カバー部材50は、内側部材70および外側部材80の間に形成される空間内へ収容されるように、第1コイルバネ22を収縮させつつ基端方向へ移動可能であり、この基端方向へ移動した状態から、収縮した第1コイルバネ22の弾性力(復元力)によって先端方向へ移動できる。カバー部材50が先端方向へ移動すると、返し部53が外側部材80の内側面に形成される突出部81に引っ掛かり、構造体21に対して所定の位置以上の突出が規制される。カバー部材50のカバー先端部52には、カバー部材50の中心軸上に、針管61が突出可能な針通過孔54(開口部)が形成され、針通過孔54を挟んで両側に、2つの係合部挿入孔55(挿入孔)が形成されている。針通過孔54は、カバー部材50が構造体21に対して相対的に基端方向へ移動する際に、針管61を通過させて先端方向へ突出させる。2つの係合部挿入孔55は、後述するキャップ係合部33(第2係合部)を通過させるための孔であり、操作部材40の2つの基端側係合部43の延長線上に位置している。
The cover member 50 includes a cylindrical cover tube portion 51 and a flat cover tip portion 52 formed so as to close the opening on the front end side of the cover tube portion 51. The cover cylinder portion 51 is slidable with the inner peripheral surface of the outer member 80. The first coil spring 22 is disposed inside the cover member 50, the distal end portion of the first coil spring 22 is in contact with the inner surface of the cover distal end portion 52, and the proximal end portion is in contact with the inner member 70 of the structure 21. . The first coil spring 22 is disposed in a contracted state in the axial direction, and thereby urges the cover member 50 in the distal direction. At the base end of the cover member 50, a return portion 53 that protrudes outward in the radial direction is formed. The cover member 50 is movable in the proximal direction while contracting the first coil spring 22 so as to be accommodated in a space formed between the inner member 70 and the outer member 80, and moves in the proximal direction. From this state, the first coil spring 22 contracted can be moved in the distal direction by the elastic force (restoring force) of the first coil spring 22. When the cover member 50 moves in the distal direction, the return portion 53 is caught by the protruding portion 81 formed on the inner side surface of the outer member 80, and the protrusion of the structure 21 beyond the predetermined position is restricted. A needle passage hole 54 (opening) through which the needle tube 61 can project is formed on the central axis of the cover member 50 at the cover front end portion 52 of the cover member 50. An engaging portion insertion hole 55 (insertion hole) is formed. When the cover member 50 moves in the proximal direction relative to the structure 21, the needle passage hole 54 allows the needle tube 61 to pass therethrough and project in the distal direction. The two engaging portion insertion holes 55 are holes for allowing a cap engaging portion 33 (second engaging portion), which will be described later, to pass through, and on the extension line of the two base end side engaging portions 43 of the operation member 40. positioned.
キャップ30は、筒状のキャップ筒部31と、キャップ筒部31の先端側の開口を塞ぐように形成される平面状のキャップ先端部32と、針先側キャップ35とを備えている。キャップ先端部32は、キャップ先端部32の内面から基端方向へ延在する2つのキャップ係合部33(第2係合部)を備えている。2つのキャップ係合部33は、キャップ30の中心軸を挟んで対向するように位置し、いずれも基端方向へ向かって延在している。各々のキャップ係合部33の基端には、互いに近づく方向(キャップ30の径方向内側)に突出するキャップ爪部34が形成されている。各々のキャップ爪部34の基端面には、径方向内側ほど先端側へ傾くように第1傾斜面34Aが形成される。そして、各々のキャップ爪部34の基端面であるキャップ爪部先端面34Bは、キャップ先端部32から延在している部位に対する角度βが、略90度で形成される。キャップ30は、カバー部材50の外周面を覆うようにカバー部材50の先端側から装着可能であり、装着されると、キャップ係合部33がカバー部材50の係合部挿入孔55を通過し、構造体21の内部に到達するとともに、キャップ筒部31の基端が、外側部材80の先端面に当接する。
The cap 30 includes a cylindrical cap cylinder portion 31, a planar cap distal end portion 32 formed so as to close an opening on the distal end side of the cap cylinder portion 31, and a needle tip side cap 35. The cap distal end portion 32 includes two cap engaging portions 33 (second engaging portions) extending in the proximal direction from the inner surface of the cap distal end portion 32. The two cap engaging portions 33 are positioned so as to face each other with the central axis of the cap 30 therebetween, and both extend in the proximal direction. At the base end of each cap engaging portion 33, a cap claw portion 34 protruding in a direction approaching each other (inner radial direction of the cap 30) is formed. A first inclined surface 34 </ b> A is formed on the proximal end surface of each cap claw portion 34 so as to be inclined toward the distal end side in the radially inner side. The cap claw tip end face 34B, which is the base end face of each cap claw 34, is formed with an angle β of approximately 90 degrees with respect to the portion extending from the cap tip 32. The cap 30 can be mounted from the front end side of the cover member 50 so as to cover the outer peripheral surface of the cover member 50. When the cap 30 is mounted, the cap engagement portion 33 passes through the engagement portion insertion hole 55 of the cover member 50. The base end of the cap cylinder portion 31 comes into contact with the distal end surface of the outer member 80 while reaching the inside of the structure 21.
針先側キャップ35は、有底筒状のハウジング36と、ハウジング36の内周面に設けられる弾性体37とを備えている。針先側キャップ35は、開口部が基端方向を向くようにキャップ先端部32の基端面に固定される。キャップ30がカバー部材50に装着されると、針管61の針先がハウジング36内に到達し、弾性体37に接触する。これにより、針先側キャップ35は、針管61の針先を保護し、針管61の先端開口を封止する役割を果たす。
The needle tip side cap 35 includes a bottomed cylindrical housing 36 and an elastic body 37 provided on the inner peripheral surface of the housing 36. The needle tip side cap 35 is fixed to the proximal end surface of the cap distal end portion 32 so that the opening portion faces the proximal end direction. When the cap 30 is attached to the cover member 50, the needle tip of the needle tube 61 reaches the housing 36 and contacts the elastic body 37. Thereby, the needle tip side cap 35 plays a role of protecting the needle tip of the needle tube 61 and sealing the distal end opening of the needle tube 61.
そして、操作部材40が外側部材80の外周面を覆う位置まで構造体21に対して先端方向へ移動した状態(図4(B)を参照)において、カバー部材50にキャップ30が装着されると、キャップ係合部33が係合部挿入孔55を通過し、キャップ爪部34の第1傾斜面34Aが、基端側爪部44の第2傾斜面44Aと接して互いに滑りながら変形し、キャップ爪部34が基端側爪部44を乗り越えて基端側爪部44よりも基端側へ移動して、キャップ爪部先端面34Bおよび基端側爪部基端面44Bが当接する。このとき、キャップ爪部先端面34Bの角度βが略90度であり、かつ基端側爪部基端面44Bの角度αが略90度であるため、キャップ爪部先端面34Bと基端側爪部基端面44Bの間で滑る方向(軸方向と直交する方向)にほとんど力が作用せず、キャップ爪部34および基端側爪部44が離脱不能に係合する。なお、互いに係合することで離脱を妨げる力を発生させることができるのであれば、角度αおよび角度βの値は限定されず、90度未満としても、90度を超えてもよい。ただし、角度αおよび角度βが90度以下であれば、キャップ爪部先端面34Bと基端側爪部基端面44Bが滑り難くなり、係合力が高くなる。また、特に限定されないが、キャップ爪部先端面34Bと基端側爪部基端面44Bが滑り難く、係合力を高めるために、キャップ爪部先端面34Bと基端側爪部基端面44Bの表面に小さな凹凸があってもよい。もしくは、キャップ爪部先端面34Bと基端側爪部基端面44Bにお互いかみ合う形状の突起部があってもよい。
Then, when the cap 30 is attached to the cover member 50 in a state where the operation member 40 has moved in the distal direction relative to the structure 21 to a position covering the outer peripheral surface of the outer member 80 (see FIG. 4B). The cap engaging portion 33 passes through the engaging portion insertion hole 55, and the first inclined surface 34A of the cap claw portion 34 is deformed while sliding against each other in contact with the second inclined surface 44A of the proximal end side claw portion 44, The cap claw part 34 gets over the base end side claw part 44 and moves to the base end side from the base end side claw part 44, and the cap claw part distal end surface 34B and the base end side claw base end face 44B come into contact with each other. At this time, since the angle β of the cap claw tip end face 34B is approximately 90 degrees and the angle α of the base claw base end face 44B is approximately 90 degrees, the cap claw tip end face 34B and the base end claw Almost no force acts in the direction of sliding between the base end surfaces 44B (the direction orthogonal to the axial direction), and the cap claw portion 34 and the base end side claw portion 44 engage with each other so as not to be detached. Note that the values of the angle α and the angle β are not limited as long as they can generate a force that prevents disengagement by engaging with each other, and may be less than 90 degrees or more than 90 degrees. However, if the angle α and the angle β are 90 degrees or less, the cap claw portion distal end surface 34B and the proximal end side claw portion proximal end surface 44B are difficult to slip, and the engagement force is increased. Further, although not particularly limited, the cap claw distal end surface 34B and the proximal end claw proximal end surface 44B are difficult to slip, and the surface of the cap claw distal end surface 34B and the proximal end claw proximal end surface 44B in order to increase the engagement force. There may be small irregularities. Alternatively, there may be a protrusion having a shape that meshes with the cap claw portion distal end surface 34B and the proximal end claw portion proximal end surface 44B.
液体投与具10は、さらに、操作部材40の操作を補助する補助機構と、所定の条件を満たすまで構造体21に対する操作部材40の移動を規制する操作部材固定機構と、所定の条件を満たした後に、構造体21に対するカバー部材50の移動を制限して針管61の露出をカバー部材50によって防止する安全機構とを備えている。
The liquid administration tool 10 further satisfies an auxiliary mechanism that assists the operation of the operation member 40, an operation member fixing mechanism that restricts the movement of the operation member 40 relative to the structure 21 until a predetermined condition is satisfied, and a predetermined condition. A safety mechanism is provided that restricts the movement of the cover member 50 relative to the structure 21 and prevents the exposure of the needle tube 61 by the cover member 50 later.
補助機構は、操作部材40の内部に配置され、操作部材40を構造体21に対して先端方向へ移動させる力を発生させる第2コイルバネ23により構成される。第2コイルバネ23は、外力が作用しない自然状態においてコイルが収縮した状態であり、これを強制的に引き伸ばした状態で、先端部が構造体21の内側部材70または外側部材80に連結され、基端部が押圧部41の押圧用基端部46に連結されている。したがって、補助機構は、操作部材40を構造体21に対して先端方向へ移動させる力を発生させ、シリンジ60から針管61を介して液体を吐出させる際の補助として機能する。なお、第2コイルバネ23の収縮力は、使用者が操作部材40を先端方向へ押圧しない場合に、第2コイルバネ23の収縮力によって液体が自動的に投与されることを防止できる大きさであることが好ましい。液体の投与の際、ガスケット62をシリンジ60内で先端方向へ移動させようと作用する力は、第2コイルバネ23の収縮力F1である。そして、これに対抗するように、液体がシリンジ60の内壁面65とガスケット62によって規定される空間内から針管61を介して吐出させるために必要な力を液体吐出抵抗F0とすると、下式(1)を満たすことが好ましい。
F1≦F0 ・・・(1)
The auxiliary mechanism is configured by a second coil spring 23 that is disposed inside the operation member 40 and generates a force that moves the operation member 40 in the distal direction relative to the structure 21. The second coil spring 23 is a state in which the coil contracts in a natural state where no external force is applied. In a state where the second coil spring 23 is forcibly stretched, the distal end portion is connected to the inner member 70 or the outer member 80 of the structure body 21. The end portion is connected to the pressing base end portion 46 of the pressing portion 41. Therefore, the auxiliary mechanism generates a force for moving the operation member 40 in the distal direction with respect to the structure 21 and functions as an auxiliary when discharging the liquid from the syringe 60 via the needle tube 61. Note that the contraction force of the second coil spring 23 is a magnitude that can prevent liquid from being automatically administered by the contraction force of the second coil spring 23 when the user does not press the operation member 40 in the distal direction. It is preferable. The force acting to move the gasket 62 in the distal direction in the syringe 60 during the administration of the liquid is the contraction force F <b> 1 of the second coil spring 23. In order to counter this, if the force required to discharge the liquid from the space defined by the inner wall surface 65 of the syringe 60 and the gasket 62 through the needle tube 61 is the liquid discharge resistance F0, the following formula ( It is preferable to satisfy 1).
F1 ≦ F0 (1)
これにより、液体を投与する際に、使用者が操作部材40を先端方向へ押圧することなしに、液体が自動的に投与されることを防止できる。したがって、使用者の意図通りに、液体の投与を行うことができ、例えば、使用者のペースで液体を投与することができ、また、液体の投与を中断したい場合には、押圧を停止することで、液体の投与を瞬時に中断できる。
Thereby, when a liquid is administered, the user can be prevented from automatically administering the liquid without pressing the operation member 40 in the distal direction. Therefore, the liquid can be administered as the user intends, for example, the liquid can be administered at the user's pace, and if it is desired to interrupt the liquid administration, the pressing is stopped. Thus, the liquid administration can be interrupted instantly.
なお、前記第2コイルバネ23は引張コイルバネでもよく、圧縮コイルバネでもよい。
The second coil spring 23 may be a tension coil spring or a compression coil spring.
操作部材固定機構は、所定の条件を満たすまでは、本体部20に対する操作部材40の移動を規制して、使用者が誤って操作部材40を押圧しても液体が投与されないようにするための機構である。操作部材固定機構は、キャップ係合部33および基端側係合部43の動作と干渉しないように、キャップ係合部33および基端側係合部43が設けられる縦断面(図1のA−A線に沿う断面)に対して所定角度(本実施形態では、60度)回転した縦断面(図1のB−B線に沿う断面)上に設けられる。
The operation member fixing mechanism restricts the movement of the operation member 40 relative to the main body unit 20 until a predetermined condition is satisfied, so that the liquid is not administered even if the user accidentally presses the operation member 40. Mechanism. The operation member fixing mechanism is a longitudinal cross-section in which the cap engaging portion 33 and the base end side engaging portion 43 are provided so as not to interfere with the operation of the cap engaging portion 33 and the base end side engaging portion 43 (A in FIG. 1). It is provided on a longitudinal section (cross section taken along line BB in FIG. 1) rotated by a predetermined angle (60 degrees in this embodiment) with respect to the cross section taken along line -A.
操作部材固定機構は、図5に示すように、内側部材70に形成される2つの固定用係合部72と、操作部材40に形成される2つの固定用凸部47と、カバー部材50に形成される2つの解除用凸部56とによって構成される。
As shown in FIG. 5, the operating member fixing mechanism includes two fixing engaging portions 72 formed on the inner member 70, two fixing convex portions 47 formed on the operating member 40, and the cover member 50. The two release convex portions 56 are formed.
内側部材70に設けられる2つの固定用係合部72は、キャップ係合部33および基端側係合部43が通過する位置と異なる位置に、内側部材70の中心軸を挟んで対向するように位置し、いずれも基端方向へ向かって延在している。各々の固定用係合部72の基端には、互いに近づく方向(内側部材70の径方向内側)に突出する固定用爪部73が形成されている。各々の固定用爪部73の先端面には、径方向内側ほど基端側へ傾くように第3傾斜面73Aが形成される。
The two fixing engaging portions 72 provided on the inner member 70 are opposed to each other at a position different from the position through which the cap engaging portion 33 and the proximal end engaging portion 43 pass with the central axis of the inner member 70 interposed therebetween. These are all located in the proximal direction. At the base end of each fixing engagement portion 72, a fixing claw portion 73 protruding in a direction approaching each other (in the radial direction of the inner member 70) is formed. A third inclined surface 73 </ b> A is formed on the distal end surface of each fixing claw portion 73 so as to be inclined toward the proximal end side inward in the radial direction.
操作部材40に設けられる2つの固定用凸部47は、基端側係合部43と異なる位置であって固定用爪部73へ向かう位置に、操作部材40の中心軸を挟んで対向するように位置し、いずれも先端方向へ向かって延在している。各々の固定用凸部47の先端面47Aは、操作部材40が構造体21から基端方向へ離れている初期状態(第1状態)において、内側部材70の固定用爪部73の基端面73Bと接しており、操作部材40の構造体21に対する先端方向への移動が規制されている。
The two fixing convex portions 47 provided on the operation member 40 are opposed to the positions that are different from the base end side engaging portion 43 and toward the fixing claw portion 73 with the central axis of the operation member 40 interposed therebetween. These are all located in the distal direction. In the initial state (first state) in which the operation member 40 is separated from the structure body 21 in the proximal direction, the distal end surface 73B of the securing claw 73 of the inner member 70 is the distal end surface 47A of each fixing convex portion 47. The movement of the operation member 40 in the distal direction relative to the structure 21 is restricted.
カバー部材50に設けられる2つの解除用凸部56は、キャップ係合部33と異なる位置であって固定用爪部73へ向かう位置に、カバー部材50の中心軸を挟んで対向するように位置し、いずれも基端方向へ向かって延在している。各々の解除用凸部56の基端面56Aは、カバー部材50が構造体21から先端方向へ突出している第1状態において、固定用爪部73の先端側に固定用爪部73から離れて位置する。そして、カバー部材50が構造体21に対して基端方向へ移動する場合に、図5(B)に示すように、解除用凸部56の基端面56Aが固定用爪部73の第3傾斜面73Aに当接し、固定用爪部73を互いに離れる方向(内側部材70の径方向外側)へ移動させる。これにより、固定用凸部47の先端面47Aと接触していた固定用爪部73が先端面47Aと接触しなくなり、操作部材40の構造体21に対する先端方向への移動制限が解除され、図5(C)に示すように、操作部材40が構造体21に対して先端方向へ移動可能となる。
The two release convex portions 56 provided on the cover member 50 are positioned so as to face each other at positions different from the cap engaging portion 33 and toward the fixing claw portion 73 with the central axis of the cover member 50 interposed therebetween. Both of them extend in the proximal direction. The base end surface 56A of each release convex portion 56 is located away from the fixing claw portion 73 on the distal end side of the fixing claw portion 73 in the first state in which the cover member 50 protrudes from the structure 21 in the distal direction. To do. Then, when the cover member 50 moves in the proximal direction with respect to the structure 21, the proximal end surface 56 </ b> A of the release convex portion 56 is the third slope of the fixing claw portion 73, as shown in FIG. 5B. Abutting on the surface 73A, the claw portions 73 for fixation are moved away from each other (the radially outer side of the inner member 70). As a result, the fixing claw 73 that has been in contact with the front end surface 47A of the fixing convex portion 47 does not come into contact with the front end surface 47A, and the restriction on the movement of the operation member 40 relative to the structure 21 in the front end direction is released. As shown in FIG. 5C, the operation member 40 can move in the distal direction with respect to the structure 21.
安全機構は、液体の投与が完了した後に、本体部20に対するカバー部材50の移動を制限して針管61の露出を防止する機構である。安全機構は、キャップ係合部33および基端側係合部43の動作と干渉しないように、かつ操作部材固定機構の動作と干渉しないように、キャップ係合部33および基端側係合部43が設けられる縦断面(図1のA−A線に沿う断面)に対して、操作部材固定機構とは異なる所定角度(本実施形態では、−60度)回転した縦断面(図1のC−C線に沿う断面)上に設けられる。
The safety mechanism is a mechanism that prevents the needle tube 61 from being exposed by limiting the movement of the cover member 50 with respect to the main body portion 20 after the administration of the liquid is completed. The safety mechanism includes the cap engagement portion 33 and the proximal end engagement portion so as not to interfere with the operations of the cap engagement portion 33 and the proximal end engagement portion 43 and so as not to interfere with the operation of the operation member fixing mechanism. A vertical cross section (C in FIG. 1) rotated by a predetermined angle (−60 degrees in the present embodiment) different from the operation member fixing mechanism with respect to the vertical cross section (section taken along the line AA in FIG. 1) provided with 43. (Cross section taken along line -C).
安全機構は、図6(A)に示すように、カバー部材50に形成される2つの安全用係合部57と、操作部材40に形成される2つの安全用凸部48と、内側部材70に形成されて安全用係合部57が撓むための空間を提供する切欠き部74とによって構成される。
As shown in FIG. 6A, the safety mechanism includes two safety engaging portions 57 formed on the cover member 50, two safety convex portions 48 formed on the operation member 40, and an inner member 70. And a notch portion 74 that provides a space for the safety engagement portion 57 to bend.
カバー部材50に設けられる2つの安全用係合部57は、キャップ係合部33および基端側係合部43が通過する位置と異なる位置であって、かつ解除用凸部56と異なる位置に、カバー部材50の中心軸を挟んで対向するように位置し、いずれも基端方向へ向かって延在している。各々の安全用係合部57の基端には、互いに近づく方向(カバー部材50の径方向内側)に突出する安全用爪部58が形成されている。各々の安全用爪部58の基端面には、径方向内側ほど先端側へ傾くように第4傾斜面58Aが形成される。
The two safety engaging portions 57 provided on the cover member 50 are at positions different from the positions through which the cap engaging portion 33 and the base end side engaging portion 43 pass and at positions different from the release convex portion 56. The cover members 50 are positioned so as to face each other across the central axis, and both extend in the proximal direction. At the base end of each safety engagement portion 57, a safety claw portion 58 protruding in a direction approaching each other (inward in the radial direction of the cover member 50) is formed. A fourth inclined surface 58A is formed on the proximal end surface of each safety claw portion 58 so as to be inclined toward the distal end side in the radially inner side.
操作部材40に設けられる2つの安全用凸部48は、基端側係合部43および固定用凸部47と異なる位置であって安全用爪部58へ向かう位置に、操作部材40の中心軸を挟んで対向するように位置し、いずれも先端方向へ向かって延在している。各々の安全用凸部48の先端面には、径方向外側ほど基端側へ傾くように第5傾斜面48Aが形成される。
The two safety convex portions 48 provided on the operation member 40 are located at positions different from the proximal end engaging portion 43 and the fixing convex portion 47 and toward the safety claw portion 58 at the central axis of the operation member 40. Both are located so as to face each other, and both extend toward the distal end. A fifth inclined surface 48A is formed on the distal end surface of each safety convex portion 48 so as to be inclined toward the proximal end as it extends radially outward.
内側部材70に形成される2つの切欠き部74は、図6(B)に示すように、カバー部材50が構造体21に対して基端方向へ移動した状態において、カバー部材50の安全用係合部57に対して径方向外側に、内側部材70の中心軸を挟んで対向するように位置し、いずれも先端方向へ向かって切り欠かれるスリット状に形成されている。図6(A)に示すように、カバー部材50が構造体21に対して先端方向へ移動している状態においては、安全用係合部57の径方向外側に切欠き部74が存在せず、したがって安全用係合部57が径方向外側へ撓むことが抑制される。この状態から、カバー部材50が構造体21に対して基端方向へ移動した状態となると、安全用係合部57の径方向外側に切欠き部74が存在するため、安全用係合部57が径方向外側へ撓むことが可能な状態となる。この状態から、さらに操作部材40が構造体21に対して先端方向へ移動すると、図6(B)に示すように、安全用爪部58の第4傾斜面58Aに、操作部材40に設けられる安全用凸部48の第5傾斜面48Aが接触し、安全用係合部57が、切欠き部74へ逃げるように径方向外側へ撓む。これにより、安全用係合部57によって、操作部材40の移動が妨げられず、液体の投与が可能である。そして、操作部材40が構造体21に対して先端方向へ移動した状態で、カバー部材50が先端方向へ移動すると、図6(C)に示すように、安全用係合部57の撓みが戻り、安全用爪部58の第4傾斜面58Aが安全用凸部48の第5傾斜面48Aと接触する。このとき、安全用係合部57の径方向外側には、切欠き部74が設けられないため、安全用係合部57の径方向外側への撓みが抑制され、カバー部材50の構造体21に対する基端方向への移動が抑制される。
As shown in FIG. 6B, the two notches 74 formed in the inner member 70 are used for safety of the cover member 50 in a state where the cover member 50 is moved in the proximal direction with respect to the structure 21. It is located on the radially outer side with respect to the engaging portion 57 across the central axis of the inner member 70, and both are formed in a slit shape that is cut away in the distal direction. As shown in FIG. 6A, in the state where the cover member 50 is moved in the distal direction with respect to the structure 21, the notch 74 does not exist on the radially outer side of the safety engagement portion 57. Therefore, the safety engagement portion 57 is restrained from bending outward in the radial direction. From this state, when the cover member 50 is moved in the proximal direction with respect to the structure 21, the notch portion 74 exists on the radially outer side of the safety engagement portion 57. Can be bent outward in the radial direction. When the operation member 40 further moves in the distal direction relative to the structure 21 from this state, the operation member 40 is provided on the fourth inclined surface 58A of the safety claw portion 58 as shown in FIG. 6B. The fifth inclined surface 48 </ b> A of the safety convex portion 48 comes into contact, and the safety engagement portion 57 bends radially outward so as to escape to the notch portion 74. Thereby, the movement of the operation member 40 is not hindered by the safety engagement portion 57, and the liquid can be administered. Then, when the cover member 50 moves in the distal direction with the operation member 40 moved in the distal direction with respect to the structure 21, the bending of the safety engagement portion 57 returns as shown in FIG. The fourth inclined surface 58A of the safety claw portion 58 is in contact with the fifth inclined surface 48A of the safety convex portion 48. At this time, since the notch portion 74 is not provided on the radially outer side of the safety engagement portion 57, the radial engagement of the safety engagement portion 57 is suppressed, and the structure 21 of the cover member 50 is suppressed. Movement in the proximal direction with respect to is suppressed.
キャップ30、ハウジング36、操作部材40、カバー部材50、シリンジ60、内側部材70、および外側部材80の構成材料は、特に限定されず、例えば、ポリカーボネート、ポリ塩化ビニル、ポリエチレン、ポリプロピレン、環状ポリオレフィン、ポリスチレン、ポリ−(4−メチルペンテン−1)、ポリエチレンテレフタレート、ポリエチレンナフタレート等のポリエステル、ブタジエン−スチレン共重合体、ポリアミド(例えば、ナイロン6、ナイロン6・6、ナイロン6・10、ナイロン12)のような各種樹脂が挙げられる。
The constituent materials of the cap 30, the housing 36, the operation member 40, the cover member 50, the syringe 60, the inner member 70, and the outer member 80 are not particularly limited. For example, polycarbonate, polyvinyl chloride, polyethylene, polypropylene, cyclic polyolefin, Polyester such as polystyrene, poly- (4-methylpentene-1), polyethylene terephthalate, polyethylene naphthalate, butadiene-styrene copolymer, polyamide (for example, nylon 6, nylon 6,6, nylon 6,10, nylon 12) And various resins.
ガスケット62および弾性体37の構成材料は、弾性材料であることが好ましいが、特に限定されず、例えば、天然ゴム、ブチルゴム、イソプレンゴム、ブタジエンゴム、スチレン−ブタジエンゴム、シリコーンゴムのような各種ゴム材料や、ポリウレタン系、ポリエステル系、ポリアミド系、オレフィン系、スチレン系等の各種熱可塑性エラストマー、あるいはそれらの混合物等が挙げられる。
The constituent material of the gasket 62 and the elastic body 37 is preferably an elastic material, but is not particularly limited. For example, various rubbers such as natural rubber, butyl rubber, isoprene rubber, butadiene rubber, styrene-butadiene rubber, and silicone rubber. Examples thereof include materials, various thermoplastic elastomers such as polyurethane, polyester, polyamide, olefin, and styrene, or mixtures thereof.
針管61の構成材料は、特に限定されず、例えば、ステンレス鋼、アルミニウムまたはアルミニウム合金、チタンまたはチタン合金のような金属材用が挙げられる。
The constituent material of the needle tube 61 is not particularly limited, and examples thereof include metal materials such as stainless steel, aluminum or aluminum alloy, titanium or titanium alloy.
第1コイルバネ22および第2コイルバネ23の構成材料は、特に限定されず、例えば、ステンレス鋼、銅等のような金属材料が挙げられる。
The constituent material of the 1st coil spring 22 and the 2nd coil spring 23 is not specifically limited, For example, metal materials, such as stainless steel and copper, are mentioned.
次に、第1実施形態に係る液体投与具10の使用方法を説明する。
Next, a method for using the liquid administration device 10 according to the first embodiment will be described.
始めに、図2に示すように、未使用の初期状態(第1状態)の液体投与具10を準備する。この初期状態において、液体投与具10は、カバー部材50が第1コイルバネ22によって先端側に付勢されており、操作部材40が構造体21から基端方向に離れて位置し、かつキャップ30がカバー部材50を覆っている。したがって、針管61がカバー部材50およびキャップ30に囲まれており、針管61の誤穿刺を確実に防止でき、かつ針管61の滅菌状態を維持できる。また、カバー部材50がキャップ30で覆われているため、カバー部材50が構造体21に対して移動せず、誤作動を防止できる。
First, as shown in FIG. 2, an unused liquid administration device 10 in an initial state (first state) is prepared. In this initial state, in the liquid administration device 10, the cover member 50 is biased toward the distal end side by the first coil spring 22, the operation member 40 is positioned away from the structure 21 in the proximal direction, and the cap 30 is The cover member 50 is covered. Therefore, the needle tube 61 is surrounded by the cover member 50 and the cap 30, so that erroneous puncture of the needle tube 61 can be reliably prevented, and the sterilized state of the needle tube 61 can be maintained. Moreover, since the cover member 50 is covered with the cap 30, the cover member 50 does not move with respect to the structure 21, and malfunction can be prevented.
次に、本体部20に対して先端方向へキャップ30を移動させ、図3(A)に示すように、キャップ係合部33をカバー部材50の係合部挿入孔55から引き抜き、本体部20からキャップ30を取り外す。このとき、針先側キャップ35から針管61が引き抜かれ針管61の先端開口の封止が解かれる。
Next, the cap 30 is moved in the distal direction with respect to the main body portion 20, and the cap engaging portion 33 is pulled out from the engaging portion insertion hole 55 of the cover member 50 as shown in FIG. Remove cap 30 from. At this time, the needle tube 61 is pulled out from the needle tip side cap 35, and the tip opening of the needle tube 61 is unsealed.
次に、操作部材40を把持して、カバー部材50のカバー先端部52を生体に当接させる。このとき、図5(A)に示すように、操作部材固定機構を構成する内側部材70の固定用爪部73が、固定用凸部47の先端面47Aと当接しているため、操作部材40の構造体21に対する先端方向への移動が規制されて、針管61を穿刺する前に液体が吐出されず、予期しない液体の吐出を抑制できる。
Next, the operating member 40 is grasped and the cover tip portion 52 of the cover member 50 is brought into contact with the living body. At this time, as shown in FIG. 5A, the fixing claw 73 of the inner member 70 constituting the operating member fixing mechanism is in contact with the tip surface 47 </ b> A of the fixing convex portion 47, and therefore the operating member 40. The movement in the distal direction with respect to the structure 21 is restricted, so that liquid is not discharged before the needle tube 61 is punctured, and unexpected liquid discharge can be suppressed.
次に、操作部材40を先端方向へ押圧する。これにより、構造体21に対する操作部材40の位置が操作部材固定機構によって維持されつつ、図3(B)に示すように、第1コイルバネ22が収縮し、カバー部材50に対して構造体21および操作部材40が一体的に先端方向へ移動する。これにより、針管61が、カバー部材50の針通過孔54を通って先端方向へ突出し、生体を穿刺する。
Next, the operation member 40 is pressed in the distal direction. Thereby, while the position of the operation member 40 with respect to the structure 21 is maintained by the operation member fixing mechanism, the first coil spring 22 contracts as shown in FIG. The operation member 40 moves integrally in the distal direction. As a result, the needle tube 61 projects through the needle passage hole 54 of the cover member 50 in the distal direction, and punctures the living body.
そして、カバー部材50が構造体21に対して基端方向へ移動すると、図5(B)に示すように、カバー部材50に設けられる解除用凸部56の基端面56Aが、内側部材70に設けられる固定用爪部73の第3傾斜面73Aに当接し、固定用爪部73が径方向外側へ移動する。これにより、固定用凸部47の先端面47Aと接触していた固定用爪部73が固定用凸部47と接触しなくなり、操作部材固定機構による操作部材40の構造体21に対する先端方向への移動制限が解除される。
When the cover member 50 moves in the proximal direction with respect to the structure body 21, the proximal end surface 56 </ b> A of the release convex portion 56 provided on the cover member 50 is formed on the inner member 70 as shown in FIG. The fixing claw 73 abuts against the third inclined surface 73A of the fixing claw 73 provided, and the fixing claw 73 moves radially outward. As a result, the fixing claw 73 that has been in contact with the distal end surface 47A of the fixing convex portion 47 does not come into contact with the fixing convex portion 47, and the operating member fixing mechanism moves the distal end of the operating member 40 with respect to the structure 21. Movement restriction is released.
また、カバー部材50が構造体21に対して基端方向へ移動すると、安全機構を構成する安全用係合部57の径方向外側に切欠き部74が存在することになり、安全用係合部57が径方向外側へ撓むことが可能な状態となる。
Further, when the cover member 50 moves in the proximal direction with respect to the structure 21, the notch 74 is present on the radially outer side of the safety engagement portion 57 constituting the safety mechanism, and the safety engagement is performed. It will be in the state where the part 57 can bend to a radial direction outer side.
次に、操作部材40をさらに先端方向へ押圧すると、図3(C),図5(C)に示すように、操作部材40が構造体21に対して先端方向へ移動する。これにより、ガスケット62がシリンジ60内を先端方向へ摺動し、シリンジ60内の液体が、針管61を介して生体内へ投与される。このとき、図6(B)に示すように、安全機構を構成する安全用爪部58の第4傾斜面58Aに、操作部材40に設けられる安全用凸部48の第5傾斜面48Aが接触し、安全用係合部57が、切欠き部74へ逃げるように径方向外側へ撓むため、操作部材40の移動が安全用係合部57によって妨げられず、液体の投与が可能である。
Next, when the operating member 40 is further pressed in the distal direction, the operating member 40 moves in the distal direction with respect to the structure 21 as shown in FIGS. 3 (C) and 5 (C). Thereby, the gasket 62 slides in the syringe 60 in the distal direction, and the liquid in the syringe 60 is administered into the living body via the needle tube 61. At this time, as shown in FIG. 6B, the fifth inclined surface 48A of the safety convex portion 48 provided on the operation member 40 contacts the fourth inclined surface 58A of the safety claw portion 58 constituting the safety mechanism. Since the safety engagement portion 57 bends radially outward so as to escape to the notch 74, the movement of the operation member 40 is not hindered by the safety engagement portion 57, and liquid can be administered. .
そして、操作部材40が構造体21に対して先端方向へ移動する際に、補助機構である第2コイルバネ23によって操作部材40を先端方向へ移動させる力が作用するため、小さい押圧力で液体の投与が可能である。このため、力の弱い高齢者や女性、手指に痛みや変形があるリウマチ患者等が自己投与する場合であっても、操作が容易である。また、上述した式(1)のように、第2コイルバネ23の収縮力F1が、使用者が操作部材40を先端方向へ押圧することなしに、液体が自動的に投与されることを防止する大きさに設定されているため、使用者の意図通りに液体の投与を行うことができ、液体の投与を中断したい場合には、押圧を停止することで、液体の投与を瞬時に中断できる。
When the operation member 40 moves in the distal direction with respect to the structure 21, a force that moves the operation member 40 in the distal direction acts by the second coil spring 23, which is an auxiliary mechanism. Administration is possible. For this reason, even if it is a case where the elderly person with weak power, a woman, the rheumatic patient with a pain and deformation | transformation of a finger, etc. self-administer, operation is easy. Further, as in the above-described formula (1), the contraction force F1 of the second coil spring 23 prevents the liquid from being automatically administered without the user pressing the operation member 40 in the distal direction. Since the size is set, the liquid can be administered as intended by the user. When the liquid administration is to be interrupted, the liquid administration can be instantaneously interrupted by stopping the pressing.
操作部材40が構造体21に対して先端方向へ移動して投与が完了した状態(第2状態)となり、使用者が操作部材40への押圧力を緩めると、図4(A)に示すように、第1コイルバネ22の拡張力により、構造体21が、カバー部材50に対して基端方向へ移動し、針管61が生体から引き抜かれて、針通過孔54を通ってカバー部材50の内側に収容される。なお、第2コイルバネ23は、自然状態において収縮された状態を強制的に引き伸ばした引っ張りバネであるため、第2コイルバネ23の収縮力以上の力が作用しない限り、操作部材40が構造体21に対して基端方向へ移動することはない。構造体21が、カバー部材50に対して基端方向へ移動すると、図6(C)に示すように、安全機構を構成する安全用係合部57の撓みが戻り、安全用爪部58が安全用凸部48の第5傾斜面48Aと接触する。このとき、安全用係合部57の径方向外側には、切欠き部74が設けられないため、安全用係合部57が径方向外側へ再び撓むことが抑制され、構造体21に対するカバー部材50の移動が抑制される。このため、針管61がカバー部材50から再び突出することが防止され、針管61による誤穿刺を抑制して安全性を確保できる。
When the operation member 40 moves in the distal direction with respect to the structure 21 to complete the administration (second state) and the user loosens the pressing force on the operation member 40, as shown in FIG. Further, due to the expansion force of the first coil spring 22, the structure 21 moves in the proximal direction with respect to the cover member 50, the needle tube 61 is pulled out from the living body, passes through the needle passage hole 54, and enters the inside of the cover member 50. Is housed in. Since the second coil spring 23 is a tension spring that forcibly stretches the contracted state in the natural state, the operation member 40 is applied to the structure 21 as long as no force greater than the contraction force of the second coil spring 23 is applied. On the other hand, it does not move in the proximal direction. When the structure 21 moves in the proximal direction with respect to the cover member 50, as shown in FIG. 6C, the bending of the safety engaging portion 57 constituting the safety mechanism returns, and the safety claw portion 58 It contacts the fifth inclined surface 48A of the safety convex portion 48. At this time, since the notch portion 74 is not provided on the radially outer side of the safety engagement portion 57, the safety engagement portion 57 is prevented from being bent again toward the radially outer side, and the structure 21 is covered. The movement of the member 50 is suppressed. For this reason, it is prevented that the needle tube 61 protrudes from the cover member 50 again, and the safety can be ensured by suppressing erroneous puncture by the needle tube 61.
この後、液体の投与前に本体部20から取り外したキャップ30を把持し、図4(B)に示すように、キャップ係合部33をカバー部材50の係合部挿入孔55に挿入し、キャップ30を本体部20に対して基端方向へ押し込む。このとき、初期状態(第1状態)においてキャップ30が装着されていた状態と異なり、構造体21に対して操作部材40が先端方向へ移動した状態(第2状態)となっているため、キャップ係合部33が、基端側係合部43と当接する。これにより、キャップ爪部34の第1傾斜面34Aが、基端側爪部44の第2傾斜面44Aと接して互いに滑りながら変形し、キャップ爪部34が基端側爪部44を乗り越えて基端側爪部44よりも基端側へ移動する。このとき、キャップ爪部先端面34Bの角度βが略90度であり、かつ基端側爪部基端面44Bの角度αが略90度であるため、キャップ爪部先端面34Bと基端側爪部基端面44Bの間で滑る方向(軸方向と直交する方向)にほとんど力が作用せず、キャップ爪部34および基端側爪部44が離脱不能に係合する。これにより、キャップ30を、本体部20に対して取り外し不能となるように強固に装着できる。また、特に限定されないが、キャップ爪部先端面34Bと基端側爪部基端面44Bが滑り難く、係合力を高めるために、キャップ爪部先端面34Bと基端側爪部基端面44Bの表面に小さな凹凸があってもよい。もしくは、キャップ爪部先端面34Bと基端側爪部基端面44Bにお互いかみ合う形状の突起部があってもよい。
Thereafter, the cap 30 removed from the main body 20 before the administration of the liquid is gripped, and the cap engaging portion 33 is inserted into the engaging portion insertion hole 55 of the cover member 50 as shown in FIG. The cap 30 is pushed into the main body 20 in the proximal direction. At this time, unlike the state in which the cap 30 is mounted in the initial state (first state), the operation member 40 is moved in the distal direction with respect to the structure 21 (second state). The engaging portion 33 comes into contact with the proximal end side engaging portion 43. As a result, the first inclined surface 34A of the cap claw portion 34 is deformed while sliding on and in contact with the second inclined surface 44A of the base end side claw portion 44, and the cap claw portion 34 gets over the base end side claw portion 44. It moves to the base end side from the base end side claw portion 44. At this time, since the angle β of the cap claw tip end face 34B is approximately 90 degrees and the angle α of the base claw base end face 44B is approximately 90 degrees, the cap claw tip end face 34B and the base end claw Almost no force acts in the direction of sliding between the base end surfaces 44B (the direction orthogonal to the axial direction), and the cap claw portion 34 and the base end side claw portion 44 engage with each other so as not to be detached. Thereby, the cap 30 can be firmly attached to the main body portion 20 so as not to be removable. Further, although not particularly limited, the cap claw distal end surface 34B and the proximal end claw proximal end surface 44B are difficult to slip, and the surface of the cap claw distal end surface 34B and the proximal end claw proximal end surface 44B in order to increase the engagement force. There may be small irregularities. Alternatively, there may be a protrusion having a shape that meshes with the cap claw portion distal end surface 34B and the proximal end claw portion proximal end surface 44B.
以上のように、第1実施形態に係る液体投与具10は、本体部20が、内部に液体を収容可能なシリンジ60(収容体)、および先端に針先を有し基端がシリンジ60の内部と連通可能な針管61を備える構造体21と、構造体21に対して相対的に先端方向へ移動可能であり、先端方向へ移動する前の第1状態から先端方向へ移動した後の第2状態となるように操作を行うことでシリンジ60の内部体積を減少させて針管61から液体を吐出させる操作部材40と、構造体21に対して先端方向へ付勢されて針管61の外周を囲み、先端側に針通過孔54(開口部)が形成され、構造体21に対して基端方向へ移動することで針管61を針通過孔54から先端方向へ突出させるカバー部材50と、を有している。そして、キャップ30(保護部材)が、第1状態において本体部20に設けられる基端側係合部43(第1係合部)と係合せず、第2状態において本体部20に対して基端方向へ直進的に移動させることで基端側係合部43と係合可能なキャップ係合部33(第2係合部)を備えている。このため、液体の投与前の第1状態では基端側係合部43にキャップ係合部33が係合せずにキャップ30を容易に取り外すことができ、液体の投与後の第2状態では、基端側係合部43にキャップ係合部33を係合させて、キャップ30を本体部20に対して取り外し不能となるように強固に装着できる。したがって、使用前に取り外されるキャップ30を有効利用して、使用済みの針管61の誤穿刺を防止でき、安全性が向上する。このため、使用済みの液体投与具10を専用の廃棄ボックスに収容して保管、搬送する必要がなくなり、新しい廃棄ボックスを入手する必要もなくなり、使用後の安全性の確保が容易となる。
As described above, in the liquid administration device 10 according to the first embodiment, the main body 20 has the syringe 60 (container) that can contain the liquid therein, and the needle tip at the distal end and the proximal end of the syringe 60. A structure 21 having a needle tube 61 that can communicate with the inside, and a structure 21 that is movable in the distal direction relative to the structure 21 and that has moved in the distal direction from the first state before moving in the distal direction. The operation member 40 that reduces the internal volume of the syringe 60 to discharge the liquid from the needle tube 61 by performing the operation so as to be in two states, and the outer periphery of the needle tube 61 that is biased toward the distal end with respect to the structure 21 A cover member 50 that has a needle passage hole 54 (opening) formed on the distal end side and projects the needle tube 61 from the needle passage hole 54 in the distal direction by moving in a proximal direction relative to the structure 21; Have. Then, the cap 30 (protective member) does not engage with the base end side engaging portion 43 (first engaging portion) provided in the main body portion 20 in the first state, and is based on the main body portion 20 in the second state. A cap engaging portion 33 (second engaging portion) that can be engaged with the proximal end side engaging portion 43 by moving linearly in the end direction is provided. For this reason, in the first state before administration of the liquid, the cap 30 can be easily removed without engaging the cap engagement portion 33 with the proximal end side engagement portion 43, and in the second state after administration of the liquid, The cap engaging portion 33 is engaged with the base end side engaging portion 43 so that the cap 30 can be firmly attached to the main body portion 20 so that it cannot be removed. Therefore, the cap 30 that is removed before use can be effectively used to prevent erroneous puncture of the used needle tube 61, thereby improving safety. For this reason, it is not necessary to store and transport the used liquid administration device 10 in a dedicated disposal box, and it is not necessary to obtain a new disposal box, so that it is easy to ensure safety after use.
また、基端側係合部43が操作部材40に形成されるため、構造体21に対して先端方向へ移動する操作部材40の動作を利用して、動作前の第1状態で基端側係合部43をキャップ係合部33と係合させずに、第2状態においてキャップ係合部33に係合させる構造を容易に実現できる。また、基端側係合部43にキャップ係合部33が係合することで、キャップ30と操作部材40が連結されることになるため、使用後に、操作部材40が構造体21に対して基端方向へ移動することをも抑制できる。
In addition, since the proximal end side engaging portion 43 is formed on the operation member 40, the operation side of the operation member 40 that moves in the distal direction with respect to the structure 21 is used, and the proximal end side in the first state before the operation. A structure in which the engaging portion 43 is engaged with the cap engaging portion 33 in the second state without being engaged with the cap engaging portion 33 can be easily realized. In addition, since the cap engagement portion 33 is engaged with the base end side engagement portion 43, the cap 30 and the operation member 40 are connected to each other. It is also possible to suppress movement in the proximal direction.
また、カバー部材50は、第1状態においてキャップ係合部33が予め挿入されており、かつ第2状態においてキャップ係合部33が挿入されて当該キャップ係合部33を基端側係合部43に係合させる係合部挿入孔55が形成されるため、使用前に予めキャップ係合部33が挿入されている孔と、使用後にキャップ係合部33を挿入する孔とが同一となり、液体の投与後にキャップ30を装着する際にキャップ係合部33を挿入する孔を間違えることがなくなり、操作が容易となる。また、係合部挿入孔55は、カバー部材50に針管61の周囲に全周的ではなしに部分的に形成されるため、キャップ係合部33が他の機構(例えば、操作部材固定機構や安全機構)と干渉し難くなり、多機能な液体投与具10を容易に構成できる。
Further, the cover member 50 has the cap engaging portion 33 inserted in advance in the first state, and the cap engaging portion 33 is inserted in the second state so that the cap engaging portion 33 is connected to the proximal end side engaging portion. Since the engaging portion insertion hole 55 to be engaged with 43 is formed, the hole into which the cap engaging portion 33 is inserted in advance before use is the same as the hole into which the cap engaging portion 33 is inserted after use. When the cap 30 is attached after the administration of the liquid, the hole for inserting the cap engaging portion 33 is not mistaken, and the operation becomes easy. In addition, since the engaging portion insertion hole 55 is partially formed in the cover member 50 around the needle tube 61 instead of the entire circumference, the cap engaging portion 33 is provided with another mechanism (for example, an operation member fixing mechanism, Therefore, the multifunctional liquid administration device 10 can be easily configured.
また、本体部20が、第1状態から第2状態となることでカバー部材50と接触してカバー部材50の本体部20に対する基端方向への移動を規制する安全機構を有するため、使用後の針管61がカバー部材50から再び突出することが防止され、針管61による誤穿刺を抑制して安全性を確保できる。また、液体の投与後にキャップ30を装着する際に、カバー部材50が基端方向へ移動せず、キャップ30の装着が容易となるとともに、装着時の針管61の突出が防止されて、装着時の誤穿刺を抑制して安全性を確保できる。
In addition, since the main body portion 20 has a safety mechanism that comes into contact with the cover member 50 by changing from the first state to the second state and restricts the movement of the cover member 50 relative to the main body portion 20 in the proximal direction, The needle tube 61 is prevented from projecting again from the cover member 50, and erroneous puncture by the needle tube 61 can be suppressed to ensure safety. Further, when the cap 30 is mounted after the liquid is administered, the cover member 50 does not move in the proximal direction, the cap 30 can be easily mounted, and the needle tube 61 can be prevented from protruding during the mounting. Safety can be ensured by preventing false punctures.
また、本体部20が、操作部材40を構造体21に対して先端方向へ移動させる力を付与して操作部材40の移動を補助する補助機構を有するため、小さい押圧力で液体の投与が可能となり、操作が容易である。また、補助機構が設けられることで、操作部材40が構造体21に対して先端方向へ確実に移動し、キャップ30を装着する際に、キャップ係合部33を基端側係合部43へ確実に係合できる。
<第2実施形態>
In addition, since the main body 20 has an auxiliary mechanism that assists the movement of the operation member 40 by applying a force to move the operation member 40 in the distal direction with respect to the structure 21, liquid can be administered with a small pressing force. Therefore, the operation is easy. Further, by providing the auxiliary mechanism, the operation member 40 is reliably moved in the distal direction with respect to the structure 21, and the cap engaging portion 33 is moved to the proximal end engaging portion 43 when the cap 30 is attached. Engage reliably.
Second Embodiment
第2実施形態に係る液体投与具100は、図7に示すように、液体の投与後にキャップ係合部133(第2係合部)を挿入するカバー部材150の第2挿入孔156が、キャップ係合部133が予め挿入されている第1挿入孔155と異なる点と、キャップ係合部133が、操作部材140ではなく外側部材180に形成される基端側係合部181(第1係合部)に係合する点で、第1実施形態と異なる。なお、他の構成は、第1実施形態と同様であるため、同一の符号を付し、説明を省略する。
As shown in FIG. 7, the liquid administration device 100 according to the second embodiment includes a second insertion hole 156 of a cover member 150 into which a cap engagement portion 133 (second engagement portion) is inserted after liquid administration. The difference between the engaging portion 133 and the first insertion hole 155 in which the engaging portion 133 is inserted in advance is that the cap engaging portion 133 is formed on the outer member 180 instead of the operating member 140 (first engagement portion 181). This is different from the first embodiment in that it is engaged with the joint portion. Since other configurations are the same as those of the first embodiment, the same reference numerals are given and description thereof is omitted.
液体投与具100は、図7,図9(A)に示すように、液体の投与に用いられる本体部120と、液体の投与の際に本体部120から取り外されるキャップ130(保護部材)とを備えている。本体部120は、内部に液体を収容する構造体121(下部ハウジング)と、構造体121から液体を吐出させる操作を行うための操作部材140(上部ハウジング)と、構造体121に対して移動可能に設けられるカバー部材150と、カバー部材150を先端方向へ付勢する第1コイルバネ22と、操作部材140を構造体121に対して移動させる力を作用させる第2コイルバネ23と、を備えている。
As shown in FIGS. 7 and 9A, the liquid administration device 100 includes a main body 120 used for liquid administration, and a cap 130 (protective member) that is removed from the main body 120 at the time of liquid administration. I have. The main body 120 is movable with respect to the structure 121 (lower housing) that stores liquid therein, an operation member 140 (upper housing) for performing an operation of discharging liquid from the structure 121, and the structure 121. Cover member 150, first coil spring 22 that urges cover member 150 in the distal direction, and second coil spring 23 that applies a force to move operation member 140 relative to structure 121. .
構造体121は、内部に液体を収容可能な筒状のシリンジ60(収容体)と、シリンジ60の先端に取り付けられる針管61と、シリンジ60の内部に対して摺動可能に配置されるガスケット62と、シリンジ60の外周に配置されてシリンジ60を支持する内側部材170と、内側部材170の外側に配置される外側部材180とを備えている。
The structure 121 includes a cylindrical syringe 60 (container) that can accommodate a liquid therein, a needle tube 61 that is attached to the tip of the syringe 60, and a gasket 62 that is slidably disposed with respect to the inside of the syringe 60. And an inner member 170 that is disposed on the outer periphery of the syringe 60 and supports the syringe 60, and an outer member 180 that is disposed outside the inner member 170.
操作部材140は、第1係合部(第1実施形態の基端側係合部43)が形成されない点以外は、第1実施形態における操作部材40と同様である。
The operation member 140 is the same as the operation member 40 in the first embodiment except that the first engagement portion (the base end side engagement portion 43 of the first embodiment) is not formed.
キャップ130は、キャップ先端部32の内面から基端方向へ延在する2つのキャップ係合部133(第2係合部)を備えている。2つのキャップ係合部133は、キャップ130の中心軸を挟んで対向するように位置し、いずれも基端方向へ向かって延在している。各々のキャップ係合部133の先端には、互いに離れる方向(キャップ130の径方向外側)に突出するキャップ爪部134が形成されている。各々のキャップ爪部134の基端面には、径方向外側ほど先端側へ傾くように第1傾斜面134Aが形成される。そして、各々のキャップ爪部134の先端面であるキャップ爪部先端面134Bは、キャップ先端部32から延在している部位に対する角度βが、略90度で形成される。
The cap 130 includes two cap engaging portions 133 (second engaging portions) extending from the inner surface of the cap distal end portion 32 in the proximal direction. The two cap engaging portions 133 are positioned so as to face each other with the central axis of the cap 130 therebetween, and both extend in the proximal direction. A cap claw portion 134 is formed at the tip of each cap engaging portion 133 so as to protrude in a direction away from each other (the radially outer side of the cap 130). A first inclined surface 134A is formed on the base end surface of each cap claw portion 134 such that the first inclined surface 134A is inclined toward the distal end side in the radially outer side. And cap claw part front end surface 134B which is a front end surface of each cap claw part 134 is formed with an angle β of about 90 degrees with respect to a portion extending from cap front end part 32.
カバー部材150のカバー筒部51の基端に形成される平面状のカバー先端部152には、カバー部材150の中心軸上に、針管61が突出可能な針通過孔154(開口部)が形成され、針通過孔154を挟んで対向する位置に、2つの第1挿入孔155と、2つの第2挿入孔156とが形成されている。安全機構が設けられる縦断面(図7のD−D線に沿う断面)、第1挿入孔155が形成される縦断面(図7のE−E線に沿う断面)、第2挿入孔156が形成される縦断面(図7のF−F線に沿う断面)、操作部材固定機構が設けられる縦断面(図7のG−G線に沿う断面)は、液体投与具100の中心軸を中心とし回転方向に40度ずつずれて配置される。第1挿入孔155は、キャップ係合部133が予め挿入されている挿入孔であり、第2挿入孔156は、液体の投与後にキャップ係合部133を挿入する挿入孔である。
A flat cover distal end 152 formed at the base end of the cover cylinder portion 51 of the cover member 150 is formed with a needle passage hole 154 (opening) through which the needle tube 61 can project on the central axis of the cover member 150. Two first insertion holes 155 and two second insertion holes 156 are formed at positions facing each other across the needle passage hole 154. A longitudinal section where the safety mechanism is provided (a section along the line DD in FIG. 7), a longitudinal section where the first insertion hole 155 is formed (a section along the line EE in FIG. 7), and a second insertion hole 156. The longitudinal section formed (section taken along line FF in FIG. 7) and the longitudinal section provided with the operation member fixing mechanism (section taken along line GG in FIG. 7) are centered on the central axis of the liquid administration device 100. And are shifted by 40 degrees in the rotation direction. The first insertion hole 155 is an insertion hole into which the cap engagement part 133 is inserted in advance, and the second insertion hole 156 is an insertion hole into which the cap engagement part 133 is inserted after liquid administration.
第1挿入孔155には、図8に示すように、弾性的に変形可能であり、先端側へ向かって突出するように傾斜する挿入制限部153が形成されている。挿入制限部153は、第1挿入孔155に予め挿入されているキャップ係合部133を引き抜くことは許容するが、キャップ係合部133を引き抜くことで、第1挿入孔155の開口面積を減少させ、かつ先端方向へ向かって突出するように傾斜する。これにより、挿入制限部153は、キャップ係合部133が再び第1挿入孔155へ挿入されることを抑制する。なお、挿入制限部153は、キャップ係合部133の再挿入を抑制できるのであれば、形状や構成は特に限定されない。
As shown in FIG. 8, the first insertion hole 155 is formed with an insertion restricting portion 153 that is elastically deformable and is inclined so as to protrude toward the distal end side. The insertion restricting portion 153 allows the cap engaging portion 133 previously inserted into the first insertion hole 155 to be pulled out, but the opening area of the first insertion hole 155 is reduced by pulling out the cap engaging portion 133. And inclined so as to protrude toward the tip. Thereby, the insertion restriction part 153 suppresses the cap engagement part 133 from being inserted into the first insertion hole 155 again. Note that the shape and the configuration of the insertion restricting portion 153 are not particularly limited as long as the reinsertion of the cap engaging portion 133 can be suppressed.
内側部材170は、図9(A)に示すように、シリンジ60の外周を囲む支持孔71が形成されており、この支持孔71にシリンジ60が嵌合して、シリンジ60が支持されている。
As shown in FIG. 9A, the inner member 170 has a support hole 71 surrounding the outer periphery of the syringe 60, and the syringe 60 is fitted into the support hole 71 so that the syringe 60 is supported. .
外側部材180は、図9(B)に示すように、2つの第2挿入孔156の延長線上に、2つの基端側係合部181(第1係合部)を備えている。2つの基端側係合部181は、外側部材180から径方向内側へ向かって延在し、互いに近づく方向(外側部材180の径方向内側)に突出する基端側爪部182が形成されている。各々の基端側爪部182の基端面である基端側爪部基端面182Aは、外側部材180の中心軸に対する角度αが、略90度で形成される。
As shown in FIG. 9B, the outer member 180 includes two base end side engaging portions 181 (first engaging portions) on the extension lines of the two second insertion holes 156. The two base end side engaging portions 181 are formed with base end side claw portions 182 that extend inward in the radial direction from the outer member 180 and project in a direction approaching each other (inward in the radial direction of the outer member 180). Yes. The base end side claw base end surface 182A that is the base end face of each base end side claw portion 182 is formed with an angle α with respect to the central axis of the outer member 180 being approximately 90 degrees.
そして、操作部材140が外側部材180の外周面を覆う位置まで構造体121に対して先端方向へ移動した状態(図10(C)を参照)において、カバー部材150にキャップ130が装着されると、キャップ係合部133が第2挿入孔156を通過し、キャップ爪部134の第1傾斜面134Aが、基端側爪部182と接して滑りながら変形し、キャップ爪部134が基端側爪部182を乗り越えて基端側爪部182よりも基端側へ移動して、キャップ爪部134および基端側爪部182が係合する。このとき、キャップ爪部先端面134Bの角度βが略90度であり、かつ基端側爪部基端面182Aの角度αが略90度であるため、キャップ爪部先端面134Bと基端側爪部基端面182Aの間で滑る方向(軸方向と直交する方向)にほとんど力が作用せず、キャップ爪部134および基端側爪部182が離脱不能に係合する。なお、互いに係合することで離脱を妨げる力を発生させることができるのであれば、角度αおよび角度βの値は限定されず、90度未満としても、90度を超えてもよい。なお、キャップ係合部133が第1挿入孔155に挿入された初期の状態(図9(A)を参照)においては、第1挿入孔155の延長線上に基端側係合部181が存在しないため、第1挿入孔155を通過したキャップ係合部133は基端側係合部181と接触せず、キャップ爪部134および基端側爪部182が係合されることはない。
Then, when the cap 130 is attached to the cover member 150 in a state where the operation member 140 has moved in the distal direction with respect to the structure 121 to a position covering the outer peripheral surface of the outer member 180 (see FIG. 10C). The cap engaging portion 133 passes through the second insertion hole 156, and the first inclined surface 134A of the cap claw portion 134 is deformed while sliding in contact with the proximal end side claw portion 182 so that the cap claw portion 134 is proximal. The cap claw part 134 and the proximal claw part 182 are engaged with each other by moving over the claw part 182 and moving to the proximal side from the proximal claw part 182. At this time, since the angle β of the cap claw tip end surface 134B is approximately 90 degrees and the angle α of the base claw base end surface 182A is approximately 90 degrees, the cap claw tip end surface 134B and the base end claw Almost no force acts in the direction of sliding between the base end surfaces 182A (the direction orthogonal to the axial direction), and the cap claw portion 134 and the base end side claw portion 182 engage with each other in a non-detachable manner. Note that the values of the angle α and the angle β are not limited as long as they can generate a force that prevents disengagement by engaging with each other, and may be less than 90 degrees or more than 90 degrees. In the initial state where the cap engaging portion 133 is inserted into the first insertion hole 155 (see FIG. 9A), the proximal end side engaging portion 181 exists on the extension line of the first insertion hole 155. Therefore, the cap engaging part 133 that has passed through the first insertion hole 155 does not come into contact with the base end side engaging part 181, and the cap claw part 134 and the base end side claw part 182 are not engaged.
また、第2実施形態に係る液体投与具100は、第1実施形態と同様の操作部材固定機構、補助機構および安全機構を備えている。
The liquid administration device 100 according to the second embodiment includes the same operation member fixing mechanism, auxiliary mechanism, and safety mechanism as those of the first embodiment.
次に、第2実施形態に係る液体投与具100の使用方法を説明する。
Next, a method for using the liquid administration device 100 according to the second embodiment will be described.
始めに、図9(A)に示すように、未使用の初期状態(第1状態)の液体投与具100を準備する。この初期状態において、液体投与具100は、カバー部材150が第1コイルバネ22によって先端側に付勢されており、操作部材140が構造体121から基端方向に離れて位置し、かつキャップ130がカバー部材150を覆っている。キャップ130のキャップ係合部133は、カバー部材150の第1挿入孔155に挿入されおり、基端側係合部181と接触しないため、キャップ130は、取り外し可能な状態で本体部120に連結されている。
First, as shown in FIG. 9A, an unused liquid administration device 100 in an initial state (first state) is prepared. In this initial state, in the liquid administration device 100, the cover member 150 is urged toward the distal end side by the first coil spring 22, the operation member 140 is positioned away from the structure 121 in the proximal direction, and the cap 130 is The cover member 150 is covered. Since the cap engaging portion 133 of the cap 130 is inserted into the first insertion hole 155 of the cover member 150 and does not contact the proximal end side engaging portion 181, the cap 130 is connected to the main body portion 120 in a removable state. Has been.
次に、本体部120に対して先端方向へキャップ130を移動させ、キャップ係合部133をカバー部材150の第1挿入孔155から引き抜き、本体部120からキャップ130を取り外す。
Next, the cap 130 is moved in the distal direction with respect to the main body 120, the cap engaging portion 133 is pulled out from the first insertion hole 155 of the cover member 150, and the cap 130 is removed from the main body 120.
次に、操作部材140を把持して、図9(B)に示すように、カバー部材150のカバー先端部152を生体に当接させる。このとき、第1実施形態と同様に、操作部材固定機構(図5を参照)によって、操作部材140の構造体121に対する先端方向への移動が規制されて、針管61を穿刺する前に液体が吐出されず、予期しない液体の吐出を抑制できる。
Next, the operation member 140 is grasped, and the cover tip 152 of the cover member 150 is brought into contact with the living body as shown in FIG. 9B. At this time, similarly to the first embodiment, the operation member fixing mechanism (see FIG. 5) restricts the movement of the operation member 140 in the distal direction with respect to the structure 121, and the liquid flows before puncturing the needle tube 61. Unexpected liquid discharge can be suppressed without being discharged.
次に、操作部材140を先端方向へ押圧する。これにより、図9(C)に示すように、構造体121に対する操作部材140の位置が操作部材固定機構によって維持されつつ、第1コイルバネ22が収縮し、カバー部材150に対して構造体121および操作部材140が一体的に先端方向へ移動する。これにより、針管61が、カバー部材150の針通過孔154を通って先端方向へ突出し、生体を穿刺する。
Next, the operation member 140 is pressed in the distal direction. As a result, as shown in FIG. 9C, the position of the operation member 140 with respect to the structure 121 is maintained by the operation member fixing mechanism, and the first coil spring 22 contracts, so that the structure 121 and the cover member 150 The operation member 140 moves integrally in the distal direction. As a result, the needle tube 61 projects through the needle passage hole 154 of the cover member 150 in the distal direction, and punctures the living body.
そして、カバー部材150が構造体121に対して基端方向へ移動すると、第1実施形態と同様に、操作部材固定機構による操作部材140の構造体121に対する先端方向への移動制限が解除される(図5(B)を参照)。
Then, when the cover member 150 moves in the proximal direction with respect to the structure 121, the movement restriction in the distal direction of the operation member 140 with respect to the structure 121 by the operation member fixing mechanism is released as in the first embodiment. (See FIG. 5B).
次に、操作部材140をさらに先端方向へ押圧すると、図10(A)に示すように、操作部材140が構造体121に対して先端方向へ移動する。これにより、ガスケット62がシリンジ60内を先端方向へ摺動し、シリンジ60内の液体が、針管61を介して生体内へ投与される。
Next, when the operation member 140 is further pressed in the distal direction, the operation member 140 moves in the distal direction with respect to the structure 121 as shown in FIG. Thereby, the gasket 62 slides in the syringe 60 in the distal direction, and the liquid in the syringe 60 is administered into the living body via the needle tube 61.
そして、操作部材140が構造体121に対して先端方向へ移動する際に、補助機構である第2コイルバネ23によって操作部材140を先端方向へ移動させる力が作用し、小さい押圧力で投与が可能である。
When the operation member 140 moves in the distal direction relative to the structure body 121, a force that moves the operation member 140 in the distal direction acts by the second coil spring 23 that is an auxiliary mechanism, and administration is possible with a small pressing force. It is.
操作部材140が先端方向へ移動して投与が完了した後、使用者が操作部材140への押圧力を緩めると、図10(B)に示すように、第1コイルバネ22の拡張力により、構造体121が、カバー部材150に対して基端方向へ移動し、針管61が生体から引き抜かれてカバー部材150の内側に収容される。構造体121が、カバー部材150に対して基端方向へ移動すると、第1実施形態と同様の安全機構(図6(C)を参照)が作動し、構造体121に対するカバー部材150の移動が抑制される。このため、針管61がカバー部材150から再び突出することが防止され、針管61による誤穿刺を抑制して安全性を確保できる。
After the operation member 140 moves in the distal direction and administration is completed, when the user loosens the pressing force on the operation member 140, the structure is caused by the expansion force of the first coil spring 22 as shown in FIG. The body 121 moves in the proximal direction with respect to the cover member 150, and the needle tube 61 is pulled out from the living body and accommodated inside the cover member 150. When the structure 121 moves in the proximal direction with respect to the cover member 150, the same safety mechanism (see FIG. 6C) as in the first embodiment is activated, and the movement of the cover member 150 with respect to the structure 121 is performed. It is suppressed. For this reason, it is prevented that the needle tube 61 protrudes from the cover member 150 again, and the erroneous puncture by the needle tube 61 can be suppressed to ensure safety.
この後、液体の投与前に本体部120から取り外したキャップ130を把持し、図10(C)に示すように、キャップ係合部133をカバー部材150の第2挿入孔156に挿入し、キャップ130を本体部120に対して基端方向へ押し込む。このとき、第1挿入孔155は、挿入制限部153によってキャップ係合部133の挿入が制限されているため、キャップ係合部133の第1挿入孔155への誤挿入が防止され、第2挿入孔156への挿入操作が容易となる。
Thereafter, the cap 130 removed from the main body 120 before the liquid administration is gripped, and the cap engaging portion 133 is inserted into the second insertion hole 156 of the cover member 150 as shown in FIG. 130 is pushed into the main body 120 in the proximal direction. At this time, since the insertion of the cap engagement portion 133 is restricted by the insertion restriction portion 153 in the first insertion hole 155, erroneous insertion of the cap engagement portion 133 into the first insertion hole 155 is prevented, and the second The insertion operation into the insertion hole 156 becomes easy.
キャップ係合部133が第2挿入孔156へ挿入されると、キャップ係合部133は、外側部材180に形成される基端側係合部181と当接する。これにより、キャップ爪部134の第1傾斜面134Aが、基端側爪部182と接して滑りながら変形し、キャップ爪部134が基端側爪部182を乗り越えて基端側爪部182よりも基端側へ移動する。このとき、キャップ爪部先端面134Bの角度βが略90度であり、かつ基端側爪部基端面の角度αが略90度であるため、キャップ爪部先端面134Bと基端側爪部基端面182Aの間で滑る方向(軸方向と直交する方向)にほとんど力が作用せず、キャップ爪部134および基端側爪部182が離脱不能に係合する。これにより、キャップ130を、本体部120に対して取り外し不能となるように強固に装着できる。
When the cap engaging portion 133 is inserted into the second insertion hole 156, the cap engaging portion 133 comes into contact with the proximal end side engaging portion 181 formed on the outer member 180. Accordingly, the first inclined surface 134A of the cap claw part 134 is deformed while sliding in contact with the base end side claw part 182 and the cap claw part 134 gets over the base end side claw part 182 and is more than the base end side claw part 182. Also moves to the proximal side. At this time, since the angle β of the cap claw tip end surface 134B is approximately 90 degrees and the angle α of the base claw base end surface is approximately 90 degrees, the cap claw tip end surface 134B and the base end claw portion Almost no force acts in the direction of sliding between the base end surfaces 182A (the direction orthogonal to the axial direction), and the cap claw part 134 and the base end side claw part 182 are engaged with each other so as not to be detached. Thereby, the cap 130 can be firmly attached to the main body 120 so that it cannot be removed.
以上のように、第2実施形態に係る液体投与具100によれば、液体の投与前の第1状態では基端側係合部181にキャップ係合部133が係合せずにキャップ130を容易に取り外すことができ、液体の投与後の第2状態では、基端側係合部181にキャップ係合部133を係合させて、キャップ130を本体部120に対して取り外し不能となるように強固に装着できる。
As described above, according to the liquid administration device 100 according to the second embodiment, in the first state before liquid administration, the cap 130 is easily engaged without the cap engagement portion 133 engaging the proximal end engagement portion 181. In the second state after administration of the liquid, the cap engagement portion 133 is engaged with the proximal end side engagement portion 181 so that the cap 130 cannot be removed from the main body portion 120. Can be attached firmly.
また、基端側係合部181(第1係合部)が、構造体121を構成する外側部材180に形成されるため、針管61が設けられる構造体121に対してキャップ130を直接的かつ強固に固定でき、安全性が向上する。
Further, since the base end side engaging portion 181 (first engaging portion) is formed on the outer member 180 constituting the structure body 121, the cap 130 is directly attached to the structure body 121 on which the needle tube 61 is provided. It can be firmly fixed, improving safety.
また、カバー部材150に、液体投与前の第1状態においてキャップ係合部133(第2係合部)が予め挿入されている第1挿入孔133と、液体投与後の第2状態においてキャップ係合部133が挿入されて当該キャップ係合部133を基端側係合部181(第1係合部)に係合させる第2挿入孔156とが形成されるため、予めキャップ係合部133が挿入される第1挿入孔155とは異なる第2挿入孔156へキャップ係合部133を挿入することで、基端側係合部181にキャップ係合部133を係合させて、キャップ130を本体部120に対して取り外し不能となるように強固に装着できる。
Further, the cover member 150 has a first insertion hole 133 into which a cap engaging portion 133 (second engaging portion) is inserted in advance in the first state before liquid administration, and a cap engagement in the second state after liquid administration. Since the coupling portion 133 is inserted and a second insertion hole 156 for engaging the cap engagement portion 133 with the proximal end side engagement portion 181 (first engagement portion) is formed, the cap engagement portion 133 is previously formed. By inserting the cap engaging portion 133 into the second insertion hole 156 different from the first insertion hole 155 into which the cap is inserted, the cap engaging portion 133 is engaged with the proximal end side engaging portion 181 and the cap 130 is inserted. Can be firmly attached to the main body 120 so that it cannot be removed.
また、第1挿入孔155に、キャップ係合部133(第2係合部)が引き抜かれることで、キャップ係合部133の再挿入を制限する挿入制限部153が設けられるため、液体投与後におけるキャップ係合部133の第1挿入孔155への誤挿入が防止され、第2挿入孔156への挿入操作が容易となる。
<第3実施形態>
Further, since the cap insertion portion 133 (second engagement portion) is pulled out of the first insertion hole 155, an insertion limiting portion 153 that limits reinsertion of the cap engagement portion 133 is provided. Incorrect insertion of the cap engaging portion 133 into the first insertion hole 155 is prevented, and insertion into the second insertion hole 156 is facilitated.
<Third Embodiment>
第3実施形態に係る液体投与具200は、図11に示すように、キャップ230に設けられるキャップ係合部233が、構造体221(下部ハウジング)を構成する外側部材280でなく、内側部材270に設けられる基端側係合部271(第1係合部)に係合する点で、第2実施形態と異なる。なお、他の構成は、第2実施形態と同様であるため、同一の符号を付し、説明を省略する。
In the liquid administration device 200 according to the third embodiment, as shown in FIG. 11, the cap engaging portion 233 provided in the cap 230 is not the outer member 280 constituting the structure 221 (lower housing) but the inner member 270. It differs from 2nd Embodiment by the point which engages with the base end side engaging part 271 (1st engaging part) provided in this. In addition, since the other structure is the same as that of 2nd Embodiment, it attaches | subjects the same code | symbol and abbreviate | omits description.
キャップ230(保護部材)は、図11,図12(A)に示すように、キャップ先端部32の内面から基端方向へ延在する2つのキャップ係合部233(第2係合部)を備えている。2つのキャップ係合部233は、キャップ230の中心軸を挟んで対向するように位置し、いずれも基端方向へ向かって延在している。各々のキャップ係合部233の基端には、互いに離れる方向(キャップ230の径方向外側)に突出するキャップ爪部234が形成されている。各々のキャップ爪部234の基端面には、径方向外側ほど先端側へ傾くように第1傾斜面234Aが形成される。そして、各々のキャップ爪部234の先端面であるキャップ爪部先端面234Bは、キャップ先端部32から延在している部位に対する角度βが、略90度で形成される。
As shown in FIGS. 11 and 12A, the cap 230 (protective member) includes two cap engaging portions 233 (second engaging portions) extending from the inner surface of the cap distal end portion 32 in the proximal direction. I have. The two cap engaging portions 233 are positioned so as to face each other with the central axis of the cap 230 interposed therebetween, and both extend in the proximal direction. At the base end of each cap engaging portion 233, a cap claw portion 234 is formed that protrudes in a direction away from each other (the radially outer side of the cap 230). A first inclined surface 234 </ b> A is formed on the base end surface of each cap claw portion 234 so as to be inclined toward the distal end side in the radially outer side. And cap claw part front end surface 234B which is a front end face of each cap claw part 234 is formed at an angle β of about 90 degrees with respect to a portion extending from cap front end part 32.
内側部材270は、図12(B)に示すように、2つの第2挿入孔156の延長線上に、2つの基端側係合部271(第1係合部)を備えている。2つの基端側係合部271は、互いに近づく方向(内側部材270の径方向内側)に突出する基端側爪部272が形成されている。各々の基端側爪部272の基端に形成される基端側爪部基端面272Aは、内側部材270の中心軸に対する角度αが、略90度で形成される。
As shown in FIG. 12B, the inner member 270 includes two proximal-side engagement portions 271 (first engagement portions) on the extension lines of the two second insertion holes 156. The two base end side engaging portions 271 are formed with base end side claw portions 272 protruding in a direction approaching each other (inward in the radial direction of the inner member 270). The base end side claw base end surface 272A formed at the base end of each base end side claw 272 is formed with an angle α with respect to the central axis of the inner member 270 of approximately 90 degrees.
そして、液体投与具は、初期状態(第1状態)において、図12(A)に示すように、カバー部材150が第1コイルバネ22によって先端側に付勢されており、操作部材140が構造体121から基端方向に離れて位置し、かつキャップ230がカバー部材150を覆っている。キャップ230のキャップ係合部233は、カバー部材150の第1挿入孔155に挿入されおり、基端側係合部271と接触しないため、キャップ230を、本体部220から容易に取り外すことができる。
In the initial state (first state) of the liquid administration device, as shown in FIG. 12A, the cover member 150 is urged toward the distal end side by the first coil spring 22, and the operation member 140 is a structural body. The cap 230 covers the cover member 150 and is located away from 121 in the proximal direction. Since the cap engaging portion 233 of the cap 230 is inserted into the first insertion hole 155 of the cover member 150 and does not come into contact with the base end side engaging portion 271, the cap 230 can be easily detached from the main body portion 220. .
そして、操作部材140が外側部材280の外周面を覆う位置まで構造体221に対して先端方向へ移動した第2状態において、カバー部材150にキャップ230が装着されると、図12(C)に示すように、キャップ係合部233が第2挿入孔156を通過し、キャップ爪部234の第1傾斜面234Aが、基端側爪部272と接して滑りながら変形し、キャップ爪部234が基端側爪部272を乗り越えて基端側爪部272よりも基端側へ移動して、キャップ爪部234および基端側爪部272が係合する。このとき、キャップ爪部先端面234Bの角度βが略90度であり、かつ基端側爪部基端面272Aの角度αが略90度であるため、キャップ爪部先端面234Bと基端側爪部基端面272Aの間で滑る方向(軸方向と直交する方向)にほとんど力が作用せず、キャップ爪部234および基端側爪部272が離脱不能に係合する。これにより、キャップ230を、本体部220に対して取り外し不能となるように強固に装着できる。
When the cap 230 is attached to the cover member 150 in the second state in which the operation member 140 moves in the distal direction with respect to the structure 221 to a position covering the outer peripheral surface of the outer member 280, the cap member 230 is attached to the cover member 150 as shown in FIG. As shown, the cap engaging portion 233 passes through the second insertion hole 156, the first inclined surface 234A of the cap claw portion 234 is deformed while sliding in contact with the proximal end claw portion 272, and the cap claw portion 234 is The cap claw portion 234 and the base end side claw portion 272 are engaged with each other by moving over the base end side claw portion 272 and moving to the base end side from the base end side claw portion 272. At this time, since the angle β of the cap claw tip end surface 234B is approximately 90 degrees and the angle α of the base claw base end surface 272A is approximately 90 degrees, the cap claw tip end surface 234B and the base end claw Almost no force acts in the direction of sliding between the base end surfaces 272A (the direction orthogonal to the axial direction), and the cap claw portion 234 and the base end side claw portion 272 engage with each other in a non-detachable manner. Thereby, the cap 230 can be firmly attached to the main body 220 so as not to be removable.
以上のように、第3実施形態に係る液体投与具によっても、投与前の第1状態では基端側係合部271にキャップ係合部233が係合せずにキャップ230を容易に取り外すことができ、液体の投与後の第2状態では、基端側係合部271にキャップ係合部233を係合させて、キャップ230を本体部220に強固に装着できる。
As described above, also with the liquid administration device according to the third embodiment, in the first state before administration, the cap 230 can be easily removed without engaging the cap engagement portion 233 with the proximal end engagement portion 271. In the second state after liquid administration, the cap 230 can be firmly attached to the main body 220 by engaging the cap engaging portion 233 with the proximal end engaging portion 271.
また、基端側係合部271(第1係合部)が、構造体221を構成する内側部材270に形成されるため、針管61が設けられる構造体221に対してキャップ230を直接的かつ強固に固定でき、安全性が向上する。
Further, since the proximal end side engaging portion 271 (first engaging portion) is formed on the inner member 270 constituting the structure body 221, the cap 230 is directly and against the structure body 221 provided with the needle tube 61. It can be firmly fixed, improving safety.
なお、本発明は、上述した実施形態のみに限定されるものではなく、本発明の技術的思想内において当業者により種々変更が可能である。例えば、上述した各々の実施形態では、第1係合部および第2係合部が2つずつ設けられているが、数は限定されず、1つであっても、3つ以上であってもよい。
Note that the present invention is not limited to the above-described embodiments, and various modifications can be made by those skilled in the art within the technical idea of the present invention. For example, in each of the above-described embodiments, two first engaging portions and two second engaging portions are provided, but the number is not limited, and even if there is one, there are three or more. Also good.
また、図13に示す第1実施形態の変形例のように、キャップ係合部33(第2係合部)が挿入される係合部挿入孔355は、カバー部材350に、針管が突出する位置を囲むように全周的に形成されてもよい。この場合、キャップ係合部33(第2係合部)をどの回転方向位置から挿入しても、操作部材340(上部ハウジング)の基端側係合部341(第1係合部)と係合できるように、基端側係合部341を、全周的に環状に形成する。これにより、キャップ係合部33を係合部挿入孔355の周方向のどの位置から挿入しても、キャップ係合部33および基端側係合部341を係合させることが可能となり、キャップ30を装着する操作が容易となる。なお、基端側係合部(第1係合部)を環状に形成するのではなしに、キャップ係合部(第2係合部)を環状に形成してもよい。
Further, as in the modified example of the first embodiment shown in FIG. 13, the engagement portion insertion hole 355 into which the cap engagement portion 33 (second engagement portion) is inserted has a needle tube protruding from the cover member 350. It may be formed all around so as to surround the position. In this case, the cap engagement portion 33 (second engagement portion) is engaged with the proximal end engagement portion 341 (first engagement portion) of the operation member 340 (upper housing) regardless of the rotation direction position. The base end side engaging portion 341 is formed in an annular shape on the entire circumference so that they can be combined. Thereby, it becomes possible to engage the cap engaging part 33 and the base end side engaging part 341 no matter where the cap engaging part 33 is inserted in the circumferential direction of the engaging part insertion hole 355. The operation of mounting 30 becomes easy. Instead of forming the base end side engaging portion (first engaging portion) in an annular shape, the cap engaging portion (second engaging portion) may be formed in an annular shape.
また、液体投与具は、補助機構、操作部材固定機構および安全機構の少なくとも1つが、設けられなくてもよい。
The liquid administration device may not include at least one of an auxiliary mechanism, an operation member fixing mechanism, and a safety mechanism.
また、液体投与具は、液体が自動的に投与されるオートインジェクターであってもよい。
Further, the liquid administration device may be an autoinjector that automatically administers liquid.