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JPH09238674A - Striking device for introducing biological substance or physiologically active substance - Google Patents

Striking device for introducing biological substance or physiologically active substance

Info

Publication number
JPH09238674A
JPH09238674A JP4977296A JP4977296A JPH09238674A JP H09238674 A JPH09238674 A JP H09238674A JP 4977296 A JP4977296 A JP 4977296A JP 4977296 A JP4977296 A JP 4977296A JP H09238674 A JPH09238674 A JP H09238674A
Authority
JP
Japan
Prior art keywords
projectile
physiologically active
active substance
substance
biological
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP4977296A
Other languages
Japanese (ja)
Inventor
Akira Kijihana
晃 雉錻
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nippon Medical and Chemical Instruments Co Ltd
Original Assignee
Nippon Medical and Chemical Instruments Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nippon Medical and Chemical Instruments Co Ltd filed Critical Nippon Medical and Chemical Instruments Co Ltd
Priority to JP4977296A priority Critical patent/JPH09238674A/en
Publication of JPH09238674A publication Critical patent/JPH09238674A/en
Pending legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M35/00Means for application of stress for stimulating the growth of microorganisms or the generation of fermentation or metabolic products; Means for electroporation or cell fusion
    • C12M35/04Mechanical means, e.g. sonic waves, stretching forces, pressure or shear stimuli

Landscapes

  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Zoology (AREA)
  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Genetics & Genomics (AREA)
  • Bioinformatics & Cheminformatics (AREA)
  • Biotechnology (AREA)
  • Wood Science & Technology (AREA)
  • Sustainable Development (AREA)
  • Microbiology (AREA)
  • Mechanical Engineering (AREA)
  • Biomedical Technology (AREA)
  • Biochemistry (AREA)
  • General Engineering & Computer Science (AREA)
  • General Health & Medical Sciences (AREA)
  • Cell Biology (AREA)
  • Apparatus Associated With Microorganisms And Enzymes (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a striking device capable of supplying sufficient acceleration in introducing a biological substance or a physiologically active substance into an organism in a small-scale apparatus under low pressure without contaminating and damaging the organism with a pressurized fluid. SOLUTION: This device comprises an airtight cylinder 3 whose on end is connected to a pressurized fluid source 6, an emitting material 10 set in the cylinder 3, a stopper 25 which is set at another end of the cylinder 3 and stops the movement of the emitting material 10, a flow channel 25 laid between the pressurized fluid source 6 and the cylinder 3 and an on-off valve 22 attached to the flow channel 25. A biological substance or a physiologically active substance is supported on a face opposite to a face with which the pressurized fluid is brought into contact, the on-off valve 22 is opened and the emitting material 10 is moved to stop the stopper 15. The biological substance or the physiologically active substance is directly emitted from the emitting material 10 by the shock of the stopping.

Description

【発明の詳现な説明】Detailed Description of the Invention

【】[0001]

【発明の属する技術分野】この発明は、又は染色
䜓などの生物孊的物質又は生理掻性物質を生物組織又は
生物现胞などの生物䜓に導入する打蟌装眮に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a driving apparatus for introducing a biological substance such as DNA or chromosome or a physiologically active substance into a living body such as a biological tissue or a biological cell.

【】[0002]

【埓来の技術】埓来の生物孊的物質又は生理掻性物質を
生物組織又は生物现胞などの生物䜓に導入する打蟌装眮
ずしお、特開平5-508316号公報に開瀺されたようなもの
がある。それは、図14〜18に瀺すようであっお、高圧ガ
ス絊送システム30ず、高圧ガスから瞬間衝撃波を発生さ
せる、ロッド32を有するピストン32ず高圧宀33ず第
膜34ずを有する衝撃機構31ず、衝撃波を開攟、収容、通
気するハりゞング35ず、互換性のある挿入を行うこずが
でき、衝撃機構31によっお発生させたガス衝撃波を埮小
発射䜓の加速ぞ転換するこずのできる第膜36を有する
スロヌト領域37ず、皮々のタむプの生物孊的暙的生物
䜓を狙うように連結され、互換性を有するノズル38
ずを包含するものである。
2. Description of the Related Art As a conventional implanting device for introducing a biological substance or a physiologically active substance into an organism such as a biological tissue or a biological cell, there is one disclosed in Japanese Patent Laid-Open No. 5-508316. It is as shown in FIGS. 14-18, and includes a high pressure gas delivery system 30, a piston 32 with a rod 32a, a high pressure chamber 33, and a first high pressure chamber 33 for generating an instantaneous shock wave from the high pressure gas.
A shock mechanism 31 having a membrane 34 and a housing 35 for releasing, accommodating and ventilating the shock wave, and a compatible insertion can be performed, and the gas shock wave generated by the shock mechanism 31 is converted into acceleration of a small projectile. A throat region 37 having a second membrane 36 which can be connected to a compatible nozzle 38 for targeting various types of biological targets (organisms) 8.
And include.

【】高圧ガスずしおのガスにはヘリりムガスな
どの䞍掻性ガスを甚いおおり、そのガスを加圧200kg/
cm2皋床しお高圧ガス絊送システム30のガス容噚に収
玍しお圧力流䜓源ずしおいる。
An inert gas such as helium gas is used as the high pressure gas, and the gas is pressurized (200 kg /
cm 2,) and is housed in a gas container of a high pressure gas delivery system 30 has a pressure fluid source 6.

【】又、前蚘ピストン32は磁気反応金属で䜜っ
おあり、このピストン32ず前蚘ロッド32ずは、䞋方の
高圧宀33に圧力流䜓源から䟛絊される加圧ガス圧力
流䜓が通れるように䞭空のもの、又は溝が蚭けら
れおいるものである。なお、41はハりゞング35内を真空
にする真空手段、50はロッド32を第膜34に突刺すよ
うにピストン32を付勢する電気付勢機構、51は電気付勢
機構50によっお付勢されピストン32ずずもにロッド32
を移動させる゜レノむドである。
Further, the piston 32 is made of a magnetically responsive metal, and the piston 32 and the rod 32a are provided with a pressurized gas (pressure fluid 6a) supplied from the pressure fluid source 6 to the high pressure chamber 33 below. It is hollow or has a groove so that it can pass through. Reference numeral 41 is a vacuum means for evacuating the housing 35, 50 is an electric urging mechanism for urging the piston 32 so as to pierce the first film 34 with the rod 32a, and 51 is urged by the electric urging mechanism 50. Rod 32a with piston 32
Is a solenoid for moving.

【】このようなものにあっお、生物孊的物質
又は生理掻性物質′を生物組織又は生物现胞などの生
物䜓に導入する際、前蚘高圧ガスを高圧宀33内に導入
するずずもに、ピストン32を電気付勢機構50によっお付
勢しお移動させお、ピストン32に蚭けられおいるロッド
32の鋭い先端によっお第膜34に孔をあけお高圧宀33
内から前蚘高圧ガスを圧力流䜓ずしお攟出させお、
この攟出によっお生じたガス衝撃波を、図15〜17に瀺す
ように、瞬間的にスロヌト領域37に導入しお倖方ぞ開攟
させお、スロヌト領域37にあっお生物䜓に察向しお取
付けられ、などの生物孊的物質又は生理掻性物
質′ず、金又はタングステンなどのΌm皋床の埮粒
子通垞キャリダヌずいうずを混合したものを生物䜓
に察向する面に担持させたポリむミド又はポリ゚ステ
ルからなる第膜36の生物䜓に察向する面ずは反察偎
の面を衝打させ、その際の衝撃によっお第膜36を砎裂
させお第膜36に付着させた前蚘混合物を発射させお生
物䜓に導入する。
In such a case, the biological substance 7
Alternatively, when the physiologically active substance 7 ′ is introduced into the living body 8 such as a biological tissue or a biological cell, the high pressure gas is introduced into the high pressure chamber 33, and the piston 32 is urged by the electric urging mechanism 50 to move. The rod provided on the piston 32
The high pressure chamber 33 is formed by making a hole in the first membrane 34 by the sharp tip of 32a.
The high pressure gas is discharged from inside as the pressure fluid 6a,
As shown in FIGS. 15 to 17, the gas shock wave generated by this discharge is momentarily introduced into the throat region 37 and opened outward, and is attached in the throat region 37 so as to face the organism 8. , A biological substance 7 such as DNA or a physiologically active substance 7 ', and a mixture of fine particles of about 1 ÎŒm (usually called a carrier) such as gold or tungsten, which is carried on the surface facing the organism 8, or a polyimide or The surface of the second film 36 made of polyester, which is opposite to the surface facing the organism 8, is impacted, and the second film 36 is ruptured by the impact at that time and the mixture attached to the second film 36 It is fired and introduced into the organism 8.

【】前蚘のようなものにおいおは、第膜36を
衝打する際、圧力流䜓の高い圧力によっお第膜36
が砎砕された砎片ず噎出する圧力流䜓ずが生物䜓
偎に攟出されお、生物孊的物質又は生理掻性物質′
が導入される生物䜓に衝突しお、この生物䜓を汚染
したり、損傷するずいう問題がある。この問題を解消す
るものずしお、図18に瀺すように第膜36をスロヌト領
域37の䞊方に挿入し、第膜36の近傍にあっお第膜36
ず生物䜓ずの間にスクリヌン39を蚭けお、第膜36を
拡匵はさせるが砎裂はしないようにしお、生物孊的物質
又は生理掻性物質′のみを通過させお攟射させるも
のがある。
In the above-mentioned structure, when the second membrane 36 is hit, the second membrane 36 is struck by the high pressure of the pressure fluid 6a.
The crushed debris and the ejected pressure fluid 6a are
The biological substance 7 or the physiologically active substance 7'is released to the side.
There is a problem that it collides with the living body 8 into which it is introduced and contaminates or damages the living body 8. As a solution to this problem, the second film 36 is inserted above the throat region 37 as shown in FIG.
A screen 39 is provided between the second body 36 and the living body 8 so that the second film 36 is expanded but not ruptured, and only the biological substance 7 or the physiologically active substance 7'is allowed to pass therethrough for emission. is there.

【】[0007]

【発明が解決しようずする課題】前蚘のような埓来のス
クリヌンを蚭けた打蟌装眮は、生物孊的物質又は生理掻
性物質の通過率が䜎䞋するうえ、生物䜓ぞの導入圧力に
損倱を生じるので、装眮を倧型にしなければならないず
いう問題がある。
In the driving device provided with the conventional screen as described above, the passage rate of the biological substance or the physiologically active substance is lowered and the pressure introduced into the organism is lost. Therefore, there is a problem that the device must be large.

【】そこでこの発明の目的は、前蚘のような埓
来の打蟌装眮がも぀問題を解消し、装眮が小型にでき
お、生物孊的物質又は生理掻性物質を発射させる圧力流
䜓の圧力が、䜎くおも導入圧力が充分にえられ、生物孊
的物質又は生理掻性物質が導入される生物䜓が、圧力流
䜓や、膜の砎片によっお汚染されたり、損傷されるこず
がなく、又生物䜓ぞの導入圧力に損倱を生じるこずがな
い打蟌装眮を提䟛するにある。
Therefore, an object of the present invention is to solve the problems of the conventional driving device as described above, to make the device compact, and to reduce the pressure of the pressure fluid for ejecting a biological substance or a physiologically active substance. Even if it is low, the introduction pressure can be sufficiently obtained, and the organism into which the biological substance or the physiologically active substance is introduced is not contaminated or damaged by the pressure fluid or the debris of the membrane. An object of the present invention is to provide a driving device that does not cause a loss in the introduction pressure of the.

【】[0009]

【課題を解決するための手段】この発明は、前蚘のよう
な目的を達成するために、請求項に蚘茉の発明は、䞀
端に圧力流䜓源が接続された気密性を有する筒䜓ず、筒
䜓内に蚭けた発射䜓ず、前蚘筒䜓の他端に蚭けられ、発
射䜓の移動を停止させるストッパヌず、圧力流䜓源ず筒
䜓ずの間に蚭けた流路ず、この流路に蚭けた開閉匁ずを
有し、発射䜓の圧力流䜓が圓接する反察面に生物孊的物
質又は生理掻性物質を担持させ、開閉匁を開口しお発射
䜓を移動しおストッパヌで停止させ、この停止の衝撃に
よっお生物孊的物質又は生理掻性物質をこの発射䜓から
盎接攟射させるこずを特城ずするものである。請求項
に蚘茉の発明は、䞀端に圧力流䜓源が接続された気密性
を有する筒䜓ず、筒䜓内に蚭けた発射䜓ず、前蚘筒䜓を
蚭眮する筐䜓ず、前蚘筒䜓の他端に蚭けられ、発射䜓の
移動を停止させるストッパヌず、圧力流䜓源ず筒䜓ずの
間に蚭けた流路ず、この流路に蚭けた開閉匁ずを有し、
発射䜓の圧力流䜓が圓接する反察面に生物孊的物質又は
生理掻性物質を担持させ、開閉匁を開口しお発射䜓を移
動しおストッパヌで停止させ、この停止の衝撃によっお
生物孊的物質又は生理掻性物質をこの発射䜓から盎接攟
射させるこずを特城ずするものである。請求項に蚘茉
の発明は、請求項に蚘茉の発明においお、筐䜓が、必
芁に応じお筐䜓内を真空にする真空手段を有するこずを
特城ずするものである。請求項に蚘茉の発明は、請求
項〜のいずれかに蚘茉の発明においお、圧力流䜓が
加圧された䞍掻性ガス、空気、氎、油類、たたは火薬の
爆発による爆颚であるこずを特城ずするものである。請
求項に蚘茉の発明は、請求項〜のいずれかに蚘茉
の発明においお、筒䜓の䞀端、及び他端偎の偎壁にそれ
ぞれ開口を蚭け、発射䜓が移動しお筒䜓内のストッパヌ
で停止した際、前蚘それぞれの開口から排出される筒䜓
内の流䜓を導出させる導管を、前蚘それぞれの開口に連
結したこずを特城ずするものである。請求項に蚘茉の
発明は、請求項に蚘茉の発明においお、導管が、必芁
に応じお筒䜓内を真空にする真空手段を有するこずを特
城ずするものである。請求項に蚘茉の発明は、請求項
〜のいずれかに蚘茉の発明においお、発射䜓の衝撃
圧が〜50kg/cm2であるこずを特城ずするものである。
請求項に蚘茉の発明は、請求項〜のいずれかに蚘
茉の発明においお、発射䜓がチタン合金などの匟性力の
匷い材料のものからなるこずを特城ずするものである。
請求項に蚘茉の発明は、請求項〜のいずれかに蚘
茉の発明においお、発射䜓が鉛、鉄、劣化りランなど比
重の倧きい材料のものからなるこずを特城ずするもので
ある。請求項10に蚘茉の発明は、請求項〜のいずれ
かに蚘茉の発明においお、発射䜓がリングを有するこ
ずを特城ずするものである。請求項11に蚘茉の発明は、
請求項〜のいずれかに蚘茉の発明においお、発射䜓
がチタン合金局ず磁性材料局ずからなるこずを特城ずす
るものである。請求項12に蚘茉の発明は、請求項〜
のいずれかに蚘茉の発明においお、発射䜓がチタン合金
局ず鉛、鉄、劣化りランなどの金属局ずからなるこずを
特城ずするものである。請求項13に蚘茉の発明は、請求
項〜のいずれかに蚘茉の発明においお、発射䜓が
鉛、鉄、劣化りランなどの金属局ずプラスチック材料局
ずからなるこずを特城ずするものである。請求項14に蚘
茉の発明は、請求項〜のいずれかに蚘茉の発明にお
いお、発射䜓がプラスチック材料のものからなるこずを
特城ずするものである。請求項15に蚘茉の発明は、請求
項〜のいずれかに蚘茉の発明においお、発射䜓の生
物孊的物質又は生理掻性物質を担持する面がホヌニング
加工、又はむオンスパッタリング加工されおいるこずを
特城ずするものである。
In order to achieve the above-mentioned object, the present invention according to claim 1 provides an airtight cylinder having a pressure fluid source connected to one end thereof, A projectile provided in the tubular body, a stopper provided at the other end of the tubular body to stop the movement of the projectile, a flow passage provided between the pressure fluid source and the tubular body, and a flow passage provided in the flow passage. And an on-off valve, a biological substance or a physiologically active substance is carried on the opposite surface of the projectile against which the pressure fluid contacts, the on-off valve is opened, the projectile is moved, and stopped by a stopper. It is characterized in that a biological substance or a physiologically active substance is directly emitted from this projectile by the impact of. Claim 2
The invention described in (1), the airtight cylinder body having a pressure fluid source connected to one end, a projectile provided in the cylinder body, a housing for installing the cylinder body, and the other end of the cylinder body. And has a stopper for stopping the movement of the projectile, a flow passage provided between the pressure fluid source and the cylinder, and an on-off valve provided in this flow passage,
A biological substance or a physiologically active substance is carried on the opposite surface of the projectile against which the pressure fluid abuts, the on-off valve is opened, the projectile is moved and stopped by a stopper, and the impact of this stop causes the biological substance or The feature is that the physiologically active substance is directly emitted from this projectile. According to a third aspect of the present invention, in the second aspect of the present invention, the housing has a vacuum means for evacuating the inside of the housing as necessary. The invention according to claim 4 is the invention according to any one of claims 1 to 3, wherein the pressure fluid is a pressurized inert gas, air, water, oils, or a blast caused by an explosion of explosives. It is characterized by. According to a fifth aspect of the invention, in the invention according to any one of the first to fourth aspects, an opening is provided in each of the side walls on one end side and the other end side of the tubular body, and the projectile moves to cause a stopper inside the tubular body. When stopped at, the conduits for leading out the fluid in the cylinder discharged from the respective openings are connected to the respective openings. According to a sixth aspect of the invention, in the fifth aspect of the invention, the conduit has a vacuum means for evacuating the inside of the cylinder, if necessary. The invention according to claim 7 is the invention according to any one of claims 1 to 5, characterized in that the impact pressure of the projectile is 1 to 50 kg / cm 2 .
The invention according to claim 8 is characterized in that, in the invention according to any one of claims 1 to 5, the projectile is made of a material having a strong elastic force such as a titanium alloy.
The invention described in claim 9 is characterized in that, in the invention described in any one of claims 1 to 5, the projectile is made of a material having a large specific gravity such as lead, iron, and depleted uranium. The invention described in claim 10 is the invention according to any one of claims 1 to 5, characterized in that the projectile has an O-ring. According to the invention of claim 11,
In the invention according to any one of claims 1 to 5, the projectile comprises a titanium alloy layer and a magnetic material layer. The invention described in claim 12 is,
In any one of the inventions described above, the projectile is composed of a titanium alloy layer and a metal layer of lead, iron, depleted uranium or the like. The invention according to claim 13 is characterized in that, in the invention according to any one of claims 1 to 5, the projectile comprises a metal layer of lead, iron, depleted uranium or the like and a plastic material layer. is there. The invention described in claim 14 is the invention described in any one of claims 1 to 5, characterized in that the projectile is made of a plastic material. According to a fifteenth aspect of the present invention, in the invention according to any one of the first to fifth aspects, the surface of the projectile carrying the biological substance or the physiologically active substance is subjected to honing or ion sputtering. It is characterized by.

【】[0010]

【発明の実斜の圢態】この発明の第実斜圢態は、図
〜に瀺すようであっお、圧力流䜓源に接続された気
密性を有する筒䜓ず、この筒䜓の䞀端に取付けた第
キャップず、筒䜓内に蚭けた発射䜓10ず、発射䜓
10を第キャップの所定䜍眮に配眮させた際、発射䜓
10の圧力流䜓ず圓接する面(背面)11より䞊方にあっお、
筒䜓の偎壁に蚭けられ、䟛絊された圧力流䜓を排
出する排気匁22′を有する排気管13ず、第キャップ
に発射䜓10が筒䜓内を移動した際、所定䜍眮で発射
䜓10を停止させるストッパヌ15ず、筒䜓の他端に蚭け
られ、発射䜓10がストッパヌ15に圓接した際、筒䜓内
の流䜓を排出する排気孔13ず連通する開口13ずを蚭け
お筒䜓の他端に取付けた第キャップず、第キャ
ップず圧力流䜓源ずの間に蚭けた流路25ず、この流
è·¯25に蚭けた開閉匁22ず、開閉匁22の開攟時間を調敎す
るタむマヌ23ずを䜵蚭する。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS A first embodiment of the present invention is shown in FIG.
4, the airtight cylinder 3 is connected to the pressure fluid source 6, the first cap 4 is attached to one end of the cylinder 3, and the projectile is provided in the cylinder 3. 10 and the projectile
When the 10 is placed in the predetermined position of the first cap 4, the projectile
Above the surface (rear surface) 11 that contacts the pressure fluid of 10,
An exhaust pipe 13b provided on the side wall of the cylinder 3 and having an exhaust valve 22 'for discharging the supplied pressure fluid 6a and a second cap 5 at a predetermined position when the projectile 10 moves in the cylinder 3. A stopper 15 for stopping the projectile 10 and an opening 13 provided at the other end of the tubular body 3 and communicating with an exhaust hole 13a for discharging the fluid in the tubular body 3 when the projectile 10 contacts the stopper 15. A second cap 5 attached to the other end of the tubular body 3, a channel 25 provided between the first cap 4 and the pressure fluid source 6, and an on-off valve 22 provided in the channel 25. A timer 23 for adjusting the opening time of the on-off valve 22 is also installed.

【】排気匁22′発射䜓10がストッパヌ15に圓接
した埌、開口しお筒䜓内に存圚しおいる圧力流䜓
を排出する。なお、排気匁22′は手動の匁郚材、又は、
にかぎらず、発射䜓10がストッパヌ15に圓接したこず
を、図瀺しない怜知手段が怜知しお、その怜知出力によ
っお開口される電磁匁で構成されおいる。
After the exhaust valve 22 'projectile 10 comes into contact with the stopper 15, the pressure fluid 6a existing in the cylindrical body 3 is opened.
To discharge. The exhaust valve 22 'is a manual valve member, or
Not limited to this, the detection means (not shown) detects the contact of the projectile 10 with the stopper 15, and the electromagnetic valve is opened by the detection output.

【】発射䜓10が鉛、鉄、劣化りランなどの比重
の倧きい材質のものからなり、発射䜓10の倖呚に発射䜓
10ず筒䜓の内壁ずの間から圧力流䜓が挏れないよ
うに、たた、ストロヌクが調節できるように筒䜓内の
任意の䜍眮に蚭眮でき、さらに筒䜓内壁の損傷を防止
しおその耐久性を向䞊するためのシヌルリング12を装着
する。そしお発射䜓10の行皋が20cm皋床のものになるよ
うに筒䜓ず、第キャップずを圢成する。
The projectile 10 is made of a material having a large specific gravity, such as lead, iron, and depleted uranium.
It can be installed at any position in the cylinder 3 so that the pressure fluid 6a does not leak from between 10 and the inner wall of the cylinder 3, and the stroke can be adjusted. A seal ring 12 is attached to improve its durability. Then, the cylindrical body 3 and the first and second caps 4 and 5 are formed so that the stroke of the projectile 10 is about 20 cm.

【】発射䜓10の生物孊的物質等又
は生理掻性物質′を担持する面を平坊板状に圢成し
お、ホヌニング加工を斜しおすりガラス状にする。ホヌ
ニング加工にかぎらずむオンスパッタリング加工でもよ
い。
The surface of the projectile 10 on which the biological substance 7 (DNA or the like) or the physiologically active substance 7'is carried is formed into a flat plate shape and subjected to a honing process to form a ground glass. Not limited to honing, ion sputtering may be used.

【】圧力流䜓ずしお、加圧された䞍掻性ガ
ス、空気、氎、油類などでいずれかのものを甚い、発射
䜓10の盎埄がcm2、流䜓圧力が10kg/cm2の堎合、発射
䜓10がストッパヌ15に衝突したずきの衝撃゚ネルギヌは
10kg/Fm皋床ずなるが、発射䜓10の盎埄ず、圧力流䜓
の圧力ず、圧力流䜓の䟛絊量ず、ストロヌクずを
適宜遞択しお、発射䜓10の衝撃圧を〜50kg/cm2の範囲
に調節する。
As the pressure fluid 6a, any one of pressurized inert gas, air, water, oils and the like is used, and when the diameter of the projectile 10 is 2 cm 2 and the fluid pressure is 10 kg / cm 2 , The impact energy when projectile 10 collides with stopper 15 is
It is about 10kg / Fm, but the diameter of the projectile 10 and the pressure fluid 6
The impact pressure of the projectile 10 is adjusted within the range of 1 to 50 kg / cm 2 by appropriately selecting the pressure a, the supply amount of the pressure fluid 6a, and the stroke.

【】圧力流䜓ずしお、加圧した䞍掻性ガス
などのかわりに、火薬を第キャップ内にあっお、発射
䜓10の背面11に、発射䜓10の衝撃圧が所望のものずなる
ように適量装填し、電気点火などの発火手段を甚いお爆
発させお発射䜓10を発射させおもよい。
As the pressure fluid 6a, instead of pressurized inert gas or the like, explosive powder is contained in the first cap so that the impact pressure of the projectile 10 on the rear surface 11 of the projectile 10 becomes desired. Alternatively, the projectile 10 may be fired by loading an appropriate amount of it on the vehicle and exploding it by using an ignition means such as electric ignition.

【】第キャップ及び第キャップは筒䜓
の䞡端に螺合しお装着する。又、発射䜓10の移動がス
ムヌスに行われるように第キャップ及び第キャッ
プの内埄ず筒䜓の内埄ずは同䞀に圢成する。そし
お、第キャップず第キャップずを倖しお、発射
䜓10を第キャップ、たたは、筒䜓内の所定䜍眮に
挿入しおから第キャップず第キャップずを筒䜓
に取り付け、発射䜓10の発射にそなえる。この際、発
射䜓10は発射䜓10に装着されたシヌルリング12のスプリ
ング䜜甚によっお所定の䜍眮に保持されおいる。
The first cap 4 and the second cap 5 are screwed and attached to both ends of the cylindrical body 3. Further, the inner diameters of the first cap 4 and the second cap 5 and the inner diameter of the tubular body 3 are formed to be the same so that the projectile 10 can be moved smoothly. Then, the first cap 4 and the second cap 5 are removed, the projectile 10 is inserted into the first cap 4 or a predetermined position in the tubular body 3, and then the first cap 4 and the second cap 5 are removed. It is attached to the cylinder 3 to prepare for the firing of the projectile 10. At this time, the projectile 10 is held at a predetermined position by the spring action of the seal ring 12 attached to the projectile 10.

【】圧力流䜓を䟛絊する手段は、第キャ
ップず、所定の圧力に加圧された圧力流䜓源ずの間
に蚭けられた流路25に電磁匁からなる開閉匁22を蚭けた
ものである。そしお開閉匁22を所望の衝打力がえられる
ようにタむマヌ23によっお、予め蚭定した所定時間だけ
開口動䜜をさせお、蚭定された量の圧力流䜓を䟛絊
する。
The means for supplying the pressure fluid 6a is provided with an opening / closing valve 22 composed of an electromagnetic valve in a flow passage 25 provided between the first cap 4 and the pressure fluid source 6 pressurized to a predetermined pressure. It is a thing. Then, the opening / closing valve 22 is opened by a timer 23 for a predetermined time so that a desired impact force is obtained, and a set amount of the pressure fluid 6a is supplied.

【】このようなものを甚いる堎合は、図に瀺
すように、固定台29にセットしお、前蚘のように圧力流
䜓を䟛絊しお䜜動させ、又は、察象ずする生物䜓
によっおは、図に瀺すように、保持郚材29′にセット
しお筒䜓を手によっお保持し、又は、単に手で持っ
お、前蚘のように圧力流䜓を䟛絊しお䜜動させる。
When such a thing is used, as shown in FIG. 2, it is set on the fixed table 29 and supplied with the pressure fluid 6a to operate it, or the target organism 8 is used.
Depending on the case, as shown in FIG. 3, it is set on the holding member 29 'to hold the tubular body 3 by hand, or simply holding it by hand and supplying the pressure fluid 6a to operate it.

【】このようなものにあっお、発射䜓10の生物
孊的物質又は生理掻性物質′を担持する面に、生物
孊的物質又は生理掻性物質′ず、Όm皋床の金又
はタングステンなどの埮粒物質キャリダヌずを氎な
どの液状媒䜓に混合させお担持させ、排気匁22′を閉口
した状態で、開閉匁22を所定時間䜜動させお、発射䜓10
を筒䜓内の所定の䜍眮に蚭眮し、発射䜓10の背面11か
ら、圧力流䜓を䟛絊しお、発射䜓10を移動しおスト
ッパヌ15によっお急激に停止させ、この衝突によっお発
射䜓10に衝打力を䞎えお、生物孊的物質又は生理掻性
物質′ず埮粒物質ず液状媒䜓ずを発射䜓10から盎接攟
射させお生物䜓内に導入する。この堎合、発射䜓10の
生物孊的物質又は生理掻性物質′を担持する面が平
坊板状であるので、図に瀺すように飛翔の攟射角が広
がらずに集䞭しおおり、生物䜓の䞭倮郚に深く、呚蟺
郚には浅く導入するこずができる。
In such a structure, the surface of the projectile 10 carrying the biological substance 7 or the physiologically active substance 7 ', the biological substance 7 or the physiologically active substance 7', and gold of about 1 ÎŒm or A fine particle substance (carrier) such as tungsten is mixed and carried in a liquid medium such as water, and the opening / closing valve 22 is operated for a predetermined time while the exhaust valve 22 'is closed, so that the projectile 10
Is installed at a predetermined position in the cylindrical body 3, the pressure fluid 6a is supplied from the back surface 11 of the projectile 10, the projectile 10 is moved and suddenly stopped by the stopper 15, and the collision causes the projectile 10 The biological substance 7 or the physiologically active substance 7 ′, the fine-grained substance and the liquid medium are directly emitted from the projectile 10 and introduced into the organism 8 by applying an impacting force to. In this case, since the surface of the projectile 10 carrying the biological substance 7 or the physiologically active substance 7'is a flat plate shape, the radiation angle of flight is concentrated without spreading as shown in FIG. It can be introduced deep into the central part of the body 8 and shallow into the peripheral part.

【】又、筒䜓内に残留しおいる空気、又は先
行の圧力流䜓を排気孔13を通過させお開口13から、さ
らに、新たに䟛絊された圧力流䜓6aを排気匁22′を開口
しお、排気管13からそれぞれ攟出しお、埌続の衝撃動
䜜にそなえる。このようであるから、シヌルリング12に
よっお発射䜓10ず筒䜓ずの間隙がなくお、圧力流䜓
が挏れだしお生物䜓を盎撃すこずがなくお、生物䜓
を圧力流䜓が損傷させたり汚染させるこずがな
い。
Further, the air remaining in the cylindrical body 3 or the preceding pressure fluid is passed through the exhaust hole 13a to be opened through the opening 13, and the newly supplied pressure fluid 6a is opened through the exhaust valve 22 '. Then, they are discharged from the exhaust pipe 13b respectively to prepare for the subsequent impact operation. Because of this, there is no gap between the projectile 10 and the cylinder 3 due to the seal ring 12, and the pressure fluid 6
The a does not leak and hit the organism 8 directly, and the organism 8 is not damaged or contaminated by the pressure fluid 6a.

【】発射䜓10の生物孊的物質又は生理掻性物
質′を担持する面をホヌニング加工したので、生物孊
的物質又は生理掻性物質′ず、Όm皋床の金、癜
金又はタングステンなどの粒状物ずを氎などの液状媒䜓
が発射䜓10面䞊を拡散するこずなく所定の䜍眮に確実に
担持させるこずができる。
Since the surface of the projectile 10 carrying the biological substance 7 or the physiologically active substance 7'has been subjected to honing processing, the biological substance 7 or the physiologically active substance 7'and about 1 ÎŒm of gold, platinum or tungsten, etc. It is possible to surely carry the granular material and the liquid material such as water at a predetermined position without diffusing on the surface of the projectile 10.

【】発射䜓10が、鉛、鉄、劣化りラン等の比重
の倧きい材質のものからなるので、発射䜓10の運動゚ネ
ルギヌを倧きくするこずができ、発射䜓10がストッパヌ
15に衝突する際の衝打力が倧きなものずなっおいる。
Since the projectile 10 is made of a material having a large specific gravity such as lead, iron or depleted uranium, the kinetic energy of the projectile 10 can be increased, and the projectile 10 can be a stopper.
The hitting force when hitting 15 is great.

【】第実斜圢態は、図瀺を省略したが、第
実斜圢態ず同様の構成をも぀ものにおいお、発射䜓10が
匟性の極めお匷いチタン合金からなるものである。この
ような発射䜓10は、その匟性によっお衝打の゚ネルギヌ
が損倱されるこずなく、さらに匟性力の䜜甚によっお耇
合的衝撃圧が加わり、衝撃力が倍加されお振動に倉換さ
れお、埮粒物質ず、生物孊的物質又は生理掻性物質
′ずに䌝達され、それらを加速しお飛翔させお目的の
生物䜓に衝突させ、その加速力によっお生物䜓の现
胞壁膜を貫通しお導入させるこずができるうえ、発射䜓
10が発射された際、発射䜓10は、所定䜍眮でストッパヌ
15によっお受け止められた際、砎損するこずがなく、圧
力流䜓が挏れだすこずがなくお生物䜓を汚染した
り、損傷するこずがなくお、装眮の信頌性がきわめお高
い。
Although not shown in the drawings, the second embodiment does not include the first embodiment.
In a structure similar to that of the embodiment, the projectile 10 is made of a titanium alloy having extremely strong elasticity. Such projectile 10 does not lose impact energy due to its elasticity, and is further subjected to a composite impact pressure by the action of elastic force, the impact force is doubled and converted into vibration, and fine particles , Is transmitted to the biological substance 7 or the physiologically active substance 7 ', accelerates them to fly and collide with the target organism 8, and the accelerating force penetrates the cell wall membrane of the organism 8 and introduces them. Can be a projectile
When the 10 is fired, the projectile 10 stops at the predetermined position.
When it is received by 15, it does not break, the pressure fluid 6a does not leak, does not contaminate the organism 8 or damages it, and the reliability of the device is extremely high.

【】第実斜圢態は、図瀺を省略したが、第
実斜圢態ず同様の構成をも぀ものにおいお、発射䜓10が
チタン合金局ず磁性材料局ずからなるものである。この
ようなものにあっお、生物孊的物質又は生理掻性物質
′ず、液状媒䜓ず、特開平6-133784号公報に開瀺され
お公知ずなっおいるような遺䌝子を担持する磁性埮粒子
キャリダヌずの混合物を磁気によっお発射䜓10に確
実に保持するこずができる。チタン合金局ず磁性材料局
ずの積局順序は生物孊的物質又は生理掻性物質′の
方向にチタン合金局、磁性材料局、又はその逆のもので
もよく、いずれかを適宜遞択する。
Although not shown, the third embodiment is the first
In a structure similar to that of the embodiment, the projectile 10 is composed of a titanium alloy layer and a magnetic material layer. In such a case, the biological substance 7 or the physiologically active substance 7 ′, the liquid medium, and the magnetic fine particles carrying the gene as disclosed in JP-A-6-133784 (known in the art) ( The mixture with the carrier) can be held securely on the projectile 10 by magnetism. The order of stacking the titanium alloy layer and the magnetic material layer may be a titanium alloy layer, a magnetic material layer, or vice versa in the direction of the biological substance 7 or the physiologically active substance 7 ', and any one of them may be appropriately selected.

【】第実斜圢態は、図瀺を省略したが、第
実斜圢態ず同様の構成をも぀ものにおいお、発射䜓10が
チタン合金局ず、鉛、鉄、劣化りラン等の比重の倧きい
材質のものからなる金属局ずからなるものである。この
ようなものにあっお、発射䜓10の運動゚ネルギヌを倧き
くするこずができ、チタン合金局の匟性によっお衝打の
゚ネルギヌが損倱されるこずなく、さらに匟性力の䜜甚
によっお耇合的衝撃圧が加わり、衝撃力が倍加されお振
動に倉換されお、それぞれ単䜓のもので構成された発射
䜓10より、生物孊的物質又は生理掻性物質′ず、液
状媒䜓等を飛翔させる加速床が倧きなものずなる。な
お、チタン合金局ず金属局ずの積局順序は生物孊的物質
又は生理掻性物質′を担持する方にチタン合金局、
金属局、又はその逆のものでもよく、いずれかを適宜遞
択する。
Although not shown in the drawings, the fourth embodiment is the first
In the same structure as the embodiment, the projectile 10 is composed of a titanium alloy layer and a metal layer made of a material having a large specific gravity such as lead, iron, and depleted uranium. With such a structure, the kinetic energy of the projectile 10 can be increased, the impact energy is not lost due to the elasticity of the titanium alloy layer, and the composite impact pressure is applied by the action of the elastic force. , The impact force is doubled and converted into vibration, and the acceleration that causes the biological substance 7 or the physiologically active substance 7'and the liquid medium or the like to fly is larger than that of the projectile 10 composed of a single substance. Become. The order of stacking the titanium alloy layer and the metal layer is such that the one carrying the biological substance 7 or the physiologically active substance 7 ′ has the titanium alloy layer,
It may be a metal layer or vice versa, and either one is appropriately selected.

【】第実斜圢態は、図瀺を省略したが、第
実斜圢態ず同様の構成をも぀ものにおいお、図に瀺す
ように、発射䜓10が鉛、鉄、劣化りラン、チタン合金等
の金属材料局10ずポリむミド又はポリ゚ステルなどの
匟性を有するプラスチック局10ずからなるものであ
る。それは、生物孊的物質又は生理掻性物質′を担
持する方にプラスチック局10を配眮しお、発射䜓10の
金属材料局10に凹郚を蚭け、この凹郚に匷嵌する凞郚
をプラスチック局10に蚭け、䞡者を係合しお䞀䜓的に
組付けお圢成する。このようなものにあっお、プラスチ
ック局10を垯電させお生物孊的物質又は生理掻性物
質′ず、液状媒䜓ずを吞着させお確実に保持するこず
ができ、発射䜓10を発射する際には陀電を行っお飛翔し
やすくしおいる。なお、金属材料局10ずプラスチック
å±€10ずは、前蚘のような凹郚ず凞郚ずの匷嵌による係
合でなくお、図に瀺すように、金属材料局10′ずプ
ラスチック局10′ずの接合面を平板状に圢成しお䞡者
を接着材によっお接着しおもよい。
Although illustration is omitted, the fifth embodiment is the first embodiment.
In the same structure as the embodiment, as shown in FIG. 5, the projectile 10 includes a metallic material layer 10a such as lead, iron, depleted uranium, and titanium alloy, and an elastic plastic layer 10b such as polyimide or polyester. It consists of That is, the plastic layer 10b is arranged on the side carrying the biological substance 7 or the physiologically active substance 7 ', and a concave portion is provided in the metal material layer 10a of the projectile 10, and the convex portion which is tightly fitted in the concave portion is formed by the plastic layer. It is provided on 10b, and both are engaged and integrally assembled. In such a case, the plastic layer 10b can be charged and the biological substance 7 or the physiologically active substance 7'and the liquid medium can be adsorbed and reliably held, and when the projectile 10 is launched. The static electricity is removed to make it easier to fly. It should be noted that the metal material layer 10a and the plastic layer 10b are not engaged by the above-described strong fitting of the concave portion and the convex portion, but as shown in FIG. The joint surface may be formed into a flat plate shape, and the both surfaces may be bonded with an adhesive material.

【】第実斜圢態は、図瀺を省略したが、第
実斜圢態ず同様の構成をも぀ものにおいお、発射䜓10を
チタン合金に代えお、ポリむミド又はポリ゚ステルなど
の匟性を有する暹脂を甚いたものである。このようなも
のにおいお、発射䜓10が軜量に、圢成するこずができ、
か぀、加工が容易であるずずもに、プラスチック材料局
に垯電させお生物孊的物質又は生理掻性物質′ず、
液状媒䜓ずを吞着させお確実に保持するこずができ、発
射䜓10を発射する際には陀電を行っお飛翔しやすくしお
いる。
Although illustration is omitted in the sixth embodiment, the first embodiment
In the structure having the same structure as that of the embodiment, the projectile 10 is replaced with a titanium alloy and an elastic resin such as polyimide or polyester is used. In such a thing, the projectile 10 can be formed to be lightweight,
In addition, it is easy to process, and the biological material 7 or the physiologically active material 7'is charged by charging the plastic material layer,
The liquid medium can be adsorbed and held securely, and when the projectile 10 is launched, static electricity is removed to facilitate flight.

【】第実斜圢態は、第実斜圢態の発射䜓10
の生物孊的物質又は生理掻性物質′を担持する面が
平坊板状に圢成されおいる代わりに、図に瀺すよう
に、凞曲面状に圢成したものである。このようなものに
あっお、生物孊的物質又は生理掻性物質′を飛翔さ
せる際、第実斜圢態のものより、その発射䜓10面を凞
曲面状に圢成しおあるので、図に瀺すように、生物孊
的物質又は生理掻性物質′の飛翔が適宜の広がりを
持っお攟射され、生物䜓の広範囲に導入するこずがで
きる。なお発射䜓10の生物孊的物質又は生理掻性物質
′を担持する面の圢状は平坊板状、凞曲面状にかぎら
ず、生物䜓ぞの導入条件に適合するように凞面状、凹
曲面状、凹面状に圢成しおもよい。
The seventh embodiment is a projectile 10 of the first embodiment.
Instead of the flat plate-shaped surface for supporting the biological substance 7 or the physiologically active substance 7'of FIG. 7, the convex-shaped curved face is formed as shown in FIG. In such a case, when the biological substance 7 or the physiologically active substance 7'is made to fly, the surface of the projectile 10 is formed to have a convex curved surface as compared with that of the first embodiment. As shown in, the flight of the biological substance 7 or the physiologically active substance 7'is radiated with an appropriate spread and can be introduced into a wide range of the organism 8. The shape of the surface of the projectile 10 for supporting the biological substance 7 or the physiologically active substance 7'is not limited to the flat plate shape or the convex curved surface shape, and may be a convex shape or a concave shape so as to meet the introduction condition into the organism 8. It may be formed into a curved surface or a concave surface.

【】第実斜圢態は、第実斜圢態においお、
図に瀺すように、筒䜓の䞀端、及び他端偎の偎壁に
それぞれ開口13及び排気管13を蚭け、この開口13及び
排気管13を連結しお導管14を蚭けたものである。この
ようなものにあっお、発射䜓10が移動しお筒䜓内のス
トッパヌ15で停止した際、筒䜓から排出される残存の
空気、及び䟛絊された圧力流䜓を所望の堎所に攟出
するこずができお、生物䜓や䜜業者を、前蚘の排出流䜓
から保護するこずができる。又筒䜓内を、必芁に応じ
お、真空にする真空手段18を導管14に蚭けおもよい。筒
䜓内を真空にするず発射䜓10の振動板ぞの移動がス
ムヌスに行われ、発射䜓10が振動板に衝突した際の衝
撃音を䜎枛するこずができる。
The eighth embodiment differs from the first embodiment in that
As shown in FIG. 8, an opening 13 and an exhaust pipe 13b are provided at one end and a side wall of the other end of the cylindrical body 3, respectively, and the conduit 13 is provided by connecting the opening 13 and the exhaust pipe 13b. With such a structure, when the projectile 10 moves and stops at the stopper 15 in the cylindrical body 3, the residual air discharged from the cylindrical body 3 and the supplied pressure fluid 6a are delivered to a desired location. It can be released to protect organisms and workers from the exhaust fluid. If necessary, a vacuum means 18 for evacuating the inside of the cylindrical body 3 may be provided in the conduit 14. When the inside of the cylindrical body 3 is evacuated, the projectile 10 is smoothly moved to the diaphragm 9, and the impact sound when the projectile 10 collides with the diaphragm 9 can be reduced.

【】第実斜圢態は、第実斜圢態においお、
図に瀺すように、開閉匁を有する排出口26ず、開閉匁
を有する送気口26′ずを具えた筒䜓を蚭眮する筐䜓
を蚭けたものである。送気口26′に蚭けられた開閉匁は
手動匁、又は指什信号によっお開閉する電磁匁を甚い
る。又、筐䜓の倖呚面又は内壁面に防音材、筐䜓内
に生物䜓の育成するに必芁な光源50を蚭けおもよい。
さらに、発射䜓10を第キャップの所定䜍眮にセット
するのに手動で行う代わりに、図10に瀺すように、電磁
力を甚いたいわゆるリニダヌモヌタ方匏の移動装眮、又
は、図瀺しないが電磁力を甚いた゚レベヌタ機構を筒䜓
に蚭眮しお移動を行わせおもよい。
The ninth embodiment differs from the first embodiment in that
As shown in FIG. 9, a casing 2 in which a tubular body 3 having an outlet 26 having an opening / closing valve and an air supply port 26 'having an opening / closing valve is installed.
Is provided. As the on-off valve provided at the air supply port 26 ', a manual valve or a solenoid valve which opens and closes by a command signal is used. Further, a soundproofing material may be provided on the outer peripheral surface or the inner wall surface of the housing 2, and a light source 50 necessary for growing the living body 8 may be provided in the housing 2.
Further, instead of manually setting the projectile 10 at a predetermined position of the first cap 4, as shown in FIG. 10, a so-called linear motor type moving device using electromagnetic force, or an electromagnetic force (not shown) is used. The elevator mechanism using the above may be installed in the cylindrical body 3 and moved.

【】このようなものにあっお、開口13及び排気
管13から排出される筒䜓内の既存の流䜓及び圧力流
䜓は、筐䜓の暪壁の方向に向いお筐䜓内に排出
され、さらに筐䜓の排出口26から筐䜓倖に攟出され
る。このずき、流䜓は生物䜓の方には向いおおらず、
生物䜓を汚染したり、損傷するこずがない。さらに、
この装眮を䜿甚する準備過皋においお、送気口26′の開
閉匁を開口しお生物䜓が必芁ずするガス2
222、氎蒞気などを必芁量䟛絊
した埌、開閉匁を閉口し、又、光源50から光線を照射し
お環境条件を敎え、生物䜓、及び生物孊的物質又は
生理掻性物質′が也燥したり、死滅しないようにす
る。この堎合、排出口26の開閉匁は閉口しおいお、圧力
流䜓が䟛絊され、発射䜓10がストッパヌ15に衝突し
た埌、排出口26の開閉匁を開口しお圧力流䜓を攟出
する。
In such a structure, the existing fluid and the pressure fluid 6a in the cylindrical body 3 discharged from the opening 13 and the exhaust pipe 13b are directed to the lateral wall of the housing 2 and flow into the housing 2. It is discharged, and further discharged from the housing 2 through the discharge port 26 of the housing 2. At this time, the fluid is not suitable for the organism 8,
The organism 8 is not contaminated or damaged. further,
In the preparation process for using this device, the gas (CO 2 ,
O 2, NO, NO 2, SO 2, after supplying the required amount, etc.) steam, and closes the on-off valve, also create an environment condition from the light source 50 is irradiated with light, the organism 8, and biological Make sure that the substance 7 or the physiologically active substance 7'is not dried or killed. In this case, the opening / closing valve of the discharge port 26 is closed, the pressure fluid 6a is supplied, and after the projectile 10 collides with the stopper 15, the opening / closing valve of the discharge port 26 is opened to discharge the pressure fluid 6a.

【】そしお、筐䜓内は2などのガスが充
満しおいるので、排出された圧力流䜓などが生物䜓
を損傷するこずがない。そしお、筒䜓の呚囲に、又
は第キャップの呚囲に防音材を蚭けたものは、筒䜓
内の既存の流䜓が排出された際の隒音を防止する。
Since the housing 2 is filled with a gas such as CO 2 , the discharged pressure fluid 6a does not damage the living organism 8. And, the one provided with the soundproof material around the cylindrical body 3 or around the second cap is the cylindrical body 3
Prevents noise when the existing fluid inside is drained.

【】第10実斜圢態は、第実斜圢態においお、
図11に瀺すように、筐䜓の排出口26に真空手段17ã‚’èš­
けたものである。このようなものにあっお、筐䜓内を
必芁に応じお真空にするず、真空でない堎合より、発射
䜓10の吞匕効果をあげお衝突力を増加するこずができ、
か぀、発射䜓10ずストッパヌ15ずの衝突音、圧力流䜓の
排出音が䜎枛され、隒音公害を生じるこずがない。又、
筐䜓内を真空にしお、生物孊的物質又は生理掻性物
質′を生物䜓内に導入した埌、筐䜓内を垞圧に戻
すための、図瀺しない、リヌクバルブを筐䜓に、さら
に倖気を流入させる流路のリヌクバルブの前偎、又は埌
偎に倖気の汚染物質を陀去するフィルタを蚭けるこずが
奜たしい。
The tenth embodiment is the same as the eighth embodiment.
As shown in FIG. 11, a vacuum means 17 is provided at the discharge port 26 of the housing 2. In such a case, if the inside of the housing 2 is evacuated as needed, the impact force of the projectile 10 can be enhanced and the collision force can be increased, as compared with the case where it is not a vacuum.
Moreover, the noise of collision between the projectile 10 and the stopper 15 and the noise of discharge of the pressure fluid are reduced, and no noise pollution occurs. or,
After the inside of the housing 2 is evacuated and the biological substance 7 or the physiologically active substance 7'is introduced into the organism 8, a leak valve (not shown) for returning the inside of the housing 2 to normal pressure is provided. 2, it is preferable to further provide a filter for removing contaminants in the outside air on the front side or the rear side of the leak valve of the flow path through which the outside air flows.

【】第11実斜圢態は、第実斜圢態においお、
図12に瀺すように、開口13及び排気管13から排出され
る筒䜓内の空気、既存の流䜓、又は圧力流䜓を筐
䜓の倖に排出する導管14を筐䜓を貫通させお蚭けた
ものである。このようなものにあっお、導管14によっ
お、筒䜓内の空気、既存の流䜓、又は䜜動時に䟛絊さ
れた圧力流䜓を盎接筐䜓倖に排出するこずができ
お筐䜓内が汚染されず、又、筐䜓内を真空にしない
で筒䜓内を真空にするず、発射䜓10の吞匕効果をあげ
お衝突力を増加するこずができるうえ、又は生物
䜓の衚面の氎分が蒞散されなくお倉質せず、特に動物
など呌吞をさせながら窒息させず正垞な状態でそれらに
生物孊的物質又は生理掻性物質′を生物䜓に導入
させるこずができる。なお導管14の排出口には排出され
る流䜓を枅浄にするフィルタを蚭けおもよい。
The eleventh embodiment is different from the ninth embodiment in that
As shown in FIG. 12, a conduit 14 for discharging the air, the existing fluid, or the pressure fluid 6a in the cylindrical body 3 discharged from the opening 13 and the exhaust pipe 13b to the outside of the housing 2 is passed through the housing 2. It was provided by. In such a case, the air inside the cylinder 3, the existing fluid, or the pressure fluid 6a supplied at the time of operation can be directly discharged to the outside of the housing 2 by the conduit 14, and the inside of the housing 2 is If the inside of the casing 3 is not contaminated and the inside of the housing 2 is not evacuated, but the inside of the cylinder 3 is evacuated, the impact of the projectile 10 can be enhanced and the collision force can be increased. It is possible to introduce the biological substance 7 or the physiologically active substance 7'into the organism 8 in a normal state without being suffocated while breathing, such as an animal, since the water content of the organism 8 does not evaporate and deteriorate. The outlet of the conduit 14 may be provided with a filter for purifying the discharged fluid.

【】第12実斜圢態は、第実斜圢態においお、
図13に瀺すように、筐䜓の倖郚にあっお導管14の䞭間
に真空手段18を蚭けたものである。この真空手段18が発
射䜓10ずストッパヌ15ずの衝突力を増倧させ、か぀、排
出される圧力流䜓ず、発射䜓10ず振動板ずの衝撃
音などの隒音を䜎枛する。なお、筐䜓の倖郚にあっお
導管14の䞭間にあっお、筐䜓ず、真空手段18ずの間に
䜍眮しお消音手段16′を蚭けおもよい。この消音手段1
6′は、消音マフラヌであっお、排出される圧力流䜓
ず、発射䜓10ず振動板ずの衝撃音などの隒音をさら
に䜎枛する。
The twelfth embodiment is the same as the ninth embodiment.
As shown in FIG. 13, a vacuum means 18 is provided outside the housing 2 and in the middle of the conduit 14. This vacuum means 18 increases the collision force between the projectile 10 and the stopper 15, and reduces the discharged pressure fluid 6a and the noise such as the impact sound between the projectile 10 and the diaphragm 9. Note that a muffling means 16 ′ may be provided outside the housing 2 and in the middle of the conduit 14 and between the housing 2 and the vacuum means 18. This silencer 1
6'is a muffler for muffler, which discharges the pressure fluid 6
The noise such as the impact sound of the projectile 10 and the diaphragm 9 is further reduced.

【】なお、第10実斜圢態ず、第11実斜圢態ず、
第12実斜圢態ずを適宜組み合わせお甚いおもよい。
The tenth embodiment, the eleventh embodiment,
The twelfth embodiment may be appropriately combined and used.

【】[0037]

【発明の効果】この発明は、前蚘のようであっお、請求
項に蚘茉の発明は、䞀端に圧力流䜓源が接続された気
密性を有する筒䜓ず、筒䜓内に蚭けた発射䜓ず、前蚘筒
䜓の他端に蚭けられ、発射䜓の移動を停止させるストッ
パヌず、圧力流䜓源ず筒䜓ずの間に蚭けた流路ず、この
流路に蚭けた開閉匁ずを有し、発射䜓の圧力流䜓が圓接
する反察面に生物孊的物質又は生理掻性物質を担持さ
せ、開閉匁を開口しお発射䜓を移動しおストッパヌで停
止させ、この停止の衝撃によっお生物孊的物質又は生理
掻性物質をこの発射䜓から盎接攟射させるので、装眮が
小型堅牢に補造するこずができるうえ、操䜜が簡単であ
り、振動板の蒞気滅菌、也熱滅菌が容易であり、圧力流
䜓の圧力が䜎くおよく、生物孊的物質又は生理掻性物質
を担持した発射䜓が砎砕されず、打ち蟌たれる生物䜓ぞ
盎接、圧力流䜓が接觊するこずなくお、圧力流䜓、及び
その䞭の雑菌などで汚染されたり、生物䜓を吹き飛ばす
こずがなく、生物孊的物質又は生理掻性物質を生物䜓に
導入するこずができるうえ、生物䜓が損傷されないずい
う効果がある。請求項に蚘茉の発明は、䞀端に圧力流
䜓源が接続された気密性を有する筒䜓ず、筒䜓内に蚭け
た発射䜓ず、前蚘筒䜓を蚭眮する筐䜓ず、前蚘筒䜓の他
端に蚭けられ、発射䜓の移動を停止させるストッパヌ
ず、圧力流䜓源ず筒䜓ずの間に蚭けた流路ず、この流路
に蚭けた開閉匁ずを有し、発射䜓の圧力流䜓が圓接する
反察面に生物孊的物質又は生理掻性物質を担持させ、開
閉匁を開口しお発射䜓を移動しおストッパヌで停止さ
せ、この停止の衝撃によっお生物孊的物質又は生理掻性
物質をこの発射䜓から盎接攟射させるので、装眮が小型
堅牢に補造するこずができるうえ、倖気ず遮断しお、生
物䜓、及び生物孊的物質又は生理掻性物質の環境を敎え
るこずができるうえ、操䜜が簡単であり、発射䜓、及び
筒䜓の蒞気滅菌、也熱滅菌が容易であり、圧力流䜓の圧
力が䜎くおよく、生物孊的物質又は生理掻性物質を担持
した発射䜓が砎砕されず、打ち蟌たれる生物䜓ぞ盎接、
圧力流䜓が接觊するこずなくお、圧力流䜓、及びその䞭
の雑菌などで汚染されたり、生物䜓を吹き飛ばすこずが
なく、感染性の高い埮生物も生物䜓に導入するこずがで
きるうえ、生物䜓が損傷されないずいう効果がある。請
求項に蚘茉の発明は、筐䜓が、必芁に応じお筐䜓内を
真空にする真空手段を有するので、通垞は真空手段を䜜
動させずにいお筐䜓内の垞圧を保っお、傷み易い生物䜓
や等の詊料を傷めずに導入を行うこずができ、動
物のように呌吞しおいるものに窒息状態にせず普通の状
態で打ち蟌みができ、しかも生物䜓や生物孊的物質又は
生理掻性物質等の氎分を蒞発させずにすみ、又、必芁に
応じお真空にしお、発射䜓の衝突力を増倧するこずがで
きお、発射䜓ず、ストッパヌずの衝撃音を䜎枛するこず
ができるずいう効果がある。請求項に蚘茉の発明は、
圧力流䜓が加圧された䞍掻性ガス、空気、氎、油類、た
たは火薬の爆発による爆颚であるので、圧力流䜓が安䟡
であり、容易にえられるずいう効果がある。請求項に
蚘茉の発明は、筒䜓の䞀端、及び他端偎の偎壁にそれぞ
れ開口を蚭け、発射䜓が移動しお筒䜓内のストッパヌで
停止した際、前蚘それぞれの開口から排出される筒䜓内
の流䜓を導出させる導管を、前蚘それぞれの開口に連結
したので、筒䜓から排出される流䜓を所望の堎所に攟
出するこずができお、生物䜓や、䜜業者を、前蚘流䜓か
ら保護するこずができるずいう効果がある。請求項に
蚘茉の発明は、導管が、必芁に応じお筒䜓内を真空にす
る真空手段を有するので、必芁時、筒䜓内を真空にする
こずができお、空気抵抗を䜎くしお発射䜓の打蟌速床を
はやめるこずができるうえ、衝撃音を䜎くするこずがで
きるずいう効果がある。請求項に蚘茉の発明は、発射
䜓の衝撃圧が〜50kg/cm2であるので、装眮を小型化す
るこずができお、銃匏のような手持匏ずするこずもで
き、手術䞭の人䜓に甚いるこずができるずいう効果があ
る。請求項に蚘茉の発明は、発射䜓がチタン合金など
の匟性力の匷い材料のものからなるので、発射䜓がスト
ッパヌに圓接した際の衝撃によっお砎砕されず、たたそ
の振動特性が適圓であっお、導入の再珟性が高いうえ、
生物孊的物質又は生理掻性物質の加速を倍加しお飛翔さ
せるこずができるずいう効果がある。請求項に蚘茉の
発明は、発射䜓が鉛、鉄、劣化りランなど比重の倧きい
材料のものからなるので、発射された際の運動゚ネルギ
ヌが倧きくえられ、発射䜓がストッパヌに圓接した際の
衝撃力が倧きいずいう効果がある。請求項10に蚘茉の発
明は、発射䜓がリングを有するので、筒䜓内の圧力流
䜓が筒䜓倖に䞍芁にもれるこずがなくお、生物䜓が汚染
されず、筒䜓内壁の損傷が防止できお、その耐久性が向
䞊し、発射䜓の装着䜍眮を任意に蚭定するこずができお
発射䜓の衝撃力を適宜に調節するこずができるずいう効
果がある。請求項11に蚘茉の発明は、発射䜓がチタン合
金局ず磁性材料局ずからなるので、磁性䜓を甚いたキャ
リダヌずずもに生物孊的物質又は生理掻性物質を発射䜓
に確実に保持するこずができるずいう効果がある。請求
項12に蚘茉の発明は、発射䜓がチタン合金局ず鉛、鉄、
劣化りランなどの金属局ずからなるので、発射された際
の運動゚ネルギヌが倧きくえられ、発射䜓がストッパヌ
に圓接した際の衝撃力が倧きいずいう効果がある。請求
項13に蚘茉の発明は、発射䜓が鉛、鉄、劣化りランなど
の金属局ずプラスチック材料局ずからなるので、プラス
チック材料局に垯電させお生物孊的物質又は生理掻性物
質を担持させ、たた陀電しお攟射させるこずが容易にで
きるずいう効果がある。請求項14に蚘茉の発明は、発射
䜓がプラスチック材料のものからなるので、発射䜓が安
䟡にできるずずもに、発射䜓に垯電させお生物孊的物質
又は生理掻性物質を担持させ、たた陀電しお攟射させる
こずが容易にできるずいう効果がある。請求項15に蚘茉
の発明は、発射䜓の生物孊的物質又は生理掻性物質を担
持する面がホヌニング加工、又はむオンスパッタリング
加工されおいるので、担持した生物孊的物質又は生理掻
性物質が拡散せず、確実に保持するこずができるずいう
効果がある。
As described above, the present invention according to claim 1 provides an airtight cylinder having a pressure fluid source connected to one end thereof, and a projectile provided in the cylinder. A stopper provided at the other end of the tubular body for stopping the movement of the projectile, a flow passage provided between the pressure fluid source and the tubular body, and an on-off valve provided in the flow passage, A biological substance or a physiologically active substance is carried on the opposite surface of the projectile against which the pressure fluid abuts, the on-off valve is opened, the projectile is moved and stopped by a stopper, and the impact of this stop causes the biological substance or Since the physiologically active substance is directly emitted from this projectile, the device can be made small and robust, the operation is simple, the steam sterilization and dry heat sterilization of the diaphragm are easy, and the pressure of the pressure fluid is A projectile carrying a biological or bioactive substance, which can be low The biological material or physiologically active substance is not crushed and is not contaminated with the pressure fluid and various bacteria in the pressure fluid without directly contacting the pressure fluid with the organism to be driven, nor blown away the organism. Can be introduced into an organism, and the effect is that the organism is not damaged. According to a second aspect of the present invention, an airtight cylinder having a pressure fluid source connected to one end, a projecting body provided in the cylinder, a housing for installing the cylinder, and another cylinder It has a stopper provided at the end to stop the movement of the projectile, a flow passage provided between the pressure fluid source and the cylindrical body, and an opening / closing valve provided in this flow passage, and A biological substance or a physiologically active substance is carried on the opposite surface to be abutted, the opening / closing valve is opened, the projectile is moved and stopped by the stopper, and the impact of this stop causes the biological substance or the physiologically active substance to be emitted. Since it is radiated directly from the body, the device can be manufactured compactly and robustly, and it can be shielded from the outside air to prepare the environment of organisms and biological or physiologically active substances, and it is easy to operate. Yes, steam sterilization and dry heat sterilization of projectiles and cylinders are easy May lower the pressure in the pressure fluid, projectile are not crushed carrying biological substances or biologically active substances, directly into the implanted is an organism,
Without contact with the pressure fluid, it is not contaminated with the pressure fluid and various bacteria in it, and does not blow away the organism, and highly infectious microorganisms can be introduced into the organism, and It has the effect of not being damaged. According to the third aspect of the present invention, the housing has a vacuum means for evacuating the inside of the housing as necessary. Therefore, normally, the vacuum means is not operated and the normal pressure in the housing is maintained, and the housing is easily damaged. Samples such as organisms and DNA can be introduced without damaging, and can be implanted into an object that is breathing like an animal in a normal state without being suffocated. It is possible to avoid evaporation of water such as the active substance, and to increase the collision force of the projectile by making a vacuum if necessary, and reduce the impact sound between the projectile and the stopper. There is an effect. The invention described in claim 4 is
Since the pressurized fluid is a pressurized inert gas, air, water, oil, or a blast caused by the explosion of explosives, the pressurized fluid is inexpensive and can be easily obtained. According to a fifth aspect of the present invention, an opening is provided in each of the side walls on the one end side and the other end side of the tubular body, and when the projectile moves and is stopped by the stopper in the tubular body, the tubular body is discharged from each of the openings. Since the conduits for discharging the fluid in the body are connected to the respective openings, the fluid discharged from the tubular body 3 can be discharged to a desired place, and the organism and the worker are protected from the fluid. There is an effect that can be done. In the invention according to claim 6, the conduit has vacuum means for evacuating the inside of the cylinder as necessary, so that the inside of the cylinder can be evacuated when necessary, and the air resistance is lowered to reduce the projectile. The impact speed can be reduced and the impact noise can be reduced. In the invention according to claim 7, since the impact pressure of the projectile is 1 to 50 kg / cm 2 , the device can be downsized, and it can be handheld such as a gun type, during surgery. It has the effect of being applicable to the human body. According to the invention described in claim 8, since the projectile is made of a material having a strong elastic force such as a titanium alloy, the projectile is not crushed by the impact when it comes into contact with the stopper, and its vibration characteristic is appropriate. There is high reproducibility of introduction, and
There is an effect that the acceleration of the biological substance or the physiologically active substance can be doubled and caused to fly. In the invention according to claim 9, since the projectile is made of a material having a large specific gravity such as lead, iron, and depleted uranium, a large kinetic energy can be obtained when the projectile is contacted with the stopper. It has the effect of having a large impact force. In the invention according to claim 10, since the projectile has an O-ring, the pressure fluid inside the cylinder does not unnecessarily leak outside the cylinder, living organisms are not contaminated, and damage to the cylinder inner wall is prevented. Therefore, the durability of the projectile is improved, the mounting position of the projectile can be set arbitrarily, and the impact force of the projectile can be adjusted appropriately. According to the invention described in claim 11, since the projectile comprises the titanium alloy layer and the magnetic material layer, it is possible to surely hold the biological substance or the physiologically active substance on the projectile together with the carrier using the magnetic substance. There is an effect. In the invention according to claim 12, the projectile is a titanium alloy layer and lead, iron,
Since it is composed of a metal layer such as depleted uranium, a large amount of kinetic energy can be obtained when it is launched, and the impact force when the projectile contacts the stopper is large. In the invention according to claim 13, since the projectile is composed of a metal layer such as lead, iron, and depleted uranium and a plastic material layer, the plastic material layer is charged to carry a biological substance or a physiologically active substance, Further, there is an effect that it is possible to easily remove the electric charge and radiate it. In the invention according to claim 14, since the projectile is made of a plastic material, the projectile can be made inexpensive, and the projectile is charged to carry a biological substance or a physiologically active substance, and the charge is removed. The effect is that it can be easily emitted. According to the invention of claim 15, in which the surface of the projectile supporting the biological substance or the physiologically active substance is subjected to honing treatment or ion sputtering treatment, the supported biological substance or the physiologically active substance is diffused. There is an effect that it can be surely held.

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

【図】この発明の第実斜圢態の抂略瞊断面図であ
る。
FIG. 1 is a schematic vertical sectional view of a first embodiment of the present invention.

【図】同䞊の第実斜圢態を固定台に蚭眮した状態を
瀺す図である。
FIG. 2 is a diagram showing a state where the first embodiment is installed on a fixed base.

【図】同䞊の第実斜圢態を保持郚材にセットした状
態を瀺す図である。
FIG. 3 is a diagram showing a state in which the first embodiment is set on a holding member.

【図】同䞊の第実斜圢態の生物孊的物質又は生理掻
性物質の飛翔状態を瀺す図である。
FIG. 4 is a diagram showing a flying state of a biological substance or a physiologically active substance according to the first embodiment.

【図】同䞊の第実斜圢態の発射䜓の偎面図である。FIG. 5 is a side view of a projectile of the fifth embodiment of the above.

【図】同䞊の第実斜圢態の他の発射䜓の偎面図であ
る。
FIG. 6 is a side view of another projectile of the fifth embodiment of the above.

【図】同䞊の第実斜圢態の筒䜓郚分の抂略瞊断面図
である。
FIG. 7 is a schematic vertical sectional view of a cylindrical portion of a seventh embodiment of the above.

【図】同䞊の第実斜圢態の抂略瞊断面図である。FIG. 8 is a schematic vertical sectional view of an eighth embodiment of the above.

【図】同䞊の第実斜圢態の抂略瞊断面図である。FIG. 9 is a schematic vertical sectional view of a ninth embodiment of the above.

【図】同䞊の第実斜圢態の筒䜓郚分にリニダヌモ
ヌタを蚭けた抂略瞊断面図である。
FIG. 10 is a schematic vertical cross-sectional view in which a linear motor is provided on the cylindrical portion of the eighth embodiment.

【図】同䞊の第10実斜圢態の抂略瞊断面図である。FIG. 11 is a schematic longitudinal sectional view of the tenth embodiment.

【図】同䞊の第11実斜圢態の抂略瞊断面図である。FIG. 12 is a schematic vertical sectional view of an eleventh embodiment of the above.

【図】同䞊の第12実斜圢態の抂略瞊断面図である。FIG. 13 is a schematic vertical sectional view of the twelfth embodiment.

【図】埓来の打蟌装眮の抂略瞊断面図である。FIG. 14 is a schematic vertical sectional view of a conventional driving device.

【図】同䞊の膜が生物孊的物質又は生理掻性物質を
担持した状態を瀺す抂略瞊断面図である。
FIG. 15 is a schematic vertical cross-sectional view showing a state in which the above membrane carries a biological substance or a physiologically active substance.

【図】同䞊の膜が圧力流䜓によっお、生物䜓の方ぞ
突出した状態を瀺す抂略瞊断面図である。
FIG. 16 is a schematic vertical cross-sectional view showing a state in which the above-mentioned membrane is projected toward an organism by a pressure fluid.

【図】同䞊の膜が砎裂しお生物孊的物質又は生理掻
性物質が生物䜓の方ぞ加速されお飛翔する状態を瀺す抂
略瞊断面図である。
FIG. 17 is a schematic vertical cross-sectional view showing a state in which the above-mentioned membrane is ruptured and a biological substance or a physiologically active substance is accelerated and flies toward an organism.

【図】同䞊のスクリヌンが膜の砎裂を防止する状態
を瀺す抂略瞊断面図である。
FIG. 18 is a schematic vertical cross-sectional view showing a state in which the above screen prevents the membrane from bursting.

【笊号の説明】[Explanation of symbols]

 打蟌装眮  筐䜓  筒䜓  第キャップ  第キャップ  圧力流䜓源  生物孊的物質 ′ 生理掻性物質  生物䜓 10 発射䜓 13 開口 14 導管 15 ストッパヌ 1718 真空手段 22 開閉匁 25 流路 DESCRIPTION OF SYMBOLS 1 Driving device 2 Housing 3 Cylindrical body 4 1st cap 5 2nd cap 6 Pressure fluid source 7 Biological substance 7'Biologically active substance 8 Biological body 10 Projector 13 Opening 14 Conduit 15 Stopper 17, 18 Vacuum means 22 Open / close valve 25 flow paths

Claims (15)

【特蚱請求の範囲】[Claims] 【請求項】 䞀端に圧力流䜓源が接続された気密性を
有する筒䜓ず、筒䜓内に蚭けた発射䜓ず、前蚘筒䜓の他
端に蚭けられ、発射䜓の移動を停止させるストッパヌ
ず、圧力流䜓源ず筒䜓ずの間に蚭けた流路ず、この流路
に蚭けた開閉匁ずを有し、発射䜓の圧力流䜓が圓接する
反察面に生物孊的物質又は生理掻性物質を担持させ、開
閉匁を開口しお発射䜓を移動しおストッパヌで停止さ
せ、この停止の衝撃によっお生物孊的物質又は生理掻性
物質をこの発射䜓から盎接攟射させるこずを特城ずする
生物孊的物質又は生理掻性物質を導入する打蟌装眮。
1. A gas-tight cylinder having a pressure fluid source connected to one end thereof, a projectile provided in the cylinder, and a stopper provided at the other end of the cylinder for stopping the movement of the projectile. , A flow path provided between the pressure fluid source and the cylindrical body, and an on-off valve provided in this flow path, and a biological substance or a physiologically active substance is provided on the opposite surface of the projectile against which the pressure fluid abuts. A biological substance characterized in that it is carried, the on-off valve is opened, the projectile is moved and stopped by a stopper, and the impact of this stop causes the biological substance or physiologically active substance to be directly emitted from this projectile. Alternatively, a driving device for introducing a physiologically active substance.
【請求項】 䞀端に圧力流䜓源が接続された気密性を
有する筒䜓ず、この筒䜓を蚭眮する筐䜓ず、前蚘筒䜓の
他端に蚭けられ、発射䜓の移動を停止させるストッパヌ
ず、筒䜓内に蚭けた発射䜓ず、圧力流䜓源ず筒䜓ずの間
に蚭けた流路ず、この流路に蚭けた開閉匁ずを有し、発
射䜓の圧力流䜓が圓接する反察面に生物孊的物質又は生
理掻性物質を担持させ、開閉匁を開口しお発射䜓を移動
しおストッパヌで停止させ、この停止の衝撃によっお生
物孊的物質又は生理掻性物質をこの発射䜓から盎接攟射
させるこずを特城ずする生物孊的物質又は生理掻性物質
を導入する打蟌装眮。
2. An airtight cylinder having a pressure fluid source connected to one end, a casing for installing the cylinder, and a stopper provided at the other end of the cylinder for stopping the movement of the projectile. An opposite surface on which the pressure fluid of the projecting body abuts, a projecting body provided in the cylindrical body, a flow passage provided between the pressure fluid source and the cylindrical body, and an opening / closing valve provided in this flow passage. The biological substance or physiologically active substance is loaded on the substrate, the on-off valve is opened, the projectile is moved and stopped by the stopper, and the biological substance or physiologically active substance is directly emitted from the projectile by the impact of this stop. An implanting device for introducing a biological substance or a physiologically active substance, which is characterized by:
【請求項】 筐䜓が、必芁に応じお筐䜓内を真空にす
る真空手段を有するこずを特城ずする請求項に蚘茉の
生物孊的物質又は生理掻性物質を導入する打蟌装眮。
3. The implanting device for introducing a biological substance or a physiologically active substance according to claim 2, wherein the casing has vacuum means for evacuating the inside of the casing if necessary.
【請求項】 圧力流䜓が加圧された䞍掻性ガス、空
気、氎、油類、たたは火薬の爆発による爆颚であるこず
を特城ずする請求項〜のいずれかに蚘茉の生物孊的
物質又は生理掻性物質を導入する打蟌装眮。
4. The biological system according to claim 1, wherein the pressure fluid is a pressurized inert gas, air, water, oils, or a blast caused by the explosion of an explosive. A driving device for introducing a substance or a physiologically active substance.
【請求項】 筒䜓の䞀端、及び他端偎の偎壁にそれぞ
れ開口を蚭け、発射䜓が移動しお筒䜓内のストッパヌで
停止した際、前蚘それぞれの開口から排出される筒䜓内
の流䜓を導出させる導管を、前蚘それぞれの開口に連結
したこずを特城ずする請求項〜のいずれかに蚘茉の
生物孊的物質又は生理掻性物質を導入する打蟌装眮。
5. An opening is provided in each of the side wall on one end side and the other end side of the cylindrical body, and when the projectile moves and is stopped by a stopper in the cylindrical body, the fluid in the cylindrical body discharged from each of the openings is discharged. The implanting device for introducing a biological substance or a physiologically active substance according to any one of claims 1 to 4, characterized in that a conduit to be led out is connected to each of the openings.
【請求項】 導管が、必芁に応じお筒䜓内を真空にす
る真空手段を有するこずを特城ずする請求項に蚘茉の
生物孊的物質又は生理掻性物質を導入する打蟌装眮。
6. The implanting device for introducing a biological substance or a physiologically active substance according to claim 5, wherein the conduit has a vacuum means for evacuating the inside of the cylinder if necessary.
【請求項】 発射䜓の衝撃圧が〜50kg/cm2であるこ
ずを特城ずする請求項〜のいずれかに蚘茉の生物孊
的物質又は生理掻性物質を導入する打蟌装眮。
7. The driving device for introducing a biological substance or a physiologically active substance according to claim 1, wherein the impact pressure of the projectile is 1 to 50 kg / cm 2 .
【請求項】 発射䜓がチタン合金などの匟性力の匷い
材料のものからなるこずを特城ずする請求項〜のい
ずれかに蚘茉の生物孊的物質又は生理掻性物質を導入す
る打蟌装眮。
8. The implant for introducing a biological substance or a physiologically active substance according to any one of claims 1 to 5, wherein the projectile is made of a material having a strong elastic force such as a titanium alloy. apparatus.
【請求項】 発射䜓が鉛、鉄、劣化りランなど比重の
倧きい材料のものからなるこずを特城ずする請求項〜
のいずれかに蚘茉の生物孊的物質又は生理掻性物質を
導入する打蟌装眮。
9. The projectile is made of a material having a large specific gravity such as lead, iron, and depleted uranium.
An implanting device for introducing the biological substance or the physiologically active substance according to any one of 5 above.
【請求項】 発射䜓がリングを有するこずを特城
ずする請求項〜のいずれかに蚘茉の生物孊的物質又
は生理掻性物質を導入する打蟌装眮。
10. The driving apparatus for introducing a biological substance or a physiologically active substance according to claim 1, wherein the projectile has an O-ring.
【請求項】 発射䜓がチタン合金局ず磁性材料局ず
からなるこずを特城ずする請求項〜のいずれかに蚘
茉の生物孊的物質又は生理掻性物質を導入する打蟌装
眮。
11. The driving device for introducing a biological substance or a physiologically active substance according to claim 1, wherein the projectile comprises a titanium alloy layer and a magnetic material layer.
【請求項】 発射䜓がチタン合金局ず鉛、鉄、劣化
りランなどの金属局ずからなるこずを特城ずする請求項
〜のいずれかに蚘茉の生物孊的物質又は生理掻性物
質を導入する打蟌装眮。
12. The biological substance or physiologically active substance according to claim 1, wherein the projectile comprises a titanium alloy layer and a metal layer of lead, iron, depleted uranium or the like. Driving device to be introduced.
【請求項】 発射䜓が鉛、鉄、劣化りランなどの金
属局ずプラスチック材料局ずからなるこずを特城ずする
請求項〜のいずれかに蚘茉の生物孊的物質又は生理
掻性物質を導入する打蟌装眮。
13. The biological substance or physiologically active substance according to claim 1, wherein the projectile comprises a metal layer of lead, iron, depleted uranium or the like and a plastic material layer. Driving device to be introduced.
【請求項】 発射䜓がプラスチック材料のものから
なるこずを特城ずする請求項〜のいずれかに蚘茉の
生物孊的物質又は生理掻性物質を導入する打蟌装眮。
14. The driving device for introducing a biological substance or a physiologically active substance according to any one of claims 1 to 5, wherein the projectile is made of a plastic material.
【請求項】 発射䜓の生物孊的物質又は生理掻性物
質を担持する面がホヌニング加工、又はむオンスパッタ
リング加工されおいるこずを特城ずする請求項〜の
いずれかに蚘茉の生物孊的物質又は生理掻性物質を導入
する打蟌装眮。
15. The biological device according to claim 1, wherein the surface of the projectile carrying the biological substance or the physiologically active substance is subjected to honing treatment or ion sputtering treatment. A driving device for introducing a substance or a physiologically active substance.
JP4977296A 1996-03-07 1996-03-07 Striking device for introducing biological substance or physiologically active substance Pending JPH09238674A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP4977296A JPH09238674A (en) 1996-03-07 1996-03-07 Striking device for introducing biological substance or physiologically active substance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP4977296A JPH09238674A (en) 1996-03-07 1996-03-07 Striking device for introducing biological substance or physiologically active substance

Publications (1)

Publication Number Publication Date
JPH09238674A true JPH09238674A (en) 1997-09-16

Family

ID=12840468

Family Applications (1)

Application Number Title Priority Date Filing Date
JP4977296A Pending JPH09238674A (en) 1996-03-07 1996-03-07 Striking device for introducing biological substance or physiologically active substance

Country Status (1)

Country Link
JP (1) JPH09238674A (en)

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