JP2008048885A - Orientation correcting device of intramedullary nail and orientation correcting method of intramedullary nail by orientation correcting device - Google Patents
Orientation correcting device of intramedullary nail and orientation correcting method of intramedullary nail by orientation correcting device Download PDFInfo
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- JP2008048885A JP2008048885A JP2006227779A JP2006227779A JP2008048885A JP 2008048885 A JP2008048885 A JP 2008048885A JP 2006227779 A JP2006227779 A JP 2006227779A JP 2006227779 A JP2006227779 A JP 2006227779A JP 2008048885 A JP2008048885 A JP 2008048885A
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- 238000000034 method Methods 0.000 title claims description 12
- 229910000831 Steel Inorganic materials 0.000 claims abstract description 54
- 239000010959 steel Substances 0.000 claims abstract description 54
- 210000000988 bone and bone Anatomy 0.000 claims abstract description 34
- 238000003780 insertion Methods 0.000 claims abstract description 30
- 230000037431 insertion Effects 0.000 claims abstract description 30
- 239000004570 mortar (masonry) Substances 0.000 claims description 2
- 238000005553 drilling Methods 0.000 description 6
- 208000010392 Bone Fractures Diseases 0.000 description 5
- 206010017076 Fracture Diseases 0.000 description 4
- 238000005452 bending Methods 0.000 description 3
- 239000002184 metal Substances 0.000 description 3
- 210000002758 humerus Anatomy 0.000 description 1
- 230000001678 irradiating effect Effects 0.000 description 1
- 238000001356 surgical procedure Methods 0.000 description 1
- 210000001519 tissue Anatomy 0.000 description 1
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Abstract
Description
本発明は、骨折治療等に際して骨内に挿入される髄内釘の姿勢矯正装置及びこの姿勢矯正装置による髄内釘の姿勢矯正方法に関するものである。 The present invention relates to a posture correcting device for an intramedullary nail inserted into a bone for fracture treatment and the like, and a posture correcting method for an intramedullary nail using the posture correcting device.
骨折治療は、骨折面を接合した状態で骨を固定しておくのが一般的である。これに用いるのが固定具であるが、最近では、骨折個所を通過させて髄腔内に髄内釘を挿入し、骨外から髄内釘に形成した複数のスクリュー孔を通してスクリューを骨に螺入して固定する内固定具が、整復位の確保が確実で、かつ患者の自由の束縛が低いことから多く使用されている。この場合のスクリュー孔にスクリューを通すには、各スクリュー孔に対応した位置にスクリューガイド孔を形成した挿入ガイドを髄内釘に連結して体外に設け、このスクリューガイド孔をガイドとしてスクリューを挿入していた。 In bone fracture treatment, bones are generally fixed with the fracture surfaces joined. A fixing tool is used for this purpose, but recently, an intramedullary nail is inserted into the medullary cavity through the fracture site, and the screw is screwed into the bone through a plurality of screw holes formed in the intramedullary nail from outside the bone. An internal fixing device that is inserted and fixed is often used because it ensures the reduction position and has low restraint on the patient's freedom. In order to pass the screw through the screw hole in this case, an insertion guide formed with a screw guide hole at a position corresponding to each screw hole is connected to the intramedullary nail and provided outside the body, and the screw is inserted using the screw guide hole as a guide. Was.
ところが、髄内釘は金属棒で構成されるものの、骨内に挿入するときには挿入の方向や組織の抵抗等によって多少なりとも曲がりや捩じれ或いは傾きが生じて真っ直ぐな正規の姿勢にはなかなかなり難い。これが正規の姿勢にならないと、スクリューガイド孔をガイドとして挿入するスクリューがスクリュー孔に合わない。このため、X線を照射してその画像を見ながら調整したりしているが、これによると、X線の被爆の問題が生ずる。 However, although the intramedullary nail is composed of a metal rod, when inserted into the bone, bending, twisting or tilting is somewhat difficult depending on the direction of insertion or tissue resistance, etc., and it is quite difficult to have a straight normal posture. . If this is not a normal posture, the screw inserted using the screw guide hole as a guide will not fit the screw hole. For this reason, adjustment is performed while irradiating X-rays and viewing the image, but this causes a problem of X-ray exposure.
髄内釘に形成されたスクリュー孔にスクリューを合わせるものに下記特許文献1に示されるものがある。これは、髄内釘に連結される挿入ガイドに髄内釘のスクリュー孔に対応した位置に誘導孔を形成しておき、この誘導孔からドリルガイドを介してドリルを挿入してスクリュー挿通孔を再度穿孔するものである。そして、この操作は各スクリュー孔ごとに行うとしており、これによると、操作(手術)に手間がかかり、患者に大きな負担を強いていた。また、穿孔の際に発生する切粉の問題も発生する。 There exists what is shown by the following patent document 1 to match | combine a screw with the screw hole formed in the intramedullary nail. This is because a guide hole is formed in the insertion guide connected to the intramedullary nail at a position corresponding to the screw hole of the intramedullary nail, and a drill is inserted from the guide hole through the drill guide so that the screw insertion hole is formed. Drill again. This operation is performed for each screw hole. According to this operation, the operation (surgery) is time-consuming and a heavy burden is imposed on the patient. There is also a problem of chips generated during drilling.
一方、下記特許文献2には、髄内釘の遠位端に大径の遊嵌挿通孔を形成するとともに、この遊嵌挿通孔と遠位端のスクリュー孔とを誘導溝で連絡し、遠位端に挿通するスクリューをまず遊嵌挿通孔に挿通し、しかる後に髄内釘を押してスクリュー孔に導くものが開示されている。しかし、髄内釘を近位端から押したのでは、依然として曲がりや撓みが矯正できず、髄内釘が正規の姿勢である真直になり難い点は解決されない。特に、髄内釘が長い場合は、このことが顕著である。
本発明は、このような課題を解決するもので、一度の姿勢矯正操作を行うことで髄内釘を正規の姿勢にできるようにしたものである。 The present invention solves such a problem, and makes it possible to make the intramedullary nail into a normal posture by performing a posture correction operation once.
以上の課題の下、本発明は、請求項1に記載した、近位側から骨の中に挿入される髄内釘の姿勢矯正装置であり、この姿勢矯正装置が、釘軸方向遠位端に姿勢矯正孔が穿孔されるとともに、姿勢矯正孔より近位側に一又は複数のスクリュー孔が穿孔された髄内釘と、髄内釘の近位端に連結されて皮膚外で骨に沿い、姿勢矯正孔及びスクリュー孔に対応した位置に姿勢矯正用鋼線を挿入するための鋼線ガイド孔とスクリューを挿入するためのスクリューガイド孔が形成された挿入ガイドとからなることを特徴とする髄内釘の姿勢矯正装置を提供したものである。 Under the above-mentioned problems, the present invention is the posture correcting device for an intramedullary nail inserted into the bone from the proximal side according to claim 1, and this posture correcting device is a distal end in the nail axial direction. And an intramedullary nail with one or more screw holes drilled proximal to the posture correcting hole, and connected to the proximal end of the intramedullary nail along the bone outside the skin A steel wire guide hole for inserting a steel wire for posture correction at a position corresponding to the posture correction hole and the screw hole, and an insertion guide in which a screw guide hole for inserting a screw is formed. An intramedullary nail posture correcting device is provided.
そして、本発明は、以上の姿勢矯正装置において、請求項2に記載した、スクリューガイド孔にスクリューをガイドするスクリューガイドが挿入可能であり、鋼線ガイド孔に姿勢矯正用鋼線をガイドする鋼線ガイドが挿入可能である手段、請求項3に記載した、スクリューガイドにドリルをガイドするドリルガイドが挿入可能である手段、請求項4に記載した、姿勢矯正孔が鋼線ガイド孔側に向かってすり鉢形をしている手段を提供する。 And this invention can insert the screw guide which guides a screw to the screw guide hole described in claim 2 in the above posture correction device, and steel which guides the steel wire for posture correction into the steel wire guide hole. A means for inserting a wire guide, a means for inserting a drill guide for guiding a drill into a screw guide according to claim 3, and a posture correcting hole according to claim 4, wherein the posture correcting hole faces toward the steel wire guide hole. Provides a mortar-shaped means.
また、本発明は、この髄内釘の姿勢矯正装置による髄内釘の姿勢矯正方法として、請求項5に記載した、骨内に挿入された髄内釘の姿勢矯正孔に挿入ガイドの鋼線ガイド孔を通して姿勢矯正用鋼線を挿入することで、髄内釘を正規の姿勢に矯正することを特徴とする髄内釘の姿勢矯正装置による姿勢矯正方法を提供するとともに、請求項6に記載した、鋼線ガイド孔に姿勢矯正用鋼線をガイドする鋼線ガイドが挿入され、姿勢矯正用鋼線が鋼線ガイドをガイドとして姿勢矯正孔に挿入される手段、請求項7に記載した、スクリューガイドにドリルをガイドするドリルガイドが挿入され、ドリルガイドをガイドとしてドリルを挿入してスクリュー孔の前後に存する骨に下孔を穿孔し、これら下孔にスクリュー孔を挿通してスクリューをねじ込む手段を提供したものである。 According to the present invention, as an intramedullary nail posture correcting method using the intramedullary nail posture correcting device, the steel wire of the insertion guide is inserted into the posture correcting hole of the intramedullary nail inserted into the bone according to claim 5. The posture correcting method by the posture correcting device for an intramedullary nail characterized by correcting the intramedullary nail to a normal posture by inserting a steel wire for posture correction through the guide hole, and further comprising: The steel wire guide for guiding the steel wire for posture correction is inserted into the steel wire guide hole, and the steel wire guide for posture correction is inserted into the posture correction hole using the steel wire guide as a guide. A drill guide that guides the drill is inserted into the screw guide, and the drill is inserted using the drill guide as a guide to drill a pilot hole in the bone existing before and after the screw hole, and the screw hole is inserted into the pilot hole and the screw is screwed. Those that provided the stage.
請求項1の手段によると、髄内釘の遠位端は姿勢矯正用鋼線によって正規の姿勢に矯正される。したがって、スクリュー孔とこれに対応して挿入ガイドに形成されたスクリューガイド孔との位置が合致するから、スクリュー孔を予め形成しておいても、これに手直し加工等をする必要なしにスクリューを挿通することができる。この点で、手術時間が短縮され、患者の負担が減るし、切粉の問題も生じない。また、請求項5の手段によると、手技が容易で短時間に骨と髄内釘を固定できる。 According to the means of claim 1, the distal end of the intramedullary nail is corrected to the normal posture by the posture correcting steel wire. Therefore, since the positions of the screw hole and the screw guide hole formed in the insertion guide corresponding to the screw hole coincide with each other, even if the screw hole is formed in advance, the screw is not required to be reworked. Can be inserted. In this respect, the operation time is shortened, the burden on the patient is reduced, and the problem of chips does not occur. According to the means of claim 5, the procedure is easy and the bone and the intramedullary nail can be fixed in a short time.
以下、本発明の実施の形態を図面を参照して説明する。図1は本発明に係る姿勢矯正装置を分解した状態の斜視図、図2は組み立てた状態の斜視図であるが、この姿勢矯正装置は、髄内釘1と、挿入ガイド2とからなる。このうち、髄内釘1は,生体適合金属で構成された細長い棒状をしているもので、先端(骨内に挿入されたときの遠位端)に姿勢矯正孔3が形成され、近位側にかけて複数のスクリュー孔4が適宜な間隔で形成され、更に後端(近位端)に雌ネジ5が形成されたものである。 Hereinafter, embodiments of the present invention will be described with reference to the drawings. FIG. 1 is an exploded perspective view of the posture correction device according to the present invention, and FIG. 2 is a perspective view of the assembled state. The posture correction device includes an intramedullary nail 1 and an insertion guide 2. Of these, the intramedullary nail 1 has an elongated rod shape made of a biocompatible metal, and a posture correcting hole 3 is formed at the tip (distal end when inserted into the bone), and the proximal nail 1 A plurality of screw holes 4 are formed at appropriate intervals toward the side, and a female screw 5 is further formed at the rear end (proximal end).
挿入ガイド2は、J形をした金属体であり、上端の頭部(近位端)に固定ネジ6が挿入される挿入部7が形成されたものである。固定ネジ6は、この挿入部7に上方から挿入されるものであり、上端に摘み8が形成され、下端に髄内釘1の雌ネジ5に螺入される雄ネジ9が形成されたものである。固定ネジ6を挿入部7に挿入すると、雄ネジ9は挿入部7から覗くようになっており、これに髄内釘1の雌ネジ5を螺入すると、髄内釘1は挿入部によって上下いずれにも動かないように固定される。 The insertion guide 2 is a J-shaped metal body, and an insertion portion 7 into which a fixing screw 6 is inserted is formed at the upper head (proximal end). The fixing screw 6 is inserted into the insertion portion 7 from above, a knob 8 is formed at the upper end, and a male screw 9 to be screwed into the female screw 5 of the intramedullary nail 1 is formed at the lower end. It is. When the fixing screw 6 is inserted into the insertion portion 7, the male screw 9 is seen through the insertion portion 7. When the female screw 5 of the intramedullary nail 1 is screwed into this, the intramedullary nail 1 is moved up and down by the insertion portion. It is fixed so that it does not move.
挿入ガイド2の胴部から尾部にかけては、上記の状態にしたときの髄内釘1の姿勢矯正孔3に対応する位置に後述する姿勢矯正用鋼線10が挿入される鋼線ガイド孔11が形成され、各々のスクリュー孔4に対応した位置にスクリューガイド孔12がそれぞれ形成されている。ただし、スクリューガイド孔12は、他の種類の髄内釘1を連結する場合に備えてこれ以外にも形成されていることがある。 From the trunk portion to the tail portion of the insertion guide 2, a steel wire guide hole 11 into which a posture correcting steel wire 10 to be described later is inserted at a position corresponding to the posture correcting hole 3 of the intramedullary nail 1 in the above state. The screw guide holes 12 are formed at positions corresponding to the respective screw holes 4. However, the screw guide hole 12 may be formed in addition to this in preparation for connecting another type of intramedullary nail 1.
次に、以上の姿勢矯正装置を用いる手技について説明すると、図3は髄内釘1を長管骨(本例では上腕骨)に挿入した場合の説明図であるが、骨13が骨折等を負うと、髄内釘1に挿入ガイド2を連結した状態で、髄内釘1を近位側から骨折個所を通過させて挿入する。髄内釘1を正規の位置まで挿入すると、挿入ガイド2の鋼線ガイド孔11から姿勢矯正用鋼線10を挿通して姿勢矯正孔3に挿入する。姿勢矯正用鋼線10は、キルシュナー鋼線と呼ばれる細い鋼線であり、これを直に鋼線ガイド孔11から姿勢矯正孔3に差し込んでもよいが、挿入に難儀をすることも多いから、そのようなときには鋼線ガイド14を用いる。 Next, the procedure using the above posture correcting device will be described. FIG. 3 is an explanatory view when the intramedullary nail 1 is inserted into the long bone (in this example, the humerus). When it is carried, the intramedullary nail 1 is inserted from the proximal side through the fracture site while the insertion guide 2 is connected to the intramedullary nail 1. When the intramedullary nail 1 is inserted to the proper position, the posture correcting steel wire 10 is inserted through the steel wire guide hole 11 of the insertion guide 2 and inserted into the posture correcting hole 3. The steel wire 10 for posture correction is a thin steel wire called Kirschner steel wire, and this may be directly inserted into the posture correction hole 3 from the steel wire guide hole 11, but it is often difficult to insert the wire. In such a case, the steel wire guide 14 is used.
図4はその説明図であるが、この鋼線ガイド14は、姿勢矯正用鋼線10を通すことができるスリーブ14aを有するもので、その後端に操作用のハンドル14bが設けられており、ハンドル14bを操作してスリーブ14aを鋼線ガイド孔11に挿入する(このとき、鋼線ガイド孔11の径は、スリーブ14aの外径に対応したものになっている)。そして、スリーブ14aに姿勢矯正用鋼線10を挿入して姿勢矯正孔3に挿入するが、通常、髄内釘1は曲がり、撓み、捩じれや倒れがあって、鋼線ガイド孔11と姿勢矯正孔3とは合致していないのが実情である。しかし、この不一致は多くても2mm程度であるから、強く押し込めば、挿入できる。 FIG. 4 is an explanatory view of this steel wire guide 14, which has a sleeve 14 a through which the posture correcting steel wire 10 can pass, and a handle 14 b for operation is provided at the rear end thereof. 14b is operated to insert the sleeve 14a into the steel wire guide hole 11 (at this time, the diameter of the steel wire guide hole 11 corresponds to the outer diameter of the sleeve 14a). Then, the posture correcting steel wire 10 is inserted into the sleeve 14a and inserted into the posture correcting hole 3. Usually, the intramedullary nail 1 is bent, bent, twisted, or tilted, and the steel wire guide hole 11 and the posture correcting hole are inserted. The fact is that it does not match the hole 3. However, since this discrepancy is about 2 mm at most, it can be inserted if it is pushed hard.
このとき、姿勢矯正孔3をガイド孔11に向けてすり鉢形(テーパ)にしておけば、挿入がより確実になる。姿勢矯正用鋼線10が姿勢矯正孔3に挿入されると、髄内釘1は遠位側に引っ張られてその曲がり、撓み、捩じれや倒れといったものが矯正されて真っ直ぐになり、スクリュー孔4と挿入ガイド2のスクリューガイド孔12との位置が対応したものになる。図5はこの状態を示す側面図、図6は断面図であるが、このように、鋼線ガイド14のスリーブ14aは骨13の表面まで挿入するのが剛性が高まって矯正力が強化されて好ましい。 At this time, if the posture correcting hole 3 is formed in a mortar shape (taper) toward the guide hole 11, the insertion becomes more reliable. When the posture correcting steel wire 10 is inserted into the posture correcting hole 3, the intramedullary nail 1 is pulled to the distal side to bend, bend, twist, and fall, and straighten. And the position of the screw guide hole 12 of the insertion guide 2 correspond to each other. FIG. 5 is a side view showing this state, and FIG. 6 is a cross-sectional view. As described above, when the sleeve 14a of the steel wire guide 14 is inserted to the surface of the bone 13, the rigidity increases and the correction force is strengthened. preferable.
髄内釘1が正規の姿勢に矯正されると、そのスクリュー孔4にスクリュー15を通して骨13にネジ込むが、このときのネジ込みを確実、かつ容易にするために、スクリュー孔4の前後に存する骨(皮骨)13にドリル19によって下孔を穿孔する。図7はこれを示す説明図、図8は要部の側面図、図9は断面図であるが、この下孔の穿孔は、挿入ガイド2のスクリューガイド孔12にスクリューガイド16を通し、更にこのスクリューガイド16にドリルガイド18を通して行う。この場合のスクリューガイド16及びドリルガイド18は、共に上記した鋼線ガイド14と同様のそれぞれスリーブ16a、18aとハンドル16b、18bとを有するものである。 When the intramedullary nail 1 is corrected to a normal posture, the screw hole 4 is screwed into the bone 13 through the screw 15. In order to ensure and facilitate screwing at this time, before and after the screw hole 4. A prepared hole is drilled in the existing bone (skin) 13 with a drill 19. FIG. 7 is an explanatory view showing this, FIG. 8 is a side view of the main part, and FIG. 9 is a sectional view. The drilling of this lower hole is performed by passing the screw guide 16 through the screw guide hole 12 of the insertion guide 2, The drill guide 18 is passed through the screw guide 16. The screw guide 16 and the drill guide 18 in this case have sleeves 16a and 18a and handles 16b and 18b, respectively, similar to the steel wire guide 14 described above.
まず、スクリューガイド16のハンドル16bを操作してそのスリーブ16aを挿入ガイド2に形成されたスクリューガイド孔12に挿入し、次に、スクリューガイド16のスリーブ16aにドリルガイド18のハンドル18bを操作してそのスリーブ18aを挿入し、このスリーブ18aをガイドとしてドリル19を挿入し、スクリュー孔4の前後の骨13に下孔を穿孔する。図10はスクリュー15のネジ込みを示す説明図、図11は要部の側面図、図12は断面図であるが、以上の操作が終了すると、ドリルガイド18を抜き出してスクリューガイド16のスリーブ16aをガイドとしてドライバー17によってスクリュー15を骨13にネジ込む。 First, the handle 16b of the screw guide 16 is operated to insert the sleeve 16a into the screw guide hole 12 formed in the insertion guide 2, and then the handle 18b of the drill guide 18 is operated to the sleeve 16a of the screw guide 16. The sleeve 18a is inserted, the drill 19 is inserted using the sleeve 18a as a guide, and a pilot hole is drilled in the bone 13 before and after the screw hole 4. 10 is an explanatory view showing screwing of the screw 15, FIG. 11 is a side view of the main part, and FIG. 12 is a cross-sectional view. When the above operation is completed, the drill guide 18 is extracted and the sleeve 16a of the screw guide 16 is removed. The screw 15 is screwed into the bone 13 by a screwdriver 17 using as a guide.
以上の操作を各スクリュー孔4に対して行うと、スクリュー15による骨13と髄内釘1の固定は終了する。ただし、操作の手順としては、下孔の穿孔を各スクリュー孔4に対して順次行ってその後にスクリュー15のネジ込みをまとめて行うこともある。 このようにして骨13と髄内釘1の固定が終了すると、挿入ガイド2を外して施術は終了する。なお、スクリュー15が太くて骨13が硬いような場合には、ドリル19による下孔を穿孔した後にタップを挿入し、ネジ孔を形成することもある。 When the above operation is performed on each screw hole 4, the fixation of the bone 13 and the intramedullary nail 1 with the screw 15 is completed. However, as a procedure of operation, drilling of the pilot holes may be sequentially performed on each screw hole 4 and then screwing of the screw 15 may be performed collectively. When the fixation of the bone 13 and the intramedullary nail 1 is thus completed, the insertion guide 2 is removed and the treatment is completed. When the screw 15 is thick and the bone 13 is hard, a tapped hole may be inserted after a pilot hole is drilled to form a screw hole.
1 髄内釘
2 挿入ガイド
3 姿勢矯正孔
4 スクリュー孔
5 雌ネジ
6 固定ネジ
7 挿入部
8 摘み
9 雄ネジ
10 姿勢矯正用鋼線
11 鋼線ガイド孔
12 スクリューガイド孔
13 骨
14 鋼線ガイド
14a 〃 のスリーブ
14b 〃 のハンドル
15 スクリュー
16 スクリューガイド
16a 〃 のスリーブ
16b 〃 のハンドル
17 ドライバー
18 ドリルガイド
18a 〃 のスリーブ
18b 〃 のハンドル
19 ドリル
DESCRIPTION OF SYMBOLS 1 Intramedullary nail 2 Insertion guide 3 Posture correction hole 4 Screw hole 5 Female screw 6 Fixing screw 7 Insertion part 8 Pick 9 Male screw 10 Posture correction steel wire 11 Steel wire guide hole 12 Screw guide hole 13 Bone 14 Steel wire guide 14aス リ ー ブ Sleeve 14b ハ ン ド ル Handle 15 Screw 16 Screw Guide 16a ス リ ー ブ Sleeve 16b 〃 Handle 17 Driver 18 Drill Guide 18a 〃 Sleeve 18b 〃 Handle 19 Drill
Claims (7)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
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| JP2006227779A JP4605793B2 (en) | 2006-08-24 | 2006-08-24 | Intramedullary nail posture correction device |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2006227779A JP4605793B2 (en) | 2006-08-24 | 2006-08-24 | Intramedullary nail posture correction device |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| JP2008048885A true JP2008048885A (en) | 2008-03-06 |
| JP4605793B2 JP4605793B2 (en) | 2011-01-05 |
Family
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP2006227779A Active JP4605793B2 (en) | 2006-08-24 | 2006-08-24 | Intramedullary nail posture correction device |
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| JP (1) | JP4605793B2 (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP5289626B1 (en) * | 2013-01-29 | 2013-09-11 | 順 岡田 | Intramedullary nail target device |
| CN104706407A (en) * | 2015-04-02 | 2015-06-17 | 山东航维骨科医疗器械股份有限公司 | Magnetic-navigation interlocking intramedullary nail system |
| JP2017221264A (en) * | 2016-06-13 | 2017-12-21 | HOYA Technosurgical株式会社 | Bone reduction device |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108742811B (en) * | 2018-07-09 | 2020-06-19 | 常州华森医疗器械有限公司 | Anti-rotation intramedullary nail suite |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH05501666A (en) * | 1990-07-24 | 1993-04-02 | ブリティッシュ・テクノロジー・グループ・リミテッド | intramedullary connecting nail |
| JPH11318931A (en) * | 1998-05-20 | 1999-11-24 | Ikufumi Yamada | Intramedullary nail facilitating distal lateral fixing and nail pulling |
| JP2000189438A (en) * | 1998-12-25 | 2000-07-11 | Hiroko Miyazaki | Guide outside marrow for side-fastening needle into marrow |
| JP2003210479A (en) * | 2002-01-17 | 2003-07-29 | Woo Shin Cho | Intramedullary nail, and screw inserting device and screw inserting method for intramedullary nail |
-
2006
- 2006-08-24 JP JP2006227779A patent/JP4605793B2/en active Active
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH05501666A (en) * | 1990-07-24 | 1993-04-02 | ブリティッシュ・テクノロジー・グループ・リミテッド | intramedullary connecting nail |
| JPH11318931A (en) * | 1998-05-20 | 1999-11-24 | Ikufumi Yamada | Intramedullary nail facilitating distal lateral fixing and nail pulling |
| JP2000189438A (en) * | 1998-12-25 | 2000-07-11 | Hiroko Miyazaki | Guide outside marrow for side-fastening needle into marrow |
| JP2003210479A (en) * | 2002-01-17 | 2003-07-29 | Woo Shin Cho | Intramedullary nail, and screw inserting device and screw inserting method for intramedullary nail |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP5289626B1 (en) * | 2013-01-29 | 2013-09-11 | 順 岡田 | Intramedullary nail target device |
| CN104706407A (en) * | 2015-04-02 | 2015-06-17 | 山东航维骨科医疗器械股份有限公司 | Magnetic-navigation interlocking intramedullary nail system |
| JP2017221264A (en) * | 2016-06-13 | 2017-12-21 | HOYA Technosurgical株式会社 | Bone reduction device |
Also Published As
| Publication number | Publication date |
|---|---|
| JP4605793B2 (en) | 2011-01-05 |
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