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    • 1. 发明公开
    • SURGICAL STAPLER WITH EXPANDABLE JAW
    • CHIRURGISCHE KLAMMERVORRICHTUNG MIT EXPANDIERBARER BACKE
    • EP2967559A4
    • 2017-08-23
    • EP14762896
    • 2014-03-14
    • APPLIED MED RESOURCES
    • COVACH JONATHANBECERRA MATTHEW MJOHNSON GARY M
    • A61B17/072A61B17/00
    • A61B17/07207A61B2017/0046A61B2017/00477A61B2017/07257
    • Jaw assemblies for a surgical stapler are provided. The jaw assemblies comprise a first jaw having a first clamping surface and a plurality of staples disposed therein and second jaw assembly having a second clamping surface. The jaw assemblies can be actuated from a closed configuration in which the first clamping surface contacts or is adjacent to the second clamping surface to an open configuration in which the second jaw is pivoted away from the first jaw to a stapling position in which the second clamping surface is parallel to the first clamping surface and spaced apart from the first clamping surface. A pivoting link or sliding pivot joint can couple the second jaw to the first jaw to facilitate motion between the closed position, the open position, and the stapling position.
    • 提供了用于外科缝合器的颌组件。 钳口组件包括具有第一夹紧表面和设置在其中的多个钉的第一钳口,以及具有第二钳位表面的第二钳口组件。 爪组件可以从其中第一夹紧表面接触或接近第二夹紧表面的闭合构型致动到打开构型,在该打开构型中,第二爪从第一爪枢转离开到第二夹紧位置的吻合位置 表面平行于第一夹紧表面并与第一夹紧表面间隔开。 枢转连杆或滑动枢转关节可以将第二钳口联接到第一钳口以促进闭合位置,打开位置和装订位置之间的运动。
    • 7. 发明公开
    • SURGICAL ACCESS APPARATUS AND METHOD
    • VORRICHTUNG UND VERFAHRENFÜRCHIRURGISCHEN ZUGANG
    • EP1594391A4
    • 2007-12-05
    • EP04701731
    • 2004-01-13
    • APPLIED MED RESOURCES
    • HART CHARLES CBRUSTAD JOHN R
    • A61B1/313A61B17/32A61B17/34A61B19/00A61B1/00
    • A61B17/3417A61B1/3132A61B17/3474A61B90/30A61B2017/320044A61B2017/349A61B2090/08021A61B2090/373
    • A laparoscopic insufflation device is provided in the configuration of a coil with a blunt tip. The device is capable of passing through the abdominal wall without cutting tissue, and exiting the abdominal wall substantially parallel to the inner surface. While rotation of the coiled device results in forward movement through the abdominal wall, a counter force can be applied to the device to create a safety space between the wall and the interior organs With the blunt distal tip, parallel exit angle, and safety space, there is substantially no threat to the interior organs during placement of the device. Further space can be generated with the use of pressured gas to produce an abdominal cavity for the subsequent placement of trocars. By rotatably attaching the coiled insufflation device to a trocar, the advantage of a counter force can be used not only to establish the safety space but also to pull the trocar into the abdominal wall with a counterforce which resists tenting.
    • 在具有钝头的线圈的构造中提供腹腔镜注气装置。 该装置能够穿过腹壁而不切割组织,并且基本上平行于内表面离开腹壁。 尽管盘绕装置的旋转导致通过腹壁的向前运动,但可以对该装置施加反作用力以在壁与内部器官之间形成安全空间。由于钝的远侧尖端,平行的出口角度和安全空间, 在装置放置期间内部器官基本上没有威胁。 进一步的空间可以通过使用压力气体产生腹腔来随后放置套管针。 通过将盘绕的吹入装置可旋转地连接到套管针上,反作用力的优点不仅可以用于建立安全空间,而且还可以用抵抗隆起的反作用力将套管针拉入腹壁中。
    • 10. 发明公开
    • LOW-PROFILE SURGICAL CLIP
    • 外科夹钳LOW PROFILE
    • EP1173099A4
    • 2003-04-02
    • EP00936509
    • 2000-06-05
    • APPLIED MED RESOURCES
    • GADBERRY DONALD LLEE ERIC
    • A61B17/122A61B17/08
    • A61B17/1227
    • A surgical spring clip (10) includes a first molded component (30) having a first jaw (21) and a first finger tab (27). A second component (32) having a second jaw (23) and a second finger tab (25) comprises the only other molded component. The first component (30) has a telescoping relationship with the second component (32) and is moveable by operation of the finger tab (27) between a first position wherein the jaws are generally closed and a second position wherein the jaws are generally open. A spring (78) disposed between the tabs (25, 27) and the jaws (21, 23) biases the first (30) and second (32) components toward the first position. The clip (10) has a telescoping barrel (14) with the general shape of a polygon in radial cross-section. An increased guidance link provides the clip with a guidance ratio of about 1.5 ratio. Alignment of the components is further enhanced by the provision of ramped projections (54, 56) and the accommodation of tolerances only along one side of the telescoping barrel. A simplified method of assembly requires movement of the second component (32) through a window (34) in the first component (30).