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    • 57. 发明申请
    • Surgical Device for Performing an Electrosurgical Procedure
    • 用于执行电外科手术的手术装置
    • US20110295251A1
    • 2011-12-01
    • US12791112
    • 2010-06-01
    • David M. Garrison
    • David M. Garrison
    • A61B18/18
    • A61B18/1445A61B2017/2939A61B2018/0063
    • An electrosurgical forceps includes a handle and a shaft extending from the handle. The handle is selectively movable to actuate a pair of first and second opposable jaw members pivotably connected to each other at a distal end of the shaft. The jaw members are moveable from an open position to a closed position and are each adapted to connect to an electrosurgical energy source. A first linkage is disposed at least partially within the shaft and is operably coupled between the first jaw member and a second linkage disposed proximal to the first linkage. Selective movement of the handle rotates the second linkage in a first direction, thereby rotating the first linkage in an opposite second direction to move the jaw members between the open and closed positions. In some embodiments, the jaw members are configured in a releasably locked configuration when in the closed position.
    • 电外科手术钳包括手柄和从手柄延伸的轴。 手柄是选择性地可移动的,以致动一对在轴的远端处可枢转地彼此连接的第一和第二可相对的颚构件。 钳口构件可以从打开位置移动到关闭位置,并且各自适于连接到电外科能量源。 第一联动装置至少部分地设置在轴内,并且可操作地联接在第一钳口构件和靠近第一联动装置设置的第二连杆之间。 手柄的选择性运动使第二连杆机构沿第一方向旋转,从而使第一连杆机构沿相反的第二方向转动,以便在打开位置和关闭位置之间移动夹爪部件。 在一些实施例中,当处于关闭位置时,钳口构件构造成可释放地锁定的构造。
    • 58. 发明申请
    • In-Line Vessel Sealer and Divider
    • 在线船舶封隔器和分隔器
    • US20100204697A1
    • 2010-08-12
    • US12762482
    • 2010-04-19
    • Patrick L. DumbauldDavid M. GarrisonPaul GuerraDylan Hushka
    • Patrick L. DumbauldDavid M. GarrisonPaul GuerraDylan Hushka
    • A61B18/18A61B17/28
    • A61B18/085A61B18/1445A61B2018/0063A61B2018/1253A61B2018/126A61B2018/1412A61B2018/1455
    • An endoscopic forceps includes a housing having a shaft attached thereto, the shaft including a pair of jaw members disposed at a distal end thereof. The forceps also includes a drive assembly disposed in the housing which moves the jaw members relative to one another from a first position wherein the jaw members are disposed in spaced relation relative to one another to a second position wherein the jaw members are closer to one another for manipulating tissue. A pair of handles is operatively connected to the drive assembly and the handles are movable relative to the housing to actuate the drive assembly to move the jaw members. Each of the jaw members is adapted to connect to a source of electrical energy such that the jaw members are capable of conducting energy for treating tissue. The forceps also includes a first switch disposed on the housing which is activatable to selectively deliver energy of a first electrical potential to at least one jaw member for treating tissue in a monopolar fashion. A second switch is disposed on the housing and is activatable to selectively deliver energy of a first electrical potential to one jaw member and selectively deliver energy of a second electrical potential to the other jaw member for treating tissue in a bipolar fashion.
    • 内窥镜钳包括具有附接到其上的轴的壳体,所述轴包括设置在其远端处的一对钳口构件。 镊子还包括设置在壳体中的驱动组件,其将钳口构件相对于彼此从第一位置移动,其中钳口构件相对于彼此以间隔开的关系设置到第二位置,其中钳口构件彼此更靠近 用于操纵组织。 一对把手可操作地连接到驱动组件,并且手柄相对于壳体可移动,以驱动驱动组件以移动钳口构件。 每个钳口构件适于连接到电能源,使得钳口构件能够传导用于治疗组织的能量。 镊子还包括设置在壳体上的第一开关,其可激活以将第一电位的能量选择性地传递到至少一个钳口构件,以以单极方式处理组织。 第二开关设置在壳体上并且可激活以将第一电势的能量选择性地传递到一个钳口构件,并且选择性地将第二电势的能量传递到另一钳口构件,以双极方式处理组织。