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    • 1. 发明申请
    • Endoscopic Device
    • 内窥镜装置
    • US20080300461A1
    • 2008-12-04
    • US11755926
    • 2007-05-31
    • William D. ShawJeffrey D. MesserlyGary W. KnightJessica Fox
    • William D. ShawJeffrey D. MesserlyGary W. KnightJessica Fox
    • A61B1/008
    • A61B1/0052
    • An endoscopic surgical instrument for performing a procedure inside a patient. The instrument includes a handle assembly including a grip for holding the instrument and controls for controlling movement of the instrument. An elongate shaft having a grip end is mounted on the handle assembly. The shaft has a working end opposite the grip end. The shaft has a proximal portion adjacent the grip end and a distal portion adjacent the working end. The proximal portion has a centerline and is selectively rotatable with respect to the handle assembly. The distal portion has a centerline and is selectively articulatable relative to the proximal portion of the shaft. The instrument includes an end effector mounted on the working end of the elongate shaft. The end effector is selectively rotatable about the distal portion of the shaft.
    • 一种用于在患者体内进行手术的内镜手术器械。 仪器包括手柄组件,其包括用于保持仪器的手柄和用于控制仪器运动的控制。 具有握持端的细长轴安装在手柄组件上。 轴具有与抓地端相对的工作端。 轴具有邻近抓握端的近端部分和与工作端相邻的远端部分。 近端部分具有中心线并且可相对于把手组件选择性地旋转。 远侧部分具有中心线并且可相对于轴的近端部分选择性地关节运动。 仪器包括安装在细长轴的工作端上的端部执行器。 端部执行器可围绕轴的远端部分选择性地旋转。
    • 3. 发明授权
    • Method for producing tubular article
    • 管状制品的制造方法
    • US4104095A
    • 1978-08-01
    • US742694
    • 1976-11-17
    • William D. Shaw
    • William D. Shaw
    • B29C70/82F16L9/12B32B31/26
    • F16L9/121B29C70/82Y10S138/02Y10S138/03
    • A method and apparatus are disclosed for producing a composite pipe for handling destructive materials under pressure and vacuum conditions. The pipe includes a tubular liner formed of thermoplastic material capable of withstanding the destructive material. A strip of glass fiber fabric is helically wrapped around the outer surface of the liner. Heat is applied externally to the wrapped liner at a sufficient rate to simultaneously melt the exterior surface of the liner and thermally expand the liner radially outwardly into the openings in the fabric. Upon cooling, a permanent mechanical bond is achieved between the liner and the fabric. A layer of fiber glass and resin is then applied to the outer surface of the wrapped liner for structional rigidity and strength.
    • 公开了用于在压力和真空条件下制造用于处理破坏性材料的复合管的方法和装置。 该管包括由能够承受破坏性材料的热塑性材料形成的管状衬套。 玻璃纤维织物条被螺旋缠绕在衬垫的外表面上。 以足够的速率在外部施加热量以同时熔化衬套的外表面并将衬垫径向向外膨胀到织物的开口中。 在冷却时,在衬里和织物之间实现永久性的机械结合。 然后将一层玻璃纤维和树脂施加到包裹衬垫的外表面上,用于结构刚度和强度。