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    • 24. 发明授权
    • Endoscopic surgical access port and method
    • 内镜手术口及方法
    • US06811546B1
    • 2004-11-02
    • US09648660
    • 2000-08-25
    • Peter CallasJohn P. LunsfordAlbert K. ChinMichael Wei
    • Peter CallasJohn P. LunsfordAlbert K. ChinMichael Wei
    • A61M5178
    • A61B17/3423A61B17/00008A61B17/3421A61B17/3462A61B2017/3486
    • A sliding gas-tight seal on an access port promotes insufflation of an anatomical space formed in tissue at a surgical site only during insertion of an endoscopic instrument through the access port into the anatomical space, and promotes deflation of the inflated space upon removal of the endoscopic instrument from within the access port. An inflatable balloon disposed about the port near the distal end may be selectively expanded to seal and anchor the access port within an incision through which a surgical procedure with insufflation is to be performed. Multiple resilient seals may be attached to the body of the port, and an auxiliary resilient seal may be inserted within the aperture of a seal attached to the body to accommodate a wide range of endoscopic instruments of various exterior dimensions inserted through the seals.
    • 在进入端口上的滑动气密密封件仅在插入内窥镜器械通过进入端口进入解剖空间时促进形成在外科手术部位的组织中的解剖空间,并且在移除该空间时促进充气空间的放气 内窥镜仪器从进出口内。 围绕远端附近的端口设置的可充气气囊可以选择性地扩张,以将进入端口密封并固定在切口内,通过该切口进行吹气手术。 多个弹性密封件可以附接到端口的主体,并且辅助弹性密封件可以插入附接到主体的密封件的孔内,以适应插入通过密封件的各种外部尺寸的各种内窥镜器械。
    • 27. 发明授权
    • Endovascular graft with separable sensors
    • 具有可分离传感器的血管内移植物
    • US07399313B2
    • 2008-07-15
    • US10445723
    • 2003-05-27
    • Peter S. BrownTim KovacMichael WeiRobin W. Eckert
    • Peter S. BrownTim KovacMichael WeiRobin W. Eckert
    • A61F2/06
    • A61B5/0031A61B5/01A61B5/02014A61B5/0215A61B5/026A61B5/05A61B5/145A61B5/14532A61F2/07A61F2002/065A61F2002/067A61F2250/0002
    • A endovascular graft having sensing devices attached thereto to facilitate measurement of pertinent parameters within the vasculature into which the graft is implanted. Power sources and transmitters may be attached to the graft to facilitate transmission of measurements to a receiving device outside the patient's body. The sensing devices, may be electrically passive or integrated devices with measurement and transmission capability. The sensing devices may be attached to specific locations on the graft material or attached to the lumen, thereby providing pertinent parameters from critical points inside the vasculature, or may be dispersed over the surface of the graft material or within the lumen to provide a profile of pertinent parameters. The sensing devices may be attached to the graft material with one suture using a running stitch to minimize graft bulk and may be coated with a material to inhibit or control tissue growth. A bio-reabsorbable or hard wire tether or suture may be employed to attach devices to one or more graft components.
    • 具有连接到其上的感测装置的血管内移植物以便于测量移植物植入的脉管系统内的相关参数。 电源和发射器可以附接到移植物以促进将测量传递到患者身体外部的接收装置。 感测装置可以是具有测量和传输能力的电动无源或集成装置。 感测装置可以附接到移植物材料上的特定位置或附接到内腔,从而从脉管系统内的临界点提供相关参数,或者可以分散在移植材料的表面上或内腔中,以提供 相关参数。 感测装置可以使用一个缝合线连接到移植材料上,使用运行针迹以最小化移植物块体,并且可以用抑制或控制组织生长的材料涂覆。 可以使用生物可再吸收或硬线系绳或缝线来将装置连接到一个或多个移植物组分。