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    • 1. 发明授权
    • Adhesive tape strip
    • 胶带条
    • US5392783A
    • 1995-02-28
    • US80359
    • 1993-06-21
    • Thomas J. FogartyThomas A. HowellKenneth H. MollenauerMichelle Y. Monfort
    • Thomas J. FogartyThomas A. HowellKenneth H. MollenauerMichelle Y. Monfort
    • A61B5/024A61F13/00A61F13/02
    • A61B5/6833A61B5/02438A61F13/0269A61F2013/00429A61F2013/00604A61F2013/00817A61F2013/0094A61F2013/00978Y10T156/1906Y10T428/1471
    • An adjustable sensor retainer and method for adjustably securing and retaining a sensor (e.g. a piezoelectric pulse sensor) against a skin region of a person includes the use of a primary retainer tape and an adjustable secondary retainer tape. The primary retainer tape is an adhesive tape to which the sensor can be attached. The adhesive primary retainer tape has strips of protective film with blind pull tabs attached thereto. This allows simplified one-handed application of the primary retainer tape while initially positioning and holding the sensor in place with the other hand. The secondary retainer tape is a tape strip removably attached to the top of the primary retainer tape and disposed over the sensor. After the initial positioning of the sensor with the primary retainer tape, the sensor can be finally positioned and the secondary retainer tape re-attached to the top of the primary retainer tape, thereby securing the sensor in the final desired location. Further, the secondary retainer tape can easily be detached and re-attached to slightly reposition the sensor, as desired.
    • 用于可调节地固定和保持抵抗人的皮肤区域的传感器(例如压电脉冲传感器)的可调传感器保持器和方法包括使用主保持带和可调节的次保持带。 主保持带是可以附接传感器的胶带。 粘合剂主保持带具有附着有盲拉片的保护膜带。 这允许简单地单手施加主保持带,同时用另一只手最初定位和保持传感器就位。 第二保持带是可移除地附接到主保持带的顶部并且设置在传感器上方的带条。 在使用主保持带进行初始定位传感器之后,可以最终定位传感器,并将辅助保持带重新附接到主保持带的顶部,从而将传感器固定在最终期望的位置。 此外,根据需要,二次保持带可以容易地拆卸并重新附接以稍微重新定位传感器。
    • 7. 发明授权
    • Methods and apparatus for rolling a defibrillator electrode
    • 用于滚动除颤器电极的方法和装置
    • US5690648A
    • 1997-11-25
    • US620986
    • 1996-03-22
    • Thomas J. FogartyThomas A. Howell
    • Thomas J. FogartyThomas A. Howell
    • A61N1/05A61N1/39A61N1/04
    • A61N1/0587
    • A method of rolling a defibrillator electrode inserts one side of a defibrillator electrode within a recess of a first handle, the recess located at one end of the first handle, inserts an opposite side of the defibrillator electrode within a recess of a second handle, the recess located at one end of the second handle, wherein the first and second handles are then rotated toward each other about their respective axes. An apparatus for rolling a defibrillator electrode includes a first handle having a recess at one of its ends operative to slidably grasp one side of a defibrillator electrode, and a second handle, the second handle having a recess at one of its ends operative to slidably grasp an opposite side of the defibrillator electrode.
    • 卷绕除颤器电极的方法将除颤器电极的一侧插入第一手柄的凹部内,位于第一手柄的一端的凹部将除颤器电极的相对侧插入第二手柄的凹部内, 位于第二把手的一端的凹部,其中第一和第二手柄然后围绕它们各自的轴线朝向彼此旋转。 一种用于滚动除颤器电极的装置包括:第一手柄,其一端处具有凹部,其可操作以可滑动地抓住除颤器电极的一侧;以及第二手柄,所述第二手柄在其一端处具有可滑动地抓住的凹部 除颤器电极的相对侧。
    • 8. 发明授权
    • Implantable defibrillator electrodes
    • 植入式除颤器电极
    • US5464447A
    • 1995-11-07
    • US188573
    • 1994-01-28
    • Thomas J. FogartyThomas A. Howell
    • Thomas J. FogartyThomas A. Howell
    • A61N1/05A61N1/39
    • A61N1/0587
    • Improved implantable defibrillator electrodes and methods of implanting such electrodes are disclosed. One embodiment of the defibrillator electrodes includes a flexible conductive mesh and non-conductive mesh. Another embodiment of the defibrillator electrodes includes a flexible conductive mesh, a non-conductive mesh and an insulator therebetween. A third embodiment of the defibrillator electrode compensates for the shape of a human heart. Methods for implanting the defibrillator electrodes include rolling an electrode and inserting the rolled electrode into a subxiphoid opening while thorascopically observing the insertion and manipulation of the defibrillator electrode.
    • 公开了改进的可植入除颤电极和植入这种电极的方法。 除颤器电极的一个实施例包括柔性导电网和非导电网。 除颤器电极的另一实施例包括柔性导电网,非导电网和它们之间的绝缘体。 除颤器电极的第三实施例补偿人心脏的形状。 用于植入除颤器电极的方法包括滚动电极并将卷绕的电极插入副尖端开口,同时胸部观察除颤器电极的插入和操纵。