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    • 162. 发明申请
    • Self-attaching female fastener elements and method of forming same
    • 自连接母扣件及其形成方法
    • US20060252560A1
    • 2006-11-09
    • US10546412
    • 2003-11-24
    • Harold LadouceurJohn Parker
    • Harold LadouceurJohn Parker
    • B21K1/64
    • B21H8/00B21K1/66B21K1/702F16B27/00F16B37/068
    • The method of forming self-attaching female fasteners by rolling a continuous metal strip including a central pilot portion having parallel sides and flange portions on opposed sides, severing at least the pilot portion and cold forming the rectangular pilot portion into a cylindrical end portion. Wing-shaped radial portions are formed in the pilot portion which may be severed or remain for anti-rotation features. The strip may remain continuous, wherein the severed pilot portions are spread and the flange portions are thinned or the strip may be severed into discreet fasteners. The female fasteners thus include generally cylindrical pilot portions and rectangular flange portions which may include rolled grooves.
    • 通过滚动连续的金属带来形成自连接的母扣件的方法,所述连续金属带包括具有平行边的中心引导部分和相对的侧面上的凸缘部分,至少切断引导部分并将所述矩形引导部分冷成形为圆柱形端部。 翼型径向部分形成在引导部分中,该引导部分可被切断或保留用于防旋转特征。 带可以保持连续,其中切断的导向部分被展开并且凸缘部分变薄或者带可能被切断成分立的紧固件。 因此,母扣件包括大致圆柱形的先导部分和矩形凸缘部分,其可以包括滚动的凹槽。
    • 165. 发明申请
    • Endosteal electrode
    • 内皮电极
    • US20050080473A1
    • 2005-04-14
    • US10473925
    • 2002-04-05
    • Peter GibsonErnst LehnhardtJohn Parker
    • Peter GibsonErnst LehnhardtJohn Parker
    • A61N1/36A61F2/18A61F11/00A61N1/05
    • A61N1/0541A61N1/36036
    • An implantable tissue-stimulating device comprising an elongate electrode carrier member (11) having a plurality of electrodes thereon. The electrodes are preferably disposed in a linear array on the carrier member (11) and are adapted to apply a preselected tissue stimulation to the cochlea. The carrier member (11) is preformed from a resiliently flexible biocompatible silicone and extends from a distal end (12) to a stop member (13). The carrier member (11) is adapted for intracochlear but extraluminar insertion within the cochlea of an implantee. In particular, the carrier member (11) is adapted to be implanted in the crevice (21) between the spiral ligament (22) and the endosteum (23) of the lateral wall of the cochlea (20). This is a quite different location to the normal placement of the cochlear implant electrode array in the scala tympani (24) of the cochlea (20). The placement of the carrier member (11) is designed to avoid any breach of the internal ducts of the cochlea (20), such as the scala tympani (24) and scala vestibuli (25) so that the normal hydrodynamic behaviour of the cochlea (20) is not affected by any intrusive device. By preservng the normal hydrodynamic behaviour of the cochlea (20), use of the carrier member (11) maximises the possibility of also preserving any hearing of the implantee that is offered by the cochlea (20). Use of the device in a system for masking or treating the symptoms of tinnitus is also described.
    • 一种可植入组织刺激装置,包括在其上具有多个电极的细长电极载体构件(11)。 电极优选以线性阵列布置在载体构件(11)上,并且适于对耳蜗施加预选的组织刺激。 载体构件(11)由弹性柔性的生物相容性硅树脂预成型,并从远端(12)延伸到止动构件(13)。 载体构件(11)适于在植入物的耳蜗内进行耳内但外源性插入。 特别地,载体构件(11)适于植入在螺旋韧带(22)和耳蜗(​​20)的侧壁的内壁(23)之间的缝隙(21)中。 这是与耳蜗(20)的鼓膜鼓(24)中的人工植入电极阵列的正常放置相当不同的位置。 载体构件(11)的放置被设计成避免耳蜗(20)的内部管道的任何破坏,例如鼓膜鼓膜(24)和裙带前庭(25),使得耳蜗的正常流体动力学行为 20)不受任何侵入设备的影响。 通过保护耳蜗(20)的正常流体动力学行为,使用载体构件(11)最大限度地延长了保留由耳蜗(20)提供的植入物的任何听力的可能性。 还描述了在用于掩蔽或治疗耳鸣症状的系统中使用该装置。