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    • 1. 发明申请
    • AN IMPLANTABLE MICROPHONE FOR USE WITH A HEARING AID OR COCHLEAR PROSTHESIS
    • 用于听力助听器或辅助听诊器的可植入麦克风
    • WO0160116A3
    • 2002-04-04
    • PCT/CA0100099
    • 2001-01-30
    • EPIC BIOSONICS INCBERRANG PETER GJARVIN STACEY DLUPIN ALAN JMCNIVEN SEAN A
    • BERRANG PETER GJARVIN STACEY DLUPIN ALAN JMCNIVEN SEAN A
    • H04R25/00
    • H04R25/606H04R2225/67
    • A totally implantable microphone for use with an implanted hearing aid comprises a cylindrical bio-inert housing having a bio-inert metallic membrane at the acoustic sensing end and a bio-inert plate containing electrical lead-throughs at the other end. The cylindrical housing is implanted in the posterior wall of the external auditory canal, with the thin auditory canal skin overlaying the microphone membrane surface. Surface features on the housing ossiointegrate it to the auditory canal bone, and a flange on the housing posterior end prevents post-operative migration into the auditory canal. A support plate beneath the membrane limits inward flexing and increases the signal-to-noise ratio. A protruding rim around the membrane perimeter acts to protect the membrane from rupturing during outward flexure. Lithographically formed wires laminated in a thin inert polymer and connected to the lead-throughs enable the overall length of the encapsulated microphone to be very short.
    • 用于植入式助听器的完全可植入麦克风包括圆柱形生物惰性壳体,其在声学感测端具有生物惰性金属膜,另一端包含含有电导线的生物惰性板。 圆柱形外壳植入外耳道的后壁,细耳面皮肤覆盖麦克风膜表面。 外壳上的表面特征将其整合到听管骨中,并且壳体后端上的凸缘防止术后移入耳道。 膜下方的支撑板限制向内弯曲并增加信噪比。 围绕膜周边的突出的边缘用于保护膜在向外弯曲期间的破裂。 层压在薄的惰性聚合物中并连接到引出通道的光刻形成的线使得封装的麦克风的总长度非常短。
    • 6. 发明申请
    • A TOTALLY IMPLANTABLE COCHLEAR PROSTHESIS
    • 一个完全可植入的耳蜗假体
    • WO0139830A3
    • 2001-11-08
    • PCT/CA0001398
    • 2000-11-23
    • EPIC BIOSONICS INCBERRANG PETER GBLUGER HENRY VJARVIN STACEY DLUPIN ALAN J
    • BERRANG PETER GBLUGER HENRY VJARVIN STACEY DLUPIN ALAN J
    • A61N1/36
    • A61N1/36036
    • A totally implantable cochlear prosthesis is presented. Said prosthesis is designed to function for hours or days without any external components. An externally-activated subcutaneous pressure switch enables the user to adjust the perceived volume by pressing against the skin with a finger. A similar second pressure switch provides a safety "off/on" feature. A pliable bridge connecting two hermetically sealed housing sections, and corrugated conductor lines, provide for future dimensional changes due to head growth. A titanium encapsulated microphone is positioned underneath the skin in the posterior wall of the external auditory canal. A modiolus-hugging electrode array is inserted into one of the cochlea scala. Periodic charging of the implanted battery (contained within one of the housing sections) is required, such charging accomplished via an external mechanically held head-mounted device containing an external coil, said external coil inductively coupling electrical power to an implanted receiving coil. The external and implanted coils can also be used as a communication link to program the implanted electronics.
    • 介绍完全植入式人工耳蜗。 所述假体被设计为在没有任何外部部件的情况下运行数小时或数天。 外部启动的皮下压力开关使用户可以通过用手指按压皮肤来调节感知体积。 类似的第二个压力开关提供安全“关闭/打开”功能。 连接两个气密密封外壳部分的柔韧桥梁和波纹导体线路可为未来因头部生长而引起的尺寸变化提供支持。 钛封装的麦克风位于外耳道后壁皮肤下方。 将蜗牛拥抱电极阵列插入耳蜗标本之一。 需要对植入的电池(包含在其中一个外壳部分内)进行定期充电,这种充电是通过外部机械固定的头部安装装置完成的,该外部线圈包含外部线圈,所述外部线圈将电力感应耦合到植入的接收线圈。 外部线圈和植入线圈也可以用作通信链路来编程植入电子设备。