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    • 3. 发明申请
    • MODULAR COCHLEAR IMPLANT SYSTEMS INCLUDING IMPLANTABLE SOUND PROCESSORS
    • 模块化COCHLEAR植入系统,包括可植入的声处理器
    • WO2010088549A1
    • 2010-08-05
    • PCT/US2010/022634
    • 2010-01-29
    • ADVANCED BIONICS, LLCHALLER, Matthew I.LITVAK, Leonid M.KULKARNI, Abhijit
    • HALLER, Matthew I.LITVAK, Leonid M.KULKARNI, Abhijit
    • A61N1/36
    • A61N1/36032A61N1/36036A61N1/372A61N1/37229A61N1/3787
    • Exemplary cochlear implant systems (400) include an implantable head module (402) configured to be implanted within a head of a patient. The implantable head module includes a cochlear stimulator (110) configured to be coupled to an electrode lead (114), the electrode lead including one or more electrodes configured to be in communication with one or more stimulation sites within the patient. The implantable head module also includes a signal receiver (408) configured to receive a telemetry signal representative of an audio signal from a signal transmitter (420) located external to the patient, a sound processor (106) configured to process the telemetry signal and direct the cochlear stimulator to generate and apply electrical stimulation representative of the audio signal to the one or more stimulation sites via the electrode lead, and a power receiver (410) configured to receive power for operating the implantable head module from a power transmitter (422) located external to the patient.
    • 示例性的耳蜗植入物系统(400)包括构造成植入患者头部的可植入头模块(402)。 可植入头模块包括被配置为耦合到电极引线(114)的耳蜗刺激器(110),所述电极引线包括被配置为与患者内的一个或多个刺激部位连通的一个或多个电极。 可植入头模块还包括信号接收器(408),其被配置为从位于患者外部的信号发射器(420)接收代表音频信号的遥测信号;声音处理器(106),被配置为处理遥测信号并直接 所述耳蜗刺激器通过所述电极引线产生并将代表所述音频信号的电刺激施加到所述一个或多个刺激部位;以及功率接收器(410),被配置为从功率发射器(422)接收用于操作所述可植入头模块的功率, 位于患者外部。
    • 4. 发明申请
    • ORIENTATION-INDEPENDENT IMPLANTABLE PULSE GENERATOR
    • 方向独立的可植入脉冲发生器
    • WO2008048724A1
    • 2008-04-24
    • PCT/US2007/072189
    • 2007-06-27
    • ADVANCED BIONICS CORPORATIONPAYNE, David, H.HALLER, Matthew, I.
    • PAYNE, David, H.HALLER, Matthew, I.
    • A61N1/378
    • A61N1/3787
    • An improved structure for an implantable medical device, such as an implantable pulse generator, is disclosed. The improved device includes a charging coil for wirelessly receiving energy via induction from an external charger. The charging coil in the device is located substantially equidistantly from the two planar sides of the device case. Because the coil is substantially equidistant within the thickness of the case of the device, the device's orientation within the patient is irrelevant, at least from the standpoint of the efficiency of charging the device using the external charger. Accordingly, charging is not adversely affected if the device is implanted in the patient with the wrong orientation, or if the device flips within the patient after implantation. Moreover, because the central portion of the device naturally corresponds to the largest lateral extent within the case due to the case's curved edges, the charging coil can be made larger in area, which improves its gain vis-a-vis the external charger.
    • 公开了一种用于可植入医疗装置的改进的结构,例如可植入脉冲发生器。 改进的装置包括用于通过来自外部充电器的感应无线地接收能量的充电线圈。 装置中的充电线圈与装置壳体的两个平面侧基本上等距离地设置。 由于线圈在设备外壳的厚度内基本上是等距的,所以至少从使用外部充电器的设备充电的效率的观点来看,设备在患者体内的取向是无关紧要的。 因此,如果将装置以错误的方向植入患者中,或者如果装置在植入后在患者体内翻转,则不会不利地影响充电。 此外,由于装置的中心部分自然地对应于由于壳体的弯曲边缘而在壳体内的最大横向范围,所以可以使充电线圈的面积更大,这增加了其对外部充电器的增益。