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    • 2. 发明授权
    • Independent and concurrent processing multiple audio input signals in a prosthetic hearing implant
    • 在辅助听力植入物中独立并且处理多个音频输入信号
    • US08369958B2
    • 2013-02-05
    • US11335563
    • 2006-01-20
    • Bomjun KwonChristopher van den Honert
    • Bomjun KwonChristopher van den Honert
    • A61N1/00A61N5/04
    • A61N1/36036
    • A prosthetic hearing implant capable of independently and concurrently processing multiple audio input signals such that each audio input signal is separately utilized to stimulate the basilar membrane of the implant recipient. A prosthetic hearing implant of the present invention simultaneously receives discrete audio signals from each of one or more audio sources, generates a separate set of one or more stimulations signals for each audio signal, and concurrently applies the stimulation signals to the cochlear. Different channels of stimulation may be allocated to each audio input signal. Alternatively, different modes of stimulation may be used for each input signal. Or, in yet another example, the audio input signals may be time-multiplexed such that the input signals are applied in alternating timeslots. Or, in yet other examples, the input signals may be applied using a combination of stimulation channels, modes of stimulation, and alternating time slots. The stimulation signals may be delivered to the same or different electrodes depending on the quantity and frequency component of the received audio input signals, the quantity of available stimulation channels, and other factors.
    • 能够独立并且同时处理多个音频输入信号的假体听力植入物,使得每个音频输入信号被分开地用于刺激植入物接受者的基底膜。 本发明的假体听力植入物同时从一个或多个音频源中的每一个接收离散音频信号,为每个音频信号产生一个或多个刺激信号的单独集合,并且同时将刺激信号施加到耳蜗。 可以将不同的刺激通道分配给每个音频输入信号。 或者,可以对每个输入信号使用不同的刺激模式。 或者,在另一示例中,音频输入信号可以被时分复用,使得输入信号以交替的时隙被应用。 或者,在其他示例中,可以使用刺激通道,刺激模式和交替时隙的组合来应用输入信号。 刺激信号可以根据所接收的音频输入信号的数量和频率分量,可用刺激通道的数量和其他因素而传送到相同或不同的电极。