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首页> 外文期刊>The Journal of the Acoustical Society of America >Simulating the effect of cochlear-implant electrode insertion depth on speech understanding
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Simulating the effect of cochlear-implant electrode insertion depth on speech understanding

机译:模拟耳蜗植入电极插入深度对语音理解的影响

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摘要

Normally hearing listeners were presented with vowels, consonants, and sentences for identification through an acoustic simulation of a five-channel cochlear implant with electrodes separated by 4 mm (as in the Ineraid implant). The aim of the experiment was to simulate the effect of depth of electrode insertion on identification accuracy. Insertion depth was simulated by outputing sine waves from each channel of the processor at a frequency determined by the cochlear place of electrodes inserted 22–25 mm into the cochlea. The results indicate that simulated insertion depth had a significant effect on performance. Performance at 22- and 23-mm simulated insertion depths was always poorer than normal, and performance at 25-mm simulated insertion depth was, most generally, the same as normal. It is inferred from these results that, if insertion depth could be unconfounded from other coexisting factors in implant patients, then insertion depth would be found to affect speech identification performance significantly.
机译:正常情况下,会向听众展示元音,辅音和句子,以通过对电极间隔为4 mm的五通道人工耳蜗植入物进行声学模拟来进行识别(如Ineraid植入物一样)。该实验的目的是模拟电极插入深度对识别精度的影响。通过从处理器的每个通道输出正弦波来模拟插入深度,该正弦波的频率由插入耳蜗22–25 mm的电极的耳蜗位置确定。结果表明,模拟插入深度对性能有重大影响。在22毫米和23毫米模拟插入深度下的性能始终比正常情况差,并且在25毫米模拟插入深度下的性能通常与正常情况相同。从这些结果可以推断,如果在植入患者中插入深度不能与其他共存因素混淆,那么插入深度将被发现显着影响语音识别性能。

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