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A novel mechanism of cochlear excitation during simultaneous stimulation and pressure relief through the round window

机译:通过圆窗同时刺激和缓解压力时耳蜗兴奋的新机制

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摘要

The round window (RW) membrane provides pressure relief when the cochlea is excited by sound. Here, we report measurements of cochlear function from guinea pigs when the cochlea was stimulated at acoustic frequencies by movements of a miniature magnet which partially occluded the RW. Maximum cochlear sensitivity, corresponding to subnanometre magnet displacements at neural thresholds, was observed for frequencies around 20 kHz, which is similar to that for acoustic stimulation. Neural response latencies to acoustic and RW stimulation were similar and taken to indicate that both means of stimulation resulted in the generation of conventional travelling waves along the cochlear partition. It was concluded that the relatively high impedance of the ossicles, as seen from the cochlea, enabled the region of the RW not occluded by the magnet, to act as a pressure shunt during RW stimulation. We propose that travelling waves, similar to those owing to acoustic far-field pressure changes, are driven by a jet-like, near-field component of a complex pressure field, which is generated by the magnetically vibrated RW. Outcomes of research described here are theoretical and practical design principles for the development of new types of hearing aids, which use near-field, RW excitation of the cochlea.
机译:当耳蜗被声音激发时,圆窗(RW)膜可释放压力。在这里,我们报告了豚鼠耳蜗功能的测量结果,该耳蜗是通过微型磁体的运动在声学频率上刺激耳蜗的,该磁体部分地阻塞了RW。对于大约20 kHz的频率,观察到最大的耳蜗灵敏度,对应于神经阈值处的亚纳米级磁铁位移,这与声刺激相似。对声刺激和RW刺激的神经反应潜伏期相似,并表明这两种刺激方式均导致沿耳蜗分区产生常规行波。结论是,从耳蜗看到的相对较高的小骨阻抗使RW的未被磁体阻塞的区域在RW刺激过程中充当压力分流器。我们提出,行波类似于由声远场压力变化引起的行波,是由复压力场的射流状近场分量驱动的,该分量是由磁振动的RW产生的。此处描述的研究成果是开发新型助听器的理论和实践设计原则,这些助听器使用耳蜗的近场RW激励。

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