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Electromotile hearing: Acoustic tones mask psychophysical response to high-frequency electrical stimulation of intact guinea pig cochleae

机译:电动力性听觉:声调掩盖了对完整豚鼠耳蜗高频电刺激的心理生理反应

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摘要

When sinusoidal electric stimulation is applied to the intact cochlea, a frequency-specific acoustic emission can be recorded in the ear canal. Acoustic emissions are produced by basilar membrane motion, and have been used to suggest a corresponding acoustic sensation termed “electromotile hearing.” Electromotile hearing has been specifically attributed to electric stimulation of outer hair cells in the intact organ of Corti. To determine the nature of the auditory perception produced by electric stimulation of a cochlea with intact outer hair cells, we tested guinea pigs in a psychophysical task. First, subjects were trained to report detection of sinusoidal acoustic stimuli and dynamic range was assessed using response latency. Subjects were then implanted with a ball electrode placed into scala tympani. Following the surgical implant procedure, subjects were transferred to a task in which acoustic signals were replaced by sinusoidal electric stimulation, and dynamic range was assessed again. Finally, the ability of acoustic pure-tone stimuli to mask the detection of the electric signals was assessed. Based on the masking effects, we conclude that sinusoidal electric stimulation of the intact cochlea results in perception of a tonal (rather than a broad-band or noisy) sound at a frequency of 8 kHz or above.
机译:当对完整的耳蜗施加正弦电刺激时,可以在耳道中记录特定频率的声发射。声发射是由基底膜运动产生的,并已被用来暗示一种相应的声觉,称为“电声听觉”。运动性听力特别归因于对Corti完整器官中外毛细胞的电刺激。为了确定通过用完整的外部毛细胞电刺激耳蜗产生的听觉感知的本质,我们测试了豚鼠的心理生理任务。首先,对受试者进行训练以报告检测到的正弦声刺激,并使用反应潜伏期评估动态范围。然后向受试者植入放置在鼓sc中的球形电极。在进行外科植入手术之后,将受试者转移到一项任务中,用正弦电刺激代替声学信号,并再次评估动态范围。最后,评估了纯音刺激掩盖电信号检测的能力。基于掩蔽效应,我们得出结论,对完整的耳蜗进行正弦电刺激会导致以8 kHz或更高的频率感知音调(而不是宽带或嘈杂的声音)。

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