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Unexceptional sharpness of frequency tuning in the human cochlea.

机译:人类耳蜗的频率调节无与伦比的清晰度。

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The responses to sound of auditory-nerve fibers are well known in many animals but are topics of conjecture for humans. Some investigators have claimed that the auditory-nerve fibers of humans are more sharply tuned than are those of various experimental animals. Here we invalidate such claims. First, we show that forward-masking psychophysical tuning curves, which were used as the principal support for those claims, greatly overestimate the sharpness of cochlear tuning in experimental animals and, hence, also probably in humans. Second, we calibrate compound action potential tuning curves against the tuning of auditory-nerve fibers in experimental animals and use compound action potential tuning curves recorded in humans to show that the sharpness of tuning in human cochleae is not exceptional and that it is actually similar to tuning in all mammals and birds for which comparisons are possible. Third, we note that the similarity of frequency of tuning across species with widely diverse cochlear lengths and auditory bandwidths implies that for any given stimulus frequency the "cochlear amplifier" is confined to a highly localized region of the cochlea.
机译:对听觉神经纤维的声音的反应在许多动物中是众所周知的,但这是人类推测的话题。一些研究人员声称,与各种实验动物相比,人类的听觉神经纤维的调谐更为清晰。在这里,我们使这种主张无效。首先,我们证明了前向掩盖的心理生理调节曲线(被用作这些主张的主要依据)大大高估了实验动物甚至人类的耳蜗调节的清晰度。其次,我们针对实验动物的听觉神经纤维的调整来校准复合动作电位调整曲线,并使用人类记录的复合动作电位调整曲线表明,人耳蜗的调整清晰度不是异常,并且实际上类似于在所有可能比较的哺乳动物和鸟类中进行调整。第三,我们注意到,在具有广泛不同的耳蜗长度和听觉带宽的物种之间的调谐频率的相似性意味着,对于任何给定的刺激频率,“耳蜗放大器”都局限于耳蜗的高度局部区域。

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