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音高的位置编码:一项必要的修订。

Place code for pitch: a necessary revision.

作者信息

Zwislocki J J, Nguyen M

机构信息

Institute for Sensory Research, Syracuse University, NY 13244-5290, USA.

出版信息

Acta Otolaryngol. 1999 Mar;119(2):140-5. doi: 10.1080/00016489950181530.

Abstract

It is widely believed that the location of the cochlear excitation maximum, which has been shown by Békésy to depend on sound frequency and move from the cochlear apex to its base as the frequency increases, is a code for subjective pitch. The pitch of a tone is known to be practically independent of sound intensity. If the location does determine the pitch, it too must remain invariant. At the 1990 meeting of the Collegium held in Basel, however, the first author reported compelling indirect evidence indicating that this may not be true. It suggested that, at least in the mid-portion of the cochlea, the most important for speech frequencies, the maximum moves toward the cochlear base as sound intensity is increased. We now have a direct verification of this inference. Recording alternating Hensen's cell potentials at two or three second-turn locations of each of several Mongolian gerbil cochleas, we observed that the maximum response produced by a single tone moved substantially toward the cochlear base as sound intensity increased. For example, an intensity increment of only 10 dB caused the maximum to move by about 0.225 mm. Since Hensen's cells are known to reflect closely the excitation pattern of the outer hair cells, similar to that of the inner hair cells, the discovery makes it impossible for the cochlear excitation maximum to be an adequate code for pitch. We observed, on the other hand, that the apical excitation cut-off did not depend on sound intensity. Every cochlear location investigated had its invariant characteristic cut-off frequency. It is possible, therefore, that the cut-off location provides the place code for pitch. These findings may have profound consequences for our understanding of auditory mechanisms as well as for the technology of cochlear implants.

摘要

人们普遍认为,耳蜗兴奋最大值的位置是主观音高的一种编码。贝凯西已经证明,该位置取决于声音频率,并且随着频率增加,它会从耳蜗顶端向基部移动。已知音调的音高实际上与声音强度无关。如果该位置确实决定音高,那么它也必须保持不变。然而,在1990年于巴塞尔举行的学术会议上,第一作者报告了令人信服的间接证据,表明情况可能并非如此。这表明,至少在耳蜗的中部,即对语音频率最为重要的部分,随着声音强度的增加,最大值会向耳蜗基部移动。我们现在对这一推断进行了直接验证。通过记录几只蒙古沙鼠耳蜗中两三个第二圈位置处的交替亨森细胞电位,我们观察到,随着声音强度增加,单音产生的最大反应会大幅向耳蜗基部移动。例如,仅10分贝的强度增量就会使最大值移动约0.225毫米。由于已知亨森细胞能紧密反映外毛细胞的兴奋模式,与内毛细胞类似,这一发现使得耳蜗兴奋最大值不可能成为音高的充分编码。另一方面,我们观察到顶端兴奋截止频率并不取决于声音强度。所研究的每个耳蜗位置都有其不变的特征截止频率。因此,截止位置有可能为音高提供位置编码。这些发现可能会对我们对听觉机制的理解以及人工耳蜗技术产生深远影响。

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