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长爪沙鼠初级听觉皮层中周期性音调的表征。

Representation of periodicity pitch in the primary auditory cortex of the Mongolian gerbil.

作者信息

Schulze H, Langner G

机构信息

Institute of Zoology, TH-Darmstadt, Germany.

出版信息

Acta Otolaryngol Suppl. 1997;532:89-95. doi: 10.3109/00016489709126150.

Abstract

Responses of single and multi-units in the primary auditory cortex (AI) of the Mongolian gerbil to tones and amplitude modulations (AMs) were studied. Two types of AM stimuli were used: i) those which were spectrally inside the unit's frequency response range (FRR) and ii) those that were spectrally completely outside a unit's FRR. In response to AMs spectrally within a unit's FRR, a minority of units showed phase-locked responses tuned to a certain range of modulation frequencies (envelope periodicities) of the AM. Phase-locking was confined to frequencies up to 65 Hz, the range best modulation frequencies covered by this synchrony code (sync-BMFs) contained values between 5 and 30 Hz. In response to AMs completely outside a unit's FRR, 69% of the units in the low frequency area of AI (up to 3 kHz best frequency) exhibited phasic or tonic responses tuned to certain envelope periodicities with rate-BMFs ranging from 50 to about 3000 Hz, a range that might be sufficient to account for a representation of periodicity pitch. Topographic reconstruction of the recording sites of such units revealed that, in contrast to the sync-BMFs described above, the rate-BMF values were systematically distributed within AI, therefore reflecting a periodotopic organization. We suggest that the temporal quality of the percept (rhythm) might be coded via a temporal (synchrony) code whereas the non-temporal quality of the percept (pitch) is coded via a non-temporal (rate-place) code.

摘要

研究了蒙古沙鼠初级听觉皮层(AI)中单个和多个神经元对纯音和调幅(AM)的反应。使用了两种类型的调幅刺激:i)频谱在神经元频率响应范围(FRR)内的刺激,以及ii)频谱完全在神经元FRR之外的刺激。对于频谱在神经元FRR内的调幅,少数神经元表现出对调幅的特定调制频率范围(包络周期)调谐的锁相反应。锁相限于高达65Hz的频率,此同步代码(sync-BMFs)覆盖的最佳调制频率范围包含5至30Hz之间的值。对于频谱完全在神经元FRR之外的调幅,AI低频区域(最佳频率高达3kHz)中69%的神经元表现出对特定包络周期调谐的相位或紧张性反应,其速率-最佳调制频率(rate-BMFs)范围为50至约3000Hz,该范围可能足以解释周期性音高的表征。对这些神经元记录位点的地形图重建显示,与上述sync-BMFs相反,rate-BMF值在AI内呈系统分布,因此反映了周期拓扑组织。我们认为,感知的时间特性(节奏)可能通过时间(同步)代码编码,而感知的非时间特性(音高)则通过非时间(速率-位置)代码编码。

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