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猴初级听觉皮层中群体反应的时间动态频率调谐

Temporally dynamic frequency tuning of population responses in monkey primary auditory cortex.

作者信息

Fishman Yonatan I, Steinschneider Mitchell

机构信息

Department of Neurology, Albert Einstein College of Medicine, Rose F. Kennedy Center, 1410 Pelham Parkway South, Bronx, NY 10461, USA.

出版信息

Hear Res. 2009 Aug;254(1-2):64-76. doi: 10.1016/j.heares.2009.04.010. Epub 2009 Apr 21.

Abstract

Frequency tuning of auditory cortical neurons is typically determined by integrating spikes over the entire duration of a tone stimulus. However, this approach may mask functionally significant variations in tuning over the time course of the response. To explore this possibility, frequency response functions (FRFs) based on population multiunit activity evoked by pure tones of 175 or 200 ms duration were examined within four time windows relative to stimulus onset corresponding to "on" (10-30 ms), "early sustained" (30-100 ms), "late sustained" (100-175 ms), and "off" (185-235 or 210-260 ms) portions of responses in primary auditory cortex (A1) of 5 awake macaques. FRFs of "on" and "early sustained" responses displayed a good concordance, with best frequencies (BFs) differing, on average, by less than 0.25 octaves. In contrast, FRFs of "on" and "late sustained" responses differed considerably, with a mean difference in BF of 0.68 octaves. At many sites, tuning of "off" responses was inversely related to that of "on" responses, with "off" FRFs displaying a trough at the BF of "on" responses. Inversely correlated "on" and "off" FRFs were more common at sites with a higher "on" BF, thus suggesting functional differences between sites with low and high "on" BF. These results indicate that frequency tuning of population responses in A1 may vary considerably over the course of the response to a tone, thus revealing a temporal dimension to the representation of sound spectrum in A1.

摘要

听觉皮层神经元的频率调谐通常是通过在音调刺激的整个持续时间内对尖峰进行积分来确定的。然而,这种方法可能会掩盖反应时间过程中调谐的功能上显著的变化。为了探究这种可能性,我们在与刺激开始相对应的四个时间窗口内,研究了基于175或200毫秒持续时间的纯音诱发的群体多单位活动的频率响应函数(FRF),这四个时间窗口分别对应于5只清醒猕猴初级听觉皮层(A1)中反应的“开启”(10 - 30毫秒)、“早期持续”(30 - 100毫秒)、“晚期持续”(100 - 175毫秒)和“关闭”(185 - 235或210 - 260毫秒)部分。“开启”和“早期持续”反应的FRF显示出良好的一致性,最佳频率(BF)平均相差不到0.25倍频程。相比之下,“开启”和“晚期持续”反应的FRF差异很大,BF的平均差异为0.68倍频程。在许多部位,“关闭”反应的调谐与“开启”反应的调谐呈负相关,“关闭”FRF在“开启”反应的BF处显示出一个波谷。“开启”和“关闭”FRF呈负相关在“开启”BF较高的部位更为常见,这表明“开启”BF低和高的部位之间存在功能差异。这些结果表明,A1中群体反应的频率调谐在对音调的反应过程中可能会有很大变化,从而揭示了A1中声谱表征的时间维度。

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