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PROCESSING OF COMPLEX SOUNDS IN THE MACAQUE NONPRIMARY AUDITORY CORTEX

机译:猕猴非正规听觉皮层中复杂声音的处理

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Neurons in the superior temporal gyrus of anesthetized rhesus monkeys were exposed to complex acoustic stimuli. Bandpassed noise bursts with defined center frequencies evoked responses that were greatly enhanced over those evoked by pure tons. This finding led to the discovery of at least one new cochleotopic area in the lateral belt of the nonprimary auditory cortex. The best center frequencies of neurons varied along a rostrocaudal axis, and the best bandwidths of the noise bursts varied along a mediolateral axis. When digitized monkey calls were used as stimuli, many neurons showed a preference for some calls over others. Manipulation of the calls' frequency structure and playback of separate components revealed different types of spectral integration. The lateral areas of the monkey auditory cortex appear to be part of a hierarchical sequence in which neurons prefer increasingly complex stimuli and may form an important stage in the preprocessing of communication sounds.
机译:麻醉的恒河猴的颞上回中的神经元暴露于复杂的声刺激。具有定义的中心频率的带通噪声突发引起的响应比纯吨引起的响应大大增强。这一发现导致在非原发性听觉皮层外侧带中发现至少一个新的耳蜗区域。神经元的最佳中心频率沿尾尾轴变化,而噪声爆发的最佳带宽沿中外侧轴变化。当数字化猴子叫声被用作刺激时,许多神经元显示出对某些叫声的偏好。操纵电话的频率结构和播放独立的分量显示出不同类型的频谱积分。猴子听觉皮层的外侧区域似乎是分层序列的一部分,在该序列中,神经元更喜欢越来越复杂的刺激,并且可能在通信声音的预处理中形成重要阶段。

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