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下丘和听觉皮层神经元对双耳和单耳听觉刺激的时间调制的处理。

Processing temporal modulations in binaural and monaural auditory stimuli by neurons in the inferior colliculus and auditory cortex.

机构信息

Department of Otolaryngology/Head and Neck Surgery, University of North Carolina School of Medicine, CB# 7070, Chapel Hill, NC, 27599-7070, USA.

出版信息

J Assoc Res Otolaryngol. 2009 Dec;10(4):579-93. doi: 10.1007/s10162-009-0177-8. Epub 2009 Jun 9.

Abstract

Processing dynamic changes in the stimulus stream is a major task for sensory systems. In the auditory system, an increase in the temporal integration window between the inferior colliculus (IC) and auditory cortex is well known for monaural signals such as amplitude modulation, but a similar increase with binaural signals has not been demonstrated. To examine the limits of binaural temporal processing at these brain levels, we used the binaural beat stimulus, which causes a fluctuating interaural phase difference, while recording from neurons in the unanesthetized rabbit. We found that the cutoff frequency for neural synchronization to the binaural beat frequency (BBF) decreased between the IC and auditory cortex, and that this decrease was associated with an increase in the group delay. These features indicate that there is an increased temporal integration window in the cortex compared to the IC, complementing that seen with monaural signals. Comparable measurements of responses to amplitude modulation showed that the monaural and binaural temporal integration windows at the cortical level were quantitatively as well as qualitatively similar, suggesting that intrinsic membrane properties and afferent synapses to the cortical neurons govern the dynamic processing. The upper limits of synchronization to the BBF and the band-pass tuning characteristics of cortical neurons are a close match to human psychophysics.

摘要

处理刺激流中的动态变化是感觉系统的主要任务。在听觉系统中,已知单耳信号(如调幅)会增加下丘(IC)和听觉皮层之间的时间整合窗口,但尚未证明双耳信号也会增加。为了研究这些脑区的双耳时间处理的极限,我们使用了双耳节拍刺激,它会引起耳间相位差的波动,同时记录未麻醉兔的神经元。我们发现,对双耳节拍频率(BBF)的神经同步的截止频率在 IC 和听觉皮层之间降低,并且这种降低与群延迟的增加有关。这些特征表明,与 IC 相比,皮层中的时间整合窗口增加,补充了单耳信号的情况。对调幅响应的类似测量表明,皮层水平的单耳和双耳时间整合窗口在数量和质量上都相似,这表明皮层神经元的内在膜特性和传入突触控制着动态处理。对 BBF 的同步的上限以及皮层神经元的带通调谐特性与人的心理物理非常匹配。

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