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灵长类听觉皮层中的空间扩展前抑制。

Spatially extended forward suppression in primate auditory cortex.

机构信息

Laboratory of Auditory Neurophysiology, Department of Biomedical Engineering, Johns Hopkins University, School of Medicine, Baltimore, MD, 21205, USA.

出版信息

Eur J Neurosci. 2014 Mar;39(6):919-933. doi: 10.1111/ejn.12460. Epub 2013 Dec 26.

Abstract

When auditory neurons are stimulated with a pair of sounds, the preceding sound can inhibit the neural responses to the succeeding sound. This phenomenon, referred to as 'forward suppression', has been linked to perceptual forward masking. Previous studies investigating forward suppression typically measured the interaction between masker and probe sounds using a fixed sound location. However, in natural environments, interacting sounds often come from different spatial locations. The present study investigated two questions regarding forward suppression in the primary auditory cortex and adjacent caudal field of awake marmoset monkeys. First, what is the relationship between the location of a masker and its effectiveness in inhibiting neural response to a probe? Second, does varying the location of a masker change the spectral profile of forward suppression? We found that a masker can inhibit a neuron's response to a probe located at a preferred location even when the masker is located at a non-preferred location of a neuron. This is especially so for neurons in the caudal field. Furthermore, we found that the strongest forward suppression is observed when a masker's frequency is close to the best frequency of a neuron, regardless of the location of the masker. These results reveal, for the first time, the stability of forward masking in cortical processing of multiple sounds presented from different locations. They suggest that forward suppression in the auditory cortex is spectrally specific and spatially broad with respect to the frequency and location of the masker, respectively.

摘要

当听觉神经元受到一对声音的刺激时,前一个声音可以抑制对后续声音的神经反应。这种现象被称为“前向抑制”,与感知前向掩蔽有关。以前研究前向抑制的研究通常使用固定的声音位置来测量掩蔽声和探测声之间的相互作用。然而,在自然环境中,相互作用的声音通常来自不同的空间位置。本研究调查了关于清醒狨猴初级听觉皮层和相邻尾侧场的前向抑制的两个问题。首先,掩蔽器的位置与其抑制探测器神经反应的有效性之间存在什么关系?其次,掩蔽器位置的变化是否会改变前向抑制的频谱特征?我们发现,即使掩蔽器位于神经元的非最佳位置,掩蔽器也可以抑制神经元对位于最佳位置的探测器的反应。对于尾侧场的神经元尤其如此。此外,我们发现,当掩蔽器的频率接近神经元的最佳频率时,会观察到最强的前向抑制,而不管掩蔽器的位置如何。这些结果首次揭示了来自不同位置的多个声音在皮质处理中的前向掩蔽的稳定性。它们表明,听觉皮层中的前向抑制在频率和掩蔽器位置上分别具有频率特异性和空间广泛性。

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