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Receptive field dimensionality increases from the auditory midbrain tocortex

机译:感受野的维度从听觉中脑增加到皮层

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摘要

In the primary auditory cortex, spectrotemporal receptive fields (STRFs) are composed of multiple independent components that capture the processing of disparate stimulus aspects by any given neuron. The origin of these multidimensional stimulus filters in the central auditory system is unknown. To determine whether multicomponent STRFs emerge prior to the forebrain, we recorded from single neurons in the main obligatory station of the auditory midbrain, the inferior colliculus. By comparing results of different spike-triggered techniques, we found that the neural responses in the inferior colliculus can be accounted for by a single stimulus filter. This was observed for all temporal response patterns, from strongly phasic to tonic. Our results reveal that spectrotemporal stimulus encoding undergoes a fundamental transformation along the auditory neuraxis, with the emergence of multidimensional receptive fields beyond the auditory midbrain.
机译:在初级听觉皮层中,光谱时空感受野(STRF)由多个独立的组件组成,这些组件捕获任何给定神经元对不同刺激方面的处理。这些多维刺激过滤器在中央听觉系统中的起源是未知的。为了确定多组分STRF是否在前脑之前出现,我们从听觉中脑主要下丘的单神经元中记录了单个神经元。通过比较不同的尖峰触发技术的结果,我们发现下丘神经的神经反应可以由单个刺激过滤器解释。从强相位到强音,所有时间响应模式都可以观察到这一点。我们的研究结果表明,时空刺激编码沿听神经发生了根本的转变,出现了超出听觉中脑的多维感受野。

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