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声音处理的并行途径和第 5 层和第 6 层听觉皮质传出神经元之间的功能连接。

Parallel pathways for sound processing and functional connectivity among layer 5 and 6 auditory corticofugal neurons.

机构信息

Eaton-Peabody Laboratories, Massachusetts Eye and Ear Infirmary, Boston, United States.

Department of Otolaryngology, Harvard Medical School, Boston, United States.

出版信息

Elife. 2019 Feb 8;8:e42974. doi: 10.7554/eLife.42974.

Abstract

Cortical layers (L) 5 and 6 are populated by intermingled cell-types with distinct inputs and downstream targets. Here, we made optogenetically guided recordings from L5 corticofugal (CF) and L6 corticothalamic (CT) neurons in the auditory cortex of awake mice to discern differences in sensory processing and underlying patterns of functional connectivity. Whereas L5 CF neurons showed broad stimulus selectivity with sluggish response latencies and extended temporal non-linearities, L6 CTs exhibited sparse selectivity and rapid temporal processing. L5 CF spikes lagged behind neighboring units and imposed weak feedforward excitation within the local column. By contrast, L6 CT spikes drove robust and sustained activity, particularly in local fast-spiking interneurons. Our findings underscore a duality among sub-cortical projection neurons, where L5 CF units are canonical broadcast neurons that integrate sensory inputs for transmission to distributed downstream targets, while L6 CT neurons are positioned to regulate thalamocortical response gain and selectivity.

摘要

皮质层 (L) 5 和 6 由具有不同输入和下游靶点的混合细胞类型组成。在这里,我们在清醒小鼠听觉皮层中对 L5 皮质传出 (CF) 和 L6 皮质丘脑 (CT) 神经元进行了光遗传学引导记录,以辨别感觉处理和潜在功能连接模式的差异。L5 CF 神经元表现出广泛的刺激选择性,其反应潜伏期缓慢且具有扩展的时间非线性,而 L6 CT 则表现出稀疏的选择性和快速的时间处理。L5 CF 尖峰滞后于相邻单元,并在局部柱内施加弱的前馈兴奋。相比之下,L6 CT 尖峰驱动着强大而持续的活动,特别是在局部快速放电中间神经元中。我们的研究结果强调了皮质下投射神经元之间的二元性,其中 L5 CF 单元是整合感觉输入以传递到分布式下游靶点的典型广播神经元,而 L6 CT 神经元则被定位为调节丘脑皮质反应增益和选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d708/6384027/2138763ea414/elife-42974-fig1.jpg

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