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啮齿动物对触须偏转的感知与处理

Sensing and processing whisker deflections in rodents.

作者信息

Burns Thomas F, Rajan Ramesh

机构信息

Biomedicine Discovery Institute, Monash University, Melbourne, Victoria, Australia.

出版信息

PeerJ. 2021 Feb 22;9:e10730. doi: 10.7717/peerj.10730. eCollection 2021.

Abstract

The classical view of sensory information mainly flowing into barrel cortex at layer IV, moving up for complex feature processing and lateral interactions in layers II and III, then down to layers V and VI for output and corticothalamic feedback is becoming increasingly undermined by new evidence. We review the neurophysiology of sensing and processing whisker deflections, emphasizing the general processing and organisational principles present along the entire sensory pathway-from the site of physical deflection at the whiskers to the encoding of deflections in the barrel cortex. Many of these principles support the classical view. However, we also highlight the growing number of exceptions to these general principles, which complexify the system and which investigators should be mindful of when interpreting their results. We identify gaps in the literature for experimentalists and theorists to investigate, not just to better understand whisker sensation but also to better understand sensory and cortical processing.

摘要

感觉信息主要流入第IV层桶状皮层,向上移动以在第II和第III层进行复杂特征处理和横向相互作用,然后向下至第V和第VI层进行输出和皮质丘脑反馈,这种经典观点正越来越受到新证据的挑战。我们回顾了感受和处理触须偏转的神经生理学,强调了沿整个感觉通路存在的一般处理和组织原则——从触须处的物理偏转部位到桶状皮层中偏转的编码。这些原则中的许多都支持经典观点。然而,我们也强调了这些一般原则中越来越多的例外情况,这些例外使系统变得复杂,研究人员在解释结果时应予以关注。我们指出了文献中的空白,供实验人员和理论家进行研究,这不仅有助于更好地理解触须感觉,也有助于更好地理解感觉和皮层处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b82/7906041/5da1f5ae9164/peerj-09-10730-g001.jpg

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