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运动-感觉投射活动揭示了躯体感觉中的分布式编码。

Activity in motor-sensory projections reveals distributed coding in somatosensation.

机构信息

Janelia Farm Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia 20147, USA.

出版信息

Nature. 2012 Sep 13;489(7415):299-303. doi: 10.1038/nature11321.

Abstract

Cortical-feedback projections to primary sensory areas terminate most heavily in layer 1 (L1) of the neocortex, where they make synapses with tuft dendrites of pyramidal neurons. L1 input is thought to provide ‘contextual’ information, but the signals transmitted by L1 feedback remain uncharacterized. In the rodent somatosensory system, the spatially diffuse feedback projection from vibrissal motor cortex (vM1) to vibrissal somatosensory cortex (vS1, also known as the barrel cortex) may allow whisker touch to be interpreted in the context of whisker position to compute object location. When mice palpate objects with their whiskers to localize object features, whisker touch excites vS1 and later vM1 in a somatotopic manner. Here we use axonal calcium imaging to track activity in vM1-->vS1 afferents in L1 of the barrel cortex while mice performed whisker-dependent object localization. Spatially intermingled individual axons represent whisker movements, touch and other behavioural features. In a subpopulation of axons, activity depends on object location and persists for seconds after touch. Neurons in the barrel cortex thus have information to integrate movements and touches of multiple whiskers over time, key components of object identification and navigation by active touch.

摘要

皮质反馈投射到初级感觉区域主要终止于新皮层的第 1 层(L1),在那里它们与锥体神经元的树突簇形成突触。L1 输入被认为提供了“上下文”信息,但 L1 反馈传递的信号仍未被描述。在啮齿动物的躯体感觉系统中,从触须运动皮层(vM1)到触须感觉皮层(vS1,也称为桶状皮层)的空间弥散反馈投射可能允许在触须位置的背景下解释触须接触,以计算物体的位置。当老鼠用胡须触摸物体以定位物体特征时,胡须接触以躯体定位的方式兴奋 vS1 然后是 vM1。在这里,我们使用轴突钙成像来跟踪老鼠进行胡须依赖性物体定位时,桶状皮层 L1 中的 vM1->vS1 传入纤维的活动。空间混合的单个轴突代表胡须运动、触摸和其他行为特征。在轴突的一个亚群中,活动取决于物体的位置,并在触摸后持续数秒。因此,桶状皮层中的神经元具有整合时间内多个胡须的运动和触摸的信息的能力,这是主动触摸进行物体识别和导航的关键组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b21e/3443316/717b9fc2907c/nihms-384977-f0001.jpg

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