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Layer 4 fast-spiking interneurons filter thalamocortical signals during active somatosensation

机译:主动体感过程中第4层快速掺入的神经元过滤丘脑皮质信号

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We rely on movement to explore the environment, for example, by palpating an object. In somatosensory cortex, activity related to movement of digits or whiskers is suppressed, which could facilitate detection of touch. Movement-related suppression is generally assumed to involve corollary discharges. Here we uncovered a thalamocortical mechanism in which cortical fast-spiking interneurons, driven by sensory input, suppress movement-related activity in layer 4 (L4) excitatory neurons. In mice locating objects with their whiskers, neurons in the ventral posteromedial nucleus (VPM) fired in response to touch and whisker movement. Cortical L4 fast-spiking interneurons inherited these responses from VPM. In contrast, L4 excitatory neurons responded mainly to touch. Optogenetic experiments revealed that fast-spiking interneurons reduced movement-related spiking in excitatory neurons, enhancing selectivity for touch-related information during active tactile sensation. These observations suggest a fundamental computation performed by the thalamocortical circuit to accentuate salient tactile information.
机译:我们依靠运动来探索环境,例如通过触摸物体。在体感皮层中,与手指或胡须运动有关的活动受到抑制,这可能有助于检测触摸。通常假定与运动有关的抑制涉及推论放电。在这里,我们发现了丘脑皮质机制,其中由感觉输入驱动的皮质快速突触中枢神经元抑制第4层(L4)兴奋性神经元中与运动相关的活动。在用晶须定位物体的小鼠中,腹内侧后核(VPM)中的神经元会因触碰和晶须运动而激发。皮质L4快速掺入的中间神经元从VPM继承了这些响应。相反,L4兴奋性神经元主要对触摸做出反应。光遗传学实验表明,快速激活的神经元减少了兴奋性神经元中与运动有关的尖峰,从而增强了主动触感期间对与触摸有关的信息的选择性。这些观察结果表明,丘脑皮层回路执行了基本计算,以突显重要的触觉信息。

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