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Computing with thalamocortical ensembles during different behavioural states

机译:在不同的行为状态下用丘脑皮层集合进行计算

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摘要

A series of recent studies have indicated that ensembles of neurones, distributed within the neural structures that form the primary thalamocortical loop (TCL) of the trigeminal component of the rat somatosensory system, change the way they respond to similar tactile stimuli, according to both the behavioural strategy employed by animals to gather information and the animal's internal brain states. These findings suggest that top-down influences, which are more likely to play a role during active discrimination than during passive whisker stimulation, may alter the pattern of neuronal firing within both the distinct layers of the primary somatosensory cortex (S1) and the ventral posterior medial nucleus (VPM). We propose that through this physiological process, which involves concurrent dynamic modulations at both cellular and circuit levels in the TCL, rats can either optimize the detection of novel or hard to sense stimuli or they can analyse complex patterns of multiwhisker stimulation, during natural exploration of their surrounding environment.
机译:一系列最新研究表明,分布在形成大鼠体感系统三叉神经原发性丘脑皮层环(TCL)的神经结构内的神经元集合,改变了它们对类似触觉刺激的反应方式。动物用来收集信息和动物内部大脑状态的行为策略。这些发现表明,自上而下的影响比主动晶须刺激更可能在主动分辨中发挥作用,它可能会改变体感皮层(S1)和腹侧后方各层中神经元放电的模式。内侧核(VPM)。我们提出,通过这种生理过程,其中涉及TCL中细胞水平和电路水平的同时动态调节,大鼠可以在自然探索的过程中优化对新颖刺激或难以感觉到的刺激的检测,或者可以分析多重晶须刺激的复杂模式。他们周围的环境。

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