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POm Thalamocortical Input Drives Layer-Specific Microcircuits in Somatosensory Cortex

机译:POm丘脑皮层输入驱动体感皮层中的特定层微电路。

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摘要

Higher-order thalamic nuclei, such as the posterior medial nucleus (POm) in the somatosensory system or the pulvinar in the visual system, densely innervate the cortex and can influence perception and plasticity. To systematically evaluate how higher-order thalamic nuclei can drive cortical circuits, we investigated cell-type selective responses to POm stimulation in mouse primary somatosensory (barrel) cortex, using genetically targeted whole-cell recordings in acute brain slices. We find that ChR2-evoked thalamic input selectively targets specific cell types in the neocortex, revealing layer-specific modules for the summation and processing of POm input. Evoked activity in pyramidal neurons from deep layers is fast and synchronized by rapid feedforward inhibition from GABAergic parvalbumin-expressing neurons, and activity in superficial layers is weaker and prolonged, facilitated by slow inhibition from GABAergic neurons expressing the 5HT3a receptor. Somatostatin-expressing GABAergic neurons do not receive direct input in either layer and their spontaneous activity is suppressed during POm stimulation. This novel pattern of weak, delayed, thalamus-evoked inhibition in layer 2 suggests a longer integration window for incoming sensory information and may facilitate stimulus detection and plasticity in superficial pyramidal neurons.
机译:高阶丘脑核(例如体感系统中的后内侧核(POm)或视觉系统中的髓腔)会密集地支配皮层,并可能影响知觉和可塑性。为了系统地评估高阶丘脑核如何驱动皮质回路,我们使用了急性脑切片中的基因靶向全细胞记录,研究了小鼠初级体感(桶状)皮层中对POm刺激的细胞类型选择性反应。我们发现ChR2诱发的丘脑输入选择性地针对新皮层中的特定细胞类型,揭示了特定层的模块用于POm输入的求和和处理。来自表达GABA的小白蛋白的神经元的快速前馈抑制可快速且同步地刺激深层锥体神经元的活动,而表达5HT3a受体的GABA的神经元的缓慢抑制则促进了表层的活性减弱和延长。表达生长抑素的GABA能神经元在任一层均不接受直接输入,在POm刺激过程中其自发活动受到抑制。在第2层中这种弱的,延迟的,丘脑诱发的抑制作用的新颖模式表明,传入的感官信息的整合窗口更长,并且可能有助于刺激检测和浅表锥体神经元的可塑性。

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