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早期 γ 振荡使发育中的丘脑和皮层同步。

Early γ oscillations synchronize developing thalamus and cortex.

机构信息

INSERM U901, Marseille, France.

出版信息

Science. 2011 Oct 14;334(6053):226-9. doi: 10.1126/science.1210574.

Abstract

During development, formation of topographic maps in sensory cortex requires precise temporal binding in thalamocortical networks. However, the physiological substrate for such synchronization is unknown. We report that early gamma oscillations (EGOs) enable precise spatiotemporal thalamocortical synchronization in the neonatal rat whisker sensory system. Driven by a thalamic gamma oscillator and initially independent of cortical inhibition, EGOs synchronize neurons in a single thalamic barreloid and corresponding cortical barrel and support plasticity at developing thalamocortical synapses. We propose that the multiple replay of sensory input in thalamocortical circuits during EGOs allows thalamic and cortical neurons to be organized into vertical topographic functional units before the development of horizontal binding in adult brain.

摘要

在发育过程中,感觉皮层中地形图谱的形成需要在丘脑皮质网络中进行精确的时间绑定。然而,这种同步的生理基础尚不清楚。我们报告说,早期伽马振荡(EGO)使新生大鼠胡须感觉系统中的丘脑皮质同步具有精确的时空特性。由丘脑伽马振荡器驱动,最初与皮质抑制无关,EGO 同步单个丘脑棒状体和相应的皮质棒状体中的神经元,并支持发育中的丘脑皮质突触的可塑性。我们提出,在 EGO 期间,感觉输入在丘脑皮质回路中的多次重放允许丘脑和皮质神经元在成年大脑中水平绑定发展之前组织成垂直的地形功能单元。

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