Urbain Nadia, Deschênes Martin
Centre de Recherche Université Laval Robert-Giffard, Québec City, Canada G1J 2G3.
Neuron. 2007 Nov 21;56(4):714-25. doi: 10.1016/j.neuron.2007.10.023.
Higher-order thalamic nuclei receive input from both the cerebral cortex and prethalamic sensory pathways. However, at rest these nuclei appear silent due to inhibitory input from extrathalamic regions, and it has therefore remained unclear how sensory gating of these nuclei takes place. In the rodent, the ventral division of the zona incerta (ZIv) serves as a relay station within the paralemniscal thalamocortical projection pathway for whisker-driven motor activity. Most, perhaps all, ZIv neurons are GABAergic, and recent studies have shown that these cells participate in a feedforward inhibitory circuit that blocks sensory transmission in the thalamus. The present study provides evidence that the stimulation of the vibrissa motor cortex suppresses vibrissal responses in ZIv via an intra-incertal GABAergic circuit. These results provide support for the proposal that sensory transmission operates via a top-down disinhibitory mechanism that is contingent on motor activity.
高级丘脑核团接收来自大脑皮层和丘脑前感觉通路的输入。然而,在静息状态下,由于丘脑外区域的抑制性输入,这些核团似乎处于沉默状态,因此这些核团的感觉门控是如何发生的仍不清楚。在啮齿动物中,未定带腹侧部(ZIv)在触须驱动的运动活动的旁lemniscal丘脑皮质投射通路中充当一个中继站。大多数(也许是所有)ZIv神经元是γ-氨基丁酸能的,最近的研究表明,这些细胞参与了一个前馈抑制回路,该回路阻断丘脑中的感觉传递。本研究提供了证据,表明触须运动皮层的刺激通过未定带内的γ-氨基丁酸能回路抑制ZIv中的触须反应。这些结果支持了这样的提议,即感觉传递通过一种依赖于运动活动的自上而下的去抑制机制进行。