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大鼠视觉皮层中长期单眼剥夺的亚阈和阈上层及细胞类型特异性效应。

Layer- and cell-type-specific subthreshold and suprathreshold effects of long-term monocular deprivation in rat visual cortex.

机构信息

Max Planck Institute for Medical Research, Department of Cell Physiology, 69120 Heidelberg, Germany.

出版信息

J Neurosci. 2011 Nov 23;31(47):17134-48. doi: 10.1523/JNEUROSCI.2951-11.2011.

Abstract

Connectivity and dendritic properties are determinants of plasticity that are layer and cell-type specific in the neocortex. However, the impact of experience-dependent plasticity at the level of synaptic inputs and spike outputs remains unclear along vertical cortical microcircuits. Here I compared subthreshold and suprathreshold sensitivity to prolonged monocular deprivation (MD) in rat binocular visual cortex in layer 4 and layer 2/3 pyramids (4Ps and 2/3Ps) and in thick-tufted and nontufted layer 5 pyramids (5TPs and 5NPs), which innervate different extracortical targets. In normal rats, 5TPs and 2/3Ps are the most binocular in terms of synaptic inputs, and 5NPs are the least. Spike responses of all 5TPs were highly binocular, whereas those of 2/3Ps were dominated by either the contralateral or ipsilateral eye. MD dramatically shifted the ocular preference of 2/3Ps and 4Ps, mostly by depressing deprived-eye inputs. Plasticity was profoundly different in layer 5. The subthreshold ocular preference shift was sevenfold smaller in 5TPs because of smaller depression of deprived inputs combined with a generalized loss of responsiveness, and was undetectable in 5NPs. Despite their modest ocular dominance change, spike responses of 5TPs consistently lost their typically high binocularity during MD. The comparison of MD effects on 2/3Ps and 5TPs, the main affected output cells of vertical microcircuits, indicated that subthreshold plasticity is not uniquely determined by the initial degree of input binocularity. The data raise the question of whether 5TPs are driven solely by 2/3Ps during MD. The different suprathreshold plasticity of the two cell populations could underlie distinct functional deficits in amblyopia.

摘要

连接性和树突属性是可塑性的决定因素,在新皮层中具有层和细胞类型特异性。然而,在垂直皮质微电路水平上,依赖经验的可塑性对突触输入和尖峰输出的影响尚不清楚。在这里,我比较了大鼠双眼视觉皮层中第 4 层和第 2/3 层锥体(4Ps 和 2/3Ps)以及厚树突和无树突第 5 层锥体(5TPs 和 5NPs)中长时单眼剥夺(MD)对亚阈值和超阈值的敏感性,它们分别投射到不同的皮质外靶位。在正常大鼠中,5TPs 和 2/3Ps 在突触输入方面最具双眼性,而 5NPs 则最不具双眼性。所有 5TPs 的尖峰反应都是高度双眼性的,而 2/3Ps 的尖峰反应则主要由对侧或同侧眼主导。MD 极大地改变了 2/3Ps 和 4Ps 的眼偏好,主要通过抑制剥夺眼的输入。5 层的可塑性差异很大。由于剥夺输入的抑制作用较小,再加上反应性普遍丧失,5TPs 的亚阈值眼偏好转移幅度减小了七倍,而在 5NPs 中则无法检测到。尽管 5TPs 的眼优势变化不大,但在 MD 过程中,其尖峰反应始终失去了典型的高度双眼性。MD 对 2/3Ps 和 5TPs 的影响比较,5TPs 和 2/3Ps 是垂直微电路的主要输出细胞,表明亚阈值可塑性不仅仅由输入的初始双眼性决定。这组数据提出了一个问题,即在 MD 期间,5TPs 是否仅由 2/3Ps 驱动。这两种细胞群体的不同超阈值可塑性可能是弱视中不同功能缺陷的基础。

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