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视觉经验调节电路激活的时空动力学。

Visual experience modulates spatio-temporal dynamics of circuit activation.

机构信息

Department of Neurobiology and Behavior, State University of New York Stony Brook Stony Brook, NY, USA.

出版信息

Front Cell Neurosci. 2011 Jun 28;5:12. doi: 10.3389/fncel.2011.00012. eCollection 2011.

Abstract

Persistent reduction in sensory drive in early development results in multiple plastic changes of different cortical synapses. How these experience-dependent modifications affect the spatio-temporal dynamics of signal propagation in neocortical circuits is poorly understood. Here we demonstrate that brief visual deprivation significantly affects the propagation of electrical signals in the primary visual cortex. The spatio-temporal spread of circuit activation upon direct stimulation of its input layer (Layer 4) is reduced, as is the activation of L2/3 - the main recipient of the output from L4. Our data suggest that the decrease in spatio-temporal activation of L2/3 depends on reduced L4 output, and is not intrinsically generated within L2/3. The data shown here suggest that changes in the synaptic components of the visual cortical circuit result not only in alteration of local integration of excitatory and inhibitory inputs, but also in a significant decrease in overall circuit activation. Furthermore, our data indicate a differential effect of visual deprivation on L4 and L2/3, suggesting that while feedforward activation of L2/3 is reduced, its activation by long range, within layer inputs is unaltered. Thus, brief visual deprivation induces experience-dependent circuit re-organization by modulating not only circuit excitability, but also the spatio-temporal patterns of cortical activation within and between layers.

摘要

早期发育过程中感觉驱动的持续减少会导致不同皮质突触的多种可塑性变化。这些经验依赖性修饰如何影响新皮层回路中信号传播的时空动力学还知之甚少。在这里,我们证明了短暂的视觉剥夺会显著影响初级视觉皮层中电信号的传播。直接刺激其输入层(第 4 层)时,回路激活的时空扩展减少,L2/3 的激活也是如此——L4 的主要输出接收者。我们的数据表明,L2/3 的时空激活减少取决于 L4 输出的减少,而不是在 L2/3 内部固有产生的。这里显示的数据表明,视觉皮层回路的突触成分变化不仅导致兴奋性和抑制性输入的局部整合改变,而且还导致整体回路激活的显著降低。此外,我们的数据表明,视觉剥夺对 L4 和 L2/3 有不同的影响,表明虽然 L2/3 的前馈激活减少,但由长程、层内输入的激活未改变。因此,短暂的视觉剥夺通过调节不仅是回路兴奋性,而且是层内和层间皮质激活的时空模式,诱导经验依赖性的回路重新组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/332b/3127086/a6c90f4f9215/fncel-05-00012-g001.jpg

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