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皮质回路激活的时空模式的发育调控。

Developmental regulation of spatio-temporal patterns of cortical circuit activation.

机构信息

Program in Neuroscience, Stony Brook University Stony Brook, NY, USA ; Medical Scientist Training Program, Stony Brook University Stony Brook, NY, USA.

出版信息

Front Cell Neurosci. 2013 Jan 4;6:65. doi: 10.3389/fncel.2012.00065. eCollection 2012.

Abstract

Neural circuits are refined in an experience-dependent manner during early postnatal development. How development modulates the spatio-temporal propagation of activity through cortical circuits is poorly understood. Here we use voltage-sensitive dye imaging (VSD) to show that there are significant changes in the spatio-temporal patterns of intracortical signals in primary visual cortex (V1) from postnatal day 13 (P13), eye opening, to P28, the peak of the critical period for rodent visual cortical plasticity. Upon direct stimulation of layer 4 (L4), activity spreads to L2/3 and to L5 at all ages. However, while from eye opening to the peak of the critical period, the amplitude and persistence of the voltage signal decrease, peak activation is reached more quickly and the interlaminar gain increases with age. The lateral spread of activation within layers remains unchanged throughout the time window under analysis. These developmental changes in spatio-temporal patterns of intracortical circuit activation are mediated by differences in the contributions of excitatory and inhibitory synaptic components. Our results demonstrate that after eye opening the circuit in V1 is refined through a progression of changes that shape the spatio-temporal patterns of circuit activation. Signals become more efficiently propagated across layers through developmentally regulated changes in interlaminar gain.

摘要

在出生后的早期发育过程中,神经回路以依赖经验的方式得到精细化。目前人们对于发育过程如何调节皮层回路中活动的时空传播知之甚少。本研究利用电压敏感染料成像(VSD)技术,发现从出生后第 13 天(P13,睁眼期)到 P28(啮齿动物视觉皮层可塑性的关键期峰值),初级视觉皮层(V1)内皮层间信号的时空模式发生了显著变化。直接刺激第 4 层(L4)时,在所有年龄段,活动都会扩散到 L2/3 和 L5。然而,从睁眼期到关键期峰值,电压信号的幅度和持续时间降低,峰值激活更快,层间增益随年龄增长而增加。在分析的整个时间窗口内,层内激活的横向扩散保持不变。皮层内回路激活的时空模式的这些发育变化是由兴奋性和抑制性突触成分的差异介导的。我们的研究结果表明,在睁眼后,V1 中的回路通过一系列改变进行精细化,这些改变塑造了回路激活的时空模式。通过层间增益的发育调节变化,信号在层间的传播效率更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b7d/3539829/cf13ef5b2d30/fncel-06-00065-g0001.jpg

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