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记录和操纵视觉皮层发育过程中神经元活动的体内相关结构。

Recording and manipulating the in vivo correlational structure of neuronal activity during visual cortical development.

作者信息

Weliky M

机构信息

Department of Brain and Cognitive Sciences, Meliora Hall, University of Rochester, Rochester, New York 14627, USA.

出版信息

J Neurobiol. 1999 Oct;41(1):25-32. doi: 10.1002/(sici)1097-4695(199910)41:1<25::aid-neu5>3.0.co;2-#.

Abstract

Many aspects of visual cortical functional architecture, such as orientation and ocular dominance columns, are present before animals have had any visual experience, indicating that the initial formation of cortical circuitry takes place without the influence of environmental cues. For this reason, it has been proposed that spontaneous activity within the developing visual pathway carries instructive information to guide the early establishment of cortical circuits. Recently developed recording and stimulation techniques are revealing new information about the in vivo organization of this spontaneous activity and its contribution to cortical development. Multielectrode recordings in the developing lateral geniculate nucleus (LGN) of ferrets demonstrate that retinal spontaneous activity is not simply relayed to the visual cortex, but is reshaped and transformed by a variety of mechanisms including cortical feedback and endogenous oscillatory activity. The resulting patterns are consistent with many of the predictions of correlation-based models of cortical development. In addition, the introduction of artificially correlated activity into the visual pathway disrupts some but not all aspects of orientation tuning development. Thus, while these results support an instructive role of spontaneous activity in shaping cortical development, there still appears to be a number of aspects of this process that cannot be accounted for by activity alone.

摘要

视觉皮层功能结构的许多方面,如方位柱和眼优势柱,在动物有任何视觉经验之前就已存在,这表明皮层回路的初始形成是在没有环境线索影响的情况下发生的。因此,有人提出,发育中的视觉通路内的自发活动携带指导性信息,以引导皮层回路的早期建立。最近开发的记录和刺激技术正在揭示有关这种自发活动的体内组织及其对皮层发育贡献的新信息。在雪貂发育中的外侧膝状体核(LGN)进行的多电极记录表明,视网膜自发活动并非简单地传递到视觉皮层,而是通过包括皮层反馈和内源性振荡活动在内的多种机制进行重塑和转换。由此产生的模式与基于相关性的皮层发育模型的许多预测一致。此外,将人工相关活动引入视觉通路会破坏方位调谐发育的一些但不是所有方面。因此,虽然这些结果支持自发活动在塑造皮层发育中的指导性作用,但这个过程的许多方面似乎仍然不能仅由活动来解释。

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