Karmarkar Uma R, Dan Yang
Division of Neurobiology, Department of Molecular and Cell Biology and Helen Wills Neuroscience Institute, University of California, Berkeley, California 94720, USA.
Neuron. 2006 Nov 22;52(4):577-85. doi: 10.1016/j.neuron.2006.11.001.
Experience-dependent plasticity is a prominent feature of the mammalian visual cortex. Although such neural changes are most evident during development, adult cortical circuits can be modified by a variety of manipulations, such as perceptual learning and visual deprivation. Elucidating the underlying mechanisms at the cellular and synaptic levels is an essential step in understanding neural plasticity in the mature animal. Although developmental and adult plasticity share many common features, notable differences may be attributed to developmental cortical changes at multiple levels. These range from shifts in the molecular profiles of cortical neurons to changes in the spatiotemporal dynamics of network activity. In this review, we will discuss recent progress and remaining challenges in understanding adult visual plasticity, focusing on the primary visual cortex.
经验依赖性可塑性是哺乳动物视觉皮层的一个显著特征。尽管这种神经变化在发育过程中最为明显,但成年皮层回路可以通过各种操作进行改变,如知觉学习和视觉剥夺。在细胞和突触水平阐明其潜在机制是理解成熟动物神经可塑性的关键一步。虽然发育可塑性和成年可塑性有许多共同特征,但显著差异可能归因于多个层面的发育皮层变化。这些变化范围从皮层神经元分子特征的转变到网络活动时空动态的变化。在这篇综述中,我们将讨论在理解成年视觉可塑性方面的最新进展和 remaining challenges,重点关注初级视觉皮层。 (注:原文中“remaining challenges”未翻译完整,可能是输入有误,这里按字面保留。)