Department of Molecular Physiology, Kyushu University Graduate School of Medical Sciences, Maidashi, Higashi-Ku, Fukuoka, Japan.
CREST, Japan Science and Technology Agency, Kawaguchi, Saitama, Japan.
Nat Neurosci. 2015 Dec;18(12):1780-8. doi: 10.1038/nn.4155. Epub 2015 Nov 2.
Neuronal activity is important for the functional refinement of neuronal circuits in the early visual system. At the level of the cerebral cortex, however, it is still unknown whether the formation of fundamental functions such as orientation selectivity depends on neuronal activity, as it has been difficult to suppress activity throughout development. Using genetic silencing of cortical activity starting before the formation of orientation selectivity, we found that the orientation selectivity of neurons in the mouse visual cortex formed and matured normally despite a strong suppression of both spontaneous and visually evoked activity throughout development. After the orientation selectivity formed, the distribution of the preferred orientations of neurons was reorganized. We found that this process required spontaneous activity, but not visually evoked activity. Thus, the initial formation and maturation of orientation selectivity is largely independent of neuronal activity, and the initial selectivity is subsequently modified depending on neuronal activity.
神经元活动对于早期视觉系统中神经元回路的功能细化很重要。然而,在大脑皮层水平上,由于难以在整个发育过程中抑制活动,因此尚不清楚诸如方向选择性等基本功能的形成是否取决于神经元活动。使用在方向选择性形成之前开始的皮质活动的遗传沉默,我们发现尽管在整个发育过程中强烈抑制了自发和视觉诱发的活动,但小鼠视觉皮层神经元的方向选择性仍正常形成和成熟。在方向选择性形成后,神经元的优势取向分布被重新组织。我们发现,这个过程需要自发活动,但不需要视觉诱发的活动。因此,方向选择性的初始形成和成熟在很大程度上独立于神经元活动,并且初始选择性随后根据神经元活动进行修改。