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Adaptation of spontaneous activity in the developing visual cortex

机译:改编在显影视觉皮层中的自发活动

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摘要

Spontaneous activity drives the establishment of appropriate connectivity in different circuits during brain development. In the mouse primary visual cortex, two distinct patterns of spontaneous activity occur before vision onset: local low-synchronicity events originating in the retina and global high-synchronicity events originating in the cortex. We sought to determine the contribution of these activity patterns to jointly organize network connectivity through different activity-dependent plasticity rules. We postulated that local events shape cortical input selectivity and topography, while global events homeostatically regulate connection strength. However, to generate robust selectivity, we found that global events should adapt their amplitude to the history of preceding cortical activation. We confirmed this prediction by analyzing in vivo spontaneous cortical activity. The predicted adaptation leads to the sparsification of spontaneous activity on a slower timescale during development, demonstrating the remarkable capacity of the developing sensory cortex to acquire sensitivity to visual inputs after eye-opening.
机译:自发活动在脑发展过程中驱动了不同电路中的适当连接的建立。在小鼠初级视觉皮层中,在视觉发作前发生了两个不同的自发活动模式:源于视网膜的局部低同步性事件和源自皮质的全球高同步性事件。我们试图通过不同的活动依赖的可塑性规则确定这些活动模式的贡献,共同组织网络连接。我们假设本地事件形状塑造皮质输入选择性和地形,而全局活动友好地调节连接强度。然而,为了产生强大的选择性,我们发现全局事件应调整其幅度与先前皮质激活的历史。我们通过体内自发皮质活动分析来确认这一预测。预测的适应导致在开发期间较慢的时间尺度的自发活动的稀疏性,展示了显影感官皮质的显着容量,以在醒目时获得对视觉输入的敏感性。

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