首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Visual experience sculpts whole-cortex spontaneous infraslow activity patterns through an Arc-dependent mechanism
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PNAS Plus: Visual experience sculpts whole-cortex spontaneous infraslow activity patterns through an Arc-dependent mechanism

机译:PNAS Plus:视觉体验通过依赖弧的机制雕刻出整个皮质自发的超慢活动模式

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摘要

Decades of work in experimental animals has established the importance of visual experience during critical periods for the development of normal sensory-evoked responses in the visual cortex. However, much less is known concerning the impact of early visual experience on the systems-level organization of spontaneous activity. Human resting-state fMRI has revealed that infraslow fluctuations in spontaneous activity are organized into stereotyped spatiotemporal patterns across the entire brain. Furthermore, the organization of spontaneous infraslow activity (ISA) is plastic in that it can be modulated by learning and experience, suggesting heightened sensitivity to change during critical periods. Here we used wide-field optical intrinsic signal imaging in mice to examine whole-cortex spontaneous ISA patterns. Using monocular or binocular visual deprivation, we examined the effects of critical period visual experience on the development of ISA correlation and latency patterns within and across cortical resting-state networks. Visual modification with monocular lid suturing reduced correlation between left and right cortices (homotopic correlation) within the visual network, but had little effect on internetwork correlation. In contrast, visual deprivation with binocular lid suturing resulted in increased visual homotopic correlation and increased anti-correlation between the visual network and several extravisual networks, suggesting cross-modal plasticity. These network-level changes were markedly attenuated in mice with genetic deletion of Arc, a gene known to be critical for activity-dependent synaptic plasticity. Taken together, our results suggest that critical period visual experience induces global changes in spontaneous ISA relationships, both within the visual network and across networks, through an Arc-dependent mechanism.
机译:在实验动物中进行了数十年的工作已经确立了在关键时期视觉体验对于视觉皮层中正常感觉诱发反应的发展的重要性。但是,关于早期视觉体验对自发活动的系统级别组织的影响知之甚少。人类静息状态的功能磁共振成像显示,自发活动的次弱波动被组织为整个大脑的刻板时空模式。此外,自发性超低速运动(ISA)的组织是可塑性的,因为它可以通过学习和经验进行调节,这表明在关键时期对变化的敏感性提高了。在这里,我们在小鼠中使用了广域光学固有信号成像来检查整个皮质自发ISA模式。使用单眼或双眼视觉剥夺,我们检查了关键时期视觉经验对皮层静止状态网络内部和之间的ISA相关性和潜伏期模式发展的影响。单眼睑缝合的视觉修饰减少了视觉网络内左右皮质之间的相关性(同位相关性),但对互联相关性影响很小。相比之下,双眼眼睑缝合剥夺视力导致视觉同位相关性增加,视觉网络与多个视觉外部网络之间的反相关性增加,这表明跨模态可塑性。这些网络水平的变化在具有Arc遗传缺失的小鼠中显着减弱,Arc是已知对活动依赖的突触可塑性至关重要的基因。综上所述,我们的结果表明,关键时期的视觉体验会通过依赖弧的机制在视觉网络内部和整个网络中引发自发ISA关系的全局变化。

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