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Strengthening of lateral activation in adult rat visual cortex after retinal lesions captured with voltage-sensitive dye imaging in vivo

机译:体内电压敏感染料成像捕获视网膜损伤后成年大鼠视皮层的侧向激活的增强

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摘要

Sensory deprivation caused by peripheral injury can trigger functional cortical reorganization across the initially silenced cortical area. It is proposed that intracortical connectivity enables recovery of function within such a lesion projection zone (LPZ), thus substituting lost subcortical input. Here, we investigated retinal lesion-induced changes in the function of lateral connections in the primary visual cortex of the adult rat. Using voltage-sensitive dye recordings, we visualized in millisecond-time resolution spreading synaptic activity across the LPZ. Shortly after lesion, the majority of neurons within the LPZ were subthresholdly activated by delayed propagation of activity that originated from unaffected cortical regions. With longer recovery time, latencies within the LPZ gradually decreased, and activation reached suprathreshold levels. Targeted electrode recordings confirmed that receptive fields of intra-LPZ neurons were displaced to the retinal lesion border while displaying normal orientation and direction selectivity. These results corroborate the view that cortical horizontal connections have a central role in functional reorganization, as revealed here by progressive facilitation of synaptic activity and the traveling wave of excitation that propagates horizontally into the deprived cortical region.
机译:由周围损伤引起的感觉剥夺可触发整个最初沉默的皮质区域的功能性皮质重组。提出皮质内连通性使得能够在这种病变投影区域(LPZ)内恢复功能,从而代替丢失的皮质下输入。在这里,我们调查了成年大鼠的初级视觉皮层中视网膜病变诱发的横向连接功能的变化。使用电压敏感的染料记录,我们以毫秒为单位的分辨率可视化了整个LPZ上分布的突触活动。病变后不久,LPZ内的大多数神经元被源自未受影响的皮层区域的活动延迟传播亚阈值激活。随着恢复时间的延长,LPZ内的延迟逐渐降低,激活达到阈值上限水平。有针对性的电极记录证实,LPZ内神经元的感受野转移到视网膜病变边界,同时显示正常的方向和方向选择性。这些结果证实了皮质水平连接在功能重组中起着中心作用的观点,正如这里通过逐步促进突触活动和水平传播到剥夺的皮质区域的激发行波所揭示的那样。

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