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Structural and Functional Connectivity Changes Beyond Visual Cortex in a Later Phase of Visual Perceptual Learning

机译:在视觉感知学习的后期,结构和功能的连接性变化超出视觉皮质。

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The neural mechanisms of visual perceptual learning (VPL) remain unclear. Previously we found that activation in the primary visual cortex (V1) increased in the early encoding phase of training, but returned to baseline levels in the later retention phase. To examine neural changes during the retention phase, we measured structural and functional connectivity changes using MRI. After weeks of training on a texture discrimination task, the fractional anisotropy of the inferior longitudinal fasciculus, a major tract connecting visual and anterior areas, was increased, as well as the functional connectivity between V1 and anterior regions mediated by the ILF. These changes were strongly correlated with behavioral performance improvements. These results suggest a two-phase model of VPL in which localized functional changes in V1 in the encoding phase of training are followed by changes in both structural and functional connectivity in ventral visual processing, perhaps leading to the long-term stabilization of VPL.
机译:视觉知觉学习(VPL)的神经机制仍不清楚。以前,我们发现在训练的早期编码阶段,初级视觉皮层(V1)的激活增加,但在后期的保留阶段,恢复到基线水平。为了检查保留阶段的神经变化,我们使用MRI测量了结构和功能连接性变化。经过数周的纹理识别任务训练后,下纵筋膜(连接视觉和前部区域的主要管道)的分数各向异性以及由ILF介导的V1和前部区域之间的功能连接性均增加了。这些变化与行为表现的改善密切相关。这些结果提示了VPL的两阶段模型,其中在训练的编码阶段V1的局部功能变化之后,在腹侧视觉处理中的结构和功能连接性均发生变化,这可能导致VPL的长期稳定。

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