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Function and Structure of Human Left Fusiform Cortex Are Closely Associated with Perceptual Learning of Faces

机译:人左梭形皮质的功能和结构与面部知觉学习紧密相关

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Training can lead to long-lasting improvement in our perceptual ability, which is referred to as perceptual learning. Unraveling its neural mechanisms has proved difficult. With functional and structural magnetic resonance imaging (MRI), we addressed this issue by searching for the neural correlates of perceptual learning of face views over a long time course. Human subjects were trained to perform a face view discrimination task. Their behavioral performance and MRI signals were measured before, immediately after, and 1 month after training. We found that, across individual subjects, their behavioral learning effects correlated with the stability improvement of spatial activity pattern in the left fusiform cortex immediately after and 1 month after training. We also found that the thickness of the left fusiform cortex before training could predict subjects' behavioral learning effects. These findings, for the first time, not only suggest that, remarkably, the improved pattern stability contributes to the long-term mechanisms of perceptual learning, but also provide strong and converging evidence for the pivotal role of the left fusiform cortex in adaptive face processing.
机译:训练可以导致我们的知觉能力得到持久的改善,这被称为知觉学习。弄清其神经机制已被证明是困难的。借助功能和结构磁共振成像(MRI),我们通过在很长的过程中搜索面部视图的感知学习的神经相关性来解决此问题。对人类受试者进行了面部表情识别训练。在训练前,训练后和训练后1个月测量他们的行为表现和MRI信号。我们发现,在个体受试者中,他们的行为学习效果与训练后立即和训练后1个月左梭形皮层空间活动模式的稳定性改善相关。我们还发现训练前左梭形皮质的厚度可以预测受试者的行为学习效果。这些发现首次不仅表明,模式稳定性的改善有助于知觉学习的长期机制,而且还为左梭形皮层在适应性面部处理中的关键作用提供了强有力的和渐进的证据。 。

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