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ERP P1-N1 changes associated with Vernier perceptual learning and its location specificity and transfer

机译:与Vernier知觉学习相关的ERP P1-N1变化及其位置特定性和转移

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Abstract Abstract: Abstract?? Our recent studies demonstrate that perceptual learning can transfer completely to untrained retinal locations upon proper training procedures, which suggests perceptual learning being a high-level learning process occurring beyond the retinotopic visual areas. We propose that whether learning is location specific depends on the functional connections between high-level learning and the sensory inputs corresponding to the untrained retinal locations. These inputs may be suppressed by intensive training and focused (spatial) attention on the trained location to obstruct learning transfer. Here we present event-related potential (ERP) evidence that Vernier perceptual learning and its transfer are associated with P1 reduction and N1 enhancement. However, location specificity is only associated with N1 suppression corresponding to the untrained retinal location. These results are consistent with our proposal that the blockage of top-down influences or functional connections and the inhibition of visual inputs corresponding to untrained locations may contribute to location specificity in perceptual learning.
机译:摘要摘要:摘要?我们最近的研究表明,通过适当的培训程序,知觉学习可以完全转移到未经训练的视网膜位置,这表明知觉学习是视网膜视力范围之外发生的高级学习过程。我们建议学习是否特定于位置取决于高级学习与对应于未经训练的视网膜位置的感觉输入之间的功能联系。这些输入可能会受到密集训练的抑制,并且将注意力(空间)集中在训练的位置上以阻碍学习转移。在这里,我们提供事件相关电位(ERP)的证据,表明游标知觉学习及其转移与P1减少和N1增强有关。但是,位置特异性仅与对应于未经训练的视网膜位置的N1抑制相关。这些结果与我们的建议一致,即自上而下的影响或功能连接的阻止以及与未经训练的位置相对应的视觉输入的抑制可能有助于感知学习中的位置特异性。

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