decoding reveals plasticity in v3a as a result of motion perceptual learning解码显示可塑性在v3a运动知觉学习的结果.pdfVIP
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decoding reveals plasticity in v3a as a result of motion perceptual learning解码显示可塑性在v3a运动知觉学习的结果
Decoding Reveals Plasticity in V3A as a Result of Motion Perceptual Learning 1 1 1 ´ ´ ˜ 2 3 Kazuhisa Shibata , Li-Hung Chang , Dongho Kim , Jose E. Nanez Sr , Yukiyasu Kamitani , Takeo Watanabe1*, Yuka Sasaki1 1 Department of Cognitive, Linguistic Psychological Sciences, Brown University, Providence, Rhode Island, United States of America, 2 Division of Social and Behavioral Science, Arizona State University, Phoenix, Arizona, United States of America, 3 Brain Information Communication Research Laboratory Group, Advanced Telecommunications Research Institutes International, Kyoto, Japan Abstract Visual perceptual learning (VPL) is defined as visual performance improvement after visual experiences. VPL is often highly specific for a visual feature presented during training. Such specificity is observed in behavioral tuning function changes with the highest improvement centered on the trained feature and was originally thought to be evidence for changes in the early visual system associated with VPL. However, results of neurophysiological studies have been highly controversial concerning whether the plasticity underlying VPL occurs within the visual cortex. The controversy may be partially due to the lack of observation of neural tuning function changes in multiple visual areas in association with VPL. Here using human subjects we systematically compared behavioral tuning function changes after global motion detection training with decoded tuning function changes for 8 visual areas using pattern classification analysis on functional magnetic resonance imaging (fMRI) signals. We found that the behavioral tuning function changes were extremely highly correlated to decoded tuning function changes only in V3A, which is know
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