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首页> 外文期刊>BioMed research international >Visual Learning Alters the Spontaneous Activity of the Resting Human Brain: An fNIRS Study
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Visual Learning Alters the Spontaneous Activity of the Resting Human Brain: An fNIRS Study

机译:视觉学习改变了休息的人脑的自发活动:FNIRS研究

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Resting-state functional connectivity (RSFC) has been widely used to investigate spontaneous brain activity that exhibits correlated fluctuations. RSFC has been found to be changed along the developmental course and after learning. Here, we investigated whether and how visual learning modified the resting oxygenated hemoglobin (HbO) functional brain connectivity by using functional near-infrared spectroscopy (fNIRS). We demonstrate that after five days of training on an orientation discrimination task constrained to the right visual field, resting HbO functional connectivity and directed mutual interaction between high-level visual cortex and frontal/central areas involved in the top-down control were significantly modified. Moreover, these changes, which correlated with the degree of perceptual learning, were not limited to the trained left visual cortex. We conclude that the resting oxygenated hemoglobin functional connectivity could be used as a predictor of visual learning, supporting the involvement of high-level visual cortex and the involvement of frontal/central cortex during visual perceptual learning.
机译:休息状态功能连接(RSFC)已被广泛用于调查具有相关波动的自发性脑活动。已发现RSFC沿着发展课程和学习后改变。在这里,我们研究了通过使用功能近红外光谱(Fnirs)来调查视觉学习是否改性静止的含氧血红蛋白(HBO)功能脑连接。我们证明,在对正确的视野上受到约束的定向鉴别任务的五天训练后,显着修改了高级视觉皮层和课程中涉及的高级视觉皮层和中央区域之间的HBO功能连通性和定向相互互动。此外,这些改变与感知程度相关的变化不限于训练有素的左视觉皮质。我们得出结论,静止的含氧血红蛋白功能连接可以用作视觉学习的预测因子,支持高级视觉皮层的参与以及额外/中央皮质的参与在视觉感知学习期间。

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