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Neural systems underlying learning and representation of global motion

机译:学习和代表全局运动的神经系统

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摘要

We demonstrate performance-related changes in cortical and cerebellar activity. The largest learning-dependent changes were observed in the anterior lateral cerebellum, where the extent and intensity of activation correlated inversely with psychophysical performance. After learning had occurred (a few minutes), the cerebellar activation almost disappeared; however, it was restored when the subjects were presented with a novel, untrained direction of motion for which psychophysical performance also reverted to chance level. Similar reductions in the extent and intensity of brain activations in relation to learning occurred in the superior colliculus, anterior cingulate, and parts of the extrastriate cortex. The motion direction-sensitive middle temporal visual complex was a notable exception, where there was an expansion of the cortical territory activated by the trained stimulus. Together, these results indicate that the learning and representation of visual motion discrimination are mediated by different, but probably interacting, neuronal subsystems.
机译:我们表现​​出皮质和小脑活动与性能相关的变化。在小脑前外侧观察到最大的学习依赖性变化,其中激活的程度和强度与心理物理表现成反比。学习发生(几分钟)后,小脑激活几乎消失了。但是,当为受试者提供新颖,未经训练的运动方向时,心理物理表现也恢复到偶然水平,因此恢复了原来的状态。与上学习有关的大脑激活程度和强度的类似降低发生在上丘,前扣带回和部分上皮皮质。运动方向敏感的中颞视觉复合体是一个明显的例外,其中受训练的刺激激活了皮质区域的扩展。在一起,这些结果表明视觉运动辨别的学习和表示是由不同但可能相互作用的神经元子系统介导的。

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