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Perceptual learning in motion discrimination that generalizesacross motion directions

机译:运动歧视中的知觉学习跨运动方向

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摘要

When human subjects discriminate motion directions of two visual stimuli, their discrimination improves with practice. This improved performance has been found to be specific to the practiced directions and does not transfer to new motion directions. Indeed, such stimulus-specific learning has become a trademark finding in almost all perceptual learning studies and has been used to infer the loci of learning in the brain. For example, learning in motion discrimination has been inferred to occur in the visual area MT (medial temporal cortex) of primates, where neurons are selectively tuned to motion directions. However, such motion discrimination task is extremely difficult, as is typical of most perceptual learning tasks. When the difficulty is moderately reduced, learning transfers to new motion directions. This result challenges the idea of using simple visual stimuli to infer the locus of learning in low-level visual processes and suggests that higher-level processing is essential even in “simple” perceptual learning tasks.
机译:当人类对象区分两个视觉刺激的运动方向时,他们的区分随着实践而提高。已经发现,这种改进的性能是特定于实践方向的,并且不会转移到新的运动方向。实际上,这种刺激特定的学习已成为几乎所有感知学习研究中的标志性发现,并已被用于推断大脑中学习的场所。例如,已经推断出运动辨别中的学习发生在灵长类动物的视觉区域MT(中间颞叶皮层)中,在该区域中神经元被选择性地调整到运动方向。但是,这种运动辨别任务非常困难,这是大多数感知学习任务的典型特征。当难度适当降低时,学习将转移到新的运动方向。这个结果挑战了使用简单视觉刺激来推断低层视觉过程中学习场所的想法,并且表明即使在“简单”的感知学习任务中,高层处理也是必不可少的。

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