首页> 外文期刊>Journal of Neurophysiology >Perceptual learning of spatial localization: specificity for orientation, position, and context.
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Perceptual learning of spatial localization: specificity for orientation, position, and context.

机译:空间定位的感知学习:方向,位置和环境的特异性。

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Discrimination of simple visual attributes can improve significantly with practice. We have trained human observers to perform peripherally presented tasks involving the localization of short line segments and examined the specificity of the learning for the visual location, orientation, and geometric arrangement of the trained stimulus. Several weeks of training resulted in dramatic threshold reductions. The learning was specific for the orientation and location of the trained stimulus, indicating the involvement of the earliest cortical stages in the visual pathway where the orientation and location of stimuli are mapped with highest resolution. Furthermore, improvement was also specific for both the configuration of the trained stimulus and the attribute of the stimulus that was under scrutiny during training. This degree of specificity suggests that the learning cannot be achieved by cortical recruitment alone, as proposed in current models, but is likely to involve a refinement of lateral interactions within the cortex and possibly a gating of lower level changes by attentional mechanisms.
机译:通过实践,对简单视觉属性的区分可以显着改善。我们已经培训了人类观察者以执行在外围呈现的任务,其中包括短线段的定位,并研究了受训刺激的视觉位置,方向和几何排列的学习特异性。数周的培训导致门槛值显着降低。该学习特定于受训刺激的方向和位置,表明最早的皮质阶段参与了视觉路径,其中以最高的分辨率绘制了刺激的方向和位置。此外,对于训练后的刺激的配置和在训练过程中要仔细研究的刺激的属性,改进也都是特定的。这种特异性程度表明,不能像当前模型中所建议的那样,仅靠皮质募集来完成学习,而是可能涉及改善皮质内的横向相互作用,并可能通过注意机制控制较低水平的变化。

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