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The direction after-effect is a global motion phenomenon

机译:方向后效应是整体运动现象

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摘要

Prior experience influences visual perception. For example, extended viewing of a moving stimulus results in the misperception of a subsequent stimulus's motion direction—the direction after-effect (DAE). There has been an ongoing debate regarding the locus of the neural mechanisms underlying the DAE. We know the mechanisms are cortical, but there is uncertainty about where in the visual cortex they are located—at relatively early local motion processing stages, or at later global motion stages. We used a unikinetic plaid as an adapting stimulus, then measured the DAE experienced with a drifting random dot test stimulus. A unikinetic plaid comprises a static grating superimposed on a drifting grating of a different orientation. Observers cannot see the true motion direction of the moving component; instead they see pattern motion running parallel to the static component. The pattern motion of unikinetic plaids is encoded at the global processing level—specifically, in cortical areas MT and MST—and the local motion component is encoded earlier. We measured the direction after-effect as a function of the plaid's local and pattern motion directions. The DAE was induced by the plaid's pattern motion, but not by its component motion. This points to the neural mechanisms underlying the DAE being located at the global motion processing level, and no earlier than area MT.
机译:先前的经验会影响视觉感知。例如,对运动刺激的长时间观察会导致对随后刺激的运动方向-后效应方向(DAE)的误解。关于DAE背后的神经机制的所在地一直存在争论。我们知道这些机制是皮质的,但是对于它们在视觉皮层中的位置尚不确定(在相对较早的局部运动处理阶段或在较晚的全局运动阶段)。我们使用单运动格子作为适应性刺激,然后通过漂移随机点测试刺激来测量DAE的体验。单向运动的格子包括叠加在不同方向的漂移光栅上的静态光栅。观察者无法看到运动组件的真实运动方向;相反,他们看到模式运动与静态分量平行。在整体处理级别上(特别是在皮层区域MT和MST中),对单向运动的格纹的运动进行编码,并且较早地对局部运动分量进行编码。我们根据格子的局部和图案运动方向测量了方向后效应。 DAE是由格子的图案运动引起的,而不是由其组件运动引起的。这表明DAE的神经机制位于全局运动处理级别,且不早于MT区域。

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