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Three-dimensional motion aftereffects reveal distinct direction-selective mechanisms for binocular processing of motion through depth

机译:三维运动后效应揭示了用于深度双目运动的独特方向选择机制

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摘要

Motion aftereffects are historically considered evidence for neuronal populations tuned to specific directions of motion. Despite a wealth of motion aftereffect studies investigating 2D (frontoparallel) motion mechanisms, there is a remarkable dearth of psychophysical evidence for neuronal populations selective for the direction of motion through depth (i.e., tuned to 3D motion). We compared the effects of prolonged viewing of unidirectional motion under dichoptic and monocular conditions and found large 3D motion aftereffects that could not be explained by simple inheritance of 2D monocular aftereffects. These results (1) demonstrate the existence of neurons tuned to 3D motion as distinct from monocular 2D mechanisms, (2) show that distinct 3D direction selectivity arises from both interocular velocity differences and changing disparities over time, and (3) provide a straightforward psychophysical tool for further probing 3D motion mechanisms.
机译:历史上,运动后效应被认为是神经元群体调整到特定运动方向的证据。尽管进行了大量关于2D(额平行)运动机制的运动后效应研究,但对于选择性地选择深度运动方向(即调整为3D运动)的神经元群体,仍然缺乏明显的心理物理学证据。我们比较了在两视和单眼条件下长时间观察单向运动的效果,发现无法通过简单继承2D单眼后遗症来解释的大型3D运动后遗症。这些结果(1)证明存在与3D运动不同的,与单眼2D机制不同的神经元;(2)表明不同的3D方向选择性来自眼速差异和随时间变化的视差,以及(3)提供了直接的心理物理方法进一步探测3D运动机制的工具。

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