空间和时间的整合导致同时感知深度和运动-感知物体在细缝后面移动

M. Ogiya, K. Sakai, Y. Hirai
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引用次数: 0

摘要

我们研究了视觉系统如何从空间和时间的整合中确定3D深度,特别是时空双目视差。我们进行了心理物理实验,以研究双眼视差是否能提供物体在一条细缝后移动的正确3D深度,细缝控制着视觉系统可获得的信息的类型和数量。结果表明:(1)对应图像中的Wheatstone立体能给出正确的深度;(2)静止非对应图像中的Da Vinci立体不能给出正确的深度判断;(3)两幅图像之间的时间延迟对大范围非对应图像给出了正确的深度判断。研究结果揭示了大脑皮层同时处理时空信息的机制;推测这两者在神经系统中是不可分割的。
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Integration of space and time leading to the simultaneous perception of depth and motion - perception of objects moving behind a thin slit
We investigated how the visual system determines 3D depth from the integration of space and time, specifically spatial and temporal binocular disparity. We carried out psychophysical experiments to investigate whether the binocular disparity gives correct 3D depth of objects moving behind a thin slit that controls the type and amount of information available to the visual system. The results indicate that: (1) Wheatstone stereo in corresponding images gives correct depth, (2) Da Vinci stereo in stationary non-corresponding images does not give correct depth judgment, and (3) the time delay between the two images gives correct depth for a wide range of noncorrespondence. The results suggest the cortical mechanism that processes simultaneously spatial and temporal information; presumably the two are inseparable in the neural system.
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