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Computing visual motion in the short and the long: from receptive fields to neural networks

机译:短期和长期计算视觉运动:从接受场到神经网络

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Theoretical approaches to the study of perceptual phenomena of short-range and long-range apparent motion are discussed. Short-range motion is estimated by real-time receptive fields sensitive to velocities of image features. The design of these receptive fields follows from the concept of convected activation profiles, where shape-preserving activity waves are excited by, and ride atop, dynamic features. Long-range motion concerns the correspondence between features in disparate images, and the perceptual impletion of a path between these corresponding features. It is argued that this illusory motion is an artifact of a more general spatiotemporal grouping process. This process is realized in a dynamic nonlinear feedback neural network that is called a neural analog diffusion-enhancement layer (NADEL). Computations suggest that the NADEL can support a variety of long-range motion percepts popularized by the Gestalt psychologists. The authors illustrate (on videotape) both classes of computation in real time on the PIPE parallel computer.
机译:讨论了研究短程和长程视在运动的感知现象的理论方法。短程运动是通过对图像特征速度敏感的实时接受场来估计的。这些接受区域的设计遵循对流激活曲线的概念,其中,形状保持活动波被动态特征激发并位于其上。远距离运动涉及不同图像中的特征之间的对应关系,以及这些对应特征之间的路径的感知实现。有人认为,这种虚幻的运动是更普遍的时空分组过程的产物。这个过程是在称为神经模拟扩散增强层(NADEL)的动态非线性反馈神经网络中实现的。计算表明,NADEL可以支持格式塔心理学家所推广的各种远距离运动感知。作者(在录像带上)在PIPE并行计算机上实时演示了两种计算。

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