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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Outputs of paired Gabor filters summed across the background frame of reference predict the direction of movement (vision)
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Outputs of paired Gabor filters summed across the background frame of reference predict the direction of movement (vision)

机译:配对的Gabor滤波器的输出在参考背景框架上求和,可预测运动方向(视觉)

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摘要

A cortical neural network that computes the visibility of shifts in the direction of movement is proposed. The network computes: (1) the magnitude of the position difference between the test and background patterns, (2) localized contrast differences at different spatial scales analyzed by computing temporal gradients of the difference and sum of the outputs of paired even- and odd-symmetric bandpass filters convolved with the input pattern, and (3) using global processes that pool the output from paired even- and odd-symmetric simple and complex cells across the spatial extent of the background frame of reference the direction a test pattern moved relative to a textured background. Evidence that magnocellular pathways are used to discriminate the direction of movement is presented. Since magnocellular pathways are used to discriminate the direction of movement, this task is not affected by small pattern changes such as jitter, short presentations, blurring, and different backgrounds contrasts that result when the veiling illumination in a scene changes.
机译:提出了一种皮质神经网络,该皮质神经网络计算运动方向上的位移的可见性。网络计算:(1)测试图案和背景图案之间位置差异的大小,(2)通过计算差异的时间梯度以及成对的偶数和奇数输出的和的时间梯度来分析不同空间尺度上的局部对比度差异对称带通滤波器与输入模式卷积,以及(3)使用全局过程,该过程将成对的偶数和奇数对称简单和复杂单元的输出跨过参考背景帧的空间范围,即测试模式相对于其移动的方向带纹理的背景。提供了使用巨细胞途径来区分运动方向的证据。由于大细胞通路用于区分运动方向,因此该任务不受小的图案变化(例如抖动,短暂的呈现,模糊)的影响,并且当场景中的遮蔽照明发生变化时会产生不同的背景对比度。

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