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Near- and Far-Surround Suppression in Human Motion Discrimination

机译:人体运动识别中的近距离和远距离抑制

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摘要

The spatial context has strong effects on visual processing. Psychophysics and modeling studies have provided evidence that the surround context can systematically modulate the perception of center stimuli. For motion direction, these center-surround interactions are considered to come from spatio-directional interactions between direction of motion tuned neurons, which are attributed to the middle temporal (MT) area. Here, we investigated through psychophysics experiments on human subjects changes with spatial separation in center-surround inhibition and motion direction interactions. Center-surround motion repulsion effects were measured under near-and far-surround conditions. Using a simple physiological model of the repulsion effect we extracted theoretical population parameters of surround inhibition strength and tuning widths with spatial distance. All 11 subjects showed clear motion repulsion effects under the near-surround condition, while only 10 subjects showed clear motion repulsion effects under the far-surround condition. The model predicted human performance well. Surround inhibition under the near-surround condition was significantly stronger than that under the far-surround condition, and the tuning widths were smaller under the near-surround condition. These results demonstrate that spatial separation can both modulate the surround inhibition strength and surround to center tuning width.
机译:空间上下文对视觉处理有很大影响。心理物理学和建模研究提供了证据,证明周围环境可以系统地调节对中心刺激的感知。对于运动方向,这些中心-周围交互作用被认为来自运动调整后的神经元方向之间的空间方向交互作用,这归因于中间颞叶(MT)区域。在这里,我们通过心理物理学实验研究了人体对象在中心-周围抑制和运动方向相互作用中的空间分隔变化。在近距离和远距离条件下测量中心-环绕运动的排斥效果。使用排斥作用的简单生理模型,我们提取了周围抑制强度和随空间距离调整宽度的理论种群参数。所有11位受试者在近场条件下均表现出明显的运动排斥作用,而只有10位受试者在远场条件下表现出明显的运动排斥作用。该模型很好地预测了人类的表现。在近环绕条件下的环绕抑制比在远环绕条件下的抑制明显更强,并且在近环绕条件下的调谐宽度更小。这些结果表明,空间分离既可以调节环绕声抑制强度,又可以调整环绕声到中心的调谐宽度。

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