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Radial bias for orientation and direction of motion modulates access to visual awareness during continuous flash suppression

机译:方向和运动方向的径向偏差可在连续闪光抑制期间调节对视觉感知的访问

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Two types of radial bias have been demonstrated in the primate visual cortex: for orientation and for direction of motion. Considering that a visual neuron's directional selectivity is generally perpendicular to its preferred orientation, it is counterintuitive that radial biases for orientation and direction of motion coexist in retinotopic cortex including primary visual cortex. The current study measured the influence of radial bias for orientation and direction of motion on the access to visual awareness during continuous flash suppression. Strength of static and moving target stimuli, inferred by time to breakup of suppression, was modulated by the orientation and motion direction of the suppressed target stimulus according to its spatial location, indicating radial biases for both orientation and motion direction. However, orientation dominated over direction of motion when they were perpendicular to each other. These results indicate that, first, orientation-specific neural responses may be stronger than direction-specific neural responses at the stage of visual processing where interocular suppression is resolved. Second, the preferential processing of both orientation and direction of motion may result from anisotropic distribution of orientation- and direction-selective cells. Third, the neural substrate of the radial direction bias may reflect an orientation-specific neural response induced by fast-moving random dot patterns.
机译:在灵长类动物的视觉皮层中已经证明了两种类型的径向偏斜:用于定向和用于运动的方向。考虑到视觉神经元的方向选择性通常垂直于其首选方向,因此与直觉相反的是,视网膜方向皮层(包括初级视觉皮层)同时存在着用于运动方向和运动方向的径向偏差。当前的研究测量了在连续闪光抑制过程中,径向偏向对运动的方向和方向对获得视觉意识的影响。静态和移动目标刺激的强度(根据时间推断抑制的分解程度)由抑制的目标刺激的方向和运动方向(根据其空间位置)进行调制,指示方向和运动方向的径向偏差。但是,当它们彼此垂直时,方向在运动方向上占主导地位。这些结果表明,首先,在解决了眼内压抑的视觉处理阶段,特定于方向的神经反应可能比特定于方向的神经反应强。第二,运动方向和方向的优先处理可能是由于方向和方向选择单元的各向异性分布所致。第三,径向偏向的神经基质可以反映由快速移动的随机点图案引起的特定于方向的神经反应。

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