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Differential Neuronal Representation of Spatial Attention Dependent on Relative Target Locations during Multiple Object Tracking

机译:多目标跟踪过程中取决于相对目标位置的空间注意力的差分神经元表示

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摘要

Humans can simultaneously track multiple moving objects with attention. The number of objects that can be tracked is known to be larger when visual stimuli are presented bilaterally rather than presented unilaterally. To elucidate the underlying neuronal mechanism, we trained monkeys to covertly track a single or multiple object(s). We found that neurons in the lateral prefrontal cortex exhibited greater activity for the target passing through the receptive field (RF) than for distractors. During multiple-object tracking, response enhancement for one target presented in the RF was stronger when the other target was located in the opposite than the same visual hemifield. Because the neuronal modulation did not differ depending on relative target locations with respect to upper and lower visual hemifields, the distance between the targets does not explain the results. We propose that inherent, anatomical separation of visual processing for contralateral and ipsilateral visual fields might constrain cognitive capacity.
机译:人类可以同时跟踪多个运动物体。当视觉刺激是双向显示而不是单侧显示时,可以跟踪的对象数量已知更多。为了阐明潜在的神经元机制,我们训练了猴子秘密地跟踪单个或多个物体。我们发现外侧前额叶皮层中的神经元对目标通过感受野(RF)的作用大于对干扰物的作用。在多目标跟踪中,当另一个目标位于同一视觉半场的对面时,RF中一个目标的响应增强会更强。由于神经元的调制没有根据相对目标位置相对于上部和下部视觉半场的不同而不同,因此目标之间的距离不能解释结果。我们建议对侧和同侧视野的视觉处理的固有的解剖分离可能会限制认知能力。

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