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The Postsaccadic Unreliability of Gain Fields Renders It Unlikely that the Motor System Can Use Them to Calculate Target Position in Space

机译:增益领域的后期不可靠性使电机系统不可能使用它们来计算空间中的目标位置

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摘要

Gain fields, the eye-position modulation of visual responses, are thought to provide a mechanism by which the motor system can accurately calculate target position in space despite a constantly moving eye. Current gain-field models assume that the modulation of visual responses by eye position is accurate at all times, even around the time of a saccade. Here, we show that for at least 150 ms after a saccade, gain fields in the lateral intraparietal area (LIP) are unreliable. The majority of LIP cells with steady-state gain fields reflect the presaccadic eye position. The remainder of the cells have responses that cannot be predicted by their steady-state gain fields. Nonetheless, a monkey's oculomotor performance is accurate during this time. These results suggest that current models built upon a simple gain-field algorithm cannot be used to calculate the position of a target in space that flashes briefly after a saccade. The brain is thought to use gain fields, eye-position modulation of visual responses, to calculate target position in space. Xu et al. show that after a saccade parietal gain fields are inaccurate, but the monkey's oculomotor performance is accurate.
机译:增益领域,视觉响应的眼睛位置调制被认为提供了尽管不断移动的眼睛尽管不断移动的机构可以准确地计算空间的目标位置。当前的增益场模型假设通过眼睛位置的视觉响应的调制始终准确,即使在扫视的时间周围也是如此。在这里,我们表明,在扫视后至少150毫秒,横向内部区域(唇)中的增益域是不可靠的。具有稳态增益场的大多数唇形细胞反映了PresAccadic眼位置。其余的细胞具有不能通过稳态增益领域无法预测的响应。尽管如此,在此期间,猴子的动声仪性能是准确的。这些结果表明,在简单的增益场算法基础上建立的当前模型不能用于计算扫视后短暂闪烁的空间中目标的位置。大脑被认为使用增益领域,视觉响应的眼位置调制,从而计算空间中的目标位置。徐等人。表明,在扫视前的增益田间不准确之后,但猴子的动力学性能是准确的。

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    《Neuron》 |2012年第6期|共9页
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  • 正文语种 eng
  • 中图分类 神经病学;
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