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Eye Proprioception Used for Visual Localization Only If in Conflict with the Oculomotor Plan

机译:仅在与动眼计划冲突的情况下将眼睛本体感受用于视觉定位

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摘要

Both the corollary discharge of the oculomotor command and eye muscle proprioception provide eye position information to the brain. Two contradictory models have been suggested about how these two sources contribute to visual localization: (1) only the efference copy is used whereas proprioception is a slow recalibrator of the forward model, and (2) both signals are used together as a weighted average. We had the opportunity to test these hypotheses in a patient (R.W.) with a circumscribed lesion of the right postcentral gyrus that overlapped the human eye proprioceptive representation. R.W. was as accurate and precise as the control group (n = 19) in locating a lit LED that she viewed through the eye contralateral to the lesion. However, when the task was preceded by a brief (<1 s), gentle push to the closed eye, which perturbed eye position and stimulated eye proprioceptors in the absence of a motor command, R.W.'s accuracy significantly decreased compared with both her own baseline and the healthy control group. The data suggest that in normal conditions, eye proprioception is not used for visual localization. Eye proprioception is, however, continuously monitored to be incorporated into the eye position estimate when a mismatch with the efference copy of the motor command is detected. Our result thus supports the first model and, furthermore, identifies the limits for its operation.
机译:动眼运动命令的推论放电和眼肌本体感受都向大脑提供眼位信息。关于这两个源如何促进视觉定位,已经提出了两个相互矛盾的模型:(1)仅使用效果复制,而本体感受是正向模型的慢速重新校准器,(2)两个信号一起用作加权平均值。我们有机会在患者(R.W.)患有右中后回的外接病变并与人眼本体感受表示重叠的患者中验证了这些假设。 R.W.与对照组(n = 19)一样准确,准确,可以找到她通过病灶对侧的眼睛看到的发光LED。但是,当任务前短暂(<1 s)轻轻推向闭合的眼睛时,在没有运动命令的情况下,这会干扰眼睛的位置并刺激眼睛的本体感受器,RW的准确性与她自己的准确性相比都大大降低了基线和健康对照组。数据表明,在正常情况下,眼睛本体感受不适用于视觉定位。但是,当检测到与电机命令的有效副本不匹配时,将连续监视眼睛的本体感觉,以将其合并到眼睛的位置估计中。因此,我们的结果支持了第一种模型,并且进一步确定了其运行的极限。

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