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Visual Error Signals From the Pretectal Nucleus of the Optic Tract Guide Motor Learning for Smooth Pursuit

机译:视道前视核的视觉误差信号指导运动学习以实现顺畅的追踪

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摘要

Smooth pursuit (SP) eye movements are used to maintain the image of a moving object on or near the fovea. Visual motion signals aid in driving SP and are necessary for its adaptation. The sources of visual error signals that support SP adaptation are incompletely understood but could involve neurons in cortical and brain stem areas with direction selective visual motion responses. Here we focus on the pretectal nucleus of the optic tract (NOT), which encodes retinal error information during SP. The aim of this study was to characterize the role of the NOT in SP adaptation. SP adaptation is typically produced using a double step of velocity ramp (double-step paradigm), where target speed either increases or decreases 100 ms after the beginning of a trial. In our study, we delivered a brief (200 ms) train of microelectrical stimulation (ES) in the left NOT to introduce directional error signals at the point in time where a second target speed would appear in a double-step paradigm. The target was extinguished coincidentally with the onset of the ES train. Initial eye acceleration (1st 100 ms) showed significant increases after 100 trials, which included left NOT stimulation during ongoing pursuit in an ipsiversive (leftward) direction. In contrast, initial eye acceleration showed significant decreases after repeated left NOT stimulation during contraversive (rightward) SP. Control studies performed using the same periodicity of NOT stimulation as in the preceding text but without accompanying SP did not induce changes in eye acceleration. In contrast, ES of the NOT paired with active SP produced gradual changes in eye acceleration similar to that observed in double-step paradigm. Therefore our findings support the suggestion that the NOT is an important source of visual error information for guiding motor learning during horizontal SP.
机译:平滑追踪(SP)眼动可用于在中央凹上或附近保持活动物体的图像。视觉运动信号有助于驱动SP,并且是SP适应所必需的。支持SP适应的视觉错误信号的来源尚不完全清楚,但可能涉及皮质和脑干区域的神经元,并具有方向选择性的视觉运动响应。在这里,我们关注视神经束的前核(NOT),其在SP期间编码视网膜错误信息。这项研究的目的是表征NO在SP适应中的作用。 SP适应通常使用速度斜坡的双步(双步范式)来产生,在这种情况下,目标速度在试验开始后100毫秒会增加或减少。在我们的研究中,我们在左侧进行了一个简短的(200 ms)微电刺激(ES)训练,没有在双步范式中出现第二个目标速度的时间点引入方向性误差信号。目标是在ES列车开始时被扑灭的。在进行100次试验后,最初的眼部加速(第1个100毫秒)显示出明显的增加,其中包括在向着全向(向左)方向的持续追踪过程中左NOT刺激。相反,在相反的(向右)SP期间,反复的左NOT刺激后,初始眼加速度显示出明显的下降。使用与前文相同的NOT刺激周期进行的对照研究,但未伴有SP不会引起眼加速度的变化。相比之下,NOT的ES与主动SP配对产生的眼睛加速度逐渐变化,类似于在双步范例中观察到的。因此,我们的发现支持以下建议:“非”不是指导水平SP期间运动学习的视觉错误信息的重要来源。

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