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Further evidence for selective difficulty of upward eye pursuit in juvenile monkeys: effects of optokinetic stimulation, static roll tilt, and active head movements

机译:幼猴向上眼选择性选择性困难的进一步证据:光动力刺激,静态侧倾倾斜和主动头部运动的影响

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摘要

The smooth-pursuit system moves the eyes in space accurately to track slowly moving objects of interest despite visual inputs from the moving background and/or vestibular inputs during head movements. Recently, our laboratory has shown that young primates exhibit asymmetric eye movements during vertical pursuit across a textured background; upward eye velocity gain is reduced. To further understand the nature of this asymmetry, we performed three series of experiments in young monkeys. In Experiment 1, we examined whether this asymmetry was due to an un-compensated downward optokinetic reflex induced by the textured background as it moves across the retina in the opposite direction of the pursuit eye movements. For this, we examined the monkeys’ ability to fixate a stationary spot in space during movement of the textured background and compared it with vertical pursuit across the stationary textured background. We also examined gains of optokinetic eye movements induced by downward motion of the textured background during upward pursuit. In both task conditions, gains of downward eye velocity induced by the textured background were too small to explain reduced upward eye velocity gains. In Experiment 2, we examined whether the frame of reference for low-velocity, upward pursuit was orbital or earth vertical. To test this, we first applied static tilt in the roll plane until the animals were nearly positioned on their side in order to dissociate vertical or horizontal eye movements in the orbit from those in space. Deficits were observed for upward pursuit in the orbit but not in space. In Experiment 3, we tested whether asymmetry was observed during head-free pursuit that requires coordination between eye and head movements. Asymmetry in vertical eye velocity gains was still observed during head-free pursuit although it was not observed in vertical head velocity. These results, taken together, suggest that the asymmetric eye movements during vertical pursuit are specific for upward, primarily eye pursuit in the orbit.
机译:平滑追踪系统可准确地在空间中移动眼睛,以跟踪感兴趣的缓慢移动的对象,而不管头部运动期间来自运动背景和/或前庭输入的视觉输入如何。最近,我们的实验室表明,在整个带纹理的背景下进行垂直追赶时,幼小灵长类动物的眼球运动都不对称。向上的眼球速度增益降低。为了进一步了解这种不对称的性质,我们在幼猴中进行了三个系列的实验。在实验1中,我们检查了这种不对称性是否是由于纹理背景在与追随眼睛运动的方向相反的方向跨视网膜移动时由纹理背景引起的向下补偿的向下视动反射。为此,我们研究了猴子在带纹理的背景运动期间将固定的固定点固定在空间中的能力,并将其与整个固定的带纹理的背景上的垂直追踪进行了比较。我们还检查了向上追踪过程中带纹理的背景的向下运动引起的视动眼运动。在两种任务条件下,带纹理的背景引起的向下眼速度的增益都太小,无法解释向上眼速度的增益降低。在实验2中,我们检查了低速,向上追踪的参考系是轨道还是地球垂直。为了测试这一点,我们首先在侧倾平面上施加静态倾斜,直到动物接近侧卧为止,以使轨道中的垂直或水平眼睛运动与太空中的眼睛运动无关。观察到赤字会在轨道上向上追击,但不会在太空中追击。在实验3中,我们测试了在需要眼睛和头部运动协调的无头追赶过程中是否观察到不对称现象。尽管没有在垂直头速度中观察到,但在无头追赶过程中仍观察到垂直眼速度增益的不对称。这些结果加在一起表明,垂直追踪过程中不对称的眼球运动是特定于向上的,主要是眼球在轨道上的运动。

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