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Neural Circuits: Electrical stimulation of superior colliculus affects strabismus angle in monkey models for strabismus

机译:神经回路:上丘的电刺激会影响斜视猴子模型中的斜视角

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摘要

Disruption of binocular vision during the critical period for development leads to eye misalignment in humans and in monkey models. We have previously suggested that disruption within a vergence circuit could be the neural basis for strabismus. Electrical stimulation in the rostral superior colliculus (rSC) leads to vergence eye movements in normal monkeys. Therefore, the purpose of this study was to investigate the effect of SC stimulation on eye misalignment in strabismic monkeys. Electrical stimulation was delivered to 51 sites in the intermediate and deep layers of the SC (400 Hz, 0.5-s duration, 10–40 μA) in 3 adult optical prism-reared strabismic monkeys. Scleral search coils were used to measure movements of both eyes during a fixation task. Staircase saccades with horizontal and vertical components were elicited by stimulation as predicted from the SC topographic map. Electrical stimulation also resulted in significant changes in horizontal strabismus angle, i.e., a shift toward exotropia/esotropia depending on stimulation site. Electrically evoked saccade vector amplitude in the two eyes was not significantly different (P > 0.05; paired t-test) but saccade direction differed. However, saccade disconjugacy accounted for only ~50% of the change in horizontal misalignment while disconjugate postsaccadic movements accounted for the other ~50% of the change in misalignment due to electrical stimulation. In summary, our data suggest that electrical stimulation of the SC of strabismic monkeys produces a change in horizontal eye alignment that is due to a combination of disconjugate saccadic eye movements and disconjugate postsaccadic movements.>NEW & NOTEWORTHY Electrical stimulation of the superior colliculus in strabismic monkeys results in a change in eye misalignment. These data support the notion of developmental disruption of vergence circuits leading to maintenance of eye misalignment in strabismus.
机译:在发育的关键时期,双目视觉的破坏会导致人类和猴子模型中的眼睛错位。先前我们曾提出,发散电路内的破坏可能是斜视的神经基础。眼部上丘(rSC)中的电刺激导致正常猴子的眼球运动趋于集中。因此,本研究的目的是研究斜视刺激对斜视猴子眼睛错位的影响。在3只成年光学棱镜饲养的斜视猴子中,电刺激被传递至SC中间层和深层的51个部位(400 Hz,持续时间0.5s,10–40μA)。巩膜搜索线圈用于在固定任务期间测量两只眼睛的运动。如SC地形图所预测的那样,通过刺激引起具有水平和垂直分量的楼梯扫视。电刺激还导致水平斜视角发生显着变化,即,根据刺激部位向外斜视/内斜视转变。两只眼睛的电诱发的扫视向量幅度没有显着差异(P> 0.05;成对t检验),但扫视方向不同。但是,扫视脱节仅占水平未对准变化的〜50%,而解脱后脚手架运动则占电刺激引起的未对准变化的另50%。总而言之,我们的数据表明,对斜视猴子的SC的电刺激会导致水平眼的排列发生变化,这是由于散乱的眼球运动和散乱的后眼球运动的结合所致。> NEW&NOTEWORTHY 斜视猴中的上丘的成眼导致眼睛错位的改变。这些数据支持了发散电路的发展性破坏的概念,从而导致了斜视眼的错位的维持。

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