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The Interaction of Pre-programmed Eye Movements With the Vestibulo-Ocular Reflex

机译:预编程的眼动与前庭眼反射的相互作用

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摘要

The Vestibulo-Ocular Reflex (VOR) works to stabilize gaze during unexpected head movements. However, even subjects who lack a VOR (e.g., vestibulopathic patients) can achieve gaze stability during planned head movements by using pre-programmed eye movements (PPEM). The extent to which PPEM are used by healthy intact subjects and how they interact with the VOR is still unclear. We propose a model of gaze stabilization which makes several claims: (1) the VOR provides ocular stability during unexpected (i.e., passive) head movements; (2) PPEM are used by both healthy and vestibulopathic subjects during planned (i.e., active) head movements; and (3) when a passive perturbation interrupts an active head movement in intact animals (i.e., combined passive and active head movement) the VOR works with PPEM to provide compensation. First, we show how our model can reconcile some seemingly conflicting findings in earlier literature. We then test the above-mentioned predictions against data we collected from both healthy and vestibular-lesioned guinea pigs. We found that (1) vestibular-lesioned animals showed a dramatic decrease in compensatory eye movements during passive head movements, (2) both populations showed improved ocular compensation during active vs. passive head movements, and (3) during combined active and passive head movements, eye movements compensated for both the active and passive component of head velocity. These results support our hypothesis that while the VOR provides compensation during passive head movements, PPEM are used by both intact and lesioned subjects during active movements and further, that PPEM work together with the VOR to achieve gaze stability.
机译:Vestibulo-Ocular Reflex(VOR)可以在意外的头部运动过程中稳定视线。但是,即使是缺乏VOR的受试者(例如前庭病变患者)也可以通过使用预先编程的眼动(PPEM)在计划的头部运动过程中实现注视稳定。健康完整受试者使用PPEM的程度以及它们如何与VOR相互作用仍不清楚。我们提出了一种凝视稳定模型,该模型提出了几个主张:(1)VOR在意外的(即,被动的)头部运动过程中提供了眼部稳定性; (2)在计划的(即主动的)头部运动过程中,健康者和前庭病变者都使用PPEM; (3)当被动扰动中断了完整动物的主动头部运动(即被动和主动头部运动的组合)时,VOR与PPEM一起提供补偿。首先,我们展示了我们的模型如何调和早期文献中一些看似矛盾的发现。然后,我们根据从健康和前庭病变的豚鼠收集的数据测试上述预测。我们发现(1)前庭病变动物在被动头部运动过程中的代偿性眼球运动显着减少;(2)两种种群在主动与被动头部运动过程中均表现出改善的眼部补偿;(3)在主动和被动头部运动过程中动作,眼睛的动作可以补偿头部速度的主动和被动分量。这些结果支持了我们的假设,即VOR在被动头部运动期间提供补偿,而完整运动和病变对象在主动运动期间均使用PPEM,并且PPEM与VOR共同实现凝视稳定性。

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