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Neural Control of Divergence Eye Movements

机译:神经控制发散眼动

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摘要

One of the most sophisticated motor systems is the oculomotor system. Viewing objects in depth is supported by vergence eye movements which controls the inward (convergence) and outward (divergence) turning of the eyes. There are two main aims to this study. One compares converging responses (stimuli approaching the subject) to diverging responses (stimuli moving away from the subject) from 6°/s ramp stimuli. Results show that similar to convergence, divergence may be governed by a two- component control system consisting of a transient and sustained component. However, the dynamics of divergence shows a dependency on initial stimulus position which is not apparent for convergent responses. Next this research quantified divergence movements stimulated by 10, 6, 4, and 27s ramp stimuli. Results show that for fast moving divergent responses, high-velocity components were present lending further evidence that a transient component similar in form and function to that found in convergence also exists for divergence. Responses to slow moving responses exhibit smoother tracking where the dynamics of the movement were more uniform throughout the range of the visual field. This implies that the transient component is more prominent in faster responses thus showing a strong dependency on initial stimulus position whereas with slower moving responses, the transient component did not dominant the movement leading to more homogeneous dynamic responses where a dependency on initial stimulus position was not as apparent.
机译:动眼系统是最复杂的运动系统之一。观察眼睛的深度由发散眼球运动所支撑,该运动控制着眼睛向内(会聚)和向外(发散)的转动。这项研究有两个主要目的。人们将收敛的响应(接近受试者的刺激)与从6°/ s的斜坡刺激产生的发散的响应(远离受试者的刺激)进行比较。结果表明,与收敛相似,发散可以由包含瞬态和持续分量的两分量控制系统控制。然而,发散的动态显示出对初始刺激位置的依赖性,这对于收敛反应而言并不明显。接下来,这项研究量化了由10、6、4和27s斜坡刺激刺激的发散运动。结果表明,对于快速移动的发散响应,存在高速分量,这提供了进一步的证据,即在形式和功能上与收敛中发现的瞬态分量相似的瞬态分量也存在发散。对慢速运动响应的响应表现出更平滑的跟踪,其中在整个视野范围内,运动的动力学更加均匀。这意味着瞬态分量在较快的响应中更加突出,从而表现出对初始刺激位置的强烈依赖性,而在较慢的移动响应中,瞬态分量不占主导地位,从而导致更均匀的动态响应,而对初始刺激位置的依赖性却不明显。显而易见。

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