首页> 外文期刊>Vision Research: An International Journal in Visual Science >Divergence eye movements are dependent on initial stimulus position.
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Divergence eye movements are dependent on initial stimulus position.

机译:发散的眼球运动取决于初始刺激位置。

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摘要

Previous studies on the speed and latency of convergence and divergence eye movements have produced varied, sometimes contradictory, results. Four subjects were studied and tracked 4 degrees disparity step changes for convergence and divergence at different initial target positions. Here we report that the dynamics of divergence movements not only differ from convergence movement, but depend on the initial vergence position. Velocities of divergence eye movements in response to targets that were initially near to the subject were approximately twice that of responses to initially distant targets and also exhibited shorter temporal properties. Hence, while convergence responses are fairly similar irrespective of the initial position, divergence dynamic and temporal properties are dependent on the initial stimulus position. It is speculated that the differences observed in divergence may be the result of nonlinear properties of the extraocular muscles or a difference in the underlying neural controller potentially a difference in the magnitude of the fusion initiating component of divergence.
机译:先前关于收敛和发散眼球运动的速度和潜伏期的研究产生了各种各样的,有时是矛盾的结果。研究了四个对象,并跟踪了4度视差阶跃变化,以便在不同的初始目标位置进行收敛和发散。在这里我们报告发散运动的动力学不仅不同于会聚运动,而且取决于初始发散位置。响应最初靠近对象的目标的发散眼球运动速度大约是响应最初较远目标的速度的两倍,并且还表现出较短的时间特性。因此,尽管收敛响应与初始位置无关,但相当相似,但发散动态和时间特性取决于初始刺激位置。据推测,在发散中观察到的差异可能是眼外肌的非线性特性的结果,或者是潜在神经控制器中差异的结果,这可能是发散的融合引发成分的大小上的差异。

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