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Binocular coordination of eye movements – Hering’s Law of equal innervation or uniocular control?

机译:眼球运动的双眼协调 - Hering的平等神经支配或单眼控制定律?

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摘要

The neurophysiological basis for binocular control of eye movements in primates has been characterized by a scientific controversy that has its origin in the historical conflict of Hering and Helmholtz in the 19th century. This review focuses on two hypotheses, linked to that conflict, that seek to account for binocular coordination – Hering’s Law vs. uniocular control of each eye. In an effort to manage the length of the review, the focus is on extracellular single‐unit studies of premotor eye movement cells and extraocular motoneurons. In the latter half of the 20th century, these studies provided a wealth of neurophysiological data pertaining to the control of vergence and conjugate eye movements. The data were initially supportive of Hering’s Law. More recent data, however, have provided support for uniocular control of each eye consistent with Helmholtz’s original idea. The controversy is far from resolved. New anatomical descriptions of the disparate inputs to multiply and singly innervated extraocular muscle fibers challenge the concept of a ‘final common pathway’ as they suggest there may be separate groups of motoneurons involved in vergence and conjugate control of eye position. These data provide a new challenge for interpretation of uniocular premotor control networks and how they cooperate to produce coordinated eye movements.
机译:双眼控制灵长类动物眼球运动的神经生理学基础的特点是科学争议,起源于19世纪Hering和Helmholtz的历史冲突。这篇评论重点关注与该冲突相关的两个假说,这些假说试图解释双眼的协调性-海宁氏定律与每只眼睛的单眼控制。为了控制审查的时间,重点是运动前眼动细胞和眼外运动神经元的细胞外单细胞研究。在20世纪后半叶,这些研究提供了大量与控制发散和共轭眼球运动有关的神经生理学数据。这些数据最初是支持黑灵定律的。不过,最近的数据为每只眼睛的单眼控制提供了支持,这与亥姆霍兹的最初想法一致。争议远未解决。新的解剖学描述对不同的输入进行增生和单支化眼外肌纤维的挑战,挑战了“最终共同通路”的概念,因为它们暗示可能有成组的运动神经元参与眼位置的发散和共轭控制。这些数据为单眼运动前控制网络的解释以及它们如何协作产生协调的眼球运动提出了新的挑战。

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    King, W. M.;

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  • 年度 2011
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