The complexity of eye-hand coordination: a perspective on cortico-cerebellar cooperation.

Q3 Medicine
John-Ross Rizzo, Mahya Beheshti, Tahereh Naeimi, Farnia Feiz, Girish Fatterpekar, Laura J Balcer, Steven L Galetta, Aasef G Shaikh, Janet C Rucker, Todd E Hudson
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引用次数: 6

Abstract

Background: Eye-hand coordination (EHC) is a sophisticated act that requires interconnected processes governing synchronization of ocular and manual motor systems. Precise, timely and skillful movements such as reaching for and grasping small objects depend on the acquisition of high-quality visual information about the environment and simultaneous eye and hand control. Multiple areas in the brainstem and cerebellum, as well as some frontal and parietal structures, have critical roles in the control of eye movements and their coordination with the head. Although both cortex and cerebellum contribute critical elements to normal eye-hand function, differences in these contributions suggest that there may be separable deficits following injury.

Method: As a preliminary assessment for this perspective, we compared eye and hand-movement control in a patient with cortical stroke relative to a patient with cerebellar stroke.

Result: We found the onset of eye and hand movements to be temporally decoupled, with significant decoupling variance in the patient with cerebellar stroke. In contrast, the patient with cortical stroke displayed increased hand spatial errors and less significant temporal decoupling variance. Increased decoupling variance in the patient with cerebellar stroke was primarily due to unstable timing of rapid eye movements, saccades.

Conclusion: These findings highlight a perspective in which facets of eye-hand dyscoordination are dependent on lesion location and may or may not cooperate to varying degrees. Broadly speaking, the results corroborate the general notion that the cerebellum is instrumental to the process of temporal prediction for eye and hand movements, while the cortex is instrumental to the process of spatial prediction, both of which are critical aspects of functional movement control.

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手眼协调的复杂性:皮质-小脑合作的视角。
背景:眼手协调(EHC)是一个复杂的行为,需要相互关联的过程来控制眼和手运动系统的同步。精确、及时和熟练的动作,如伸手去抓小物体,依赖于获取有关环境的高质量视觉信息,以及同时进行眼手控制。脑干和小脑的多个区域,以及一些额叶和顶叶结构,在控制眼球运动及其与头部的协调中起着关键作用。虽然皮层和小脑都对正常的眼手功能起关键作用,但这些作用的差异表明损伤后可能存在可分离的缺陷。方法:作为这一观点的初步评估,我们比较了脑皮质性卒中患者与小脑性卒中患者的眼和手运动控制。结果:我们发现小脑卒中患者眼手动作的起病时间解耦,且解耦方差显著。相比之下,皮质卒中患者的手部空间误差增加,时间解耦方差不显著。小脑卒中患者解耦变异的增加主要是由于快速眼动,扫视的时间不稳定。结论:这些发现强调了一个观点,即眼手协调障碍的各个方面取决于病变位置,可能会或可能不会在不同程度上合作。从广义上讲,研究结果证实了小脑对眼和手运动的时间预测过程起作用,而皮层对空间预测过程起作用,这两者都是功能性运动控制的关键方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cerebellum and Ataxias
Cerebellum and Ataxias Medicine-Neurology (clinical)
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审稿时长
13 weeks
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