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Application of zebrafish oculomotor behavior to model human disorders

机译:斑马鱼动眼行为在人类疾病模型中的应用

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摘要

To ensure high acuity vision, eye movements have to be controlled with astonishing precision by the oculomotor system. Many human diseases can lead to abnormal eye movements, typically of the involuntary oscillatory eye movements type called nystagmus. Such nystagmus can be congenital (infantile) or acquired later in life. Although the resulting eye movements are well characterized, there is only little information about the underlying etiology. This is in part owing to the lack of appropriate animal models. In this review article, we describe how the zebrafish with its quick maturing visual system can be used to model oculomotor pathologies. We compare the characteristics and assessment of human and zebrafish eye movements. We describe the oculomotor properties of the zebrafish mutant belladonna, which has non-crossing optical fibers, and is a particularly informative model for human oculomotor deficits. This mutant displays a reverse optokinetic response, spontaneous oscillations that closely mimic human congenital nystagmus and abnormal motor behavior linked to circular vection.
机译:为了确保高敏锐视力,动眼系统必须以惊人的精度控制眼睛的运动。许多人类疾病会导致异常的眼球运动,通常是称为眼球震颤的非自愿性振荡眼球运动。这种眼球震颤可以是先天性的(婴儿),也可以在以后的生活中获得。尽管所产生的眼球运动具有很好的特征,但是关于潜在病因的信息很少。部分原因是缺乏适当的动物模型。在这篇评论文章中,我们描述了斑马鱼及其快速成熟的视觉系统如何用于建模动眼病理。我们比较了人类和斑马鱼眼睛运动的特征并进行了评估。我们描述了斑马鱼突变颠茄的动眼特性,它具有不交叉的光纤,是人类动眼缺陷的特别有用的模型。该突变体显示出反向的光动力反应,自发振荡,紧密地模仿了人类先天性眼球震颤和与循环运动相关的异常运动行为。

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