Neurological Institute, University Hospitals Health System, Cleveland, OH, USA.
Neurology Service, Louis Stokes Cleveland VA Medical Center, Cleveland, OH, USA.
Cerebellum. 2018 Jun;17(3):252-258. doi: 10.1007/s12311-017-0910-5.
The study of eye movements not only addresses debilitating neuro-ophthalmological problems but has become an essential tool of basic neuroscience research. Eye movements are a classic way to evaluate brain function-traditionally in disorders affecting the brainstem and cerebellum. Abnormalities of eye movements have localizing value and help narrow the differential diagnosis of complex neurological problems. More recently, using sophisticated behavioral paradigms, measurement of eye movements has also been applied to disorders of the thalamus, basal ganglia, and cerebral cortex. Moreover, in contemporary neuroscience, eye movements play a key role in understanding cognition, behavior, and disorders of the mind. Examples include applications to higher-level decision-making processes as in neuroeconomics and psychiatric and cognitive disorders such as schizophrenia and autism. Eye movements have become valued as objective biomarkers to monitor the natural progression of disease and the effects of therapies. As specific genetic defects are identified for many neurological disorders, ocular motor function often becomes the cornerstone of phenotypic classification and differential diagnosis. Here, we introduce other important applications of eye movement research, including understanding movement disorders affecting the head and limbs. We also emphasize the need to develop standardized test batteries for eye movements of all types including the vestibulo-ocular responses. The evaluation and treatment of patients with cerebellar ataxia are particularly amenable to such an approach.
眼球运动的研究不仅解决了使人衰弱的神经眼科问题,而且已成为基础神经科学研究的重要工具。眼球运动是评估大脑功能的经典方法——传统上用于影响脑干和小脑的疾病。眼球运动异常具有定位价值,并有助于缩小复杂神经问题的鉴别诊断范围。最近,使用复杂的行为范式,眼球运动的测量也已应用于丘脑、基底神经节和大脑皮层的疾病。此外,在当代神经科学中,眼球运动在理解认知、行为和精神障碍方面发挥着关键作用。例如,在神经经济学和精神和认知障碍(如精神分裂症和自闭症)中应用于更高层次的决策过程。眼球运动已成为监测疾病自然进展和治疗效果的有价值的客观生物标志物。随着许多神经疾病特定遗传缺陷的确定,眼动功能通常成为表型分类和鉴别诊断的基石。在这里,我们介绍眼球运动研究的其他重要应用,包括了解影响头部和四肢的运动障碍。我们还强调需要开发各种类型的眼球运动标准化测试组合,包括前庭眼反应。这种方法特别适用于评估和治疗小脑共济失调患者。