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Three-dimensional binocular eye–hand coordination in normal vision and with simulated visual impairment

机译:正常视力和模拟视力障碍的双眼双眼三维协调

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摘要

Sensorimotor coupling in healthy humans is demonstrated by the higher accuracy of visually tracking intrinsically—rather than extrinsically—generated hand movements in the fronto-parallel plane. It is unknown whether this coupling also facilitates vergence eye movements for tracking objects in depth, or can overcome symmetric or asymmetric binocular visual impairments. Human observers were therefore asked to track with their gaze a target moving horizontally or in depth. The movement of the target was either directly controlled by the observer’s hand or followed hand movements executed by the observer in a previous trial. Visual impairments were simulated by blurring stimuli independently in each eye. Accuracy was higher for self-generated movements in all conditions, demonstrating that motor signals are employed by the oculomotor system to improve the accuracy of vergence as well as horizontal eye movements. Asymmetric monocular blur affected horizontal tracking less than symmetric binocular blur, but impaired tracking in depth as much as binocular blur. There was a critical blur level up to which pursuit and vergence eye movements maintained tracking accuracy independent of blur level. Hand–eye coordination may therefore help compensate for functional deficits associated with eye disease and may be employed to augment visual impairment rehabilitation.
机译:在健康的人中,感觉运动耦合通过在额骨平行平面内以内在而非外在方式生成的手部运动的视觉跟踪的更高准确性得以证明。尚不知道这种耦合是否还有助于在深处跟踪物体的发散眼睛运动,或能否克服对称或不对称的双眼视觉障碍。因此,要求人类观察者以目光跟踪水平或深度移动的目标。目标的运动要么直接由观察者的手控制,要么跟随观察者在先前的试验中执行的手部运动。通过独立地模糊每只眼睛中的刺激来模拟视力障碍。在所有情况下,自生运动的准确性都较高,这表明动眼系统采用了运动信号来提高发散的准确性以及水平眼的运动。不对称的单眼模糊对水平跟踪的影响要小于对称的双眼模糊,但与双眼模糊一样,深度跟踪的影响也较小。存在一个严重的模糊级别,追赶和发散眼睛的运动可以保持跟踪精度,而与模糊级别无关。因此,手眼协调可能有助于弥补与眼部疾病有关的功能缺陷,并可能被用于增强视力障碍的康复。

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