首页> 美国卫生研究院文献>The Journal of Physiology >Vestibulo-ocular function during co-ordinated head and eye movements to acquire visual targets.
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Vestibulo-ocular function during co-ordinated head and eye movements to acquire visual targets.

机译:协调眼部和头部运动以获取视觉目标时的眼动功能。

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摘要

1. Experiments have been conducted on human subjects in an attempt to establish the role of the vestibulo-ocular reflex in the co-ordination of head and eye movements during visual target acquisition. 2. When the subject moved head and eyes to acquire visual targets in the horizontal plane, the eye movement consisted of an initial saccade in the direction of head movement followed by a slower return towards orbital centre which compensated for remaining head movement. 3. When the head was moved either voluntarily or passively in the dark the pattern of eye movement was very similar to that seen during target acquisition. 4. The mean latency between the start of head acceleration and the onset of the saccadic eye movement was greater in the dark (108 msec, S.D. 85 msec) than for the visually induced responses (14 msec, S.D. 59 msec), in which eye movement often preceded head movement when moving to small ( less than 45 degrees) target offset angles. 5. In all experimental conditions gaze displacement at the end of the initial saccade was normally related in a predictive manner to final head position, but when fixating visual targets offset by more than 60 degrees from the central position there were often large errors, 22% of responses undershooting the target by more than 15 degrees. 6. A highly significant (P less than 0.001) linear relationship was found between gaze displacement and head velocity under all experimental conditions. During target acquisition head velocity was normally positively correlated with amplitude of target offset. The large errors in gaze displacement in response to the larger target offsets occurred at levels of head velocity lower than normally associated with such target offsets. 7. The results have led to the suggestion of a dual mode of control for head-eye co-ordination. In one mode, normally associated with small target offsets (less than 45 degrees), control is mediated by retinal error information. In the other mode, associated with larger target offsets, gaze displacement is generated as an automatic response to head turning. 8. The observation of similar relationships between head and eye movement during passive head turning implicates the vestibulo-ocular reflex in the secondary mode of control, and provides support for the hypothesis that the role of the vestibular saccade is to induce a rapid offset of the eyes in the direction of head movement, thus facilitating rapid search and target location.
机译:1.已经对人类受试者进行了实验,以试图确定前视眼反射在视觉目标获取过程中协调头部和眼睛运动的作用。 2.当对象在水平面上移动头部和眼睛以获取视觉目标时,眼睛的移动包括沿头部移动方向的初始扫视,然后朝轨道中心缓慢返回,以补偿剩余的头部移动。 3.当头部在黑暗中自愿或被动移动时,眼球运动的模式与目标获取过程中所看到的非常相似。 4.在黑暗中(108毫秒,SD为85毫秒),头部加速开始和眼球运动开始之间的平均潜伏期长于视觉诱发反应(14毫秒,SD为59毫秒)。当移动到较小的目标偏移角(小于45度)时,通常先于头部移动。 5.在所有实验条件下,初始扫视结束时的视线位移通常都与预测的头部位置有关,但是当固定视觉目标偏离中心位置超过60度时,通常会有较大的误差,即22%的响应低于目标15度以上。 6.在所有实验条件下,凝视位移和头部速度之间都具有高度显着的线性关系(P小于0.001)。在目标获取期间,头部速度通常与目标偏移幅度成正相关。响应较大目标偏移的凝视位移大误差发生在头部速度低于通常与此类目标偏移关联的位置的位置。 7.结果导致提出了一种用于头眼协调的双重控制模式的建议。在一种通常与较小的目标偏移量(小于45度)相关联的模式中,控制是由视网膜误差信息介导的。在另一种模式下,与较大的目标偏移量相关联,视线位移会作为对头部旋转的自动响应而生成。 8.在被动头转弯过程中观察到的头部和眼睛运动之间的相似关系,暗示了在二级控制模式下前庭眼反射,并为以下假设提供了支持:前庭扫视的作用是引起眼前突的快速偏移。眼睛朝着头部运动的方向,从而有助于快速搜索和定位目标。

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