Mann C A, Morrow M J
Department of Neurology, Olive View-University of California at Los Angeles Medical Center, sylmar 91342-1495, USA.
Invest Ophthalmol Vis Sci. 1997 Mar;38(3):773-9.
To identify and explain the effects of eye and head position on smooth pursuit eye movements in normal humans.
Horizontal and vertical smooth pursuit were measured in different eye-in-orbit positions in normal subjects, using a magnetic search coil technique with sinusoidal and step-ramp stimuli. Pursuit also was tested in different horizontal head-on-trunk positions.
Pursuit gain to sinusoidal targets averaged approximately 15% less with the eyes centered 30 degrees horizontally or vertically from the primary position than with the eyes near the orbital midline. In contrast, initial pursuit responses to step-ramp stimuli were similar regardless of eye position. For sinusoidal and step-ramp responses in eccentric eye positions, no significant differences were found between pursuit movements directed toward the orbital midposition and pursuit movements directed away from it. Changes in head position had no effect on smooth pursuit.
Sinusoidal smooth pursuit function decreases modestly for horizontal and vertical motion in eccentric eye positions. This effect is not caused by reductions in gain for centrifugal movements compared to centripetal movements, implying that the pursuit nonlinearities expected to arise from orbital mechanics are largely eliminated by central processing. Eye position-related differences in retinal or eye motion feedback or in predictive input may explain the influence of eye position on smooth pursuit maintenance. Changes in target position with respect to a trunk-centered frame of reference did not produce the orbital eccentricity effects that were documented because sinusoidal pursuit gain did not vary with head rotation.
识别并解释眼睛和头部位置对正常人类平稳跟踪眼球运动的影响。
采用磁搜索线圈技术,利用正弦和阶梯斜坡刺激,在正常受试者的不同眼眶内眼球位置测量水平和垂直平稳跟踪。还在不同的水平头部相对于躯干位置测试跟踪情况。
与眼球靠近眼眶中线时相比,当眼球在水平或垂直方向偏离初始位置30度时,对正弦目标的跟踪增益平均降低约15%。相比之下,无论眼球位置如何,对阶梯斜坡刺激的初始跟踪反应相似。对于偏心眼球位置的正弦和阶梯斜坡反应,朝向眼眶中间位置的跟踪运动和远离该位置的跟踪运动之间未发现显著差异。头部位置的变化对平稳跟踪没有影响。
在偏心眼球位置,水平和垂直运动的正弦平稳跟踪功能略有下降。这种影响不是由离心运动与向心运动增益降低引起的,这意味着预期由轨道力学产生的跟踪非线性在很大程度上被中枢处理消除。视网膜或眼球运动反馈或预测性输入中与眼球位置相关的差异可能解释眼球位置对平稳跟踪维持的影响。相对于以躯干为中心的参考系,目标位置的变化并未产生已记录的眼眶偏心效应,因为正弦跟踪增益不会随头部旋转而变化。