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斜视中眼球扫视运动的顶盖图谱的正常对应关系。

Normal correspondence of tectal maps for saccadic eye movements in strabismus.

作者信息

Economides John R, Adams Daniel L, Horton Jonathan C

机构信息

Beckman Vision Center, Program in Neuroscience, University of California, San Francisco, California; and.

Center for Mind/Brain Sciences, The University of Trento, Trento, Italy.

出版信息

J Neurophysiol. 2016 Dec 1;116(6):2541-2549. doi: 10.1152/jn.00553.2016. Epub 2016 Sep 7.

Abstract

The superior colliculus is a major brain stem structure for the production of saccadic eye movements. Electrical stimulation at any given point in the motor map generates saccades of defined amplitude and direction. It is unknown how this saccade map is affected by strabismus. Three macaques were raised with exotropia, an outwards ocular deviation, by detaching the medial rectus tendon in each eye at age 1 mo. The animals were able to make saccades to targets with either eye and appeared to alternate fixation freely. To probe the organization of the superior colliculus, microstimulation was applied at multiple sites, with the animals either free-viewing or fixating a target. On average, microstimulation drove nearly conjugate saccades, similar in both amplitude and direction but separated by the ocular deviation. Two monkeys showed a pattern deviation, characterized by a systematic change in the relative position of the two eyes with certain changes in gaze angle. These animals' saccades were slightly different for the right eye and left eye in their amplitude or direction. The differences were consistent with the animals' underlying pattern deviation, measured during static fixation and smooth pursuit. The tectal map for saccade generation appears to be normal in strabismus, but saccades may be affected by changes in the strabismic deviation that occur with different gaze angles.

摘要

上丘是产生眼球快速扫视运动的主要脑干结构。在运动图谱的任何给定位置进行电刺激都会产生具有特定幅度和方向的扫视。目前尚不清楚这种扫视图谱如何受到斜视的影响。三只猕猴在1月龄时通过切断每只眼睛的内直肌腱而患上外斜视(眼球向外偏斜)。这些动物能用任一只眼睛向目标进行扫视,并且似乎能自由交替注视。为了探究上丘的组织结构,在动物自由观看或注视目标时,在多个位点施加微刺激。平均而言,微刺激驱动的扫视几乎是共轭的,幅度和方向相似,但两眼之间存在眼位偏斜。两只猴子表现出模式性偏斜,其特征是随着注视角度的某些变化,两眼的相对位置发生系统性改变。这些动物右眼和左眼的扫视在幅度或方向上略有不同。这些差异与在静态注视和平滑跟踪期间测量到的动物潜在模式性偏斜一致。在斜视中,用于产生扫视的顶盖图谱似乎是正常的,但扫视可能会受到不同注视角度下斜视偏斜变化的影响。

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