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内耳功能缺陷人群的眼头协调能力

Eye-head coordination in labyrinthine-defective human beings.

作者信息

Kasai T, Zee D S

出版信息

Brain Res. 1978 Apr 7;144(1):123-41. doi: 10.1016/0006-8993(78)90439-0.

Abstract

(1) Eye-head coordination was studied in three human beings with absent labyrinthine function. Each subject adopted a unique pattern of adaptive responses to achieve optimal gaze stability. (2) One subject used saccades (even in darkness) to help stabilize gaze. In addition, during rotation of the body with the head stationary in darkness, he made slow and quick phases of nystagmus in the same direction. This subject apparently used quick phases to help stabilize gaze rather than to redirect the center of visual attention. (3) One subject, to help prevent gaze overshoot, showed a decrease in the saccadic amplitude-retinal error relationship selectively during active combined eye-head movements. (4) One subject showed a significant amount of preprogramming of compensatory slow phases independent of actual head motion. (5) In all subjects, the passively induced cervico-ocular reflex was moderately potentiated, accounting for about 25% of compensation for head motion during active target seeking. (6) In all subjects, 'effort of spatial localization', as shown by imagining targets in total darkness, increased the velocity of compensatory slow phases to near that of head movements during both active and passively induced head rotations. (7) In all subjects, gaze stability was enhanced during tracking of targets jumping in a predictable fashion. (8) The choice of strategies used by each subject may depend, in part, upon the latency of the cervico-ocular reflex during active head movements.

摘要

(1) 对三名迷路功能缺失的人进行了眼头协调研究。每个受试者都采用了独特的适应性反应模式来实现最佳的注视稳定性。(2) 一名受试者使用扫视(即使在黑暗中)来帮助稳定注视。此外,在黑暗中身体旋转而头部静止时,他出现了同向的眼球震颤慢相和快相。该受试者显然是利用快相来帮助稳定注视,而不是重新引导视觉注意中心。(3) 一名受试者为了帮助防止注视过冲,在主动的联合眼头运动过程中,选择性地表现出扫视幅度与视网膜误差关系的降低。(4) 一名受试者表现出大量与实际头部运动无关的补偿性慢相预编程。(5) 在所有受试者中,被动诱发的颈眼反射适度增强,在主动寻找目标时,约占头部运动补偿的25%。(6) 在所有受试者中,在完全黑暗中想象目标所显示的“空间定位努力”,在主动和被动诱发的头部旋转过程中,都将补偿性慢相的速度提高到接近头部运动的速度。(7) 在所有受试者中,在跟踪以可预测方式跳动的目标时,注视稳定性增强。(8) 每个受试者所采用策略的选择可能部分取决于主动头部运动期间颈眼反射的潜伏期。

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