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扫视适应的眼位特异性

Eye position specificity of saccadic adaptation.

作者信息

Alahyane Nadia, Pélisson Denis

机构信息

Institut de la Santé et de la Recherche Médicale Unité 534, Espace et Action, IFR19 Institut Fédératif des Neurosciences de Lyon, Bron, France.

出版信息

Invest Ophthalmol Vis Sci. 2004 Jan;45(1):123-30. doi: 10.1167/iovs.03-0570.

Abstract

PURPOSE

The accuracy of saccadic eye movements is maintained throughout life by adaptive mechanisms. With the double-step target paradigm, eight human subjects were investigated to determine whether saccadic adaptation depends only on the eye-displacement vector, or also on eye position as a context cue when two saccades of identical vector are adapted simultaneously.

METHODS

First, bidirectional adaptations (BDAs) of horizontal saccades of the same vector were induced in a single training phase. Each direction of adaptation in BDAs (backward and forward) was linked to one vertical eye position (e.g., forward adaptation performed with the eyes directed 12.5 degrees upward and backward adaptation with the eyes 25 degrees downward) and alternated from trial to trial. Second, unidirectional adaptations (UDAs) were tested in two control conditions in which training trials of a single direction (backward or forward) were presented at both 12.5 degrees and -25 degrees eye elevations.

RESULTS

Opposite changes in saccade amplitude could develop simultaneously in BDA, indicating that saccadic adaptation depends on orbital eye position. Comparing these data with the control conditions further indicated that eye position specificity was complete for backward, but not for forward, adaptation.

CONCLUSIONS

The results indicate that saccadic adaptation mechanisms use vectorial eye displacement signals, but can also take eye position signals into account as a contextual cue when the training involves conflicting saccade amplitude changes.

摘要

目的

扫视眼动的准确性在整个生命过程中通过适应性机制得以维持。采用双步目标范式,对8名人类受试者进行研究,以确定扫视适应是否仅取决于眼位移矢量,还是在同时适应两个相同矢量的扫视时,也将眼位作为一种背景线索。

方法

首先,在单个训练阶段诱导相同矢量的水平扫视的双向适应(BDA)。BDA中每个适应方向(向后和向前)与一个垂直眼位相关联(例如,向前适应时眼睛向上注视12.5度,向后适应时眼睛向下注视25度),并在试验中交替进行。其次,在两个对照条件下测试单向适应(UDA),其中在12.5度和 -25度的眼高时均呈现单个方向(向后或向前)的训练试验。

结果

在BDA中,扫视幅度的相反变化可同时出现,表明扫视适应取决于眼眶眼位。将这些数据与对照条件进行比较进一步表明,向后适应的眼位特异性是完全的,但向前适应则不然。

结论

结果表明,扫视适应机制使用矢量眼位移信号,但当训练涉及相互冲突的扫视幅度变化时,也可将眼位信号作为背景线索加以考虑。

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