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Eye-hand coordination during a double-step task: evidence for a common stochastic accumulator

机译:两步任务中的眼手协调:常见的随机累加器的证据

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摘要

Many studies of reaching and pointing have shown significant spatial and temporal correlations between eye and hand movements. Nevertheless, it remains unclear whether these correlations are incidental, arising from common inputs (independent model); whether these correlations represent an interaction between otherwise independent eye and hand systems (interactive model); or whether these correlations arise from a single dedicated eye-hand system (common command model). Subjects were instructed to redirect gaze and pointing movements in a double-step task in an attempt to decouple eye-hand movements and causally distinguish between the three architectures. We used a drift-diffusion framework in the context of a race model, which has been previously used to explain redirect behavior for eye and hand movements separately, to predict the pattern of eye-hand decoupling. We found that the common command architecture could best explain the observed frequency of different eye and hand response patterns to the target step. A common stochastic accumulator for eye-hand coordination also predicts comparable variances, despite significant difference in the means of the eye and hand reaction time (RT) distributions, which we tested. Consistent with this prediction, we observed that the variances of the eye and hand RTs were similar, despite much larger hand RTs (∼90 ms). Moreover, changes in mean eye RTs, which also increased eye RT variance, produced a similar increase in mean and variance of the associated hand RT. Taken together, these data suggest that a dedicated circuit underlies coordinated eye-hand planning.
机译:许多有关到达和指向的研究表明,眼睛和手部运动之间存在明显的时空相关性。然而,尚不清楚这些相关性是否是偶然的,是由于共同的投入(独立模型)引起的;这些相关性是否代表原本独立的眼睛和手系统之间的相互作用(交互式模型);或这些相关性是否来自单个专用的目视系统(通用命令模型)。受试者被指示在一个双步骤任务中重定向视线和指向动作,以试图消除眼手动作的耦合并在三种架构之间进行因果区别。我们在种族模型的上下文中使用了漂移扩散框架,该模型先前已用于分别解释眼睛和手部运动的重定向行为,以预测眼-手解耦的模式。我们发现,通用命令体系结构可以最好地解释观察到的针对目标步骤的不同眼部和手部响应模式的频率。尽管我们测试了眼睛和手的反应时间(RT)分布方式的显着差异,但用于手眼协调的通用随机累加器也可以预测可比的方差。与这个预测一致,我们观察到眼睛和手的RT的变化是相似的,尽管手的RT更大(〜90 ms)。此外,平均眼睛RT的变化(也增加了眼睛RT的方差)产生了相关手RT的均值和方差的类似增加。综上所述,这些数据表明专用电路是协调人眼计划的基础。

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