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Behavioral Investigation on the Frames of Reference Involved in Visuomotor Transformations during Peripheral Arm Reaching

机译:周围臂伸入过程中涉及运动运动转换的参照系的行为研究

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摘要

Background: Several psychophysical experiments found evidence for the involvement of gaze-centered and/or body-centered coordinates in arm-movement planning and execution. Here we aimed at investigating the frames of reference involved in the visuomotor transformations for reaching towards visual targets in space by taking target eccentricity and performing hand into account. Methodology/Principal Findings: We examined several performance measures while subjects reached, in complete darkness, memorized targets situated at different locations relative to the gaze and/or to the body, thus distinguishing between an eye-centered and a body-centered frame of reference involved in the computation of the movement vector. The errors seem to be mainly affected by the visual hemifield of the target, independently from its location relative to the body, with an overestimation error in the horizontal reaching dimension (retinal exaggeration effect). The use of several target locations within the perifoveal visual field allowed us to reveal a novel finding, that is, a positive linear correlation between horizontal overestimation errors and target retinal eccentricity. In addition, we found an independent influence of the performing hand on the visuomotor transformation process, with each hand misreaching towards the ipsilateral side. Conclusions: While supporting the existence of an internal mechanism of target-effector integration in multiple frames of reference, the present data, especially the linear overshoot at small target eccentricities, clearly indicate the primary role of gaze-centered coding of target location in the visuomotor transformation for reaching.
机译:背景:几项心理物理实验发现了以手臂为中心的视线坐标和/或以身体为中心的坐标参与手臂运动计划和执行的证据。在这里,我们旨在研究视觉运动转换中涉及的参考系,以通过考虑目标偏心率和执行手势来达到空间中的视觉目标。方法/主要发现:当受试者在完全黑暗的情况下到达相对于凝视和/或身体不同位置的记忆目标时,我们检查了几种性能指标,从而区分了以眼睛为中心和以身体为中心的参照系参与运动矢量的计算。误差似乎主要受目标的视觉半场影响,而与目标相对于身体的位置无关,在水平到达维度上存在过高估计的误差(视网膜放大效应)。凹腔视野内几个目标位置的使用使我们能够揭示一个新颖的发现,即水平高估误差与目标视网膜偏心率之间呈正线性相关。此外,我们发现表演手在视觉运动转换过程中具有独立的影响,每只手都朝同侧滑动。结论:虽然支持在多个参考系中存在目标-效应子整合的内部机制,但目前的数据,尤其是在小目标偏心率下的线性超调,清楚地表明了凝视中心靶标位置编码在视觉运动中的主要作用达成转变。

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