Dessing Joost C, Oostwoud Wijdenes Leonie, Peper C E, Beek Peter J
Research Institute MOVE, Faculty of Human Movement Sciences, VU University Amsterdam, Van der Boechorststraat 9, 1081 BT, Amsterdam, The Netherlands.
Exp Brain Res. 2009 Jul;196(4):511-27. doi: 10.1007/s00221-009-1882-6. Epub 2009 Jun 19.
Catching a ball involves a dynamic transformation of visual information about ball motion into motor commands for moving the hand to the right place at the right time. We previously formulated a neural model for this transformation to account for the consistent leftward movement biases observed in our catching experiments. According to the model, these biases arise within the representation of target motion as well as within the transformation from a gaze-centered to a body-centered movement command. Here, we examine the validity of the latter aspect of our model in a catching task involving gaze fixation. Gaze fixation should systematically influence biases in catching movements, because in the model movement commands are only generated in the direction perpendicular to the gaze direction. Twelve participants caught balls while gazing at a fixation point positioned either straight ahead or 14 degrees to the right. Four participants were excluded because they could not adequately maintain fixation. We again observed a consistent leftward movement bias, but the catching movements were unaffected by fixation direction. This result refutes our proposal that the leftward bias partly arises within the visuomotor transformation, and suggests instead that the bias predominantly arises within the early representation of target motion, specifically through an imbalance in the represented radial and azimuthal target motion.
接球涉及将有关球运动的视觉信息动态转换为运动指令,以便在正确的时间将手移动到正确的位置。我们之前为这种转换构建了一个神经模型,以解释在我们的接球实验中观察到的一致的向左运动偏差。根据该模型,这些偏差出现在目标运动的表征中,以及从以注视为中心到以身体为中心的运动指令的转换过程中。在这里,我们在一个涉及注视固定的接球任务中检验我们模型后一个方面的有效性。注视固定应该会系统性地影响接球动作中的偏差,因为在模型中,运动指令仅在垂直于注视方向的方向上生成。12名参与者在注视正前方或向右14度的固定点时接球。4名参与者因无法充分保持注视而被排除。我们再次观察到一致的向左运动偏差,但接球动作不受注视方向的影响。这一结果反驳了我们的提议,即向左偏差部分出现在视觉运动转换过程中,相反,这表明偏差主要出现在目标运动的早期表征中,具体是通过所表征的径向和方位目标运动的不平衡。