Center for Biosciences and Informatics, School of Fundamental Science and Technology, Graduate School of Science and Technology, Keio University Kanagawa, Japan.
Department of Biosciences and Informatics, Faculty of Science and Technology, Keio University Kanagawa, Japan.
Front Hum Neurosci. 2014 Feb 24;8:92. doi: 10.3389/fnhum.2014.00092. eCollection 2014.
In daily life, we encounter situations where we must quickly decide which hand to use for a motor action. Here, we investigated whether the hand chosen for a motor action varied over a short timescale (i.e., hours) with changes in arm dynamics. Participants performed a reaching task in which they moved a specified hand to reach a target on a virtual reality display. During the task, a resistive viscous force field was abruptly applied to only the dominant hand (DH). To evaluate changes in hand choice caused by this perturbation, participants performed an interleaved choice test in which they could freely choose either hand for reaching. Furthermore, to investigate the effect of temporal changes on arm dynamics and hand choice, we exposed the same participants to another condition in which the force field was introduced gradually. When the abrupt force was applied, use of the perturbed hand significantly decreased and not changed during the training. In contrast, when the incremental force was applied, use of the perturbed hand gradually decreased as force increased. Surprisingly, even though the final amount of force was identical between the two conditions, hand choice was significantly biased toward the unperturbed hand in the gradual condition. These results suggest that time-varying changes in arm dynamics may have a greater influence on hand choice than the amplitude of the resistant force itself.
在日常生活中,我们会遇到必须快速决定使用哪只手进行动作的情况。在这里,我们研究了手臂动力学变化时,短时间内(即数小时内)用于动作的手是否会发生变化。参与者执行了一项伸手任务,他们必须使用指定的手移动到虚拟现实显示器上的目标。在任务期间,仅对手臂的优势手(DH)施加一个阻力粘性力场。为了评估这种干扰引起的手选择变化,参与者执行了一个交替选择测试,他们可以自由选择手来伸手。此外,为了研究时间变化对手臂动力学和手选择的影响,我们让同一组参与者接触另一种条件,其中力场逐渐引入。当突然施加力时,受干扰手的使用明显减少,并且在训练过程中未改变。相比之下,当施加递增力时,随着力的增加,受干扰手的使用逐渐减少。令人惊讶的是,即使两种情况下的最终力大小相同,在逐渐施加力的条件下,手的选择明显偏向于未受干扰的手。这些结果表明,手臂动力学的时变变化对手选择的影响可能大于阻力本身的幅度。