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Programming of left hand exploits task set but that of right hand depends on recent history

机译:左手的编程利用任务集,但右手依赖于最近的历史

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There are many differences between the left hand and the right hand. But it is not clear if there is a difference in programming between left hand and right hand when the hands perform the same movement. In current study, we carried out two experiments to investigate whether the programming of two hands was equivalent or they exploited different strategies. In the first experiment, participants were required to use one hand to grasp an object with visual feedback or to point to the center of one object without visual feedback on alternate trials, or to grasp an object without visual feedback and to point the center of one object with visual feedback on alternating trials. They then performed the tasks with the other hand. The result was that previous pointing task affected current grasping when it was performed by the left hand, but not the right hand. In experiment 2, we studied if the programming of the left (or right) hand would be affected by the pointing task performed on the previous trial not only by the same hand, but also by the right (or left) hand. Participants pointed and grasped the objects alternately with two hands. The result was similar with Experiment 1, i.e., left-hand grasping was affected by right-hand pointing, whereas right-hand grasping was immune from the interference from left hand. Taken together, the results suggest that when open- and closed-loop trials are interleaved, motor programming of grasping with the right hand was affected by the nature of the online feedback on the previous trial only if it was a grasping trial, suggesting that the trial-to-trial transfer depends on sensorimotor memory and not on task set. In contrast, motor programming of grasping with the left hand can use information about the nature of the online feedback on the previous trial to specify the parameters of the movement, even when the type of movement that occurred was quite different (i.e., pointing) and was performed with the right hand. This suggests that trial-to-trial transfer with the left hand depends on some sort of carry-over of task set for dealing with the availability of visual feedback.
机译:左手和右手之间存在许多差异。但是如果左手和右手之间的编程有所不同,则不清楚手头,但是当双手执行相同的运动时,这是差异。在目前的研究中,我们进行了两个实验,调查了两只手的编程是否相当于或他们利用不同的策略。在第一个实验中,参与者被要求使用一只手掌握具有视觉反馈的对象或指向一个对象的中心,而无需对备用试验的视觉反馈,或者在没有视觉反馈的情况下抓住物体并指向一个物体对象具有关于交替试验的可视反馈。然后他们用另一只手执行任务。结果是,在左手执行时,之前指向任务影响电流抓握,但不是右手。在实验2中,我们研究了左(或右)手的编程将受到先前试验上的指向任务的影响,不仅由同一手在右侧(或左)手。参与者指出并用两只手交替地抓住了物品。结果与实验1相似,即左手抓握受右手指向的影响,而右手抓握从左手的干扰免疫。结果表明,当开放和闭环试验交错时,只有在掌握试验的情况下,握持右手抓住的电机编程才受到前一项试验的在线反馈的性质,这表明了试验转移取决于SensoMotor内存而不是在任务集上。相比之下,用左手抓握的电机编程可以使用关于在前试验的在线反馈的性质的信息来指定运动的参数,即使发生的运动类型相当不同(即指向)和用右手进行。这表明,使用左手的试行转移取决于任务集的某种随身携带,用于处理视觉反馈的可用性。

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