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Balanced motor primitive can explain generalization of motor learning effects between unimanual and bimanual movements

机译:平衡的运动原语可以解释单向运动和双向运动之间运动学习效果的一般化

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Motor learning in unimanual and bimanual planar reaching movements has been intensively investigated. Although distinct theoretical frameworks have been proposed for each of these reaching movements, the relationship between these movements remains unclear. In particular, the generalization of motor learning effects (transfer of learning effects) between unimanual and bimanual movements has yet to be successfully explained. Here, by extending a motor primitive framework, we analytically proved that the motor primitive framework can reproduce the generalization of learning effects between unimanual and bimanual movements if the mean activity of each primitive for unimanual movements is balanced to the mean for bimanual movements. In this balanced condition, the activity of each primitive is consistent with previously reported neuronal activity. The unimanual-bimanual balance leads to the testable prediction that generalization between unimanual and bimanual movements is more widespread to different reaching directions than generalization within respective movements. Furthermore, the balanced motor primitive can reproduce another previously reported phenomenon: the learning of different force fields for unimanual and bimanual movements.
机译:在单手和双手平面到达运动中的运动学习已被深入研究。尽管已经为每个达到的运动提出了不同的理论框架,但是这些运动之间的关系仍然不清楚。尤其是,单向运动和双向运动之间的运动学习效果(学习效果的传递)的一般化尚待成功解释。在这里,通过扩展运动原语框架,我们通过分析证明了,如果每个原语的单项运动的平均活动与双项运动的均值相平衡,则运动原语框架可以重现单手运动和两手运动之间的学习效果。在这种平衡的条件下,每个原语的活动与以前报道的神经元活动一致。单手-双手的平衡导致了可检验的预测,即单手和双手运动之间的泛化比起各个运动中的泛化,在不同的到达方向上更普遍。此外,平衡的运动原语可以重现以前报道的另一种现象:学习用于单向和双向运动的不同力场。

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