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力控制的双手间转移受肌肉力量不对称性的调节。

Intermanual transfer of force control is modulated by asymmetry of muscular strength.

作者信息

Teixeira Luis Augusto, Caminha Leandro Quedas

机构信息

School of Physical Education and Sport, University of São Paulo, Brazil.

出版信息

Exp Brain Res. 2003 Apr;149(3):312-9. doi: 10.1007/s00221-002-1363-7. Epub 2003 Jan 31.

Abstract

Interlateral transfer of learning is conceptualized as an index of the degree to which learning takes place at a lower level of motor control, with strong dependence on the effector system, or at a higher effector-independent level in the movement organization hierarchy. In this study, the locus of motor learning was investigated by increasing lateral asymmetry of force between the wrist flexor muscles, and comparing the amount of interlateral transfer of force control in relation to a condition of symmetric force. To perform this contrast, the participants were assigned to one of three groups: symmetric force (SM), who were left with original asymmetries of muscular strength; asymmetric force (AS), who had unilateral training for increment of maximum strength for the wrist flexor muscles; or a control condition (CO). The learning task consisted of launching a small cart across a metallic trackway with the preferred hand, aiming at making the cart achieve an instantaneous velocity of 70 cm/s. This action was practiced for 300 trials by the SM and AS group, while the CO group had active rest. The groups, then, were submitted to a transfer task requiring a mirrored action with the contralateral hand. The results indicated that the SM group achieved significantly higher interlateral transfer of learning as compared to the AS group, which presented response variability similar to the CO group. Analysis of directional trend of error revealed that the AS group presented a significant target overshoot as compared with the symmetric force groups. These findings suggest that an absolute force is learnt at a higher level in the action hierarchy, and that decline in interlateral transfer of learning in the asymmetric force condition was motivated by a resetting in the interplay between higher and lower levels of movement control.

摘要

学习的双侧间迁移被概念化为一个指标,用以衡量学习是在较低水平的运动控制下发生,且对效应器系统有强烈依赖,还是在运动组织层次结构中较高的、不依赖效应器的水平上发生。在本研究中,通过增加腕屈肌之间的力的横向不对称性,并比较与对称力条件相关的力控制的双侧间迁移量,来研究运动学习的位点。为了进行这种对比,参与者被分配到三组中的一组:对称力组(SM),保留其原有的肌肉力量不对称性;不对称力组(AS),对腕屈肌的最大力量进行单侧训练以增加力量;或对照组(CO)。学习任务包括用优势手推动一辆小车在金属轨道上行驶,目标是使小车达到70厘米/秒的瞬时速度。SM组和AS组对这个动作进行了300次练习,而CO组进行了主动休息。然后,这些组接受了一项转移任务,要求用对侧手进行镜像动作。结果表明,与AS组相比,SM组实现了显著更高的学习双侧间迁移,AS组表现出与CO组相似的反应变异性。误差方向趋势分析显示,与对称力组相比,AS组出现了显著的目标超调。这些发现表明,绝对力是在动作层次结构的较高水平上习得的,并且在不对称力条件下学习的双侧间迁移下降是由运动控制的较高和较低水平之间相互作用的重新设定所驱动的。

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