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Evaluation of Explicit Motor Timing Ability in Young Tennis Players

机译:年轻网球运动员显式电机时机能力评价

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A crucial ability for athletes playing sports that involve coincidence timing actions is the motor timing ability. The efficiency of perceptual and motor processes underlying the motor timing ability has been related to the motor experience gained in interceptive sports, such as tennis. In the present study, the motor timing ability in young tennis players (TP) and age-matched control participants (CTRL) was compared by means of a synchronization paradigm. Participants were asked to perform finger-opposition movements in synch to a metronome beating 0.5 and 2 Hz in (1) a bimanual coordination test, which compared the performance of the dominant hand with that of the contralateral hand, and (2) a movement lateralization test, which compared the motor performance of the dominant hand during single-hand and bimanual tasks (BTs). The motor performance was evaluated through movement strategy [defined by touch duration (TD), inter-tapping interval (ITI), and movement frequency] and movement accuracy (temporal accuracy defined by the synchronization error and spatial accuracy defined by the percentage of correct touches—%CORR_SEQ). Results showed that motor expertise significantly influences movement strategy in the bimanual coordination test; TD of TP was significantly higher than those of CTRL, specifically at 0.5 Hz. Furthermore, overall ITI values of TP were lower than those of CTRL. Lastly, in the movement lateralization test, the %CORR_SEQ executed with the right dominant hand by TP in the BT was significantly higher than those of CTRL. A discussion about the role of motor expertise in the timing ability and the related neurophysiological adaptations is provided.
机译:运动员参与符合巧合时序行动的运动员的关键能力是运动时机能力。电机时机能力下面的感知和电机过程的效率与拦截运动中获得的电机经验有关,例如网球。在本研究中,通过同步范例比较了年轻网球运动员(TP)和年龄匹配控制参与者(CTRL)的电动机时序能力。被要求参与者同步地对(1)击败的节拍器(1)一个Bimanual协调试验中的节拍器,这与对侧手的显性手的性能进行了比较,(2)运动横向化测试,比较单手和生理任务(BTS)的主导手的电机性能。通过运动策略进行评估电机性能[通过触摸持续时间(TD),互相间隔(ITI)和移动频率]和移动精度(由同步误差定义的时间精度以及由正确触摸的百分比定义的时间精度而定义) - %corr_seq)。结果表明,电机专业知识显着影响了生物协调试验中的运动策略; TP的TD显着高于CTRL,特别是0.5Hz。此外,TP的总体ITI值低于CTRL。最后,在移动横向化测试中,BT中TP用右派优势手执行的%CORR_SEQ显着高于CTRL。提供了关于运动专业知识在时序能力和相关神经生理适应的讨论。

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