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Off-Court Generic Perceptual-Cognitive Training in Elite Volleyball Athletes: Task-Specific Effects and Levels of Transfer

机译:优秀排球运动员的场外通用感性认知训练:特定于任务的效果和转移水平

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摘要

Background: The nature of perceptual-cognitive expertise in interactive sports has gained more and more scientific interest over the last two decades. Research to understand how this expertise can be developed has not been addressed profoundly yet. In approaches to study this with interventional designs, only few studies have scrutinized several levels of transfer such as to the field. Therefore, the aim of this study was to examine the efficacy of a generic off-court perceptual-cognitive training in elite volleyball players on three different levels: task-specific, near-transfer, and far-transfer effects. Based on overlapping cognitive processes between training and testing, we hypothesized task-specific improvements as well as positive near- and far-transfer effects after a multiple-object tracking training intervention.Methods: Twenty-two volleyball experts completed a 8-week three-dimensional (3D) multiple-object tracking (3D-MOT) training intervention. A control group (n = 21; volleyball experts also) participated in regular ball practice only. Before and after training, both groups performed tests on the 3D-MOT, four near-transfer tests in cognitive domains, and a far-transfer, lab-based, and volleyball-specific blocking test.Results: The results of the 2 × 2 analysis of variance (ANOVA) (group, time) showed significant interaction effects in the 3D-MOT task [F(1,40) = 93.10; p < 0.001; ηp2 = 0.70] and in two near-transfer tests [sustained attention: F(1,40) = 15.45; p < 0.001; ηp2 = 0.28; processing speed: F(1,40) = 12.15; p = 0.001; ηp2 = 0.23]. No significant interaction effects were found in the far-transfer volleyball test. Conclusions: Our study suggests positive effects in task-specific and two near-transfer tests of a perceptual-cognitive intervention in elite volleyball athletes. This supports a partial overlap in cognitive processing between practice and tests with the result of positive near-transfer. However, there are no significant effects in far-transfer testing. Although these current results are promising, it is still unclear how far-transfer effects of a generic perceptual-cognitive training intervention can be assured.
机译:背景:在过去的二十年中,交互式运动中的感知认知专业知识的性质越来越受到科学界的关注。关于如何开发这种专业知识的研究尚未深入解决。在采用干预性设计进行研究的方法中,只有很少的研究仔细研究了几种转移水平,例如到田间。因此,本研究的目的是检验精英排球运动员的一般场外感知认知训练在三个不同级别上的功效:特定任务,近转移和远转移效果。基于训练和测试之间重叠的认知过程,我们假设在进行多对象跟踪训练干预后,特定任务的改进以及近距离和远距离转移的积极作用。方法:完成了为期8周的三维(3D)多目标跟踪(3D-MOT)培训干预。对照组(n = 21;也有排球专家)仅参加常规的打球练习。训练前后,两组都对3D-MOT进行了测试,在认知领域进行了四次近距离转移测试,并进行了基于实验室和排球的远距离转移阻断测试。结果: 2×2方差分析(ANOVA)(组,时间)的结果显示,在3D-MOT任务中,交互作用显着[F(1,40)= 93.10; p <0.001; η p < / mi> 2 = 0.70]和两次近距离转移测试[持续关注:F(1,40)= 15.45; p <0.001; η p < / mi> 2 = 0.28;处理速度:F(1,40)= 12.15; p = 0.001; η p < / mi> 2 = 0.23]。在远传排球测试中未发现明显的相互作用。 结论:我们的研究表明,对于排球运动员的一项认知-认知干预,它在特定于任务的测试和两次近距离转移测试中具有积极作用。这支持在练习和测试之间的认知处理过程中出现部分重叠,从而产生积极的近转移。但是,远传测试没有明显的影响。尽管目前的结果令人鼓舞,但仍不清楚如何确保通用的认知-认知训练干预的远距离转移效果。

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