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使用新型智能阻力雪橇推进时实时反馈对功率输出的影响。

Effect of Real-Time Feedback on Power Output Using a Novel Smart-Resisted Sled Push.

作者信息

Goldman Phillip, Pandit Bilal, Gomez David, Lu Stevin, Mills Cade, Kull Nick, Ku Richard, Aramie Adrian, Kim Alex, Alexandru Anka, Hu Jonathan, Neufeld Eric V, Dolezal Brett A

机构信息

Airway & UC Fit Digital Health - Exercise Physiology Research Laboratory, David Geffen School of Medicine, University of California-Los Angeles, Los Angeles, CA, USA.

University of Colorado-Boulder, Boulder, CO, USA.

出版信息

Int J Exerc Sci. 2022 Dec 1;15(6):1578-1586. doi: 10.70252/HMXE1078. eCollection 2022.

Abstract

Prior studies have demonstrated the beneficial effects of real-time data feedback (RTF) on athletic performance and motivation. Despite this evidence, the lack of practical means to implement RTF has hindered its widespread adoption. Recently, a smart-resisted sled push was developed to improve athletic power by utilizing electromagnetic motors as a resistance mechanism, coupled with an RTF display. Thirty healthy college-aged male football players were recruited in this randomized, crossover designed study to examine the efficacy of the RTF to improve power output. Participants were randomized into either group 1 (receiving RTF first then no RTF) or group 2 (receiving no RTF first then RTF) during six, 10-meter sled pushes with 3 min rest intervals. The first three pushes were set to an easier level (L1) and the last three were set to a resistance level twice that of the first three runs (L2). A one-month washout period was enforced. For trials 1-3 (L1) ( = 0.026, = -2.34, ES = -0.428) and 4-6 (L2) ( = 0.035, = -2.22, ES = -0.405), peak power output (the average peak power output over the course of trials 1-3 and 4-6) was greater in both groups when receiving RTF compared to no-RTF. These findings demonstrate the effectiveness of RTF in augmenting power output during performance training.

摘要

先前的研究已经证明了实时数据反馈(RTF)对运动表现和动机的有益影响。尽管有这些证据,但缺乏实施RTF的实用方法阻碍了其广泛应用。最近,一种智能阻力雪橇推进器被开发出来,通过利用电磁电机作为阻力机制,并结合RTF显示屏来提高运动能力。在这项随机交叉设计的研究中,招募了30名健康的大学年龄男性足球运动员,以检验RTF提高功率输出的效果。在六次10米的雪橇推进中,参与者被随机分为第1组(先接受RTF,然后不接受RTF)或第2组(先不接受RTF,然后接受RTF),每次推进之间休息3分钟。前三推设定为较容易的水平(L1),后三推设定为比前三推阻力水平高一倍的水平(L2)。实施为期一个月的洗脱期。对于第1-3次试验(L1)( = 0.026, = -2.34,效应量 = -0.428)和第4-6次试验(L2)( = 0.035, = -2.22,效应量 = -0.405),与不接受RTF相比,两组在接受RTF时的峰值功率输出(第1-3次和第4-6次试验过程中的平均峰值功率输出)都更高。这些发现证明了RTF在增强运动表现训练中的功率输出方面的有效性。

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