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