Hoani K Smith, Stephen P Bird, Betul Coskun, Peter D Olsen, Thomas Kavanagh, Michael J Hamlin
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引用次数: 0
摘要
本研究探讨血流量限制(BFR)训练在篮球运动员减量阶段维持运动表现的有效性。锥形阶段的目的是在保持训练强度的同时减少外部负荷。17名经验丰富的篮球运动员随机分为两组:安慰剂组(n = 8, 22.0±2.1年,mean±SD)和BFR组(n = 9, 21.1±1.5年)。训练计划包括力量训练、团队训练、个人技能训练和竞技比赛。在4周的逐渐减少期间,在维持(安慰剂)或减少(BFR)举升负荷的同时,举升量减少。BFR组在其1RM的25-30%的情况下以60%的动脉闭塞压解除,而安慰剂组在其1RM的80%的情况下进行训练,BFR袖带膨胀到仅20%。与安慰剂组相比,BFR参与者改善了5米(-1.4±1.5%平均±95% CI p = 0.03)和10米(-1.1±0.5%,p = p = 0.013)和反向跳跃(1.1±0.8%,p = 0.0035)。锥形阶段的BFR可以减少举升载荷,而不会降低后续的性能指标。
Effectiveness of blood flow restriction training during a taper phase in basketball players.
This study investigates the effectiveness of blood flow restriction (BFR) training in maintaining athletic performance during a taper phase in basketball players. The taper phase aims to reduce external load while maintaining training intensity. Seventeen experienced basketball players were randomised into two groups: a placebo group (n = 8, 22.0 ± 2.1 years, mean ± SD) and BFR group (n = 9, 21.1 ± 1.5 years). The training schedule included strength trainings, team trainings, individual skill sessions and competitive games. During the 4-week taper period, lifting volume was reduced while either maintaining (placebo) or reducing (BFR) lifting load. The BFR group lifted with 60% arterial occlusion pressure at 25-30% of their 1RM, whereas the placebo group trained at 80% of their 1RM with BFR cuffs inflated to only 20%. Compared to the placebo group, BFR participants improved 5 m (-1.4 ± 1.5% mean ± 95% CI p = 0.03) and 10 m (-1.1 ± 0.5%, p = <0.01) sprint performance along with barbell back squat (9.6 ± 8.0%, p = 0.013) and countermovement jump (1.1 ± 0.8%, p = 0.0035). BFR during the taper phase enabled a reduction in lifting load with no reduction in subsequent performance measures.
期刊介绍:
The Journal of Sports Sciences has an international reputation for publishing articles of a high standard and is both Medline and Clarivate Analytics-listed. It publishes research on various aspects of the sports and exercise sciences, including anatomy, biochemistry, biomechanics, performance analysis, physiology, psychology, sports medicine and health, as well as coaching and talent identification, kinanthropometry and other interdisciplinary perspectives.
The emphasis of the Journal is on the human sciences, broadly defined and applied to sport and exercise. Besides experimental work in human responses to exercise, the subjects covered will include human responses to technologies such as the design of sports equipment and playing facilities, research in training, selection, performance prediction or modification, and stress reduction or manifestation. Manuscripts considered for publication include those dealing with original investigations of exercise, validation of technological innovations in sport or comprehensive reviews of topics relevant to the scientific study of sport.