School of Sport and Exercise Sciences, University of Birmingham, Birmingham, UK.
J Sports Sci. 2010 Jul;28(9):999-1007. doi: 10.1080/02640414.2010.485647.
Resistance training increases muscle strength and endurance but may require high intensity and long duration to enhance capillarity. Vascular occlusion during low-load resistance training augments the strength and endurance gains compared with low-load resistance training alone, but in this study we investigated whether it also promotes microvascular filtration capacity, an index of capillarity. Nine healthy males performed short-term low-intensity resistance training of the calf muscles (four sets of 50 heel raises, three times a week for 4 weeks) under restricted (thigh cuff inflated to 150 mmHg on the non-dominant leg) or unrestricted (dominant leg without thigh cuff) blood flow conditions. Before and after resistance training, calf filtration capacity and resting blood flow were assessed by strain gauge plethysmography, and calf muscle strength and fatigue were assessed respectively by maximal voluntary contraction and force decline during electrically evoked ischaemic contractions in both legs. Calf filtration capacity increased by 26% in the restricted leg but did not increase significantly in the unrestricted leg. Calf muscle strength was 18% greater in the restricted leg but unchanged in the unrestricted leg. Calf muscle fatigue and resting blood flow did not change in either leg. Resistance training promoted microvascular filtration capacity, an effect that was somewhat enhanced by blood flow restriction, and could be due to increased capillarization.
抗阻训练可以增加肌肉力量和耐力,但可能需要高强度和长时间才能增强毛细血管密度。与单纯低负荷抗阻训练相比,低负荷抗阻训练期间的血管闭塞可以增强力量和耐力的提升,但在这项研究中,我们研究了它是否也可以促进微血管滤过能力,即毛细血管密度的一个指标。9 名健康男性进行了为期 4 周的短期低强度小腿肌肉抗阻训练(非优势腿的大腿袖带充气至 150mmHg,进行 4 组 50 次脚跟抬高,每周 3 次),在限制(非优势腿)或非限制(优势腿无大腿袖带)血流条件下进行。在抗阻训练前后,通过应变计体积描记法评估小腿滤过能力和休息时血流,通过最大自主收缩和双侧电诱发缺血收缩期间的力量下降评估小腿肌肉力量和疲劳。限制血流的情况下,小腿滤过能力增加了 26%,而非限制血流的情况下则没有显著增加。限制血流的情况下,小腿肌肉力量增加了 18%,而非限制血流的情况下则没有变化。小腿肌肉疲劳和休息时血流在两条腿都没有变化。抗阻训练促进了微血管滤过能力的增加,血流限制在一定程度上增强了这种效果,这可能是由于毛细血管化增加所致。