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Calf Compression Sleeves Change Biomechanics but Not Performance and Physiological Responses in Trail Running

机译:小腿压缩袖在越野跑中不会改变生物力学,但不会改变性能和生理反应

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摘要

Introduction: The aim of this study was to determine whether calf compression sleeves (CS) affects physiological and biomechanical parameters, exercise performance, and perceived sensations of muscle fatigue, pain and soreness during prolonged (~2 h 30 min) outdoor trail running. Methods: Fourteen healthy trained males took part in a randomized, cross-over study consisting in two identical 24-km trail running sessions (each including one bout of running at constant rate on moderately flat terrain, and one period of all-out running on hilly terrain) wearing either degressive CS (23 ± 2 mmHg) or control sleeves (CON, &4 mmHg). Running time, heart rate and muscle oxygenation of the medial gastrocnemius muscle (measured using portable near-infrared spectroscopy) were monitored continuously. Muscle functional capabilities (power, stiffness) were determined using 20 s of maximal hopping before and after both sessions. Running biomechanics (kinematics, vertical and leg stiffness) were determined at 12 km·h−1 at the beginning, during, and at the end of both sessions. Exercise-induced Achilles tendon pain and delayed onset calf muscles soreness (DOMS) were assessed using visual analog scales. Results: Muscle oxygenation increased significantly in CS compared to CON at baseline and immediately after exercise (p & 0.05), without any difference in deoxygenation kinetics during the run, and without any significant change in run times. Wearing CS was associated with (i) higher aerial time and leg stiffness in running at constant rate, (ii) with lower ground contact time, higher leg stiffness, and higher vertical stiffness in all-out running, and (iii) with lower ground contact time in hopping. Significant DOMS were induced in both CS and CON (>6 on a 10-cm scale) with no difference between conditions. However, Achilles tendon pain was significantly lower after the trial in CS than CON (p & 0.05). Discussion: Calf compression did not modify muscle oxygenation during ~2 h 30 of trail running but significantly changed running biomechanics and lower limb muscle functional capabilities toward a more dynamic behavior compared to control session. However, wearing compression sleeves did not affect performance and exercise-induced DOMS, while it minimized Achilles tendon pain immediately after running.
机译:简介:这项研究的目的是确定小腿压缩袖(CS)是否会在长时间(〜2 h 30分钟)的户外越野跑中影响生理和生物力学参数,运动表现以及肌肉疲劳,疼痛和酸痛的感觉。方法:14名健康训练有素的男性参加了一项随机,交叉研究,包括两次相同的24公里越野跑比赛(每次包括在中等平坦的地形上以恒定速度进行一轮跑步,以及一次全程跑步)。穿着低级CS(23±2 mmHg)或控制袖(CON,&4 mmHg)。持续监测内侧腓肠肌的运行时间,心率和肌肉氧合(使用便携式近红外光谱仪测量)。在两个疗程之前和之后,均使用20 s的最大跳跃来确定肌肉的功能能力(力量,刚度)。在这两个阶段的开始,过程中和结束时,以12 km·h-1的速度确定跑步生物力学(运动学,垂直和腿部僵硬)。运动诱发的跟腱疼痛和小腿迟发性肌肉酸痛(DOMS)使用视觉模拟量表进行评估。结果:与基线时和运动后立即结束后相比,CS中的肌肉氧合显着增加(p&0.05),在跑步过程中脱氧动力学没有任何差异,并且跑步时间也没有任何显着变化。穿着CS与(i)以恒定速度跑步时较高的空中时间和腿部僵硬,(ii)较低的地面接触时间,较高的腿部僵硬和较高的垂直刚度(在全速奔跑中)以及(iii)地面较低的情况有关跳跃中的联系时间。在CS和CON中均诱导出明显的DOMS(在10厘米范围内> 6),条件之间没有差异。然而,在CS试验后,跟腱疼痛明显低于CON(p和0.05)。讨论:小腿受压并没有在越野跑的约2 h 30内改变肌肉的氧合作用,但显着改变了跑步生物力学和下肢肌肉的功能能力,使之与对照相比更具动态性。但是,穿着压缩袖不会影响运动表现和运动诱发的DOMS,尽管这样可以最大程度地减少跑步后跟腱的疼痛。

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