Fellin Rebecca E, Seay Joseph F, Gregorczyk Karen N, Hasselquist Leif
Military Performance Division, US Army Research Institute of Environmental Medicine, Natick, MA, USA.
US Army Natick Soldier Research, Development and Engineering Center, Natick, MA, USA.
J Hum Kinet. 2016 Apr 13;50:27-35. doi: 10.1515/hukin-2015-0138. eCollection 2016 Apr 1.
Influences of load carriage and inclination on spatiotemporal parameters were examined during treadmill and overground walking. Ten soldiers walked on a treadmill and overground with three load conditions (00 kg, 20 kg, 40 kg) during level, uphill (6% grade) and downhill (-6% grade) inclinations at self-selected speed, which was constant across conditions. Mean values and standard deviations for double support percentage, stride length and a step rate were compared across conditions. Double support percentage increased with load and inclination change from uphill to level walking, with a 0.4% stance greater increase at the 20 kg condition compared to 00 kg. As inclination changed from uphill to downhill, the step rate increased more overground (4.3 ± 3.5 steps/min) than during treadmill walking (1.7 ± 2.3 steps/min). For the 40 kg condition, the standard deviations were larger than the 00 kg condition for both the step rate and double support percentage. There was no change between modes for step rate standard deviation. For overground compared to treadmill walking, standard deviation for stride length and double support percentage increased and decreased, respectively. Changes in the load of up to 40 kg, inclination of 6% grade away from the level (i.e., uphill or downhill) and mode (treadmill and overground) produced small, yet statistically significant changes in spatiotemporal parameters. Variability, as assessed by standard deviation, was not systematically lower during treadmill walking compared to overground walking. Due to the small magnitude of changes, treadmill walking appears to replicate the spatiotemporal parameters of overground walking.
在跑步机行走和地面行走过程中,研究了负重和倾斜度对时空参数的影响。10名士兵在跑步机和地面上行走,有三种负重条件(0千克、20千克、40千克),在水平、上坡(6%坡度)和下坡(-6%坡度)时以自行选择的速度行走,该速度在不同条件下保持恒定。比较了不同条件下双支撑百分比、步长和步频的平均值及标准差。双支撑百分比随着负重和从上坡到水平行走的倾斜度变化而增加,在20千克负重条件下比0千克时站立增加幅度大0.4%。当倾斜度从上坡变为下坡时,地面行走时步频增加幅度(4.3±3.5步/分钟)大于跑步机行走(1.7±2.3步/分钟)。对于40千克负重条件,步频和双支撑百分比的标准差均大于0千克条件。步频标准差在不同模式间无变化。与跑步机行走相比,地面行走时步长标准差增加,双支撑百分比标准差减小。负重增加至40千克、倾斜度偏离水平6%坡度(即上坡或下坡)以及模式(跑步机和地面)的变化,导致时空参数产生虽小但具有统计学意义的变化。通过标准差评估的变异性,在跑步机行走时并不比地面行走时系统性地更低。由于变化幅度较小,跑步机行走似乎能重现地面行走的时空参数。