Chow Daniel H K, Kwok Monica L Y, Au-Yang Alexander C K, Holmes Andrew D, Cheng Jack C Y, Yao Fiona Y D, Wong M S
Jockey Club Rehabilitation Engineering Centre, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.
Ergonomics. 2005 May 15;48(6):642-56. doi: 10.1080/00140130500070921.
Concerns regarding the effects of load carriage have led to recommendations that backpacks be limited to 10?-?15% of body weight, based on significant changes in physical performance. However, gait responses to backpack loads are not entirely consistent and there is a particular lack of data regarding load-bearing gait in adolescent females. Gait patterns of 22 normal adolescent girls were recorded at backpack loads of 0, 7.5, 10.0, 12.5 and 15.0% body weight. Temporal-distance, ground reaction force and joint kinematic, moment and power parameters were analysed by repeated measures ANOVA with factors of backpack load and side (left or right). Walking speed and cadence decreased significantly with increasing backpack load, while double support time increased. Kinematic changes were most marked at the proximal joints, with a decreased pelvic motion but a significant increase in the hip sagittal plane motion. Increased moments and power at the hip, knee and ankle showed increasing demand with backpack load. Parameters showed different responses to increasing load, and those that suggested a critical load indicated this to be approximately 10% body weight. While this may be due to a change in gait due to increased demand, further work is required to verify this and also to examine the cumulative effects of backpack load on the musculoskeletal system, which may be more appropriate in determining recommended load limits.
鉴于对背负负载影响的担忧,基于身体机能的显著变化,有人建议背包重量应限制在体重的10%至15%。然而,对背包负载的步态反应并不完全一致,而且关于青春期女性负重步态的数据尤其缺乏。记录了22名正常青春期女孩在背包负载分别为体重的0%、7.5%、10.0%、12.5%和15.0%时的步态模式。通过重复测量方差分析对时间距离、地面反作用力以及关节运动学、力矩和功率参数进行分析,分析因素包括背包负载和侧别(左或右)。随着背包负载增加,步行速度和步频显著下降,而双支撑时间增加。运动学变化在近端关节最为明显,骨盆运动减少,但髋关节矢状面运动显著增加。随着背包负载增加,髋、膝和踝关节的力矩和功率需求增加。参数对负载增加呈现不同反应,那些表明存在临界负载的参数显示该临界负载约为体重的10%。虽然这可能是由于需求增加导致步态改变,但仍需要进一步研究来验证这一点,并研究背包负载对肌肉骨骼系统的累积影响,这在确定推荐负载限制时可能更为合适。