Doyle Sean S, Lemaire Edward D, Besemann Markus, Dudek Nancy L
University of Ottawa, School of Human Kinetics, Canada; Ottawa Hospital Research Institute, Centre for Rehabilitation Research and Development, Canada.
Ottawa Hospital Research Institute, Centre for Rehabilitation Research and Development, Canada; University of Ottawa, Faculty of Medicine, Canada.
Clin Biomech (Bristol). 2014 Feb;29(2):149-54. doi: 10.1016/j.clinbiomech.2013.11.019. Epub 2013 Dec 4.
Many occupations and hobbies require the use of a weighted pack. To date there has been limited backpack gait studies performed on the amputee population. It is important that we address this knowledge gap in order to further improve individual's quality of living through changes in rehabilitation, and prosthesis development.
The study population was ten male, unilateral, traumatic, K4-level (ability for prosthetic ambulation with high impact, stress, or energy levels), transtibial amputees. Ten walking trials were collected on level ground; five with a 24.5 kg backpack and five without a backpack. Temporal-spatial parameters and kinematic and kinetic peak values for the ankle, knee, hip, pelvis, and trunk were collected and analyzed for significant differences.
Temporal-spatial parameters incurred changes that were congruent with the literature on able bodied individuals. Pelvis speeds and range of motion decreased with the pack. Knee flexion during weight acceptance increased, and was supported on the intact limb by increased eccentric knee power during weight acceptance. Hip flexion on both limbs also increased during weight acceptance while wearing the backpack.
The backpack load can be accommodated by people at a K4 functional level for level ground walking. At the prosthetic limb, greater deformation was found at the foot-ankle and further increases in pack weight and higher impact tasks (i.e., jogging) could lead to decreased performance for some prosthetic feet. Gait training programs should focus on removing any gait asymmetries and increasing the strength of both the hip and knee flexors.
许多职业和爱好都需要使用负重背包。迄今为止,针对截肢者群体进行的背包步态研究有限。为了通过康复和假肢开发的改变进一步提高个体的生活质量,填补这一知识空白很重要。
研究对象为10名男性单侧创伤性K4级(具有高冲击力、压力或能量水平的假肢行走能力)胫骨截肢者。在平地上收集了10次行走试验数据;5次背着24.5公斤的背包,5次不背背包。收集并分析了踝关节、膝关节、髋关节、骨盆和躯干的时空参数以及运动学和动力学峰值,以找出显著差异。
时空参数发生的变化与健全个体的文献一致。背包时骨盆速度和活动范围减小。负重时膝关节屈曲增加,健全肢体通过负重时增加的膝关节离心力得到支撑。背着背包负重时,双下肢髋关节屈曲也增加。
K4功能水平的人可以适应背包负重进行平地步态行走。在假肢肢体上,足踝处发现更大变形,背包重量进一步增加以及更高冲击任务(如慢跑)可能导致一些假肢脚的性能下降。步态训练计划应侧重于消除任何步态不对称,并增强髋部和膝部屈肌的力量。