Zmitrewicz Robert J, Neptune Richard R, Walden Judith G, Rogers William E, Bosker Gordon W
Department of Mechanical Engineering, University of Texas, Austin, TX 78712, USA.
Arch Phys Med Rehabil. 2006 Oct;87(10):1334-9. doi: 10.1016/j.apmr.2006.06.013.
To assess the influence of energy storage and return (ESAR) prosthetic feet and multi-axis ankles on ground reaction forces and loading asymmetry between lower limbs in transtibial amputees.
Subjects wore 2 different prosthetic feet with and without a multi-axis ankle and were analyzed using a blind repeated-measures multivariate analysis-of-variance design.
Gait analysis laboratory.
Fifteen healthy unilateral transtibial amputees (>55 y) who had an amputation at least 1 year before testing because of vascular disorders.
Not applicable.
The anteroposterior ground reaction force impulse, peak ground reaction forces, and braking and propulsion impulse duration were analyzed as subjects walked at a self-selected speed while wearing each of the 4 foot-ankle prosthesis combinations. Statistical analyses were used to determine if there was a significant foot, ankle, or foot-ankle interaction effect on the outcome measures for each foot (P<.05).
Amputees generated a significantly greater propulsive impulse with the residual leg when wearing a multi-axis ankle with the ESAR and non-ESAR foot, which improved the propulsive symmetry between the residual and intact legs. There was no prosthetic foot effect on these measures. There were no significant differences in the peak residual-leg braking or propulsive ground reaction forces or the impulse durations due to the prosthetic foot, ankle, or foot-ankle interactions, although an increase in the propulsive impulse duration approached significance (P=.062) with a multi-axis ankle.
These results suggest that amputee gait may improve with the prescription of multi-axis ankles that allow for greater propulsive impulses by the residual leg, which improve the loading symmetry between legs.
评估储能与回能(ESAR)假肢脚和多轴踝关节对胫骨截肢者地面反作用力及双下肢负荷不对称性的影响。
受试者穿戴有无多轴踝关节的两种不同假肢脚,并采用盲法重复测量多变量方差分析设计进行分析。
步态分析实验室。
15名健康的单侧胫骨截肢者(年龄>55岁),因血管疾病在测试前至少1年截肢。
不适用。
分析受试者以自选速度行走时,分别穿戴4种不同的假脚-踝关节组合时的前后向地面反作用力冲量、地面反作用力峰值以及制动和推进冲量持续时间。采用统计分析确定每种假脚在各观察指标上是否存在显著的假脚、踝关节或假脚-踝关节交互作用效应(P<0.05)。
截肢者在佩戴带有多轴踝关节的ESAR和非ESAR假脚时,残肢产生的推进冲量显著更大,这改善了残肢与健肢之间的推进对称性。这些测量指标不存在假脚效应。尽管多轴踝关节使推进冲量持续时间增加接近显著水平(P=0.062),但假脚、踝关节或假脚-踝关节交互作用对残肢制动或推进地面反作用力峰值以及冲量持续时间无显著差异。
这些结果表明,通过处方多轴踝关节,使残肢能够产生更大的推进冲量,从而改善双腿之间的负荷对称性,可能会改善截肢者的步态。