Northwestern University Prosthetics-Orthotics Center, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
Gait Posture. 2013 Sep;38(4):858-63. doi: 10.1016/j.gaitpost.2013.04.012. Epub 2013 May 13.
Bilateral transtibial amputee (BTA) gait has been investigated less and is not as well understood compared to that of their unilateral counterparts. Relative to able-bodied individuals, BTAs walk with reduced self-selected speeds, increased step width, hip-hiking, and greater metabolic cost. The clinically observed upper body motions of these individuals have not been quantified, but appear substantially different from able-bodied ambulators and may impact upright balance. Therefore, the objective of this study was to characterize the upper extremity kinematics of BTAs during steady-state walking. We measured medial-lateral ground reaction forces, step width and extrapolated center-of-mass (XCoM) trajectory, and observed effects of walking speed and increased prosthetic ankle range-of-motion (ROM) on these parameters. Significantly, BTAs display greater lateral trunk flexion ROM and shoulder abduction than able-bodied individuals when walking at similar speeds, and the inclusion of prosthetic adaptors for increasing passive ankle ROM slightly reduced step width. Overall, exaggerated lateral trunk flexion ROM was invariant with step width. Results suggest that lateral trunk motion is useful for shifting the body center-of-mass laterally onto the leading stance limb while simultaneously unloading the trailing limb. However, exaggerated lateral trunk flexion may introduce an unstable scenario if the XCoM is displaced beyond the lateral base-of-support. Further studies would be useful to identify if either prostheses that assist limb advancement and/or gait training may be effective in reducing this lateral sway while still maintaining efficient ambulation.
双侧小腿截肢者(BTA)的步态与单侧截肢者相比,研究较少,了解也较少。与健全人相比,BTA 的自选择速度降低,步幅增加,髋部抬高,代谢成本增加。这些人临床观察到的上半身运动尚未量化,但与健全的步行者明显不同,可能会影响直立平衡。因此,本研究的目的是描述 BTA 在稳态行走过程中的上肢运动学。我们测量了横向地面反作用力、步幅和外推质心(XCoM)轨迹,并观察了行走速度和增加假肢踝关节活动范围(ROM)对这些参数的影响。值得注意的是,当以相似的速度行走时,BTA 的躯干横向屈曲 ROM 和肩部外展幅度明显大于健全人,而增加被动踝关节 ROM 的假肢适配器略微减小了步幅。总体而言,夸张的横向躯干屈曲 ROM 与步幅不变。结果表明,横向躯干运动有助于将身体质心横向转移到主导支撑腿上,同时减轻后腿的负荷。然而,如果 XCoM 移位超出侧向支撑基础,夸张的横向躯干屈曲可能会引入不稳定的情况。进一步的研究将有助于确定是否可以通过辅助肢体前进的假肢和/或步态训练来减少这种横向摆动,同时仍保持有效的步行。