Military Performance Laboratory, Center for the Intrepid, Department of Orthopedics and Rehabilitation, Brooke Army Medical Center, Fort Sam Houston, TX, USA.
J Biomech. 2012 Feb 2;45(3):588-94. doi: 10.1016/j.jbiomech.2011.11.007. Epub 2011 Dec 15.
Unilateral lower limb prosthesis users display temporal, kinematic, and kinetic asymmetries between limbs while ascending and descending stairs. These asymmetries are due, in part, to the inability of current prosthetic devices to effectively mimic normal ankle function. The purpose of this study was to provide a comprehensive set of biomechanical data for able-bodied and unilateral transtibial amputee (TTA) ankle-foot systems for level-ground (LG), stair ascent (SA), and stair descent (SD), and to characterize deviations from normal performance associated with prosthesis use. Ankle joint kinematics, kinetics, torque-angle curves, and effective shapes were calculated for twelve able-bodied individuals and twelve individuals with TTA. The data from this study demonstrated the prosthetic limb can more effectively mimic the range of motion and power output of a normal ankle-foot during LG compared to SA and SD. There were larger differences between the prosthetic and able-bodied limbs during SA and SD, most evident in the torque-angle curves and effective shapes. These data can be used by persons designing ankle-foot prostheses and provide comparative data for assessment of future ankle-foot prosthesis designs.
单侧下肢假肢使用者在上下楼梯时,其肢体在时间、运动学和动力学上存在不对称性。这些不对称性部分归因于当前假肢设备无法有效地模拟正常踝关节功能。本研究的目的是为健全人和单侧胫骨截肢(TTA)踝足系统提供全面的生物力学数据,用于平地(LG)、楼梯上升(SA)和楼梯下降(SD),并描述与使用假肢相关的正常性能偏差。对 12 名健全人和 12 名 TTA 个体的踝关节运动学、动力学、转矩-角度曲线和有效形状进行了计算。本研究的数据表明,与 SA 和 SD 相比,在 LG 时,假肢腿可以更有效地模拟正常踝足的运动范围和功率输出。在 SA 和 SD 期间,假肢和健全肢体之间存在更大的差异,在转矩-角度曲线和有效形状上最为明显。这些数据可用于设计踝足假肢的人员,并为评估未来的踝足假肢设计提供比较数据。