Department of Mechanical Engineering, The University of Texas at Austin, 1 University Station C2200, Austin, TX 78712, USA.
Gait Posture. 2011 Feb;33(2):220-6. doi: 10.1016/j.gaitpost.2010.11.009. Epub 2010 Dec 9.
In an effort to improve amputee gait, energy storage and return (ESAR) prosthetic feet have been developed to provide enhanced function by storing and returning mechanical energy through elastic structures. However, the effect of ESAR feet on muscle activity in amputee walking is not well understood. Previous studies have analyzed commercial prosthetic feet with a wide range of material properties and geometries, making it difficult to associate specific ESAR properties with changes in muscle activity. In contrast, prosthetic ankles offer a systematic way to manipulate ESAR properties while keeping the prosthetic heel and keel geometry intact. In the present study, ESAR ankles were added to a Seattle Lightfoot2 to carefully control the energy storage and return by altering the ankle stiffness and orientation in order to identify its effect on lower extremity muscle activity during below-knee amputee walking. A total of five foot conditions were analyzed: solid ankle (SA), stiff forward-facing ankle (FA), compliant FA, stiff reverse-facing ankle (RA) and compliant RA. The ESAR ankles decreased the activity of muscles that contribute to body forward propulsion and increased the activity of muscles that provide body support. The compliant ankles generally caused a greater change in muscle activity than the stiff ankles, but without a corresponding increase in energy return. Ankle orientation also had an effect, with RA generally causing a lower change in muscle activity than FA. These results highlight the influence of ESAR stiffness on muscle activity and the importance of prescribing appropriate prosthetic foot stiffness to improve rehabilitation outcomes.
为了改善截肢者的步态,人们开发了能量储存和返回(ESAR)假肢脚,通过弹性结构储存和返回机械能,从而提供增强的功能。然而,ESAR 脚对截肢者行走中肌肉活动的影响还不太清楚。以前的研究分析了具有广泛材料特性和几何形状的商业假肢脚,因此很难将特定的 ESAR 特性与肌肉活动的变化联系起来。相比之下,假肢踝关节提供了一种系统的方法来操纵 ESAR 特性,同时保持假肢脚跟和龙骨的几何形状不变。在本研究中,为西雅图 Lightfoot2 添加了 ESAR 踝关节,通过改变踝关节的刚度和方向来仔细控制能量的储存和返回,以确定其对下肢肌肉活动的影响在膝下截肢者行走过程中。总共分析了五种脚的情况:实心踝关节(SA)、刚性前向踝关节(FA)、顺应性 FA、刚性后向踝关节(RA)和顺应性 RA。ESAR 踝关节降低了有助于身体向前推进的肌肉的活动,增加了提供身体支撑的肌肉的活动。顺应性踝关节通常比刚性踝关节引起更大的肌肉活动变化,但没有相应增加能量返回。踝关节的方向也有影响,RA 通常比 FA 引起的肌肉活动变化更小。这些结果强调了 ESAR 刚度对肌肉活动的影响,以及为了改善康复效果而规定适当的假肢脚刚度的重要性。