Burger H, Erzar D, Maver T, Olensek A, Cikajlo I, Matjacić Z
Institute for Rehabilitation, Linhartova 51, SI-1000 Ljubljana, Slovenia.
Clin Biomech (Bristol). 2009 Jul;24(6):510-6. doi: 10.1016/j.clinbiomech.2009.03.010. Epub 2009 Apr 21.
Currently accepted understanding is that silicone foot prostheses have little influence on biomechanics of walking; however clinical observations suggest several beneficial effects. The objective of this study was to characterize biomechanics of gait in a group of subjects with disarticulation through the talonavicular (T-N) and calcaneocuboid (C-C) (midtarsal) joints wearing two different prosthetic solutions: silicone prostheses and conventional prostheses.
Four subjects that underwent Chopart partial foot amputation were included in the study. Silicone prosthesis was custom manufactured for each individual subject. Instrumented gait analysis was performed in each subject in four experimental conditions: barefooted, barefooted and wearing silicon prosthesis, wearing footwear with conventional prosthesis and wearing footwear with silicon prosthesis. Comparisons and statistical analysis were made between both barefooted conditions and both foot-wearing conditions.
Our results show that silicone prosthesis without reinforced sole increases gait velocity, improves generation of ankle plantarflexion moment throughout the stance phase and enables greater power generation at push-off. The most important changes, however, occur in the frontal plane, where improved hip adduction angles and higher hip abduction moment in the stance enable more normal pelvic movement and consequently also less trunk inclination toward amputated side.
We conclude that silicone prostheses are not solely for cosmetic reasons but may be also biomechanically superior over other prosthetic solutions, especially for walking barefoot.
目前公认的观点是,硅胶足部假体对步行生物力学影响不大;然而,临床观察表明有一些有益效果。本研究的目的是对一组通过距舟(T-N)和跟骰(C-C)(中跗)关节离断的受试者在佩戴两种不同假体解决方案(硅胶假体和传统假体)时的步态生物力学进行特征描述。
本研究纳入了4名接受Chopart部分足部截肢的受试者。为每个受试者定制硅胶假体。在四种实验条件下对每个受试者进行仪器化步态分析:赤脚、赤脚并佩戴硅胶假体、穿着传统假体的鞋子以及穿着硅胶假体的鞋子。对两种赤脚条件和两种穿鞋条件进行比较和统计分析。
我们的结果表明,没有加固鞋底的硅胶假体可提高步态速度,在整个站立期改善踝关节跖屈力矩的产生,并在蹬离期实现更大的功率产生。然而,最重要的变化发生在额平面,站立时改善的髋关节内收角度和更高的髋关节外展力矩使骨盆运动更正常,因此也减少了躯干向截肢侧的倾斜。
我们得出结论,硅胶假体不仅出于美观原因,而且在生物力学上可能也优于其他假体解决方案,尤其是在赤脚行走时。