Pitkin Mark R
Department of physical medicine and rehabilitation at Tufts University School of Medicine, 75 Kneeland St., Boston, MA 02111; fax (617) 636-5513.
J Prosthet Orthot. 1997 Summer;9(3):113-122. doi: 10.1097/00008526-199700930-00005.
A lower-limb prosthesis is the mechanical device with which an amputee's residual limb interacts with the walking surface. The pressure and shear forces that affect the residuum due to prosthesis use are the sources of pain, residual-limb skin problems and gait deviations. Direct approaches to reducing these problems include improving fit, alignment technique and socket design as well as increasing cushioning with socket liners. A summary of typical malalignments and their consequences is presented. The malalignments are considered sources of excessive moments applied to the residuum, which simplifies the analysis of a patient's gait. A better design of prosthetic joints could improve prosthetic gait. This article addresses the key mechanical parameter of prosthetic joints, namely the dependence "moment of resistance/angle of deflection." A mathematical model has been developed that links stresses on the residuum in transtibial amputees with the moment of resistance in the prosthetic ankle at the critical gait phases. Analysis of the model yields a substantial decrease in stresses on the residuum during the most demanding, load-bearing phase of stance if the moment of resistance in the ankle is similar to that seen in the biological ankle joint. Gait study shows use of the experimental rolling-joint prosthetic foot more closely simulates normal gait synergy than the SACH foot.
下肢假肢是一种机械装置,截肢者的残肢通过它与行走表面相互作用。因使用假肢而作用于残肢的压力和剪切力是疼痛、残肢皮肤问题及步态偏差的根源。减少这些问题的直接方法包括改善适配性、对线技术和接受腔设计,以及增加接受腔衬垫的缓冲作用。本文总结了典型的对线不良及其后果。这些对线不良被认为是作用于残肢的过大力矩的来源,这简化了对患者步态的分析。更好的假肢关节设计可以改善假肢步态。本文探讨了假肢关节的关键力学参数,即“阻力矩/偏转角”的相关性。已经建立了一个数学模型,该模型将胫骨截肢者残肢上的应力与假肢踝关节在关键步态阶段的阻力矩联系起来。对该模型的分析表明,如果踝关节的阻力矩与生物踝关节的阻力矩相似,那么在站立期最需要承重的阶段,残肢上的应力会大幅降低。步态研究表明,与SACH假足相比,使用实验性滚动关节假足能更紧密地模拟正常步态协同作用。