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Gait and balance of transfemoral amputees using passive mechanical and microprocessor-controlled prosthetic knees.

机译:使用被动机械和微处理器控制的假肢膝盖,经股截肢者的步态和平衡。

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BACKGROUND: Microprocessor-controlled knee joints appeared on the market a decade ago. These joints are more sophisticated and more expensive than mechanical ones. The literature is contradictory regarding changes in gait and balance when using these sophisticated devices. METHODS: This study employed a crossover design to assess the comparative performance of a passive mechanical knee prosthesis compared to a microprocessor-controlled knee joint in 15 subjects with an above-knee amputation. Objective measurements of gait and balance were obtained. RESULTS: Subjects demonstrated significantly improved gait characteristics after receiving the microprocessor-controlled prosthetic knee joint (p<0.01). Improvements in gait were a transition from a hyperextended knee to a flexed knee during loading response which resulted in a change from an internal knee flexor moment to a knee extensor moment. The participants' balance also improved (p<0.01). All conditions of the Sensory Organization Test (SOT) demonstrated improvements in equilibrium score. The composite score also increased. CONCLUSIONS: Transfemoral amputees using a microprocessor-controlled knee have significant improvements in gait and balance.
机译:背景:十年前,微处理器控制的膝关节出现在市场上。这些接头比机械接头更复杂,更昂贵。使用这些复杂设备时,有关步态和平衡变化的文献相互矛盾。方法:本研究采用交叉设计评估了15名膝上截肢患者与膝关节微处理器控制的被动机械膝关节假体的比较性能。获得了步态和平衡的客观测量。结果:受试者接受了微处理器控制的假肢膝关节后,步态特征明显改善(p <0.01)。步态的改善是在负荷反应期间从过度伸展的膝盖过渡到弯曲的膝盖,这导致了从内部膝盖屈肌力矩到膝盖伸肌力矩的变化。参与者的平衡也有所改善(p <0.01)。感觉组织测试(SOT)的所有条件均表明平衡得分得到改善。综合得分也有所提高。结论:采用微处理器控制的膝盖的经股截肢者的步态和平衡能力明显改善。

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