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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Biomechanical effect of electromechanical knee-ankle-foot-orthosis on knee joint control in patients with poliomyelitis.
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Biomechanical effect of electromechanical knee-ankle-foot-orthosis on knee joint control in patients with poliomyelitis.

机译:脊髓灰质炎患者中机电膝膝踝足矫形器对膝关节控制的生物力学效果。

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摘要

In this study, an ideal electromechanical KAFO, satisfying stability in the stance and knee flexion in the swing phase during walking, was developed. Biomechanical evaluations were performed on four polio patients by means of three-dimensional gait analyses and energy consumption studies. From the three-dimensional gait analysis on poliomyelitis patients, a considerable amount of knee flexion during the swing phase was observed in controlled-knee gait, which resulted in approximately 33% less energy consumption than in locked-knee gait. The developed electromechanical KAFO in this study was helpful in poliomyelitis patients having partial or complete paralysis of the lower extremity, providing both stability in the stance and free swinging of the knee. This unit was efficient in the transfer of energy.
机译:在这项研究中,开发了一种理想的机电式KAFO,该KAFO可以满足步行过程中步态的姿势稳定性和膝部屈曲的要求。通过三维步态分析和能量消耗研究对四名小儿麻痹症患者进行了生物力学评估。根据对脊髓灰质炎患者的三维步态分析,在控制膝步态中,观察到在挥杆阶段膝关节屈曲相当多,与锁定膝步态相比,能耗降低了约33%。在这项研究中开发的机电式KAFO对患有下肢部分或完全麻痹的小儿麻痹症患者有帮助,既能保持姿势稳定,又能使膝盖自由摆动。该单元在能量传递方面是有效的。

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