EFFECTS OF THE GENIUM MICROPROCESSOR KNEE SYSTEM ON KNEE MOMENT SYMMETRY DURING HILL WALKING.

IF 0.7 Q3 MULTIDISCIPLINARY SCIENCES Technology and Innovation Pub Date : 2016-09-01 DOI:10.21300/18.2-3.2016.151
M. J. Highsmith, Tyler D. Klenow, Jason T. Kahle, Matthew M Wernke, S. Carey, Rebecca M Miro, D. Lura
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引用次数: 7

Abstract

Use of the Genium microprocessor knee (MPK) system reportedly improves knee kinematics during walking and other functional tasks compared to other MPK systems. This improved kinematic pattern was observed when walking on different hill conditions and at different speeds. Given the improved kinematics associated with hill walking while using the Genium, a similar improvement in the symmetry of knee kinetics is also feasible. The purpose of this study was to determine if Genium MPK use would reduce the degree of asymmetry (DoA) of peak stance knee flexion moment compared to the C-Leg MPK in transfemoral amputation (TFA) patients. This study used a randomized experimental crossover of TFA patients using Genium and C-Leg MPKs (n = 20). Biomechanical gait analysis by 3D motion tracking with floor mounted force plates of TFA patients ambulating at different speeds on 5° ramps was completed. Knee moment DoA was significantly different between MPK conditions in the slow and fast uphill as well as the slow and self-selected downhill conditions. In a sample of high-functioning TFA patients, Genium knee system accommodation and use improved knee moment symmetry in slow speed walking up and down a five degree ramp compared with C-Leg. Additionally, the Genium improved knee moment symmetry when walking downhill at comfortable speed. These results likely have application in other patients who could benefit from more consistent knee function, such as older patients and others who have slower walking speeds.
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膝微处理器系统对山地行走膝关节力矩对称性的影响。
据报道,与其他MPK系统相比,使用Genium微处理器膝关节(MPK)系统可以改善行走和其他功能任务时的膝关节运动学。这种改进的运动学模式在不同的山地条件下以不同的速度行走时被观察到。考虑到在使用Genium时与爬山相关的运动学改善,膝关节动力学对称性的类似改善也是可行的。本研究的目的是确定在经股截肢(TFA)患者中,与使用c腿MPK相比,使用Genium MPK是否会降低峰位膝关节屈曲力矩的不对称程度(DoA)。本研究对使用Genium和C-Leg MPKs的TFA患者进行了随机交叉实验(n = 20)。采用三维运动跟踪技术对TFA患者在5°坡道上以不同速度行走的生物力学步态进行分析。在慢速上坡和快速下坡以及慢速下坡和自选下坡条件下,MPK条件下的膝关节力矩DoA存在显著差异。在高功能TFA患者的样本中,与C-Leg相比,Genium膝关节系统调节和使用改善的膝关节力矩对称在慢速上下5度斜坡行走。此外,Genium在以舒适的速度下坡时改善了膝关节力矩的对称性。这些结果可能适用于其他可能受益于更稳定的膝关节功能的患者,例如老年患者和其他行走速度较慢的患者。
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来源期刊
Technology and Innovation
Technology and Innovation MULTIDISCIPLINARY SCIENCES-
自引率
20.00%
发文量
12
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