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动力响应式假肢足与刚性“踝关节”在小腿截肢者步行中的能量消耗比较:身体质心动力学的见解。

Energy cost of ambulation in trans-tibial amputees using a dynamic-response foot with hydraulic versus rigid 'ankle': insights from body centre of mass dynamics.

机构信息

School of Biomedical Sciences, Faculty of Biological Sciences, University of Leeds, Leeds, LS2 9JT, UK.

Department of Pathophysiology and Transplantation, Faculty of Medicine, University of Milan, Milan, Italy.

出版信息

J Neuroeng Rehabil. 2019 Mar 14;16(1):39. doi: 10.1186/s12984-019-0508-x.

Abstract

BACKGROUND

Previous research has shown that use of a dynamic-response prosthetic foot (DRF) that incorporates a small passive hydraulic ankle device (hyA-F), provides certain biomechanical benefits over using a DRF that has no ankle mechanism (rigA-F). This study investigated whether use of a hyA-F in unilateral trans-tibial amputees (UTA) additionally provides metabolic energy expenditure savings and increases the symmetry in walking kinematics, compared to rigA-F.

METHODS

Nine active UTA completed treadmill walking trials at zero gradient (at 0.8, 1.0, 1.2, 1.4, and 1.6 of customary walking speed) and for customary walking speed only, at two angles of decline (5° and 10°). The metabolic cost of locomotion was determined using respirometry. To gain insights into the source of any metabolic savings, 3D motion capture was used to determine segment kinematics, allowing body centre of mass dynamics (BCoM), differences in inter-limb symmetry and potential for energy recovery through pendulum-like motion to be quantified for each foot type.

RESULTS

During both level and decline walking, use of a hyA-F compared to rigA-F significantly reduced the total mechanical work and increased the interchange between the mechanical energies of the BCoM (recovery index), leading to a significant reduction in the metabolic energy cost of locomotion, and hence an associated increase in locomotor efficiency (p < 0.001). It also increased inter-limb symmetry (medio-lateral and progression axes, particularly when walking on a 10° decline), highlighting the improvements in gait were related to a lessening of the kinematic compensations evident when using the rigA-F.

CONCLUSIONS

Findings suggest that use of a DRF that incorporates a small passive hydraulic ankle device will deliver improvements in metabolic energy expenditure and kinematics and thus should provide clinically meaningful benefits to UTAs' everyday locomotion, particularly for those who are able to walk at a range of speeds and over different terrains.

摘要

背景

先前的研究表明,与没有踝关节机构的动态响应假肢(rigA-F)相比,使用带有小型被动液压踝关节装置(hyA-F)的动态响应假肢可为患者提供某些生物力学益处。本研究旨在探讨单侧胫骨截肢患者(UTA)使用 hyA-F 是否与 rigA-F 相比,还可以节省代谢能量消耗并增加步行运动学的对称性。

方法

九名活跃的 UTA 在零梯度(0.8、1.0、1.2、1.4 和 1.6 倍常规步行速度)和仅常规步行速度下的跑步机行走试验中完成了行走试验,在两个坡度(5°和 10°)下进行。使用呼吸量计确定运动的代谢成本。为了深入了解任何代谢节省的来源,使用 3D 运动捕捉来确定节段运动学,从而可以确定身体质心动力学(BCoM)、肢体间对称性的差异以及通过钟摆式运动恢复能量的潜力,从而为每种脚型定量。

结果

在水平和下降行走过程中,与 rigA-F 相比,使用 hyA-F 显著降低了总机械功,并增加了 BCoM 机械能之间的交换(恢复指数),从而显著降低了运动的代谢能量成本,因此运动效率也随之提高(p<0.001)。它还增加了肢体间的对称性(横向和前进轴,特别是在 10°下降时),这表明步态的改善与使用 rigA-F 时明显减少的运动补偿有关。

结论

研究结果表明,使用带有小型被动液压踝关节装置的动态响应假肢将改善代谢能量消耗和运动学,从而为 UTA 的日常运动提供有意义的临床益处,特别是对于那些能够以不同速度和不同地形行走的患者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e99/6417010/0f63bc51c09c/12984_2019_508_Fig1_HTML.jpg

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