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步态分析技术在假肢行走中的应用。

Gaitography applied to prosthetic walking.

作者信息

Roerdink Melvyn, Cutti Andrea G, Summa Aurora, Monari Davide, Veronesi Davide, van Ooijen Mariëlle W, Beek Peter J

机构信息

Faculty of Human Movement Sciences, MOVE Research Institute Amsterdam, VU University Amsterdam, Van der Boechorststraat 9, 1081 BT, Amsterdam, The Netherlands.

INAIL Centro Protesi, Budrio, Italy.

出版信息

Med Biol Eng Comput. 2014 Nov;52(11):963-969. doi: 10.1007/s11517-014-1195-1. Epub 2014 Sep 24.

Abstract

During walking on an instrumented treadmill with an embedded force platform or grid of pressure sensors, center-of-pressure (COP) trajectories exhibit a characteristic butterfly-like shape, reflecting the medio-lateral and anterior-posterior weight shifts associated with alternating steps. We define "gaitography" as the analysis of such COP trajectories during walking (the "gaitograms"). It is currently unknown, however, if gaitography can be employed to characterize pathological gait, such as lateralized gait impairments. We therefore registered gaitograms for a heterogeneous sample of persons with a trans-femoral and trans-tibial amputation during treadmill walking at a self-selected comfortable speed. We found that gaitograms directly visualize between-person differences in prosthetic gait in terms of step width and the relative duration of prosthetic and non-prosthetic single-support stance phases. We further demonstrated that one should not only focus on the gaitogram's shape but also on the time evolution along that shape, given that the COP evolves much slower in the single-support phase than in the double-support phase. Finally, commonly used temporal and spatial prosthetic gait characteristics were derived, revealing both individual and systematic differences in prosthetic and non-prosthetic step lengths, step times, swing times, and double-support durations. Because gaitograms can be rapidly collected in an unobtrusive and markerless manner over multiple gait cycles without constraining foot placement, clinical application of gaitography seems both expedient and appealing. Studies examining the repeatability of gaitograms and evaluating gaitography-based gait characteristics against a gold standard with known validity and reliability are required before gaitography can be clinically applied.

摘要

在配备嵌入式测力平台或压力传感器网格的仪器化跑步机上行走时,压力中心(COP)轨迹呈现出特征性的蝴蝶状,反映了与交替迈步相关的左右和前后重心转移。我们将“步态描记法”定义为对行走过程中此类COP轨迹的分析(“步态图”)。然而,目前尚不清楚步态描记法是否可用于表征病理性步态,如侧化步态障碍。因此,我们记录了经股骨截肢和经胫骨截肢患者的异质样本在跑步机上以自我选择的舒适速度行走时的步态图。我们发现,步态图能够直接直观地显示出假肢步态在步幅宽度以及假肢和非假肢单支撑站立阶段的相对持续时间方面的个体差异。我们进一步证明,不仅应关注步态图的形状,还应关注沿该形状的时间演变,因为COP在单支撑阶段的演变比在双支撑阶段慢得多。最后,得出了常用的假肢步态的时间和空间特征,揭示了假肢和非假肢步长、步时、摆动时间和双支撑持续时间方面的个体差异和系统差异。由于步态图可以在多个步态周期中以不引人注意且无标记的方式快速收集,而无需限制足部位置,步态描记法的临床应用似乎既方便又有吸引力。在步态描记法能够临床应用之前,需要进行研究来检验步态图的可重复性,并将基于步态描记法的步态特征与具有已知有效性和可靠性的金标准进行比较。

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