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截肢者的运动:使用专门为跑步设计的假肢进行下肢负荷。

Amputee locomotion: lower extremity loading using running-specific prostheses.

机构信息

Japan Society for the Promotion of Science, Tokyo, Japan; Department of Kinesiology, University of Maryland, College Park, MD, USA.

出版信息

Gait Posture. 2014;39(1):386-90. doi: 10.1016/j.gaitpost.2013.08.010. Epub 2013 Aug 18.

Abstract

Carbon fiber running-specific prostheses (RSPs) have allowed individuals with lower extremity amputation (ILEA) to actively participate in sporting activities including competitive sports. In spite of this positive trait, the RSPs have not been thoroughly evaluated regarding potential injury risks due to abnormal loading during running. Vertical impact peak (VIP) and average loading rate (VALR) of the vertical ground reaction force (vGRF) have been associated with running injuries in able-bodied runners but not for ILEA. The purpose of this study was to investigate vGRF loading in ILEA runners using RSPs across a range of running speeds. Eight ILEA with unilateral transtibial amputations and eight control subjects performed overground running at three speeds (2.5, 3.0, and 3.5m/s). From vGRF, we determined VIP and VALR, which was defined as the change in force divided by the time of the interval between 20 and 80% of the VIP. We observed that VIP and VALR increased in both ILEA and control limbs with an increase in running speed. Further, the VIP and VALR in ILEA intact limbs were significantly greater than ILEA prosthetic limbs and control subject limbs for this range of running speeds. These results suggest that (1) loading variables increase with running speed not only in able-bodied runners, but also in ILEA using RSPs, and (2) the intact limb in ILEA may be exposed to a greater risk of running related injury than the prosthetic limb or able-bodied limbs.

摘要

碳纤维跑步专用假肢(RSP)使下肢截肢(ILEA)患者能够积极参与包括竞技体育在内的体育活动。尽管具有这种积极的特点,但由于跑步过程中出现异常负荷,RSP 尚未对其潜在的受伤风险进行全面评估。垂直冲击峰值(VIP)和垂直地面反作用力(vGRF)的平均加载率(VALR)与健全跑步者的跑步受伤有关,但与 ILEA 无关。本研究的目的是调查使用 RSP 在不同跑步速度下 ILEA 跑步者的 vGRF 负荷。8 名单侧胫骨截肢的 ILEA 和 8 名对照受试者分别以 3 种速度(2.5、3.0 和 3.5m/s)在地面上跑步。从 vGRF 中,我们确定了 VIP 和 VALR,它被定义为力的变化除以从 VIP 的 20%到 80%之间的时间段的时间。我们观察到 VIP 和 VALR 随着跑步速度的增加而在 ILEA 和对照肢体中增加。此外,在这个跑步速度范围内,ILEA 完整肢体的 VIP 和 VALR 明显大于 ILEA 假肢肢体和对照受试者肢体。这些结果表明:(1)不仅在健全跑步者中,而且在使用 RSP 的 ILEA 中,加载变量随着跑步速度的增加而增加,(2)ILEA 中的完整肢体可能比假肢肢体或健全肢体更容易受到与跑步相关的受伤风险。

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本文引用的文献

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Effects of Design Variants in Lower-Limb Prostheses on Gait Synergy.下肢假肢设计变体对步态协同的影响。
J Prosthet Orthot. 1997 Summer;9(3):113-122. doi: 10.1097/00008526-199700930-00005.
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Gait retraining to reduce lower extremity loading in runners.步态再训练以减轻跑步者下肢负荷。
Clin Biomech (Bristol). 2011 Jan;26(1):78-83. doi: 10.1016/j.clinbiomech.2010.09.003.
10
Running-specific prostheses limit ground-force during sprinting.跑步专用假肢限制短跑时的地面作用力。
Biol Lett. 2010 Apr 23;6(2):201-4. doi: 10.1098/rsbl.2009.0729. Epub 2009 Nov 4.

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