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女性跑步爱好者跑步相关损伤的动力学风险因素。

Kinetic risk factors of running-related injuries in female recreational runners.

机构信息

Department of Physical Therapy, Faculty of Medicine, University of British Columbia, Vancouver, BC, Canada.

Fortius Lab, Fortius Institute, Burnaby, BC, Canada.

出版信息

Scand J Med Sci Sports. 2018 Oct;28(10):2164-2172. doi: 10.1111/sms.13228. Epub 2018 Jun 28.

Abstract

Our objective was to prospectively investigate the association of kinetic variables with running-related injury (RRI) risk. Seventy-four healthy female recreational runners ran on an instrumented treadmill while 3D kinetic and kinematic data were collected. Kinetic outcomes were vertical impact transient, average vertical loading rate, instantaneous vertical loading rate, active peak, vertical impulse, and peak braking force (PBF). Participants followed a 15-week half-marathon training program. Exposure time (hours of running) was calculated from start of program until onset of injury, loss to follow-up, or end of program. After converting kinetic variables from continuous to ordinal variables based on tertiles, Cox proportional hazard models with competing risks were fit for each variable independently, before analysis in a forward stepwise multivariable model. Sixty-five participants were included in the final analysis, with a 33.8% injury rate. PBF was the only kinetic variable that was a significant predictor of RRI. Runners in the highest tertile (PBF < -0.27 BW) were injured at 5.08 times the rate of those in the middle tertile and 7.98 times the rate of those in the lowest tertile. When analyzed in the multivariable model, no kinetic variables made a significant contribution to predicting injury beyond what had already been accounted for by PBF alone. Findings from this study suggest PBF is associated with a significantly higher injury hazard ratio in female recreational runners and should be considered as a target for gait retraining interventions.

摘要

我们的目的是前瞻性地研究动力学变量与跑步相关损伤(RRI)风险的关系。74 名健康的女性休闲跑步者在带仪器的跑步机上跑步,同时收集 3D 动力学和运动学数据。动力学结果包括垂直冲击瞬态、平均垂直加载率、瞬时垂直加载率、主动峰值、垂直冲量和峰值制动力(PBF)。参与者遵循 15 周半程马拉松训练计划。暴露时间(跑步小时数)是从计划开始到损伤、失访或计划结束的时间。根据三分位数将动力学变量从连续变量转换为有序变量后,使用竞争风险的 Cox 比例风险模型分别对每个变量进行拟合,然后在向前逐步多变量模型中进行分析。65 名参与者纳入最终分析,损伤率为 33.8%。PBF 是唯一与 RRI 有显著相关性的动力学变量。PBF 值最低三分位(PBF < -0.27 BW)的跑步者受伤的风险是中间三分位的 5.08 倍,是最高三分位的 7.98 倍。在多变量模型中,除了 PBF 单独解释的部分外,没有动力学变量对预测损伤有显著贡献。本研究结果表明,PBF 与女性休闲跑步者的损伤风险比显著相关,应将其视为步态再训练干预的目标。

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