Classifying Impact Loading Using Axial Peak Tibial Acceleration and Impact-Related Biomechanical Differences During Treadmill Running.

IF 3.5 2区 医学 Q1 SPORT SCIENCES
Eoin W Doyle, Tim L A Doyle, Jason Bonacci, Jodie Wills, Rhiannon Campbell, Joel T Fuller
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Abstract

Measuring lower extremity impact acceleration is a common strategy to identify runners with increased injury risk. However, existing axial peak tibial acceleration (PTA) thresholds for determining high-impact runners typically rely on small samples or fixed running speeds. This study aimed to describe the distribution of axial PTA among runners at their preferred running speed, determine an appropriate adjustment for investigating impact magnitude at different speeds, and compare biomechanics between runners classified by impact magnitude. A total of 171 runners ran on an instrumented treadmill at their preferred running speed during 3D motion capture. Axial PTA was collected at the distal tibia. The relationship between axial PTA and running speed was investigated using linear regression. Runners were categorized into impact sub-groups, with high- and low-impact runners identified if their axial PTA was ±1 standard deviation of the model predicted value. Differences in demographics, training, and running biomechanics between impact sub-groups were compared. Mean axial PTA was 7.8 g across all running speeds. Axial PTA increased with running speed, with a 1.7 g increase for every 1.0 m/s increase. There were no differences in axial PTA between males and females (p = 0.214) and lower limbs (p = 0.312). High-impact runners had higher vertical loading rates (p < 0.001) and greater ankle dorsiflexion at initial contact (p < 0.001) compared to low-impact runners. No differences in age, body mass, height, or weekly running distances were observed across impact sub-groups. This study proposes a method to identify the impact classification of runners based on their axial PTA for screening, monitoring, or gait retraining.

利用胫骨轴向峰值加速度和跑步机上与冲击相关的生物力学差异对冲击负荷进行分类。
测量下肢冲击加速度是确定跑步者受伤风险增加的常用策略。然而,现有的确定高冲击跑步者的轴向峰值胫骨加速度(PTA)阈值通常依赖于小样本或固定的跑步速度。本研究旨在描述跑步者在其首选跑步速度下轴向PTA的分布,确定在不同速度下研究冲击强度的适当调整,并比较按冲击强度分类的跑步者之间的生物力学。在3D运动捕捉期间,共有171名跑步者以他们喜欢的跑步速度在一台装有仪器的跑步机上跑步。在胫骨远端收集轴向PTA。采用线性回归法研究了轴向PTA与运行速度的关系。跑步者被分为冲击亚组,如果他们的轴向PTA与模型预测值的标准差为±1,则确定高冲击和低冲击跑步者。比较不同撞击亚组在人口统计学、训练和跑步生物力学方面的差异。在所有运行速度下,平均轴向PTA为7.8 g。轴向PTA随运行速度增加,每增加1.0 m/s,轴向PTA增加1.7 g。男女间轴向PTA无差异(p = 0.214),下肢无差异(p = 0.312)。高冲击跑步者有更高的垂直负荷率(p
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来源期刊
CiteScore
7.90
自引率
4.90%
发文量
162
审稿时长
3 months
期刊介绍: The Scandinavian Journal of Medicine & Science in Sports is a multidisciplinary journal published 12 times per year under the auspices of the Scandinavian Foundation of Medicine and Science in Sports. It aims to publish high quality and impactful articles in the fields of orthopaedics, rehabilitation and sports medicine, exercise physiology and biochemistry, biomechanics and motor control, health and disease relating to sport, exercise and physical activity, as well as on the social and behavioural aspects of sport and exercise.
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