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Estimated third metatarsal bending stresses are highly susceptible to variations in bone geometry

机译:估计的第三meta骨弯曲应力非常容易受到骨骼几何形状变化的影响

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摘要

Background: Third metatarsal stress fractures are relatively common during Royal Marines recruit training; however, their aetiology is poorly understood. Mathematical modelling of the third metatarsal may aid in understanding risk factors for stress fracture, particularly if the influence of footwear on peak bending stresses can be determined. This study built on previous models of metatarsal bending stress by integrating individual metatarsal geometry and gait data. Methods: Data from five males with size 11 (UK) feet were acquired. MRI images were digitised to determine cross-sectional bone parameters. Gait variables included vertical ground reaction forces, plantar pressure and foot orientation. The magnitude and location of peak bending stresses were calculated for barefoot running, before standard issue combat boots and trainers were compared. Findings: Estimated peak compressive, tensile and torsional stresses were greater in combat assault boots than in trainers (p < 0.05) with medium effect sizes but wide confidence intervals. However, differences in bone geometry between individuals had a much greater influence on estimated peak stresses. Interpretation: Results suggest that bone geometry has a greater influence on third metatarsal stress fracture risk than footwear. Future bone stress simulations should account for bone geometry. Further development of the model in a variety of participants should proceed to verify these suggestions.
机译:背景:在皇家海军陆战队新兵训练期间,第三meta骨应力性骨折较为常见。然而,他们的病因了解甚少。第三meta骨的数学建模可以帮助理解应力断裂的危险因素,尤其是如果可以确定鞋类对最大弯曲应力的影响时。该研究通过整合各个individual骨的几何形状和步态数据,建立在以前的meta骨弯曲应力模型的基础上。方法:从五只11英尺(英国)英尺的雄性中获取数据。将MRI图像数字化,以确定横截面骨参数。步态变量包括垂直地面反作用力,足底压力和脚的朝向。在比较标准发行的战斗靴和教练之前,计算了赤脚跑步的最大弯曲应力的大小和位置。研究结果:战斗突击靴的估计峰值压缩,拉力和扭转应力比训练师的大(p <0.05),效果中等,但置信区间宽。但是,个体之间的骨骼几何形状差异对估计的峰值应力影响更大。解释:结果表明,与鞋类相比,骨骼的几何形状对第三meta骨应力性骨折风险的影响更大。未来的骨骼应力模拟应考虑骨骼的几何形状。该模型在各种参与者中的进一步发展应继续验证这些建议。

著录项

  • 来源
    《Footwear science》 |2017年第3期|127-137|共11页
  • 作者单位

    College of Life & Environmental Sciences, University of Exeter, Exeter, United Kingdom;

    College of Life & Environmental Sciences, University of Exeter, Exeter, United Kingdom;

    University of Exeter Medical School, Exeter, United Kingdom;

    College of Life & Environmental Sciences, University of Exeter, Exeter, United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bone; mathematical model; stress fracture; gait; beam theory;

    机译:骨;数学模型;应力性骨折;步态;梁理论;

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