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Are overground or treadmill runners more likely to sustain tibial stress fracture?

机译:地上跑步机或跑步机跑步者更有可能承受胫骨应力性骨折吗?

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BACKGROUND: Repetitive high bone strain and/or strain rates, such as those that occur during running, contribute to stress fractures as well as promoting maintenance of or increase in bone mass. Kinematic differences are known to exist between overground and treadmill running and these may be reflected in different bone strains and strain rates during the two running techniques. Aim: To measure in vivo strains and strain rates in human tibia during treadmill and overground running and determine if there are significant differences in strain and strain rate levels between the two running techniques. METHODS: A strain gauged bone staple was mounted percutaneously along the axial direction in the mid diaphysis of the medial tibia in three subjects, and in vivo tibial strains were measured during treadmill and overground running at 11 km/h. RESULTS: Axial compression strains (p<0.0001), tension strains (p<0.001), compression strain rates (p<0.0001), and tension strain rates (p<0.0001) were 48-285% higher during overground running than during treadmill running. CONCLUSIONS: On the basis of lower in vivo strains and strain rates, treadmill runners are at lower risk of developing tibial stress fractures, but less likely to achieve tibial bone strengthening, than overground runners.
机译:背景:重复的高骨骼应变和/或应变率,例如在跑步过程中发生的应变,会导致应力性骨折,并促进骨质的维持或增加。已知在地面跑步机和跑步机跑步之间存在运动学差异,这可能反映在两种跑步技术中不同的骨骼应变和应变率之间。目的:测量跑步机和地面跑步过程中人体胫骨的体内应变和应变率,并确定两种运行技术之间的应变和应变率水平是否存在显着差异。方法:将应变计骨钉沿轴向经皮安装在三个胫骨内侧胫骨中段,并在跑步机和地面以11 km / h的速度下测量体内胫骨的应变。结果:与跑步机相比,地面跑步时的轴向压缩应变(p <0.0001),拉伸应变(p <0.001),压缩应变率(p <0.0001)和拉伸应变率(p <0.0001)高48-285% 。结论:基于较低的体内应变和应变率,跑步机跑步者发生胫骨应力性骨折的风险较低,但与胫骨跑步者相比,胫骨骨折的可能性较小。

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