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首页> 外文期刊>Journal of Biomechanics >Impact loading history modulates hip fracture load and location: A finite element simulation study of the proximal femur in female athletes
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Impact loading history modulates hip fracture load and location: A finite element simulation study of the proximal femur in female athletes

机译:影响载荷历史调节髋部骨折负荷和位置:女运动员近端股骨的有限元模拟研究

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Sideways falls impose high stress on the thin superolateral cortical bone of the femoral neck, the region regarded as a fracture-prone region of the hip. Exercise training is a natural mode of mechanical loading to make bone more robust. Exercise-induced adaptation of cortical bone along the femoral neck has been previously demonstrated. However, it is unknown whether this adaption modulates hip fracture behavior. The purpose of this study was to investigate the influence of specific exercise loading history on fall-induced hip fracture behavior by estimating fracture load and location with proximal femur finite element (FE) models created from magnetic resonance images (MRI) of 111 women with distinct exercise histories: 91 athletes (aged 24.7 +/- 6.1 years, 8 years competitive career) and 20 women as controls (aged 23.7 +/- 3.8 years). The athletes were divided into five groups based on typical loading patterns of their sports: high-impact (H-I: 9 triple-jumpers and 10 high jumpers), odd-impact (O-I: 9 soccer and 10 squash players), high-magnitude (H-M: 17 power-lifters), repetitive-impact (R-I: 18 endurance runners), and repetitive non-impact (R-NI: 18 swimmers). Compared to the controls, the H-I, O-I, and R-I groups had significantly higher (11-26%, p 0.05) fracture loads. Also, the fracture location in the H-I and O-I groups was significantly more proximal (7-10%) compared to the controls. These results suggest that an exercise loading history of high impacts, impacts from unusual directions, or repetitive impacts increases the fracture load and may lower the risk of fall-induced hip fracture. (C) 2018 Elsevier Ltd. All rights reserved.
机译:侧身落下对股骨颈的薄外骨皮质骨施加高应力,该区域被视为髋部的骨折区域。运动培训是一种自然的机械负载方式,使骨骼更加坚固。先前已经演示了沿着股骨颈的运动诱导的皮质骨适应。然而,尚不清楚这种适应是否调节髋部骨折行为。本研究的目的是通过估计从111名妇女的磁共振图像(MRI)产生的近端股骨有限元(FE)模型来研究特定运动负荷历史对秋季髋部骨折行为的影响锻炼历史:91名运动员(24.7岁+/- 6.1岁,& 8年竞争职业生涯)和20名女性作为控制(23.7岁+/- 3.8岁)。运动员根据运动典型的载荷模式分为五个群体:高影响力(嗨:9三跳和10个高跳线),奇数影响(oi:9足球和10个壁球运动员),高幅度( HM:17电源升降机),重复影响(RI:18耐力跑步者)和重复的非影响(R-NI:18游泳者)。与对照相比,H-I,O-I和R-I基团显着更高(11-26%,P <0.05)裂缝载荷。此外,与对照相比,H-I和O-I组中的断裂位置显着更近似(7-10%)。这些结果表明,锻炼历史的高影响力,来自异常方向的影响,或重复撞击的影响增加了骨折载荷,可能降低损伤髋部骨折的风险。 (c)2018年elestvier有限公司保留所有权利。

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