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Stress variations owing to single-stance load and sideways fall result in fracture at proximal femur

机译:由于单姿态负荷和侧向跌落导致近端股骨骨折的压力变化

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Femoral neck region is the weakest in which the fracture takes place when someone falls sideways. The sideways fall develops peak tensile and compressive stresses in the inferior and superior surfaces of the femoral neck, whereas the state of stress is reversed for a single-stance loading. Therefore, a CT based finite element analysis can be an effective tool for determining the state of stresses at the femoral neck region to predict the probability of fracture considering the 3D complex geometry of femur, its material properties and load conditions. The present work aims to represent the mechanism of hip fracture at the femoral neck region due to sideways fall, which results in greater tensile and compressive stresses at the femoral neck.
机译:股骨颈部区域是最弱的,在某人侧向跌落时骨折发生。侧面落下在股骨颈的劣势和优越的表面中发育峰值拉伸和压缩应力,而应力的状态逆转用于单位载重量。因此,基于CT基的有限元分析可以是用于确定股骨颈部区域的应力状态以预测股骨的3D复杂几何形状的骨折的概率,其材料特性和负载条件的有效工具。目前的作品旨在代表由于侧向落下的股骨颈部区域的髋部骨折机制,这导致股骨颈部的拉伸和压缩应力更大。

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