首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >The biomechanical effect of vertebroplasty on the adjacent vertebral body: a finite element study
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The biomechanical effect of vertebroplasty on the adjacent vertebral body: a finite element study

机译:椎体成形术对邻近椎体的生物力学作用:有限元研究

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The increased use of vertebroplasty for the treatment of osteoporotic vertebral compression fractures has led to concerns that the technique may increase the risk of fracture in the adjacent vertebrae. The aim of this study was to simulate the biomechanical effects of vertebroplasty using an osteoporotic two-vertebrae finite element model. Following a simulated compression fracture, the model was augmented with one of three volumes of PMMA-based cement or left untreated. Upon reloading, an increase in segment stiffness was found with increasing volumes of cement. However, in all the treated models there was an increase in endplate deflection into the adjacent vertebra causing plastic failure of the surrounding trabecular bone. More damage was caused in the adjacent vertebra of the treated models than in the untreated model. The model results suggest that clinicians should be wary of using standard vertebroplasty cements to treat compression fractures in patients with highly osteoporotic bone.
机译:椎体成形术在治疗骨质疏松性椎体压缩性骨折中的使用增加,引起了人们对该技术可能增加相邻椎骨骨折风险的担忧。这项研究的目的是使用骨质疏松性两个椎骨有限元模型来模拟椎骨成形术的生物力学作用。在模拟的压裂裂缝之后,模型增加了三体积的PMMA基水泥之一或未经处理。重新加载后,发现段刚度随水泥体积的增加而增加。但是,在所有接受治疗的模型中,端板向相邻椎骨的偏转均增加,从而导致周围的小梁骨塑性破坏。与未治疗模型相比,在治疗模型的相邻椎骨中造成的损伤更大。模型结果表明,临床医生应警惕使用标准椎体成形术水泥来治疗高度骨质疏松性骨患者的压迫性骨折。

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