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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Development of finite element model for customized prostheses design for patient with pelvic bone tumor
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Development of finite element model for customized prostheses design for patient with pelvic bone tumor

机译:盆腔肿瘤患者定制假体设计有限元模型的开发

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摘要

The aim of this study was to design a hemi-pelvic prosthesis for a patient affected by pelvic sarcoma. To investigate the biomechanical functionality of the pelvis reconstructed with designed custom-made prosthesis, a patient-specific finite element model of whole pelvis with primary ligaments inclusive was constructed based on the computed tomography images of the patient. Then, a finite element analysis was performed to calculate and compare the stress distribution between the normal and implanted pelvis models when undergoing three different static conditionsboth-leg standing, single-leg standing for the healthy and the affected one. No significant differences were observed in the stresses between the normal and reconstructed pelvis for both-leg standing, but 20%-40% larger stresses were predicted for the peak stress of the single-leg standing (affected side). Moreover, two- to threefold of peak stresses were predicted within the prostheses compared to that of the normal pelvis especially for single-leg standing case, however, still below the allowable fatigue limitation. The study on the load transmission functionality of prosthesis indicated that it is crucial to carry out finite element analysis for functional evaluation of the designed customized prostheses before three-dimensional printing manufacturing, allowing better understanding of the possible peak stresses within the bone as well as the implants for safety precaution. The finite element model can be equally applicable to other bone tumor model for biomechanical studying.
机译:本研究的目的是为受骨盆肉瘤影响的患者设计半骨盆假体。为了研究与设计的定制假体重建的骨盆的生物力学功能,基于患者的计算机断层摄影图像构建具有主要韧带的全骨盆的患者特异性有限元模型。然后,进行有限元分析来计算和比较正常和植入的骨盆模型之间的应力分布在接受三种不同的静态条件腿部站立的单腿站立的单腿站立时,用于健康和受影响的型材。在腿部站立的正常和重建骨盆之间的应力中没有观察到显着差异,但预测了单腿站(受影响侧)的峰值应力的20%-40%的应力。此外,与普通骨盆相比,预测了两个至三倍的峰值应力,特别是对于单腿驻塞壳体,仍然低于允许的疲劳限制。对假体的负载传输功能的研究表明,对三维印刷制造前设计定制假体的功能评估进行有限元分析至关重要,从而更好地了解骨骼内可能的峰值应力以及植入安全预防措施。有限元模型可以同样适用于用于生物力学研究的其他骨肿瘤模型。

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