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Composite Bone Models in Orthopaedic Surgery Research and Education

机译:骨外科研究与教学中的复合骨模型

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摘要

Composite bone models are increasingly used in orthopaedic biomechanics research and surgical education—applications that traditionally relied on cadavers. Cadaver bones are suboptimal for myriad reasons, including issues of cost, availability, preservation, and inconsistency between specimens. Further, cadaver samples disproportionately represent the elderly, whose bone quality may not be representative of the greater orthopaedic population. The current fourth-generation composite bone models provide an accurate reproduction of the biomechanical properties of human bone when placed under bending, axial, and torsional loads. The combination of glass fiber and epoxy resin components into a single phase has enabled manufacturing by injection molding. The high anatomic fidelity of the cadaver-based molds and negligible shrinkage properties of the epoxy resin results in a process that allows for excellent definition of anatomic detail in the cortical wall and optimized consistency of features between models. Recent biomechanical studies of composites have validated their use as a suitable substitute for cadaver specimens.
机译:复合骨模型越来越多地用于整形外科的生物力学研究和外科教育中,这些应用传统上依赖尸体。尸体骨头由于种种原因而欠佳,包括成本,可用性,保存性以及标本之间的不一致等问题。此外,尸体样本不成比例地代表老年人,其骨质可能无法代表更大的骨科人群。当前的第四代复合材料骨骼模型在弯曲,轴向和扭转载荷下可提供人体骨骼生物力学特性的精确再现。玻璃纤维和环氧树脂组分的组合成单相,使得能够通过注射成型进行制造。基于尸体的模具的高解剖保真度和环氧树脂的收缩率可忽略不计,从而形成了一种工艺,该工艺可以出色地定义皮质壁中的解剖细节,并优化模型之间的特征一致性。复合材料的最新生物力学研究已证实其可作为尸体标本的合适替代品。

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