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Predicting the structural integrity of bone defects repaired using bone graft materials

机译:预测使用骨移植材料修复的骨缺损的结构完整性

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Bone defects create stress concentrations which can cause fracture under impact or cyclic loading. Defects are often repaired by filling them with a bone graft material; this will reduce the stress concentration, but not completely, because these materials have lower stiffness than bone. The fracture risk decreases over time as the graft material is replaced by living bone. Many new bone graft materials are being developed, using tissue engineering and other techniques, but currently there is no rational way to compare these materials and predict their effectiveness in repairing a given defect. This paper describes, for the first time, a theoretical model which can be used to predict failure by brittle fracture or fatigue, initiating at the defect. Preliminary results are presented, concentrating on the prediction of stress fracture during the crucial post-operative period. It is shown that the likelihood of fracture is strongly influenced by the shape of the defect as well as its size, and also by the level of post-operative exercise. The most important finding is that bone graft materials can be successful in preventing fracture even when their mechanical properties are greatly inferior to those of bone. Future uses of this technique include pre-clinical assessment of bone replacement materials and pre-operative planning in orthopaedic surgery.
机译:骨缺损会产生应力集中,应力集中会导致在冲击或循环载荷下破裂。通常通过用骨移植材料填充缺陷来修复缺陷。这将减少应力集中,但不会完全消除,因为这些材料的刚度低于骨骼。随着移植材料被活骨替代,骨折风险会随着时间而降低。使用组织工程学和其他技术,正在开发许多新的骨移植材料,但是目前尚没有合理的方法来比较这些材料并预测它们在修复给定缺陷方面的有效性。本文首次描述了一种理论模型,该模型可用于预测由缺陷引起的脆性断裂或疲劳引起的故障。初步结果介绍了重点在术后关键时期的应力断裂的预测。结果表明,骨折的可能性受缺损的形状,大小以及术后运动水平的强烈影响。最重要的发现是,即使移植物的机械性能大大低于骨骼的力学性能,也可以成功地预防骨折。该技术的未来用途包括骨替代材料的临床前评估和整形外科的术前规划。

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