Disegi J A, Wyss H
Materials Technical Commission for the AO/ASIF, Paoli, PA.
Orthopedics. 1989 Jan;12(1):75-9. doi: 10.3928/0147-7447-19890101-10.
The optimum management of traumatic skeletal fractures may involve the installation of high quality surgical implants by a skilled orthopedic surgeon. Satisfactory clinical results are very dependent on the ability to maintain stable fracture fixation. Well designed contemporary implants rely on precise control of material composition and properties to achieve a well tolerated level of biological response. Metallic materials, such as 316L stainless steel, pure titanium, and titanium alloys, demonstrate an acceptable combination of strength, ductility, corrosion resistance, and biocompatibility. Polymers, composites, and biodegradable materials may offer selected opportunities for fracture fixation. An understanding of relevant clinical factors is essential to evaluate potential applications for advanced materials.
创伤性骨骼骨折的最佳治疗可能需要由技术娴熟的骨科医生植入高质量的外科植入物。满意的临床结果很大程度上取决于维持骨折稳定固定的能力。精心设计的现代植入物依靠对材料成分和性能的精确控制,以达到生物反应可耐受的水平。金属材料,如316L不锈钢、纯钛和钛合金,展现出强度、延展性、耐腐蚀性和生物相容性的可接受组合。聚合物、复合材料和生物可降解材料可能为骨折固定提供特定的机会。了解相关临床因素对于评估先进材料的潜在应用至关重要。