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关节镜与运动医学中的骨移植

Bone grafting in arthroscopy and sports medicine.

作者信息

Niederauer Gabriele G, Lee Daniel R, Sankaran Swetha

机构信息

Smith & Nephew, Endoscopy Division, San Antonio, TX 78249, USA.

出版信息

Sports Med Arthrosc Rev. 2006 Sep;14(3):163-8. doi: 10.1097/00132585-200609000-00008.

Abstract

Bone graft substitutes include autografts, allografts, xenografts, and synthetics. Although autograft is still the gold standard, limited supply and donor morbidity must be considered. Allograft can vary in its bone-inductive qualities and may be processed into various shapes and constructs. Although allografts provide an osteoconductive matrix with some osteoinductivity, only limited anatomic constructs can be provided. Xenografts are abundant in supply, yet their shape and construct dimensions are restricted and xenograft properties are less than ideal due to the processing required to render the material nonimmunogenic. To achieve optimal bone graft properties, researchers are developing new materials with the goal of designing synthetics as close to autograft as possible. The advantages and disadvantages of all of these bone graft materials will be reviewed with emphasis on their relevance and applicability for sports medicine procedures.

摘要

骨移植替代物包括自体骨移植、同种异体骨移植、异种骨移植和合成材料。尽管自体骨移植仍是金标准,但必须考虑其供应有限和供体并发症问题。同种异体骨移植的骨诱导特性可能各不相同,并且可以加工成各种形状和结构。虽然同种异体骨移植提供了具有一定骨诱导性的骨传导基质,但只能提供有限的解剖结构。异种骨移植供应丰富,但其形状和结构尺寸受到限制,并且由于使材料具有非免疫原性所需的加工过程,异种骨移植的特性并不理想。为了获得最佳的骨移植特性,研究人员正在开发新材料,目标是设计出尽可能接近自体骨移植的合成材料。将对所有这些骨移植材料的优缺点进行综述,重点是它们在运动医学手术中的相关性和适用性。

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