Sibley School of Mechanical and Aerospace Engineering and Department of Biomedical Engineering, Cornell University, 219 Upson Hall, Ithaca, NY 14853, USA.
Clin Orthop Relat Res. 2012 Sep;470(9):2488-95. doi: 10.1007/s11999-011-2148-8.
Gamma radiation sterilization can make cortical bone allograft more brittle, but whether it influences mechanical properties and propensity to form microscopic cracks in structurally intact cancellous bone allograft is unknown.
QUESTIONS/PURPOSES: We therefore determined the effects of gamma radiation sterilization on structurally intact cancellous bone mechanical properties and damage formation in both low- and high-density femoral cancellous bone (volume fraction 9%-44%).
We studied 26 cancellous bone cores from the proximal and distal femurs of 10 human female cadavers (49-82 years of age) submitted to a single compressive load beyond yield. Mechanical properties and the formation of microscopic cracks and other tissue damage (identified through fluorochrome staining) were compared between irradiated and control specimens.
We observed no alterations in mechanical properties with gamma radiation sterilization after taking into account variation in specimen porosity. No differences in microscopic tissue damage were observed between the groups.
Although gamma radiation sterilization influences the mechanical properties and failure processes in cortical bone, it does not appear to influence the performance of cancellous bone under uniaxial loading.
伽马射线灭菌会使皮质骨移植物变得更加脆弱,但它是否会影响结构完整的松质骨移植物的机械性能和形成微观裂纹的倾向尚不清楚。
问题/目的:因此,我们确定了伽马射线灭菌对低和高密度股骨松质骨(体积分数为 9%-44%)的结构完整的松质骨机械性能和损伤形成的影响。
我们研究了来自 10 名女性尸体的近端和远端股骨的 26 个松质骨核,这些尸体都经历了超过屈服点的单次压缩载荷。在考虑了标本孔隙率的变化后,我们比较了辐照和对照标本的机械性能以及微观裂纹和其他组织损伤(通过荧光染色识别)的形成。
我们观察到伽马射线灭菌后,机械性能没有改变。两组之间微观组织损伤无差异。
尽管伽马射线灭菌会影响皮质骨的机械性能和失效过程,但它似乎不会影响松质骨在单轴加载下的性能。