Ono K, Yamamuro T, Nakamura T, Kokubo T
Department of Orthopaedic Surgery, Faculty of Medicine, Kyoto University, Japan.
J Biomed Mater Res. 1990 Jan;24(1):47-63. doi: 10.1002/jbm.820240106.
Mechanical properties of bone implanted with a mixture of apatite-wollastonite containing glass ceramic (A-W.GC) granules and fibrin were examined by compression testing. A 1:1 mixture of A-W.GC granules and fibrin (Group 1), 1:4 mixture of A-W.GC granules and fibrin (Group 2), and 1:1 mixture of hydroxyapatite (HA) granules and fibrin (Group 3) were implanted in the distal femoral metaphyses of rabbits. Histomorphometric analysis suggested that A-W.GC has a greater osteoconductive potential than HA. Trabeculalike structures were observed 24 weeks after the operation in all groups but were most notable in Group 2. Twenty-four weeks after the operation, in Groups 1 and 3, the compressive strength and compressive stiffness were higher than that of normal cancellous bone, and the fracture toughness was comparable with that of normal cancellous bone. In Group 2, all three values were similar to those of normal cancellous bone. Implantation of A-W.GC granules at a low density induces the formation of bone tissue which is similar to normal bone in both mechanical properties and morphology.
通过压缩试验检测了植入磷灰石-硅灰石含玻璃陶瓷(A-W.GC)颗粒与纤维蛋白混合物的骨的力学性能。将A-W.GC颗粒与纤维蛋白的1:1混合物(第1组)、A-W.GC颗粒与纤维蛋白的1:4混合物(第2组)以及羟基磷灰石(HA)颗粒与纤维蛋白的1:1混合物(第3组)植入兔股骨远端干骺端。组织形态计量学分析表明,A-W.GC比HA具有更大的骨传导潜力。术后24周,所有组均观察到小梁样结构,但在第2组最为明显。术后24周,第1组和第3组的抗压强度和抗压刚度高于正常松质骨,断裂韧性与正常松质骨相当。在第2组中,所有三个值均与正常松质骨相似。低密度植入A-W.GC颗粒可诱导形成在力学性能和形态上均与正常骨相似的骨组织。