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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Bone-bonding ability of bioactive bone cement under mechanical stress.
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Bone-bonding ability of bioactive bone cement under mechanical stress.

机译:机械应力下生物活性骨水泥的骨结合能力。

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摘要

Bioactive bone cement (BABC) is able to bond to bone through a Ca-P rich layer. It was evaluated so far in a rat tibial model, where no mechanical stresses are supposed to take place. The objective is to investigate the behavior of BABC in the environment of posterolateral spinal fixation model, in which the bone cement interface is exposed to continuous mechanical stress. Japanese white rabbits were used. Fixation of L5-L6 segment was done by wiring the spinous and transverse processes of L5 and L6 vertebrae. Then BABC was applied over the transverse processes and the intertransverse process membrane on both sides. Polymethylmethacrylate (PMMA) bone cement was used similarly in the control group. Animals were sacrificed after 1 day, 4, 8, and 16 weeks postoperatively. Bone cement interface was examined using Giemsa surface staining and SEM, and affinity index was measured. Biomechanical testing was done nondestructively in right and left torsion. BABC bonded to bone directly with no intervening soft tissue at 4, 8, and 16 weeks, while soft tissue was consistently seen between PMMA bone cement and bone. BABC-spine constructs were stiffer than PMMA-spine constructs at all time intervals. BABC bonded directly to bone under mechanical stress and afforded stiffer fixation than PMMA bone cement. Copyright 1999 John Wiley & Sons, Inc.
机译:生物活性骨水泥(BABC)能够通过富含Ca-P的层与骨骼粘合。到目前为止,已在大鼠胫骨模型中对其进行了评估,该模型假定不会发生机械应力。目的是研究BABC在后外侧脊柱固定模型环境中的行为,在该模型中,骨水泥界面暴露于连续的机械应力下。使用日本白兔。通过连接L5和L6椎骨的棘突和横突完成L5-L6节段的固定。然后将BABC应用于横向过程和两侧的横向过程膜。对照组中类似地使用了聚甲基丙烯酸甲酯(PMMA)骨水泥。术后1天,4、8和16周后处死动物。使用Giemsa表面染色和SEM检查骨水泥界面,并测量亲和指数。生物力学测试在左右扭转中进行了无损检测。在第4、8和16周时,BABC直接粘结在没有任何软组织的骨头上,而在PMMA骨水泥和骨头之间始终可见软组织。在所有时间间隔,BABC-脊柱结构均比PMMA-脊柱结构坚硬。 BABC在机械应力下直接粘合到骨骼上,并且比PMMA骨水泥具有更强的固定性。版权所有1999 John Wiley&Sons,Inc.

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