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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Bone-bonding behavior of titanium alloy evaluated mechanically with detaching failure load.
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Bone-bonding behavior of titanium alloy evaluated mechanically with detaching failure load.

机译:力学分析了钛合金的骨结合行为,并分析了其破坏载荷。

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Although titanium (Ti) and Ti alloy are generally classified as bioinert materials in terms of their bonding to bone tissue, it is still unclear whether they bond chemically to bone. In this study, we examined the bone-bonding ability of Ti alloy (Ti-6Al-4V) using smooth-surfaced plates under non-load-bearing conditions. The bone-bonding behavior was evaluated mechanically by means of the detaching test reflecting tensile force. After implantation of the plates into the tibiae of rabbits for 4, 8, 16, and 25 weeks, detaching tests were performed. The failure load of the Ti alloy plates was close to 0 kg at 4 and 8 weeks, but gradually increased with time, reaching 0.334 kg at 16 weeks and 2.852 kg at 25 weeks on average. Histologic examination by Giemsa surface staining and SEM showed no differences between specimens at 8, 16, and 25 weeks, when Ti alloy plate made direct content with bone without any fibrous tissue. By SEM-EPMA, no clear calcium-phosphorus (Ca-P)-rich layer at the interface between the Ti alloy and bone tissue was evident, although a thin bone tissue was observed on the detached Ti alloy plate. The present results indicate that from both mechanical and histologic viewpoints, Ti alloy bonds directly to bone under static conditions after some time, probably more than 8 weeks. The possibility of chemical bone-bonding of Ti alloy was suggested.
机译:尽管就其与骨骼组织的粘结而言,钛(Ti)和Ti合金通常被归类为生物惰性材料,但仍不清楚它们是否化学粘结至骨骼。在这项研究中,我们研究了在非承重条件下使用光滑表面板对钛合金(Ti-6Al-4V)的骨结合能力。通过反映拉力的剥离试验机械评价骨结合行为。在将平板植入兔子的胫骨中4、8、16和25周后,进行分离测试。 Ti合金板的失效载荷在第4周和第8周接近于0 kg,但随时间逐渐增加,在第16周达到0.334 kg,在第25周平均达到2.852 kg。 Giemsa表面染色和SEM的组织学检查显示,在8周,16周和25周时,当Ti合金板直接与骨接触而没有任何纤维组织时,标本之间没有差异。通过SEM-EPMA,尽管在分离的Ti合金板上观察到薄的骨组织,但是在Ti合金和骨组织之间的界面上没有明显的富含钙-磷(Ca-P)的明显层。目前的结果表明,从力学和组织学的角度来看,在一段时间后(可能超过8周),Ti合金在静态条件下都直接与骨骼结合。提出了钛合金化学骨结合的可能性。

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