具有低杨氏模量的钛铌硒合金板可调节大鼠股骨的节间运动并促进骨合成。

Tomoki Koyama, Yu Mori, Masayuki Kamimura, Hidetatsu Tanaka, Rui Tome, Ketaro Ito, Masashi Koguchi, Naoko Mori, Toshimi Aizawa
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引用次数: 0

摘要

关节成形假体、骨折板和髓内钉等骨科植入物通常使用 Ti6Al4V 合金和商用纯钛(CP-Ti)等材料,这些材料的杨氏模量明显高于人体皮质骨的杨氏模量,可能会造成应力屏蔽,抑制骨折的有效愈合。TiNbSn 合金是一种杨氏模量较低(40-49 GPa)的 β 型钛合金,有望通过促进与骨骼有效分担载荷来减少应力屏蔽并促进骨愈合。本研究使用由 TiNbSn 合金和 CP-Ti 制成的 5 孔板,在大鼠股骨骨折模型中研究它们对骨愈合的影响。术后六周进行了显微 CT 分析和机械测试,以评估骨愈合情况。此外,还采用有限元法(FEM)分析评估骨折部位的应力屏蔽和节间移动(IFM)。显微 CT 分析显示,TiNbSn 组的骨量和矿物质密度明显高于 CP-Ti 组。机械测试显示,TiNbSn 组的最大载荷和刚度均有所增加(TiNbSn 合金板组的最大载荷为 77.2 ± 10.0 N,而 CP-Ti 组为 53.3 ± 8.5 N(p = 0.002))。有限元分析表明,TiNbSn 板减少了应力屏蔽,允许更大的位移和应变,促进了有利于骨愈合的 IFM。研究结果表明,TiNbSn 合金板通过减少应力屏蔽和增强 IFM,在促进骨愈合方面比 CP-Ti 板更有效。TiNbSn 的杨氏模量较低,可以更好地分配载荷,促进骨折部位的骨再生和加固。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TiNbSn alloy plates with low Young's modulus modulates interfragmentary movement and promote osteosynthesis in rat femur.

Orthopedic implants such as arthroplasty prostheses, fracture plates, and intramedullary nails often use materials like Ti6Al4V alloy and commercially pure titanium (CP-Ti), which have Young's modulus significantly higher than that of human cortical bone, potentially causing stress shielding and inhibiting effective fracture healing. TiNbSn alloy, a β-type titanium alloy with a lower Young's modulus (40-49 GPa), has shown promise in reducing stress shielding and enhancing bone healing by promoting effective load sharing with bone. This study used 5-hole plates made from TiNbSn alloy and CP-Ti to investigate their effects on bone healing in a rat femoral fracture model. Micro-CT analysis and mechanical testing were performed six weeks postoperatively to assess bone healing. Additionally, Finite element method (FEM) analysis was employed to evaluate stress shielding and interfragmentary movement (IFM) at the fracture site. Micro-CT analysis revealed significantly higher bone volume and mineral density in the TiNbSn group than in the CP-Ti group. Mechanical testing showed increased maximum load and stiffness in the TiNbSn group (77.2 ± 10.0 N for the TiNbSn alloy plate group versus 53.3 ± 8.5 N for the CP-Ti group (p = 0.002)). FEM analysis indicated that TiNbSn plates reduced stress shielding and allowed for greater displacement and strain, promoting IFM conducive to bone healing. The findings suggest that TiNbSn alloy plates are more effective than CP-Ti plates in promoting bone healing by reducing stress shielding and enhancing IFM. The lower Young's modulus of TiNbSn allows better load distribution, facilitating bone regeneration and strengthening at the fracture site.

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