首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Investigation of Bone Growth in Additive-Manufactured Pedicle Screw Implant by Using Ti-6Al-4V and Bioactive Glass Powder Composite
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Investigation of Bone Growth in Additive-Manufactured Pedicle Screw Implant by Using Ti-6Al-4V and Bioactive Glass Powder Composite

机译:通过使用Ti-6Al-4V和生物活性玻璃粉末复合材料对添加剂制造椎弓根螺杆植入物的骨生长研究

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摘要

In this study, we optimized the geometry and composition of additive-manufactured pedicle screws. Metal powders of titanium-aluminum-vanadium (Ti-6Al-4V) were mixed with reactive glass-ceramic biomaterials of bioactive glass (BG) powders. To optimize the geometry of pedicle screws, we applied a novel numerical approach to proposing the optimal shape of the healing chamber to promote biological healing. We examined the geometry and composition effects of pedicle screw implants on the interfacial autologous bone attachment and bone graft incorporation through in vivo studies. The addition of an optimal amount of BG to Ti-6Al-4V leads to a lower elastic modulus of the ceramic-metal composite material, effectively reducing the stress-shielding effects. Pedicle screw implants with optimal shape design and made of the composite material of Ti-6Al-4V doped with BG fabricated through additive manufacturing exhibit greater osseointegration and a more rapid bone volume fraction during the fracture healing process 120 days after implantation, per in vivo studies.
机译:在这项研究中,我们优化了添加剂制造的椎弓根螺钉的几何形状和组成。将钛 - 钒 - 钒(Ti-6Al-4V)的金属粉末与生物活性玻璃(BG)粉末的反应性玻璃 - 陶瓷生物材料混合。为了优化椎弓根螺钉的几何形状,我们应用了一种新的数值方法来提出愈合室的最佳形状,促进生物愈合。我们检查了椎弓根螺钉植入物对界面自体骨附着和骨移植术通过体内研究的几何形状和组成效果。将最佳量的BG与Ti-6AL-4V的添加导致陶瓷金属复合材料的较低弹性模量,有效地降低应力屏蔽效果。具有最佳形状设计的椎弓根螺钉植入物,并由通过添加剂制造制造的BG掺杂的Ti-6Al-4V的复合材料制成,并且在植入后120天在植入后120天在骨折愈合过程中具有更高的骨体积分数。 。

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