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Bone Ingrowth into Porous Bioactive Titanium Implant for Load-Bearing Use: Experimental Study Using A Novel Canine Anterior Interbody Fusion Model

机译:骨向多孔生物活性钛植入物的承重作用:使用新型犬前路椎间融合模型的实验研究

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摘要

We have developed a porous titanium implant sintered with spacer particles (porosity = 50 %, average pore size ± standard deviation = 303 ± 152 μm, yield compression strength = 100MPa). This porous titanium was successfully treated with chemical and thermal treatment that gives a bioactive micro-porous titania layer on the titanium surface, and it is expected as effective biomaterial for biological fixation on load bearing condition. In this study, ten adult female beagle dogs underwent anterior lumbar interbody fusion at L6-7 using either BT-implant or non-treated implant (NT-implant), then followed by posterior interspinous wiring and facet screw fixation. The radiographic evaluations were performed 1, 2 and 3 months postoperatively using X-ray fluoroscopy. Animals were sacrificed after 3 months postoperatively, and fusion status was evaluated by manual palpation. Histological evaluation was also performed. Both histological and radiological evaluation revealed that interbody fusion was achieved in 5 of 5 dogs (100%) in BT-group and 3 of 5 dogs (60%) in NT-group. In BT implants, we could observe a large amount of new bone formation from periphery to the center of the implant, whereas in NT implants, fibrous tissue formation was still observed even in the implants with successful fusion. The results of this study indicate that porous bioactive titanium implant will represent a new osteoconductive biomaterial with improved fusion characteristics.
机译:我们开发了一种用间隔物颗粒烧结的多孔钛植入物(孔隙率= 50%,平均孔径±标准偏差= 303±152μm,屈服压缩强度= 100MPa)。该多孔钛经过化学和热处理的成功处理,该化学和热处理在钛表面上形成了生物活性的微孔二氧化钛层,并且有望作为有效的生物材料用于在负载条件下进行生物固定。在这项研究中,对十只成年雌性比格犬在L6-7处进行前腰椎椎间融合术,使用BT植入物或未经治疗的植入物(NT植入物),然后进行棘突后固定和小平面螺钉固定。术后1、2和3个月使用X射线透视检查进行X线评估。术后3个月后处死动物,并通过人工触诊评估融合状态。还进行了组织学评估。组织学和放射学评估均显示,BT组的5只狗中有5只(100%)和NT组的5只狗中有3只(60%)实现了椎间融合。在BT植入物中,我们可以观察到从植入物的外围到中心大量的新骨形成,而在NT植入物中,即使在成功融合的植入物中,仍观察到纤维组织的形成。这项研究的结果表明,多孔生物活性钛植入物将代表一种具有改善融合特性的新型骨传导生物材料。

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