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首页> 外文期刊>Journal of Materials Research and Technology >Architectural design of Ti6Al4V scaffold controls the osteogenic volume and application area of the scaffold
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Architectural design of Ti6Al4V scaffold controls the osteogenic volume and application area of the scaffold

机译:Ti6Al4V支架的建筑设计控制脚手架的成骨体积和应用面积

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The geometry of porous bone scaffolds has an important effect on its bone ingrowth, but there is still a lack of in-depth research on this aspect. This study establishes a curved structure and a strut structure with a porosity of 65% and a pore size of 650?μm. The rabbit femoral condyle implants were used to assess the bone ingrowth. The pressure cloud chart and the velocity streamline inside the scaffold structure were calculated by computational fluid dynamics (CFD). The results show that the osteogenic property of a curved structure is better than that of a strut structure, but the mechanical property is not as good as that of the strut structure. The velocity streamline and velocity difference inside the scaffold structure has a great influence on bone ingrowth. Under the same condition, the smaller the fluid velocity difference inside the scaffold structure, the larger the fluid flow area, and the better the bone tissue growth. Studies have shown that the geometry of the bone scaffold can be optimized according to different implantation sites to meet the requirements of different implantation sites.
机译:多孔骨支架的几何形状对其骨骼产生的重要影响,但仍然缺乏对这方面的深入研究。该研究建立了弯曲结构和支柱结构,孔隙率为65%,孔径为650Ωμm。兔子股髁植入植入物用于评估骨骼骨球。通过计算流体动力学(CFD)计算支架结构内的压力云图和速度流线。结果表明,弯曲结构的成骨特性优于支柱结构的成骨特性,但是机械性能不如支柱结构那么好。脚手架结构内的速度流线和速度差异对骨骼的产生很大影响。在相同的条件下,支架结构内的流体速度差异越小,流体流动面积越大,骨组织生长越好。研究表明,骨支架的几何形状可以根据不同的植入部位进行优化,以满足不同植入部位的要求。

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