School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei 110, Taiwan.
Division of Prosthodontics, Department of Dentistry, Taipei Medical University Hospital, Taipei 110, Taiwan.
Mater Sci Eng C Mater Biol Appl. 2019 Apr;97:412-419. doi: 10.1016/j.msec.2018.11.075. Epub 2018 Nov 29.
The aim of the present study was to investigate the biomechanical behaviors of the pre-shaped titanium (PS-Ti) cranial mesh implants with different pore structures and thicknesses as well as the surface characteristics of the three-dimensional printed Ti (3DP-Ti) cranial mesh implant. The biomechanical behaviors of the PS-Ti cranial mesh implants with different pore structures (square, circular and triangular) and thicknesses (0.2, 0.6 and 1 mm) were simulated using finite element analysis. Surface properties of the 3DP-Ti cranial mesh implant were performed by means of scanning electron microscopy, X-ray diffraction and static contact angle goniometer. It was found that the stress distribution and peak Von Mises stress of the PS-Ti cranial mesh implants significantly decreased at the thickness of 1 mm. The PS-Ti mesh implant with the circular pore structure created a relatively lower Von Mises stress on the bone defect area as compared to the PS-Ti mesh implant with the triangular pore structure and square pore structure. Moreover, the spherical-like Ti particle structures were formed on the surface of the 3DP-Ti cranial mesh implant. The microstructure of the 3DP-Ti mesh implant was composed of α and rutile-TiO phases. For wettability evaluation, the 3DP-Ti cranial mesh implant possessed a good hydrophilicity surface. Therefore, the 3DP-Ti cranial mesh implant with the thickness of 1 mm and circular pore structure is a promising biomaterial for cranioplasty surgery applications.
本研究旨在探讨具有不同孔隙结构和厚度的预成型钛(PS-Ti)颅骨网植入物以及三维打印 Ti(3DP-Ti)颅骨网植入物的表面特性的生物力学行为。通过有限元分析模拟了具有不同孔隙结构(方形、圆形和三角形)和厚度(0.2、0.6 和 1mm)的 PS-Ti 颅骨网植入物的生物力学行为。通过扫描电子显微镜、X 射线衍射和静态接触角测角仪对 3DP-Ti 颅骨网植入物的表面性能进行了研究。结果发现,PS-Ti 颅骨网植入物的厚度为 1mm 时,其应力分布和峰值 Von Mises 应力显著降低。与具有三角形孔隙结构和方形孔隙结构的 PS-Ti 网植入物相比,具有圆形孔隙结构的 PS-Ti 网植入物在骨缺损区域产生的 Von Mises 应力相对较低。此外,在 3DP-Ti 颅骨网植入物的表面形成了类似球形的 Ti 颗粒结构。3DP-Ti 网植入物的微观结构由α和金红石-TiO 相组成。为了评估润湿性,3DP-Ti 颅骨网植入物具有良好的亲水表面。因此,厚度为 1mm 且具有圆形孔隙结构的 3DP-Ti 颅骨网植入物是一种很有前途的颅骨修复手术应用的生物材料。