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Surface Micro-scale Patterning for Biomedical Implant Material of Pure Titanium via High Energy Pulse Laser Peening

机译:高能脉冲激光喷丸对纯钛生物医学植入材料的表面微尺度图案化

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Pure titanium (commercial pure cpTi) is an ideal dental implant material without the leeching of toxic alloy elements. Evidence has shown that unsmooth implant surface topologies may contribute to the osteoblast differentiation in human mesenchymal pre-osteoblastic cells, which is helpful to avoid long-term peri-abutment inflammation issues for the dental implant therapy with transcutaneous devices. Studies have been conducted on the grit blasted, acid etched, or uni-directional grooved Ti surface. However, for these existing approaches, the surface quality is difficult to control or may even damage the implant. A novel idea has been studied in which more complex two-dimensional (2D) patterns can be imprinted into the dental implant material of cpTi by high energy pulse laser peening (HEPLP). The strong shock wave generated by HEPLP press a stainless steel grid, used as a stamp, on Ti foils to imprint a 2D pattern. In this study, the multiple grid patterns and grid sizes were applied to test the cell's favor. The HEPLP induced shock wave pressure profile and history were simulated by a 2D multi-physics hydrodynamic numerical analysis for a better understanding of this technique. Then, the cell culture tests were conducted with the patterned surface to investigate the contribution of these 2D patterns, with the control tests of the other existing implant surface topography forming approaches.
机译:纯钛(商业纯cpTi)是一种理想的牙科植入物材料,没有任何有毒合金元素的浸出。有证据表明,不光滑的种植体表面拓扑结构可能有助于人间充质前成骨细胞中的成骨细胞分化,这有助于避免长期的基台周围炎症问题,这是经皮器械治疗牙齿种植体的问题。已经对喷砂,酸蚀或单向开槽的Ti表面进行了研究。但是,对于这些现有方法,表面质量难以控制,甚至可能损坏植入物。已经研究了一种新颖的想法,其中可以通过高能脉冲激光喷丸(HEPLP)将更复杂的二维(2D)图案压印到cpTi的牙科植入材料中。 HEPLP产生的强烈冲击波将用作印章的不锈钢网格压在Ti箔上以印制2D图案。在这项研究中,使用了多种网格图案和网格尺寸来测试细胞的喜好。为了更好地理解该技术,通过二维多物理场流体力学数值分析来模拟HEPLP引起的冲击波压力曲线和历史。然后,用带图案的表面进行细胞培养测试,以研究这些2D图案的贡献,并采用其他现有植入物表面形貌形成方法的对照测试。

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