Scarano Antonio, Postiglione Francesca, Khater Ahmad G A, Al-Hamed Faez Saleh, Lorusso Felice
Department of Medical, Oral and Biotechnological Sciences and CeSi-MeT, University of Chieti-Pescara, Via dei Vestini, 31, 66100 Chieti, Italy.
Department of Medical, Oral and Biotechnological Sciences and CasT, University of Chieti-Pescara, Via dei Vestini, 31, 66100 Chieti, Italy.
Materials (Basel). 2020 Sep 20;13(18):4178. doi: 10.3390/ma13184178.
High bone-implant contact is a crucial factor in the achievement of osseointegration and long time clinical success of dental implants. Micro, nano, microtopography, and oxide layer of dental implants influence tissue response. The lasers were used for achieving an implant surface with homogeneous micro texturing and uncontaminated surface. The present study aimed to characterize the implant surfaces treated by Nd: DPSS Q-sw Laser treatment compared to machined implants. A total of 10 machined implants and 10 lasered surface implants were evaluated in this study. The implant surfaces were evaluated by X-ray Photoelectron Spectroscopy (XPS), Auger Electron Spectroscopy (AES), and metallography to characterize and measure the thickness of the oxide layer on the implant titanium surface. The machined surfaces showed a non-homogeneous oxide layer ranging between 20 and 30 nm. The lasered implant surfaces showed a homogeneous oxide layer ranging between 400 nm and 460 nm in the area of the laser holes, while outside the layer, thickness ranged between 200 nm and 400 nm without microcracks or evidence of damage. Another exciting result after this laser treatment is a topographically controlled, repeatable, homogeneous, and clean surface. This technique can obtain the implant surface without leaving residues of foreign substances on it. The study results indicate that the use of Nd: DPSS Q-sw laser produces a predictable and reproducible treatment able to improve the titanium oxide layer on the dental implant surface.
高骨-种植体接触是实现种植体骨结合以及牙科种植体长期临床成功的关键因素。牙科种植体的微观、纳米、微观形貌和氧化层会影响组织反应。激光被用于获得具有均匀微观纹理且表面无污染的种植体表面。本研究旨在表征经Nd: DPSS调Q激光处理的种植体表面,并与机械加工的种植体进行比较。本研究共评估了10个机械加工的种植体和10个经激光处理表面的种植体。通过X射线光电子能谱(XPS)、俄歇电子能谱(AES)和金相学对种植体表面进行评估,以表征和测量种植体钛表面氧化层的厚度。机械加工表面的氧化层不均匀,厚度在20至30纳米之间。经激光处理的种植体表面在激光孔区域显示出均匀的氧化层,厚度在400纳米至460纳米之间,而在该层之外,厚度在200纳米至400纳米之间,没有微裂纹或损伤迹象。这种激光处理后的另一个令人兴奋的结果是形成了形貌可控、可重复、均匀且清洁的表面。该技术能够获得种植体表面,且不会在上面留下外来物质残留。研究结果表明,使用Nd: DPSS调Q激光可产生一种可预测且可重复的处理方式,能够改善牙科种植体表面的氧化钛层。