Laser treatment of dental implants towards an optimized osseointegration: evaluation via TM‐AFM and SEM

Wiktor Luczak, Ciril Reiner-Rozman, M. Muck, Johannes Heitz, G. Mitov, Florian Pfaffeneder, C. von See, A. Hassel, Christoph Kleber
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Abstract

Surface modifications of dental implants play a crucial role for material stability, durability, and patient contentment; hence optimization of the commonly used techniques can have significant impact. Surface properties affect the osseointegration of implants; however, the surface for the optimal osseointegration is still being researched. Herein, the surface roughness and topography of dental implant screws after polishing, sandblasting, and laser treatment via tapping‐mode atomic force microscopy are investigated. The measurements are performed at the implants’ shank, crest, and root sites and evaluated for surface roughness, kurtosis, and skew values. Laser‐treated and sandblasted samples have a significantly higher roughness compared to the machined sample. The roughness at the root of the samples is higher in case of the laser‐treated and machined samples, while lower for the sandblasted implant. It is found that laser treatment leads to a roughness lower than that of sandblasted dental screws but significantly higher than that of mechanically polished implants. Differences in the roughness at different topological sites show the need for more precise treatment of implants in order to optimize the roughness.
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激光治疗牙种植体实现最佳骨整合:通过TM - AFM和SEM进行评估
牙种植体的表面修饰对材料的稳定性、耐久性和患者满意度起着至关重要的作用;因此,对常用技术的优化可以产生重大影响。表面特性影响种植体的骨整合;然而,最佳的骨结合表面仍在研究中。本文通过攻丝模式原子力显微镜(TM - AFM)研究了牙种植螺钉经过抛光、喷砂和激光处理后的表面粗糙度和形貌。测量在种植体的柄、嵴和根部进行,并评估表面粗糙度、峰度和倾斜值。激光处理和喷砂处理的样品与机械加工的样品相比具有明显更高的粗糙度。在激光处理和机械加工的情况下,样品根部的粗糙度较高,而喷砂种植体的粗糙度较低。结果表明,激光处理的牙钉表面粗糙度低于喷砂牙钉,但明显高于机械抛光牙钉。不同拓扑位置的粗糙度差异表明需要对种植体进行更精确的处理以优化粗糙度。这篇文章受版权保护。版权所有。
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