首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Assessment of a chair-side argon-based non-thermal plasma treatment on the surface characteristics and integration of dental implants with textured surfaces.
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Assessment of a chair-side argon-based non-thermal plasma treatment on the surface characteristics and integration of dental implants with textured surfaces.

机译:评估椅子端基于氩气的非热等离子体处理的表面特性以及带纹理表面的牙科植入物的集成。

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摘要

The biomechanical effects of a non-thermal plasma (NTP) treatment, suitable for use in a dental office, on the surface character and integration of a textured dental implant surface in a beagle dog model were evaluated. The experiment compared a control treatment, which presented an alumina-blasted/acid-etched (AB/AE) surface, to two experimental treatments, in which the same AB/AE surface also received NTP treatment for a period of 20 or 60 s per implant quadrant (PLASMA 20' and PLASMA 60' groups, respectively). The surface of each specimen was characterized by electron microscopy and optical interferometry, and surface energy and surface chemistry were determined prior to and after plasma treatment. Two implants of each type were then placed at six bilateral locations in 6 dogs, and allowed to heal for 2 or 4 weeks. Following sacrifice, removal torque was evaluated as a function of animal, implant surface and time in vivo in a mixed model ANOVA. Compared to the CONTROL group, PLASMA 20' and 60' groups presented substantially higher surface energy levels, lower amounts of adsorbed C species and significantly higher torque levels (p=.001). Result indicated that the NTP treatment increased the surface energy and the biomechanical fixation of textured-surface dental implants at early times in vivo.
机译:评估了适合在牙科诊所中使用的非热等离子体(NTP)处理对比格犬模型的表面特征和纹理化牙科植入物表面的整合的生物力学效果。该实验将呈现氧化铝喷砂/酸蚀(AB / AE)表面的对照处理与两种实验处理进行了比较,其中相同的AB / AE表面还接受了NTP处理,每次20或60 s植入象限(分别为PLASMA 20'和PLASMA 60'组)。通过电子显微镜和光学干涉法表征每个样品的表面,并在等离子体处理之前和之后确定表面能和表面化学。然后将每种类型的两个植入物放在6只狗的六个双侧位置,并使其愈合2或4周。处死后,在混合模型ANOVA中根据动物,植入物表面和体内时间评估去除扭矩。与对照组相比,PLASMA 20'和60'组表现出更高的表面能水平,更低的吸附C物质含量和明显更高的扭矩水平(p = .001)。结果表明,在体内早期,NTP处理可增加表面能和带纹理表面的牙科植入物的生物力学固定。

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