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Do Mechanical and Physicochemical Properties of Orthodontic NiTi Wires Remain Stable In Vivo?

机译:正畸Niti线的机械和物理化学性质在体内保持稳定吗?

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Introduction and Aim. Exceptional properties of the NiTi archwires may be jeopardized by the oral cavity; thus its long-term effect on the mechanical and physiochemical properties of NiTi archwires was the aim of work. Material and Methods. Study group comprised sixty 0.016 x 0.022 NiTi archwires from the same manufacturer evaluated (group A) after the first 12 weeks of orthodontic treatment. 30 mm long pieces cut off from each wire prior to insertion formed the control group B. Obeying the strict rules of randomization, all samples were subjected to microscopic evaluation and nanoindentation test. Results. Both groups displayed substantial presence of nonmetallic inclusions. Heterogeneity of the structure and its alteration after usage were found in groups B and A, respectively. Conclusions. Long-term, reliable prediction of biomechanics of NiTi wires in vivo is impossible, especially new archwires from the same vendor display different physiochemical properties/Moreover, manufacturers have to decrease contamination in the production process in order to minimize risk of mutual negative influence of nickel-titanium archwires and oral environment.
机译:介绍和目标。 NITI弓丝的卓越特性可能被口腔危及;因此,其对NITI archwires的机械和理化特性的长期影响是工作的目的。材料与方法。研究组在正畸治疗前12周后,来自同一制造商的六十个0.016 x 0.022 Niti archwires评估(A组)。在插入之前,从每根线切断30毫米长的碎片,形成对照组B.遵循严格的随机化规则,所有样品都经受微观评价和纳米狭窄试验。结果。两组两组都显示出非金属夹杂物的大量存在。在B组和A分别发现了结构的异质性及其使用后的改变。结论。长期,可靠地预测体内NITI电线的生物力学预测是不可能的,尤其是来自同一供应商的新武器展示不同的理化性质/此外,制造商必须减少生产过程中的污染,以尽量减少镍相互负面影响的风险-titanium archwires和口腔环境。

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