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正畸微型种植体内部微观结构的金相分析。

Metallographic analysis of the internal microstructure of orthodontic mini-implants.

机构信息

Department of Orthodontics, University of São Paulo City, SP, Brazil.

出版信息

Braz Oral Res. 2010 Oct-Dec;24(4):438-42. doi: 10.1590/s1806-83242010000400011.

Abstract

Effective orthodontic anchorage may be obtained by miniimplants inserted into the maxillary bones. However, the risk of miniimplant failure is one of the most important issues, especially the rupture of its structure referred to as fracture, mainly due to metal deficiencies. This study analyzed the internal microstructure of orthodontic mini-implants, ascertaining the composition of the metal to detect possible discontinuities from the surface to the core of the screws. Eighteen samples of mini-implants, of 3 different brands, were obtained. The samples were cold-embedded in methyl methacrylate polymer, and were sectioned both longitudinally (3 samples of each brand) and transversely (the other 3 screws of each brand). After preparation, the samples were observed using a light microscope at up to 2,000 x magnification. The results showed that the mini-implants thus analyzed were composed of an Alpha-Beta globular phase of titanium alloy, patterns A1 and A9 (in accordance with the "Technical Committee of European Titanium Producers"). The miniimplants did not present any defects such as bubbles, imperfections or fissures, in either longitudinal or transverse sections, in their internal microstructure. All samples met the requirements of international norms. Orthodontists must be aware of the metal composition and internal microstructure of mini-implants, to decrease the risk of fractures.

摘要

通过在上颌骨中植入微型种植体可以获得有效的正畸锚固。然而,微型种植体失败的风险是最重要的问题之一,特别是其结构的破裂,主要是由于金属缺陷。本研究分析了正畸微型种植体的内部微观结构,确定了金属的成分,以检测从螺丝表面到核心可能存在的不连续性。获得了 18 个微型种植体样本,来自 3 个不同品牌。样本用甲基丙烯酸甲酯聚合物冷包埋,分别进行纵向(每个品牌 3 个样本)和横向(每个品牌的其他 3 个螺丝)切片。制备后,使用放大倍数高达 2000x 的光学显微镜观察样本。结果表明,所分析的微型种植体由钛合金的 Alpha-Beta 球状相、A1 和 A9 型(符合“欧洲钛生产商技术委员会”)组成。在其内部微观结构中,无论是在纵向还是横向切片中,微型种植体均未出现气泡、缺陷或裂缝等缺陷。所有样本均符合国际规范的要求。正畸医生必须了解微型种植体的金属成分和内部微观结构,以降低骨折的风险。

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