Biomaterials used in orthodontics

Gergana S Georgieva, M. Enchev, M. Milkov, H. Arnautska, Martin Shiderov
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Abstract

In recent years, orthodontic dental medicine has progressed at a rapid pace as a result of the use and enhancement of biomaterials. Innovations and improvements in biomaterials have a great impact on orthodontic practice, with significant changes in recent years in the types of materials used as well as their bio-mechanical requirements. Different types of metals, alloys, polymers, composites, self-polymerizing acrylic plastics are used to create orthodontic materials and appliances. Each of the biomaterials used has its advantages over the others in a particular situation. It is extremely important to evaluate the physical and biomechanical properties of biomaterials in order to achieve predictable results that meet the objectives of orthodontic treatment. From the research it has come to the conclusion that orthodontic dental medicine, like other areas of dentistry, is greatly influenced by the improvements and enhancements of the biomaterials used. Digital technologies, computer design and manufacturing are an integral part of modern ortho-dontics. New technologies have a great impact on biomaterials used in orthodontics. The right choice of bio-materials for making orthodontic appliances is the key to successful treatment.
用于正畸的生物材料
近年来,由于生物材料的应用和增强,口腔正畸医学发展迅速。生物材料的创新和改进对正畸实践产生了重大影响,近年来使用的材料类型及其生物力学要求发生了重大变化。不同类型的金属、合金、聚合物、复合材料、自聚合丙烯酸塑料被用来制造正畸材料和器具。在特定情况下,所使用的每种生物材料都有其优势。为了获得符合正畸治疗目标的可预测结果,评估生物材料的物理和生物力学特性是非常重要的。从研究中得出的结论是,正畸牙科医学和其他牙科领域一样,受到所使用生物材料的改进和增强的极大影响。数字技术、计算机设计和制造是现代正畸学不可分割的一部分。新技术对生物材料在口腔正畸中的应用产生了很大的影响。正确选择制作正畸矫治器的生物材料是治疗成功的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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