牙髓治疗中的现代镍钛旋转系统

Elena Buga, Eugen Buga, D. Uncuta
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摘要

背景:牙髓治疗中最重要的步骤之一是准备均匀的空间、使用牙髓冲洗剂和为牙髓充填创造空间。因此,改进牙髓治疗技术是现代牙科最重要的任务之一。牙髓治疗的成功和有效性在很大程度上取决于化学机械根管治疗的质量。近年来,人们主要强调使用旋转机械器械系统,即使用镍钛(NiTi)合金,这种合金因其特性在困难解剖的器械治疗中具有良好的灵活性。材料和方法:对 20 名患者进行了检查和治疗。他们被分为两组:6 名患者使用的是 Protaper 通用旋转系统。第二组共 14 名患者,其中 7 名使用 Protaper Next,另外 7 名使用 Dc Taper,他们都患有不同的牙髓和牙周疾病。结果对不同病症的牙齿进行了机械器械治疗,最常见的是急性牙髓炎。在接受过器械治疗的牙齿中,多发性牙髓炎的发病率较高。结论:不同镍钛旋转系统的实际应用必须单独确定,因为每个临床病例都有其自身的实际特性。但是,牙髓治疗的成功不仅取决于所使用的旋转器械和所选择的方法,还取决于医生的经验、对器械特性的详细了解以及一步一步的器械操作规程。
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Modern nickel-titanium rotary systems in endodontic treatment
Background: One of the most important steps in endodontic treatment is the preparation of a uniform space, the use of endodontic irrigant and creating space for the endodontic filling. Therefore, improving endodontic treatment techniques is one of the most important tasks of modern dentistry. The success and effectiveness of endodontic treatment is largely determined by the quality of chemo-mechanical root canal treatment. In recent years there has been a major emphasis on the use of rotary mechanical instrumentation systems, namely the use of nickel-titanium (NiTi) alloys, which due to their properties represent a favorable flexibility in the instrumentation of difficult anatomies. Material and methods: 20 patients were examined and treated. They were divided into 2 groups: for the treatment of 6 patients was applied the Protaper Universal rotary system. In the second group of 14 patients to whom mechanical instrumentation was applied, were 7 patients following the Protaper Next and the other 7 Dc Taper with different pulpal and periodontal diseases. Results: Mechanical instrumentation was performed on different nosological entities, the prevalence being acute pulpitis. Among instrumented teeth, the prevalence was on the side of pluriradicular teeth. Conclusions: The practical application of different NiTi rotary systems has to be determined individually, as each clinical case has its own practical properties. But the success of an endodontic treatment depends not only on the rotary instruments used and, on the method, chosen, but also on the practitioner’s experience, detailed knowledge of the properties and step-by-step instrumentation protocols.
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