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在一例牙根外吸收病例中单次使用三氧化矿物凝聚体作为根尖屏障。

Single-session use of mineral trioxide aggregate as an apical barrier in a case of external root resorption.

作者信息

Araújo Roberta A, Silveira Cláudia F M, Cunha Rodrigo S, De Martin Alexandre S, Fontana Carlos E, Bueno Carlos E S

机构信息

Department of Endodontics, São Leopoldo Mandic Dental Research Center, Campinas, Brazil.

出版信息

J Oral Sci. 2010 Jun;52(2):325-8. doi: 10.2334/josnusd.52.325.

Abstract

External root resorption may occur as a consequence of trauma, orthodontic treatment, bacterial infection or incomplete sealing of the root canal system (bacterial re-infection), and lead to crater formation on the resorbed apex. This would deform the root apex surface, and cause loss of apical constriction. Depending on the extent of the resorptive process, different treatment regimens have been proposed. A 34-year-old male patient presented with an intra-radicular retainer and an inadequate filling on tooth #21, as well as a radiographic image suggesting periapical bone rarefaction. After root canal retreatment, the defect was accessed coronally. The resorption area was chemo-mechanically debrided and since the apical end was very wide, a calcium sulphate matrix was made. Mineral trioxide aggregate (MTA) was used to fill the resorptive defect, and the coronal access was temporarily sealed. After 24 h, the quality of the apical seal was evaluated with the aid of an operating microscope, and then the root canal system was filled. A 12-month follow-up radiograph showed adequate repair of the resorption. Clinically, the tooth was asymptomatic. We concluded that MTA can be successfully used to avoid overextension of the filling material when treating a tooth with external resorption.

摘要

外部牙根吸收可能由创伤、正畸治疗、细菌感染或根管系统封闭不全(细菌再感染)引起,并导致吸收根尖处形成凹坑。这会使根尖表面变形,并导致根尖缩窄丧失。根据吸收过程的程度,已提出了不同的治疗方案。一名34岁男性患者,21号牙存在根管内固位体且充填不足,同时影像学图像显示根尖周骨质稀疏。根管再治疗后,从冠方进入缺损处。对吸收区域进行化学机械清创,由于根尖端非常宽大,制作了硫酸钙基质。使用三氧化矿物凝聚体(MTA)填充吸收性缺损,并暂时封闭冠方入口。24小时后,借助手术显微镜评估根尖封闭质量,然后对根管系统进行充填。一张12个月的随访X光片显示吸收处修复良好。临床上,该牙无症状。我们得出结论,在治疗有外部吸收的牙齿时,MTA可成功用于避免充填材料超充。

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