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使用锥形束计算机断层扫描(CBCT)和 3D 塑料模型对复杂 3 型牙内陷进行诊断和保守治疗。

The diagnosis and conservative treatment of a complex type 3 dens invaginatus using cone beam computed tomography (CBCT) and 3D plastic models.

机构信息

Department of Endodontology, Tel Aviv University, Tel Aviv, Israel.

出版信息

Int Endod J. 2013 Mar;46(3):275-88. doi: 10.1111/iej.12013. Epub 2012 Nov 9.

Abstract

AIM

To investigate the use of 3D plastic models, printed from cone beam computed tomography (CBCT) data, for accurate diagnosis and conservative treatment of a complex case of dens invaginatus.

SUMMARY

A chronic apical abscess with a draining sinus tract was diagnosed during the treatment planning stage of orthodontic therapy. Radiographic examination revealed a large radiolucent area associated with an invaginated right maxillary central incisor, which was found to contain a vital pulp. The affected tooth was strategic in the dental arch. Conventional periapical radiographs provided only partial information about the invagination and its relationship with the main root canal and with the periapical tissues. A limited-volume CBCT scan of the maxilla did not show evidence of communication between the infected invagination and the pulp in the main root canal, which could explain the pulp vitality. A novel method was adopted to allow for instrumentation, disinfection and filling of the invagination, without compromising the vitality of the pulp in the complex root canal system. The CBCT data were used to produce precise 3D plastic models of the tooth. These models facilitated the treatment planning process and the trial of treatment approaches. This approach allowed the vitality of the pulp to be maintained in the complex root canal space of the main root canal whilst enabling the healing of the periapical tissues.

KEY LEARNING POINTS

Even when extensive periapical pathosis is associated with a tooth with type III dens invaginatus, pulp sensibility tests should be performed. CBCT is a diagnostic tool that may allow for the management of such teeth with complex anatomy. 3D printed plastic models may be a valuable aid in the process of assessing and planning effective treatment modalities and practicing them ex vivo before actually performing the clinical procedure. Unconventional technological approaches may be required for detailed treatment planning of complex cases of dens invaginatus.

摘要

目的

通过使用锥形束 CT(CBCT)数据打印的 3D 塑料模型,对一例复杂的牙内陷畸形进行准确诊断和保守治疗。

摘要

在正畸治疗计划阶段,诊断出慢性根尖脓肿伴窦道引流。影像学检查显示,一个大的透光区域与一个内陷的右上颌中切牙有关,该牙含有活髓。受影响的牙齿在牙弓中具有战略意义。传统的根尖片仅提供了关于内陷及其与主根管和根尖组织关系的部分信息。上颌局限性容积 CBCT 扫描未显示感染性内陷与主根管内牙髓之间存在沟通的证据,这可以解释牙髓活力。采用一种新方法允许对感染的内陷进行器械处理、消毒和填充,而不影响复杂根管系统中牙髓的活力。使用 CBCT 数据制作了牙齿的精确 3D 塑料模型。这些模型促进了治疗计划过程和治疗方法的尝试。这种方法允许在保持主根管复杂根管空间牙髓活力的同时,使根尖组织愈合。

主要学习要点

即使与具有 III 型牙内陷的牙齿相关的广泛根尖病变,也应进行牙髓感觉测试。CBCT 是一种诊断工具,可用于管理具有复杂解剖结构的此类牙齿。3D 打印的塑料模型可能是评估和规划有效治疗方案以及在实际进行临床操作之前在体外进行实践的过程中的宝贵辅助工具。对于牙内陷畸形的复杂病例,可能需要非常规的技术方法进行详细的治疗计划。

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