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金属奇迹:采用新型根管内冠方法革新牙髓修复术

Metal Marvels: Revolutionizing Endodontic Restoration With a Novel Endocrown Approach.

作者信息

Agrawal Paridhi, Rathod Aishwarya, Jaiswal Priyanka, Masurkar Deepika, Chandak Manoj, Patel Aditya, Bhopatkar Jay

机构信息

Department of Conservative Dentistry and Endodontics, Sharad Pawar Dental College and Hospital, Datta Meghe Institute of Higher Education & Research, Wardha, IND.

Department of Periodontics, Sharad Pawar Dental College and Hospital, Datta Meghe Institute of Higher Education & Research, Wardha, IND.

出版信息

Cureus. 2024 Mar 1;16(3):e55319. doi: 10.7759/cureus.55319. eCollection 2024 Mar.

Abstract

This case report explores the innovative application of the endocrown technique for restoring a severely damaged mandibular molar (tooth #46) in a 28-year-old male patient. With a recent root canal treatment history, the patient presented with a dislodged prosthesis. Due to financial constraints, a base metal alloy was chosen for the endocrown restoration. The unique preparation process involved reducing the occlusal surface by 2 mm, creating a shoulder cervical margin, and preserving enamel walls. The endocrown, crafted from a base metal alloy, demonstrated a semi-conservative approach, providing cost-effectiveness and minimal tooth preparation. The case adheres to the 2013 CAse REport (CARE) guidelines. The discussion highlights the biomechanical benefits of the endocrown, emphasizing stress resistance, stability, and superior performance compared to traditional treatments. Materials like ceramic, resin nanoceramic, and polyetheretherketone are briefly discussed, focusing on the promising success rates of endocrowns, mainly through computer-aided designing/computer-aided manufacturing systems. The report provides valuable insights for clinicians considering this endocrown technique in reconstructing severely damaged molars and premolars.

摘要

本病例报告探讨了牙内冠技术在一名28岁男性患者中修复严重受损下颌磨牙(46号牙)的创新应用。该患者近期有根管治疗史,现出现修复体松动。由于经济限制,选用了贱金属合金进行牙内冠修复。独特的预备过程包括将咬合面降低2毫米、制备肩台颈部边缘并保留釉质壁。由贱金属合金制作的牙内冠展示了一种半保守的方法,具有成本效益且牙体预备量最小。该病例遵循2013年病例报告(CARE)指南。讨论强调了牙内冠的生物力学优势,与传统治疗相比,其在抗应力、稳定性和性能方面表现更优。简要讨论了陶瓷、树脂纳米陶瓷和聚醚醚酮等材料,重点介绍了牙内冠主要通过计算机辅助设计/计算机辅助制造系统取得的可观成功率。该报告为临床医生在考虑采用这种牙内冠技术修复严重受损磨牙和前磨牙时提供了有价值的见解。

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