全数字化曼尼望远镜:结构创新与数字化制造。

IF 1.5 Q3 DENTISTRY, ORAL SURGERY & MEDICINE
Frontiers in dental medicine Pub Date : 2025-07-07 eCollection Date: 2025-01-01 DOI:10.3389/fdmed.2025.1639784
Andrea Boggio, Mauro Cozzani, Fabrizio Anelli, Giorgio Gastaldi, Antonio Manni
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引用次数: 0

摘要

骨骼II类错牙合,通常以下颌后缩为特征,影响了很大一部分人群,给正畸矫正带来了挑战。赫布斯特矫治器长期以来一直用于下颌前移,但传统的设计往往导致不良的牙齿副作用和机械并发症。本文介绍了全数字曼尼伸缩矫治器(MTH)的结构创新和数字化制造,这是一种结构创新和数字化制造系统,旨在提高临床效果和减少治疗失败。材料和设备:利用完全数字化的工作流程,包括CAD/CAM设计,口内扫描和增材制造,MTH器械集成了全覆盖的下颌夹板,数字设计和精密工程的上颌和下颌部件。结果:MTH矫治器的临床应用表现出良好的贴合性和高的机械可靠性,减少了下切牙的下垂,并提供了适当的垂直控制。可以显著减少脱粘或骨折等并发症,并且可以在需要时快速更换部件。讨论与结论:该设计通过加强支抗、减少下切牙前倾和精确的垂直和矢状面控制来改善骨骼矫正。数字化工作流程不仅提高了制造精度和患者舒适度,而且简化了部件更换和缩短了椅边时间。MTH器械在II类治疗中树立了新的基准,将数字精度与生物力学有效性相结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full-Digital Manni Telescopic Herbst: structural innovation and digital manufacturing.

Introduction: Skeletal Class II malocclusion, commonly characterized by mandibular retrusion, affects a significant portion of the population and presents challenges in orthodontic correction. The Herbst Appliance has long been used for mandibular advancement, but traditional designs often lead to undesirable dental side effects and mechanical complications. This paper introduces the structural innovation and digital manufacturing of Full Digital Manni Telescopic Herbst (MTH) Appliance, a structurally innovative and digitally manufactured system aimed at enhancing clinical outcomes and reducing treatment failures.

Materials and equipment: Utilizing a fully digital workflow, including CAD/CAM design, intraoral scanning, and additive manufacturing, the MTH appliance integrates a full-coverage mandibular splint, digitally designed and precision-engineered maxillary and mandibular components.

Results: The clinical implementation of the MTH appliance demonstrates excellent fit and high mechanical reliability, reducing lower incisor proclination and offering a proper vertical control. Complications such as debonding or fractures can be significantly reduced and digital reproducibility allows for fast component replacement when needed.

Discussion and conclusion: This design improves skeletal correction by enhancing anchorage, minimizing lower incisor proclination, and allowing precise vertical and sagittal control. The digital workflow not only improves fabrication accuracy and patient comfort but also facilitates easy component replacement and reduced chairside time. The MTH appliance sets a new benchmark in Class II treatment, blending digital precision with biomechanical effectiveness.

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CiteScore
2.10
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