Different biomechanical effects of clear aligners in bimaxillary space closure under two strong anchorages: finite element analysis.

IF 4.8 2区 医学 Q1 Dentistry Progress in Orthodontics Pub Date : 2022-11-14 DOI:10.1186/s40510-022-00435-2
Jun-Qi Liu, Guan-Yin Zhu, Yi-Gan Wang, Bo Zhang, Shuang-Cheng Wang, Ke Yao, Zhi-He Zhao
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引用次数: 5

Abstract

Background: Clear aligner (CA) treatment has been gaining popularity, but the biomechanical effects of CAs in bimaxillary dentition have not been thoroughly investigated. Direct and indirect strong anchorages are two common anchorage control methods, but the underlying biomechanical mechanism has not yet been elucidated. This study aimed to investigate the different biomechanical effects of CAs in closing the bimaxillary space under different anchorage controls, further instructing the compensation strategies design and strong anchorage choice in clinical practice.

Methods: Three-dimensional (3D) bimaxillary models of different anchorage controls were created based on cone-beam computed tomography and intraoral scan data. Four first premolars were extracted using 3D modeling software. Finite element analysis was conducted to simulate the space closure process of the CAs.

Results: In the two strong anchorage groups, the bimaxillary dentition presented different movement patterns during the space closure process, and the lower dentition was more vulnerable to elastic force. From the vertical view, direct strong anchorage with elastic force had the advantage of flattening the longitudinal occlusal curve and resisting the roller-coaster effects, whereas indirect strong anchorage could lead to a deep longitudinal occlusal curve. From the sagittal view, indirect strong anchorage with metallic ligaments had a greater instantaneous anchorage protection effect, particularly in the lower dentition, which reduced the mesial movement of the posterior teeth by nearly four times that of the direct anchorage group. In addition, indirect strong anchorage presented better anterior teeth torque/tipping control, while direct strong anchorage could aggravate lingual tipping of the upper central incisors. Due to the differences in anterior-posterior anchorage and arch shape, compared with the upper dentition, anchorage preservation and vertical control effects were amplified in the lower dentition.

Conclusions: The biomechanical effects of CAs differed between the two strong anchorage groups. Due to the differences in dentition morphology, anterior-posterior anchorage, and dental arch shape, CAs present different biomechanical effects in bimaxillary space closure. Orthodontists should consider the corresponding mechanical compensation according to specific anchorage control methods and dentitions.

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两种强支抗下透明矫正器在双颌间隙闭合中的不同生物力学效应:有限元分析。
背景:清除矫正器(Clear aligner, CA)治疗已越来越受欢迎,但其在双颌牙列中的生物力学效应尚未得到深入研究。直接强锚固和间接强锚固是常用的两种锚固控制方法,但其生物力学机制尚未阐明。本研究旨在探讨不同支抗控制下ca对双颌间隙闭合的不同生物力学效应,为临床实践中补偿策略的设计和强支抗的选择提供指导。方法:基于锥形束计算机断层扫描和口内扫描数据,建立不同支抗对照的双颌三维模型。采用三维建模软件拔除4颗第一前磨牙。采用有限元方法模拟了CAs的空间闭合过程。结果:在两组强支抗中,双颌牙列在空间闭合过程中表现出不同的运动模式,下牙列更容易受到弹性力的影响。从纵向上看,直接强锚固具有弹性力的优势,可以使纵向咬合曲线变平坦,抵抗过山车效应,而间接强锚固可能导致纵向咬合曲线变深。从矢状面来看,金属韧带间接强支抗具有更大的瞬时支抗保护效果,特别是在下牙列,使后牙近近距离运动减少了直接支抗组的近4倍。间接强支抗能较好地控制前牙的扭矩/倾翻,而直接强支抗会加重上中切牙的舌倾。由于前后支抗和牙弓形状的差异,与上牙列相比,下牙列的支抗保存和垂直控制作用被放大。结论:两强支具组间ca的生物力学效应存在差异。由于牙列形态、前后支抗和牙弓形状的差异,ca在双颌间隙闭合中表现出不同的生物力学效应。正畸医师应根据具体的支抗控制方法和牙列考虑相应的机械补偿。
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来源期刊
Progress in Orthodontics
Progress in Orthodontics Dentistry-Orthodontics
CiteScore
7.30
自引率
4.20%
发文量
45
审稿时长
13 weeks
期刊介绍: Progress in Orthodontics is a fully open access, international journal owned by the Italian Society of Orthodontics and published under the brand SpringerOpen. The Society is currently covering all publication costs so there are no article processing charges for authors. It is a premier journal of international scope that fosters orthodontic research, including both basic research and development of innovative clinical techniques, with an emphasis on the following areas: • Mechanisms to improve orthodontics • Clinical studies and control animal studies • Orthodontics and genetics, genomics • Temporomandibular joint (TMJ) control clinical trials • Efficacy of orthodontic appliances and animal models • Systematic reviews and meta analyses • Mechanisms to speed orthodontic treatment Progress in Orthodontics will consider for publication only meritorious and original contributions. These may be: • Original articles reporting the findings of clinical trials, clinically relevant basic scientific investigations, or novel therapeutic or diagnostic systems • Review articles on current topics • Articles on novel techniques and clinical tools • Articles of contemporary interest
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