Force profile assessment of direct-printed aligners versus thermoformed aligners and the effects of non-engaged surface patterns.

IF 4.8 2区 医学 Q1 Dentistry Progress in Orthodontics Pub Date : 2022-11-29 DOI:10.1186/s40510-022-00443-2
Evan Hertan, Julie McCray, Brent Bankhead, Ki Beom Kim
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引用次数: 4

Abstract

Background: The purpose of the study was to measure the forces delivered by direct-printed aligners (DPA) in the vertical dimension and compare the force profile with traditional thermoformed aligners (TFA) and to investigate the impact of non-engaged surface patterns to the properties of DPA and TFA.

Methods: A force-measuring appliance was fabricated capable of displacing the aligner in 0.10 mm increments and measuring the resultant force. Polyethylene terephthalate glycol (ATMOS 0.030″ American Orthodontics) and TC-85DAC resin (Graphy Inc) were used to create TFA and DPA, respectively. Aligners were temperature-controlled prior to and during testing to simulate the oral environment. The resultant forces from displacements ranging from 0.10 to 0.30 mm were measured.

Results: At intraoral temperatures, DPA demonstrated significantly less force than TFA. TFA demonstrated a substantial statistically significant increase in force with each 0.10 mm increase in vertical displacement. DPA demonstrated a much more consistent force profile across the range of displacements. The effects of surface patterns in both DPA and TFA were generally a decrease in force. Statistical significance of surface patterns was detected for TFA at displacements of 0.30 mm and greater and significant for DPA only at a displacement of 0.10 mm. Surface patterns in both DPA and the TFA did not show any statistical difference when assessing force proprieties.

Conclusions: Forces delivered by aligners in the vertical dimension by DPA are more consistent and of lower magnitude than those of TFA aligners. Surface patterns were not capable of altering the force properties of both DPA and TFA.

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直接打印对准器与热成型对准器的力剖面评估以及非接合表面图案的影响。
背景:本研究的目的是测量直接打印矫直器(DPA)在垂直尺寸上传递的力,并将其与传统热成型矫直器(TFA)的力分布进行比较,并研究非接合表面图案对DPA和TFA性能的影响。方法:制作了一种力测量器,能够以0.10 mm的增量位移对准器并测量合力。采用聚对苯二甲酸乙二醇酯(ATMOS 0.030″American Orthodontics)和TC-85DAC树脂(Graphy Inc)分别制备TFA和DPA。矫正器在测试前和测试期间都进行了温度控制,以模拟口腔环境。测量了位移范围为0.10至0.30 mm的合力。结果:在口内温度下,DPA的受力明显小于TFA。TFA显示,垂直位移每增加0.10 mm,力就会显著增加。DPA在整个位移范围内显示出更加一致的力分布。在DPA和TFA中,表面图案的影响通常是力的降低。在位移为0.30 mm及更大的TFA中检测到表面图案的统计学意义,而DPA仅在位移为0.10 mm时才具有统计学意义。在评估力特性时,DPA和TFA的表面模式没有显示出任何统计学差异。结论:与TFA矫正器相比,DPA矫正器在垂直维度上施加的力更一致,且强度更小。表面图案不能改变DPA和TFA的力性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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