Quinzi Vincenzo, Gallusi Gianni, Carli Elisabetta, Pepe Francesca, Rastelli Elena, Tecco Simona
Department of Life, Health and Environmental Science, University of L'Aquila, 67100 L'Aquila, Italy.
Department of Surgical, Medical and Molecular Pathology and Critical Care Medicine, University of Pisa, 56020 Pisa, Italy.
Bioengineering (Basel). 2022 Jun 28;9(7):282. doi: 10.3390/bioengineering9070282.
The purpose of the present study was to evaluate the mechanical resistance of elastodontic devices (ED): their maximum compression loads and plastic deformation under loading (percentage). An Instron universal machine (Model 3365, Instron, Industrial Product Group, Grove City, PA, USA) was employed with a 100 N load cell and with Bluehill software for loading analyses. Each device was submitted to a five-cycles test. The following ED were evaluated: A.M.C.O.P. (Micerium, Genova, Italy) in red color, in orange color, and in blue color; HealthyStart (Ortho-Tain, Winnetka, IL, USA), and T4K™ phase 1 (Myofunctional Research Co., Helensvale, Australia). During the five-cycles test, the Ortho-Tain device delivered the greatest compression load (7.56 N), with the lowest percentage of deformation (0.95%). For all devices, a slight plastic deformation of the material was registered, ranging from 0.95% to 1.75%. For the T4K device it was not possible to complete the five-cycles test. For all the analyzed ED, a slight plastic deformation under loading was registered, that in all cases can be considered clinically acceptable. Further studies are needed to test the appliances after clinical usage.
本研究的目的是评估弹性正畸装置(ED)的机械阻力:其最大压缩负荷以及加载时的塑性变形(百分比)。使用了一台英斯特朗万能材料试验机(型号3365,英斯特朗公司,工业产品集团,美国宾夕法尼亚州格罗夫城),配备100 N的测力传感器,并使用Bluehill软件进行加载分析。每个装置都进行了五次循环测试。评估了以下几种弹性正畸装置:红色、橙色和蓝色的A.M.C.O.P.(意大利热那亚的米切里姆公司);HealthyStart(美国伊利诺伊州温内特卡的奥索泰恩公司);以及T4K™ 第一阶段(澳大利亚海伦斯维尔的肌功能研究公司)。在五次循环测试中,奥索泰恩装置承受的压缩负荷最大(7.56 N),变形百分比最低(0.95%)。对于所有装置,材料都出现了轻微的塑性变形,范围在0.95%至1.75%之间。对于T4K装置,无法完成五次循环测试。对于所有分析的弹性正畸装置,加载时都出现了轻微的塑性变形,在所有情况下都可认为在临床上是可接受的。需要进一步研究来测试临床使用后的矫治器。