Sakhabutdinova Lyaysan, Kamenskikh Anna A, Kuchumov Alex G, Nosov Yuriy, Baradina Inessa
Department of Computational Mathematics, Mechanics and Biomechanics, Perm National Research Polytechnic University, 614990 Perm, Russia.
Clinics "Profi-Dent", 220013 Minsk, Belarus.
Materials (Basel). 2022 Oct 21;15(20):7387. doi: 10.3390/ma15207387.
This paper deals with direct restorations of teeth with non-carious cervical lesions (NCCL). NCCL defects are capable of gradual growth and are accompanied by the degradation of the surrounding tissue. Direct restorative treatment, in which the cavity is filled with a cementing agent, is considered to be an accessible and common treatment option. The study included simulations of the teeth without lesions, the teeth with V and U lesions and the tooth-restorative system. Parameterised numerical tooth models were constructed. Two cases with defect depths of 0.8 mm and ~1.7 mm and three variants with fillet radii of the defect end of 0.1, 0.2 and 0.3 mm were considered. The effect of two biomaterials for restorations was studied, namely Herculite XRV (Kerr Corp, Orange, CA, USA) and Charisma (Heraeus Kulzer GmbH, Hanau, Germany). The models were deformed with a vertical load of 100 to 1000 N from the antagonist tooth. The tooth-restorative system was considered, taking into consideration the contact interaction in the interface areas with the tooth tissues. Within the limits of the research, the character of the distribution of the deformation characteristics and their dependence on the level of loading, the depth of the defect and the radius of the curvature of the "wedge" were established.
本文探讨了非龋性颈部病变(NCCL)牙齿的直接修复。NCCL缺损能够逐渐发展,并伴有周围组织的退化。直接修复治疗是将窝洞用粘结剂填充,被认为是一种可行且常见的治疗选择。该研究包括对无病变牙齿、V形和U形病变牙齿以及牙齿修复系统的模拟。构建了参数化的数字牙齿模型。考虑了缺损深度为0.8毫米和约1.7毫米的两种情况,以及缺损端部圆角半径为0.1、0.2和0.3毫米的三种变体。研究了两种用于修复的生物材料的效果,即Herculite XRV(美国加利福尼亚州奥兰治的克尔公司)和Charisma(德国哈瑙的贺利氏古莎有限公司)。模型在来自对颌牙100至1000牛的垂直载荷作用下发生变形。考虑了牙齿修复系统,同时考虑了与牙齿组织界面区域的接触相互作用。在研究范围内,确定了变形特征的分布特性及其对载荷水平、缺损深度和“楔”曲率半径的依赖性。