Department of Mechanical Design Engineering, Kumoh National Institute of Technology, 61, Daehak-Ro, Gumi 39177, Gyeungbuk, Korea.
Techno Vietnam Co., JSC., TSQ Living Area (Euroland), Mo Lao Ward, Ha Dong District, Hanoi City 12110, Vietnam.
Sensors (Basel). 2022 May 31;22(11):4183. doi: 10.3390/s22114183.
Non-carious cervical lesions (NCCLs) are saucer-shaped abrasions of a tooth. NCCLs can form due to various etiologies, including toothbrushing wear, acid erosion, and mechanical stress. Owing to this complex interplay, the mechanism of NCCLs in tooth abrasion has not been established. This study aims to develop a numerical method using a computational toothbrush to simulate NCCLs. The forces acting on the teeth and the amount of abrasion generated were evaluated. The discrete element method using in-house code, connected particle model, and Archard wear model were applied for brushing. In the toothbrush model, 42 acrylic tufts were fixed into a toothbrush head. The teeth models with enamel properties comprised four flat plates and two grooves to simulate the anterior teeth and NCCLs. The brushing speed and depth for one cycle were established as simulation parameters. The force applied within the ununiform plane was concentrated on several bristles as the toothbrush passed through the interproximal space. The brushing force (depth) had a greater effect on tooth abrasion than the brushing speed. Toothbrushing abrasion was mainly concentrated in the interproximal space. Therefore, forceful tooth brushing can cause NCCLs from the interproximal space to the cervical area of the tooth.
非龋性牙颈部缺损(NCCLs)是牙齿的碟形磨损。NCCLs 可由多种病因引起,包括刷牙磨损、酸蚀和机械应力。由于这种复杂的相互作用,NCCLs 在牙齿磨损中的机制尚未确定。本研究旨在开发一种使用计算牙刷模拟 NCCLs 的数值方法。评估了作用于牙齿的力和产生的磨损量。使用内部代码、连接粒子模型和 Archard 磨损模型的离散元方法进行刷牙模拟。在牙刷模型中,将 42 个丙烯酸纤维簇固定在牙刷头上。牙齿模型具有牙釉质特性,由四个平板和两个凹槽组成,以模拟前牙和 NCCLs。一个周期的刷牙速度和深度被设定为模拟参数。当牙刷穿过邻间隙时,集中在几个刷毛上的非均匀平面内的力被施加在牙齿上。刷牙力(深度)对牙齿磨损的影响大于刷牙速度。刷牙磨损主要集中在邻间隙。因此,强力刷牙可能会导致 NCCLs 从邻间隙扩展到牙齿的颈部区域。