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Stress Analysis of Occlusal Forces in Canine Teeth and Their Role in the Development of Non-Carious Cervical Lesions: Abfraction

机译:犬牙咬合力的应力分析及其在非龋性宫颈病变发展中的作用

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摘要

Non-carious cervical tooth lesions for many decades were attributed to the effects of abrasion and erosion mainly through toothbrush trauma, abrasive toothpaste, and erosive acids. However, though the above may be involved, more recently a biomechanical theory for the formation of these lesions has arisen, and the term abfraction was coined. The aim of this study was to investigate the biomechanics of abfraction lesions in upper canine teeth under axial and lateral loading conditions using a three-dimensional finite element analysis. An extracted human upper canine tooth was scanned by μCT machine (Skyscan, Belgium). These μCT scans were segmented, reconstructed, and meshed using ScanIP (Simpleware, Exeter, UK) to create a three-dimensional finite element model. A 100 N load was applied axially at the incisal edge and laterally at 45° midpalatally to the long axis of the canine tooth. Separately, 200 N axial and non-axial loads were applied simultaneously to the tooth. It was found that stresses were concentrated at the CEJ in all scenarios. Lateral loading produced maximum stresses greater than axial loading, and pulp tissues, however, experienced minimum levels of stresses. This study has contributed towards the understanding of the aetiology of non-carious cervical lesions which is a key in their clinical management.
机译:数十年来,非龋性颈椎牙齿病变主要归因于牙刷创伤,磨牙膏和腐蚀性酸造成的磨损和侵蚀。然而,尽管可能涉及上述内容,但是最近出现了用于形成这些病变的生物力学理论,并且创造了术语“屈光”。这项研究的目的是利用三维有限元分析来研究上犬牙在轴向和横向载荷条件下的变形损伤的生物力学。提取的人上犬牙用μCT机(比利时Skyscan)进行扫描。使用ScanIP(Simpleware,Exeter,UK)对这些μCT扫描进行分割,重建和网格化,以创建三维有限元模型。在犬齿的长轴轴向切入边缘并在pal骨中部以45°横向施加100 N的载荷。另外,同时对牙齿施加了200 N的轴向和非轴向载荷。发现在所有情况下,压力都集中在CEJ上。横向载荷产生的最大应力大于轴向载荷,但牙髓组织承受的应力最小。这项研究有助于了解非龋性宫颈病变的病因,这是其临床治疗的关键。

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