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The effect of mouthguard design on stresses in the tooth-bone complex.

机译:护齿设计对牙骨复合物中应力的影响。

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PURPOSE: Mouthguards protect the tooth-bone complex from impact loads that occur during sporting activity. The aim of this study is to investigate the effects of varying mouthguard thickness and stiffness on the magnitude of tensile stresses in the tooth-bone-complex. METHODS: A two-dimensional, plane stress, finite element representation of a central maxillary incisor (CMI) is created. For validation purposes, displacements of the incisal edge of the unprotected tooth model are compared with in vivo displacements under similar loads. A protective mouthguard is then superimposed over the model with varied labial thickness (1-6 mm) and stiffness (9-900MPa) representing a range of designs available. A large horizontal static load of 500N is then applied to the anterior surface of the mouthguard and the resulting stresses in the tooth-bone complex are presented. It is suggested that this loading condition most accurately represent the situation occurring when a guarded tooth collides with a soft object (e.g. boxing glove). RESULTS: It is generally found that mouthguard thickness and stiffness are both desirable in terms of reducing stresses. However, the protection offered by the low-stiffness guards, regardless of thickness, is minimal. Since this low-stiffness (9MPa) is representative of the most common choice of material in mouthguard fabrication, such findings may cast doubt on the ability of popular mouthguards to redistribute stress. CONCLUSION: While few would disagree that these low-stiffness guards absorb shock during hard-object collisions (e.g. baseballs), they may not protect the tooth-bone during soft-object collisions (e.g. boxing gloves). In order to optimize their protective capabilities for a range of loads, the range of materials used in mouthguard construction may have to be reconsidered.
机译:目的:护齿罩可保护牙骨复合体免受体育活动中产生的冲击负荷。这项研究的目的是研究不同的护齿厚度和刚度对牙骨复合体中拉应力大小的影响。方法:创建上颌中切牙(CMI)的二维平面应力有限元表示。为了进行验证,将未受保护的牙齿模型的切缘的位移与在类似载荷下的体内位移进行了比较。然后将保护性护齿套叠在模型上,以不同的唇部厚度(1-6 mm)和刚度(9-900MPa)代表可用的设计范围。然后,将500 N的较大水平静载荷施加到护齿器的前表面,并显示在齿骨复合物中产生的应力。建议该加载条件最准确地表示当护齿与柔软物体(例如拳击手套)碰撞时发生的情况。结果:通常发现,就减轻压力而言,护齿板的厚度和刚度都是理想的。但是,无论厚度如何,低刚度防护装置所提供的保护作用都是最小的。由于这种低刚度(9MPa)代表了护口罩制造中最常见的材料选择,因此这些发现可能使人们对流行的护口罩重新分配压力的能力产生怀疑。结论:虽然很少有人会认为这些低刚度的防护装置会在硬物碰撞(例如棒球)时吸收震动,但在软物碰撞(例如拳击手套)时它们可能无法保护牙齿。为了优化它们在一定范围的负载下的防护能力,可能必须重新考虑在护齿构造中使用的材料范围。

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