Hernández-Vázquez R A, Romero-Ángeles Betriz, Urriolagoitia-Sosa Guillermo, Vázquez-Feijoo Juan Alejandro, Marquet-Rivera Rodrigo Arturo, Urriolagoitia-Calderón Guillermo
Instituto Politécnico Nacional, Escuela Superior de Ingeniería Mecánica y Eléctrica, Sección de Estudios de Posgrado e Investigación, Unidad Profesional Adolfo López Mateos "Zacatenco", Avenida Instituto Politécnico Nacional s/n, Edificio 5, 2do. Piso, Col. Lindavista, C.P. 07320 Ciudad de Mexico, Mexico.
Appl Bionics Biomech. 2018 Oct 14;2018:1815830. doi: 10.1155/2018/1815830. eCollection 2018.
The analysis of the distribution of stress in dental organs is a poorly studied area. That is why computational mechanobiological analysis at the tissue level using the finite element method is very useful to achieve a better understanding of the biomechanics and the behaviour of dental tissues in various pathologies. This knowledge will allow better diagnoses, customize treatment plans, and establish the basis for the development of better restoration materials. In the present work, through the use of high-fidelity biomodels, computational mechanobiological analyses were performed on four molar models affected with four different degrees of caries, which are subjected to masticatory forces. With the analyses performed, it is possible to observe that the masticatory forces that act on the enamel are not transmitted to the dentin and to the bone and periodontal ligament to protect the nerve, as it happens in a healthy dental organ. With the presence of decay, these forces are transmitted partly to the pulp. The reactions to the external loads on the dental organs depend on the advances of the carious lesion that they present, since the distribution of stresses is different in a healthy tooth.
牙齿器官中应力分布的分析是一个研究较少的领域。这就是为什么使用有限元方法在组织水平上进行计算力学生物学分析对于更好地理解各种病理情况下牙齿组织的生物力学和行为非常有用。这些知识将有助于更好地进行诊断、定制治疗方案,并为开发更好的修复材料奠定基础。在本研究中,通过使用高保真生物模型,对四个患有不同程度龋齿且承受咀嚼力的磨牙模型进行了计算力学生物学分析。通过所进行的分析,可以观察到,作用于牙釉质的咀嚼力不会像在健康牙齿器官中那样传递到牙本质、骨骼和牙周韧带以保护神经。由于存在龋齿,这些力会部分传递到牙髓。牙齿器官对外部载荷的反应取决于它们所呈现的龋损进展情况,因为健康牙齿中的应力分布是不同的。