首页> 外文会议>Biomedical Engineering (ICBME), 2011 18th Iranian Conference of >Effect of tooth layers' segmentation on pattern of stress distribution in bracket- adhesive- tooth system
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Effect of tooth layers' segmentation on pattern of stress distribution in bracket- adhesive- tooth system

机译:托槽-胶粘剂-牙齿系统中牙齿层分割对应力分布模式的影响

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Orthodontic braces are used to modify, malocclusions of teeth and jaws. Most of problems in dentistry can be investigated from a biomechanical point of view. Stress distribution in bracket, adhesive and tooth has been used as a criterion to determine bond strength of bracket- adhesive- tooth system. Tooth is consisted of three layers including enamel, dentin and pulp with three different mechanical properties, although most of previous studies have not paid attention to this and have considered the tooth as one layer material with unique mechanical property. In this study, Micro CT images of a tooth and a bracket were imported in Mimics 10 and different layers of the tooth were segmented. The bracket, the whole tooth and each layers of tooth were exported as STL files, separately. STL files of two bracket- adhesive- tooth systems including the system that have considered the whole tooth as a unique material and the system with segmented tooth layers were imported in Hypermesh software to create high quality 3D finite element meshes. The space between enamel and bracket has been filled with orthodontic adhesive substance that sets to 0.2 mm at thickest parts. For each system, property of each layer was assigned and appropriate boundary conditions were applied. Finally, pattern of stress distribution of two systems were compared with each other. The findings of this study show that both of the systems had similar pattern of stress distribution and stresses generated on the dentin and pulp of the system with segmented tooth layers were of lower magnitude in comparison with other layers. In the other words, anatomical details of dentin and pulp do not affect the results of study, significantly.
机译:正畸牙套用于修饰牙齿和颌骨的错牙合。可以从生物力学的角度研究牙科中的大多数问题。托槽,胶粘剂和牙齿的应力分布已用作确定托槽-胶粘剂-牙齿系统粘结强度的标准。牙齿由三层组成,包括牙釉质,牙本质和牙髓,具有三种不同的机械性能,尽管大多数先前的研究并未对此加以关注,并且已将牙齿视为具有独特机械性能的一层材料。在这项研究中,在Mimics 10中导入了牙齿和托槽的Micro CT图像,并对牙齿的不同层进行了分割。支架,整个牙齿和牙齿的各个层分别作为STL文件导出。在Hypermesh软件中导入了两个托架粘合牙齿系统的STL文件,其中包括将整个牙齿视为唯一材料的系统以及具有分段牙齿层的系统,以创建高质量的3D有限元网格。牙釉质和支架之间的空间已充满了正畸粘合物质,其最厚部分的厚度定为0.2毫米。对于每个系统,分配每个层的属性,并应用适当的边界条件。最后,将两个系统的应力分布模式进行了比较。这项研究的发现表明,这两个系统的应力分布模式相似,并且在具有分段牙齿层的系统的牙本质和牙髓上产生的应力与其他层相比,幅度较小。换句话说,牙本质和牙髓的解剖学细节不会明显影响研究结果。

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