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虚拟方法修复Ⅱ类龋洞的研究:力学行为模拟

Study on the Restoration of Class II Carious Cavities by Virtual Methods: Simulation of Mechanical Behavior.

作者信息

Țuculină Mihaela Jana, Staicu Adela Nicoleta, Munteanu Maria Cristina, Cumpătă Cristian Niky, Dimitriu Bogdan, Rîcă Ana Maria, Beznă Maria Cristina, Popa Dragoș Laurențiu, Popescu Alexandru Dan, Țîrcă Tiberiu

机构信息

Department of Endodontics, Faculty of Dentistry, University of Medicine and Pharmacy of Craiova, 200349 Craiova, Romania.

Department of Oral and Maxillofacial Surgery, Faculty of Dental Medicine, University of Medicine and Pharmacy of Craiova, 200349 Craiova, Romania.

出版信息

J Funct Biomater. 2023 Jul 5;14(7):354. doi: 10.3390/jfb14070354.

Abstract

The restoration of class II cavities is predominantly carried out with composite materials. Due to the high failure rate in restoring this type of cavity, composite materials with much-improved properties and new application techniques have been promoted. The study aimed to analyze the mechanical behavior of several topical composite materials (nanocomposites, nanohybrids and ormocer) using different application techniques. In a lower second molar, a class II occlusal cavity was prepared. As filling materials, we used the following combinations: Admira Fusion and Admira Fusion Flow, Grandio and Grandio Flow, Filtek Supreme XT and Filtek Supreme Flow. These were applied using a snow plow, injection molded and Bichacho techniques. Three-dimensional scanning of the molar with the prepared cavity was performed, and then scanning of each layer of added composite material was performed, obtaining three-dimensional models. The virtual molar models were analyzed with software specific to the finite element analysis method, where their physical-mechanical properties were entered and assigned to the components of the virtual molar. Simulations at high forces specific to bruxism were then carried out and analyzed, and compared. The values of displacements and strain, for all six analyzed situations, are relatively small (range from 5.25 × 10-3.21 × 10 for displacement, 6.22 × 10-4.34 × 10 for strain), which validates all three methods and the materials used. As far as the stress values are concerned, they are similar for all methods (250-300 MPa), except for the snow plow and injection-molded techniques using Grandio and Grandio Flow composites, where the maximum von Mises stress value was more than double (approximately 700 MPa). When using the combination of Grandio and Grandio Flow materials, the 1 mm thickness of the fluid composite layer was found to have a major influence on occlusal forces damping as opposed to 0.5 mm. Therefore, the Bichacho technique is indicated at the expense of the snow plow and injection-molded techniques. The composite materials used by us in this study are state-of-the-art, with clear indications for restoring cavities resulting from the treatment of carious lesions. However, their association and application technique in the case of Class II cavities is of clinical importance for resistance to masticatory forces.

摘要

II类洞的修复主要使用复合材料进行。由于修复此类洞的失败率较高,性能大幅提升的复合材料及新的应用技术得到了推广。该研究旨在分析几种局部复合材料(纳米复合材料、纳米杂化材料和有机陶瓷)在不同应用技术下的力学行为。在一颗下颌第二磨牙上制备了一个II类咬合洞。作为填充材料,我们使用了以下组合:Admira Fusion和Admira Fusion Flow、Grandio和Grandio Flow、Filtek Supreme XT和Filtek Supreme Flow。这些材料采用雪犁法、注射成型法和比查乔法进行应用。对制备好洞的磨牙进行三维扫描,然后对每层添加的复合材料进行扫描,获得三维模型。使用有限元分析方法专用的软件对虚拟磨牙模型进行分析,在软件中输入其物理力学性能并赋予虚拟磨牙的各个组件。然后进行并分析针对磨牙症的高力模拟,并进行比较。在所有六种分析情况下,位移和应变值相对较小(位移范围为5.25×10 - 3.21×10,应变为6.22×10 - 4.34×10),这验证了所有三种方法及所使用的材料。就应力值而言,所有方法的应力值相似(250 - 300MPa),但使用Grandio和Grandio Flow复合材料通过雪犁法和注射成型法时除外,此时最大冯·米塞斯应力值超过两倍(约700MPa)。当使用Grandio和Grandio Flow材料组合时,发现1mm厚的流体复合材料层与0.5mm相比,对咬合力阻尼有重大影响。因此,建议采用比查乔法,而舍弃雪犁法和注射成型法。我们在本研究中使用的复合材料是最先进的,对于因龋病病变治疗导致的洞的修复有明确的适用指征。然而,它们在II类洞情况下的组合及应用技术对于抵抗咀嚼力具有临床重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/581b/10381501/21e7dde126e3/jfb-14-00354-g001.jpg

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