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整体氧化锆在 4 单位固定局部义齿中的烧结变形:分层结构和垂直铣削面积的影响。

Sintering distortion of monolithic zirconia in 4-unit fixed partial denture: Effect of layered structure and vertical milling area.

机构信息

Tokyo Dental College Dept. of Fixed Prosthodontics, Japan.

Tokyo Dental College Dept. of Fixed Prosthodontics, Japan.

出版信息

J Mech Behav Biomed Mater. 2022 Apr;128:105078. doi: 10.1016/j.jmbbm.2022.105078. Epub 2022 Jan 19.

DOI:10.1016/j.jmbbm.2022.105078
PMID:35144076
Abstract

Layered-type zirconia disks, which offer color gradation from enamel to cervical shade, have been employed in recent years to replicate the shades of natural teeth. The layered structure is effective at replicating colors and has helped popularize monolithic zirconia restorations. However, the sintering shrinkage of zirconia is very large; thus, controlling the sintering distortion is very important. Thus, the objective of this study was to determine the influence exerted by the layered structure of the zirconia disk and the vertical milling area on the sintering distortion. An experimental fixed partial denture (FPD) was designed based on a 4-unit monolithic zirconia FPD. A single-composition (SC)-type disk with no shade and a single-composition-layered (SCL)-type disk with shade gradation were selected for this study. In particular, three milling areas, the top end of the disk (area I), vertical center (area II), and bottom end of the disk (area III), were investigated. Moreover, the sintering distortions generated by the experimental FPDs were measured. Results showed that sintering distortion in 4-unit monolithic zirconia FPDs occurred in all SC and SCL areas. Additionally, the sintering distortions were affected by the layered structure of the zirconia disks, the degree of which depended on the milling area (area I > area II > area III). Thus, when fabricating dental prosthesis using SCL zirconia disks, the milling area must be selected considering both the color adjustment and sintering distortion.

摘要

近年来,分层型氧化锆磁盘因其能够提供从釉质到颈缘色调的颜色渐变,已被用于复制天然牙齿的色调。分层结构在复制颜色方面非常有效,并有助于推广整体氧化锆修复体。然而,氧化锆的烧结收缩非常大,因此控制烧结变形非常重要。因此,本研究的目的是确定氧化锆磁盘的分层结构和垂直铣削区域对烧结变形的影响。根据四单位整体氧化锆 FPD 设计了一个实验性固定局部义齿 (FPD)。本研究选择了无颜色的单一成分 (SC) 型磁盘和具有颜色渐变的单一成分分层 (SCL) 型磁盘。特别是,研究了三个铣削区域,磁盘的顶部(区域 I)、垂直中心(区域 II)和磁盘的底部(区域 III)。此外,还测量了实验性 FPD 产生的烧结变形。结果表明,四单位整体氧化锆 FPD 中的所有 SC 和 SCL 区域都发生了烧结变形。此外,烧结变形受到氧化锆磁盘分层结构的影响,其程度取决于铣削区域(区域 I > 区域 II > 区域 III)。因此,当使用 SCL 氧化锆磁盘制作义齿时,必须考虑颜色调整和烧结变形来选择铣削区域。

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