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CAD-CAM 和热压铸造二硅酸锂瓷冠边缘适合性的比较。

Comparison of marginal fit between CAD-CAM and hot-press lithium disilicate crowns.

机构信息

Senior Lecturer, Department of Oral Rehabilitation, Goldschleger School of Dental Medicine, The Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.

Graduate student, Department of Oral Rehabilitation, Goldschleger School of Dental Medicine, The Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.

出版信息

J Prosthet Dent. 2019 Jan;121(1):124-128. doi: 10.1016/j.prosdent.2018.03.035. Epub 2018 Jun 29.

Abstract

STATEMENT OF PROBLEM

Hot-pressing and computer-aided design and computer-aided manufacturing (CAD-CAM) are major techniques for the fabrication of lithium disilicate crowns. They exhibit different accuracies regarding marginal fit, an important factor in restoration survival. However, studies comparing the marginal fit of different fabrication methods are lacking.

PURPOSE

The purpose of this in vitro study was to compare the marginal discrepancy (MD) and absolute marginal discrepancy (AMD) of lithium disilicate crowns produced by the hot-press and CAD-CAM techniques.

MATERIAL AND METHODS

Thirty typodont teeth were divided into 2 groups. Fifteen teeth were scanned with the CEREC Omnicam intraoral scanner, and crowns were fabricated with the CEREC MC XL chairside CAD-CAM milling unit from IPS e.max CAD blocks. Fifteen typodont teeth were sent to a dental laboratory, and lithium disilicate crowns were fabricated from IPS e.max press ingots using the hot-press technique. The 30 crowns were cemented and then sectioned with a precision saw. The MD and AMD were measured for each crown with a light microscope. One-way ANOVA was conducted to analyze significant differences in crown marginal fit between the fabrication systems (α=.05).

RESULTS

For the CAD-CAM technique, the mean values of the AMD measurements were 115 μm, and for the hot-press technique, 130 μm. The MD measurements were 87 μm for the CAD-CAM technique and 90 μm for the hot-press technique. One-way ANOVA revealed no significant differences between the fabrication methods regarding marginal fit (P>.05).

CONCLUSIONS

No significant differences were found between the fabrication methods tested. Both the CAD-CAM and hot-press techniques for producing monolithic lithium disilicate crowns produced MD values of less than 120 μm, within the clinically acceptable range.

摘要

问题陈述

热压和计算机辅助设计与计算机辅助制造(CAD-CAM)是制作二硅酸锂冠的主要技术。它们在边缘适合度方面表现出不同的准确性,这是修复体存活率的一个重要因素。然而,缺乏比较不同制作方法边缘适合度的研究。

目的

本体外研究的目的是比较热压和 CAD-CAM 技术制作的二硅酸锂冠的边缘差异(MD)和绝对边缘差异(AMD)。

材料和方法

将 30 颗牙体模型牙分为 2 组。其中 15 颗牙用 CEREC Omnicam 口内扫描仪扫描,用 CEREC MC XL 椅旁 CAD-CAM 铣床从 IPS e.max CAD 块制作冠。15 颗牙体模型牙送到牙科实验室,用 IPS e.max 压铸机用热压技术从 IPS e.max 压块制作二硅酸锂冠。30 个冠被粘固,然后用精密锯片切割。用显微镜测量每个冠的 MD 和 AMD。用单因素方差分析比较制作系统之间冠边缘适合度的显著差异(α=.05)。

结果

对于 CAD-CAM 技术,AMD 测量值的平均值为 115μm,对于热压技术,平均值为 130μm。CAD-CAM 技术的 MD 测量值为 87μm,热压技术的 MD 测量值为 90μm。单因素方差分析显示,两种制作方法在边缘适合度方面无显著差异(P>.05)。

结论

在所测试的制作方法之间未发现显著差异。用于制作整体式二硅酸锂冠的 CAD-CAM 和热压技术均产生 MD 值小于 120μm,在临床可接受范围内。

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