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美学修复材料的吸湿膨胀:一年期报告。

Hygroscopic expansion of aesthetic restorative materials: one-year report.

作者信息

Emamieh S, Ghasemi A, Torabzadeh H

机构信息

Specialist in Operative Dentistry, Private Practice.

出版信息

J Dent (Tehran). 2011 Winter;8(1):25-32. Epub 2011 Mar 31.

Abstract

OBJECTIVE

To measure the long-term linear hygroscopic expansion (LHE) of several materials using bulked and layered techniques.

MATERIALS AND METHODS

Seven materials were used; Fuji Cap II, Fuji II LC, Photac-Fil Aplicap, Vitremer, Dyract, Tetric and Z100. Ten specimens (6×4 mm) were made for each material using layered and bulked techniques (each group comprises five specimens). The specimens were stored in distilled water at 37°C. The length of each specimen was measured immediately after preparation, 24 hours, one week, one month, three months, six months, nine months and one year. This was used to calculate the percentage change in the length of materials. The mean LHE and standard deviation were calculated. Repeated measure analysis and paired sample t-test were used.

RESULTS

The type of material and time had a significant effect on LHE. Fuji Cap II and Fuji II LC exhibited no significant changes after one-year and one month, respectively. However, layered specimens of Photac-Fil Aplicap and Tetric showed constant expansion until six month, whereas bulked specimens reached the constant length at three months. Constant expansion was obtained for layered and bulked specimens of Dyract and Z100 at six month. Layered specimens of Vitremer showed no significant differences except between 24 hours and one year measurements. But in bulked specimens, the results at nine months and one year were significantly different from those obtained at three months and before.

CONCLUSION

Fuji II showed no significant LHE and resin-modified glass ionomer cements (RMGICs) exhibited the highest LHE. Dyract maintained an intermediate LHE in comparison with RMGIC and composite resin.

摘要

目的

采用堆积法和分层法测量几种材料的长期线性吸湿膨胀(LHE)。

材料与方法

使用了七种材料,分别为Fuji Cap II、Fuji II LC、Photac-Fil Aplicap、Vitremer、Dyract、Tetric和Z100。每种材料采用分层法和堆积法制作10个试件(6×4毫米)(每组包含5个试件)。试件置于37℃蒸馏水中储存。在制备后即刻、24小时、1周、1个月、3个月、6个月、9个月和1年时测量每个试件的长度。以此计算材料长度的百分比变化。计算平均LHE和标准差。采用重复测量分析和配对样本t检验。

结果

材料类型和时间对LHE有显著影响。Fuji Cap II和Fuji II LC分别在1年和1个月后未表现出显著变化。然而,Photac-Fil Aplicap和Tetric的分层试件在6个月前呈持续膨胀,而堆积试件在3个月时达到恒定长度。Dyract和Z100的分层和堆积试件在6个月时获得恒定膨胀。Vitremer的分层试件除24小时和1年测量值外无显著差异。但在堆积试件中,9个月和1年时的结果与3个月及之前的结果有显著差异。

结论

Fuji II未表现出显著的LHE,树脂改性玻璃离子水门汀(RMGICs)表现出最高的LHE。与RMGIC和复合树脂相比,Dyract的LHE处于中等水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9ec/3184730/43fbd90fd1d9/jod-8-025f1.jpg

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