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Y-TZP 陶瓷的低温降解:系统评价与荟萃分析

Low-temperature degradation of Y-TZP ceramics: A systematic review and meta-analysis.

作者信息

Pereira G K R, Venturini A B, Silvestri T, Dapieve K S, Montagner A F, Soares F Z M, Valandro L F

机构信息

Dental Science Graduate Program, Federal University of Santa Maria, Santa Maria, Rio Grande do Sul, Brazil.

School of Dentistry, Federal University of Santa Maria, Santa Maria, Rio Grande do Sul, Brazil.

出版信息

J Mech Behav Biomed Mater. 2015 Mar;55:151-163. doi: 10.1016/j.jmbbm.2015.10.017. Epub 2015 Oct 31.

Abstract

The aim of this study was to systematically review the literature to assess if low-temperature degradation (LTD) simulation in autoclave promotes deleterious impact on the mechanical properties and superficial characteristics of Y-TZP ceramics compared to the non-aged protocol. The MEDLINE via PubMed electronic database was searched with included peer-reviewed publications in English language and with no publication year limit. From 413 potentially eligible studies, 49 were selected for full-text analysis, 19 were included in the systematic review with 12 considered in the meta-analysis. Two reviewers independently selected the studies, extracted the data, and assessed the risk of bias. Statistical analysis was performed using RevMan 5.1, with random effects model, at a significance level of p<0.05. Descriptive analysis of monoclinic phase content data showed that aging in autoclave promotes an increase in m-phase content (ranging from 0% up to 13.4% before and 2.13% up to 81.4% after aging) with intensity associated to the material susceptibility and to the aging parameters (time, pressure and temperature). Risk of bias analysis showed that only 1 study presented high risk, while the majority showed medium risk. Five meta-analyzes (factor: aging×control) were performed considering global and subgroups analyzes (pressure, time, temperature and m-phase % content) for flexural strength data. In the global analysis a significant difference (p<0.05) was observed between conditions, favoring non-aging group. Subgroup analysis revealed statistical difference (p<0.05) favoring non-aging, for aging time >20h. However, for shorter aging times (≤20h), there was no difference between groups. Pressure subgroup analysis presented a statistical difference (p<0.05) only when a pressure ≥2bar was employed, favoring non-aging group. Temperature subgroup analysis showed a statistical difference (p<0.05) only when temperature=134°C was used, favoring the non-aging group. M-phase % content analysis presented statistical difference (p<0.05) when more than 50% of m-phase content was observed, favoring non-aging group. High heterogeneity was found in some comparisons. Aging in autoclave promoted low-temperature degradation, impacting deleteriously on mechanical properties of Y-TZP ceramics. However, the effect of LTD depends on some methodological parameters indicating that aging time higher than 20h; pressure ≥2bar and temperature of 134°C are ideal parameters to promote LTD effects, and that those effect are only observed when more than 50% m-phase content is observed.

摘要

本研究的目的是系统回顾文献,以评估与未老化方案相比,高压釜中的低温降解(LTD)模拟是否会对Y-TZP陶瓷的机械性能和表面特性产生有害影响。通过PubMed电子数据库检索MEDLINE,纳入英文同行评审出版物,且无出版年份限制。从413项潜在符合条件的研究中,选择49项进行全文分析,19项纳入系统评价,其中12项纳入荟萃分析。两名评审员独立选择研究、提取数据并评估偏倚风险。使用RevMan 5.1进行统计分析,采用随机效应模型,显著性水平为p<0.05。单斜相含量数据的描述性分析表明,高压釜老化会促进m相含量增加(老化前范围为0%至13.4%,老化后为2.13%至81.4%),其强度与材料敏感性和老化参数(时间、压力和温度)相关。偏倚风险分析表明,只有1项研究存在高风险,而大多数研究显示为中等风险。针对弯曲强度数据,进行了五项荟萃分析(因素:老化×对照),考虑了总体和亚组分析(压力、时间、温度和m相%含量)。在总体分析中,各条件之间观察到显著差异(p<0.05),有利于未老化组。亚组分析显示,对于老化时间>20小时,存在有利于未老化组的统计学差异(p<0.05)。然而,对于较短的老化时间(≤20小时),各组之间没有差异。压力亚组分析仅在采用≥2巴的压力时呈现统计学差异(p<0.05),有利于未老化组。温度亚组分析仅在使用温度=134°C时呈现统计学差异(p<0.05),有利于未老化组。当观察到超过50%的m相含量时,m相%含量分析呈现统计学差异(p<0.05),有利于未老化组。在一些比较中发现了高度异质性。高压釜老化会促进低温降解,对Y-TZP陶瓷的机械性能产生有害影响。然而,LTD的影响取决于一些方法学参数,表明老化时间高于20小时;压力≥2巴和温度134°C是促进LTD效应的理想参数,并且只有当观察到超过50%的m相含量时才会观察到这些效应。

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