不可逆水胶体压印材料(海藻酸盐)随贮存时间变化的尺寸变化的数字分析。

Q3 Medicine
Fatemah Ibrahem, Thomas Giugliano, Ryan Richard Ruff, Mijin Choi
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引用次数: 0

摘要

目的:本研究的目的是数字化测量不可逆水胶体印模材料(海藻酸盐)在最佳存储条件下因不同存储时间而产生的尺寸变化。材料和方法:采用单一型V型牙石对照铸型,采用穿孔料盘制作藻酸盐印模25个。样品被随机分为五组,每组5个样品(每组n=5),储存时间不同:第一组,浇注15分钟;第二组,1小时浇注;第三组,24小时浇注(1天);第4组,浇筑72小时(3天);第五组,浇筑时间为168小时(7天)。所有印痕在室温下用密封的Ziploc®塑料袋和湿纸巾(100%相对湿度)储存,并根据指定的组储存时间储存。根据制造商的说明,将所有印模倒入V型牙石中。用数字3D桌面扫描仪扫描铸件,并保存为电子立体光刻(.stl)文件。使用Geomagic®control X™软件将扫描铸件的每个。stl文件叠加到控制铸件的。stl文件上。在每个铸型上预先选择三个固定比较测量点(CMP)与对照铸型进行比较。第一点(CMP1)位于中切牙面中表面。第2点(CMP2)和第3点(CMP3)位于第三磨牙中颊近缘脊区。用彩色图分析每个点的文件之间的差异,并量化(表1)。公差设置为±10μm。CMP评分采用单因素方差分析(ANOVA)和Kruskal-Wallis (K-W)非参数H检验进行分析。结果:各组间平均间隙距离为0.04mm(7天组)至0.06mm(1小时组和24小时组)。彩色地图显示,随着储存时间的增加,尺寸变化会增加,最长可达一天。3天后,测量到最大为139μm的收缩率。CMP1 (F[4,20] = 1.65, p = 0.020)和CMP3 (F[4,20] = 0.44, p = -0.78)的方差分析结果无统计学意义。同样,CMP2的K-W结果无统计学意义(χ2= 3.62, p = 0.46)。结论:在最佳的储存条件下,藻酸盐浇筑的铸件在7天内没有明显的尺寸变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital Analysis of the Dimensional Change Of an Irreversible Hydrocolloid Impression Material (Alginate) with Varying Storage Times.

Aim: The aim of this study was to digitally measure the dimensional changes in an irreversible hydrocolloid impression material (alginate) resulting from varying storage times under optimal storage conditions.

Materials and methods: A single type V dental stone control cast was used to make 25 alginate impressions using perforated stock trays. The impressions were randomly assigned into five groups of five samples each (n=5 per group) with varying storage times: Group 1, poured at 15 minutes; Group 2, poured at one hour; Group 3, poured at 24 hours (one day); Group 4, poured at 72 hours (three days); Group 5, poured at 168 hours (seven days). All impressions were stored in sealed Ziploc® plastic bags with a wet paper towel (100% relative humidity) at room temperature and stored according to the assigned group storage times. All impressions were poured in type V dental stone according to the manufacturer's instructions. The casts were scanned with a digital 3D desktop scanner and saved as electronic stereolithography (.stl) files. Each .stl file of the scanned casts were superimposed on the .stl file of the control cast using Geomagic® Control X™ software. Three preselected fixed comparison measuring points (CMP) on each cast were compared to the control cast. Point one (CMP1) was on the midfacial surface of central incisor. Point two (CMP2) and point three (CMP3) were on the mesiobuccal proximal marginal ridge areas of third molars. The discrepancies between the files at each point were analysed with colour maps, and quantified (Table 1). The tolerance was set at ±10μm. CMP scores were analysed using one-way analysis of variance (ANOVA) and Kruskal-Wallis (K-W) non-parametric H tests.

Results: Average gap distances across groups ranged from 0.04mm (seven-day group) to 0.06mm (one hour and 24-hour groups). Colour maps indicated increased dimensional change with increased storage time up to one day. After three days, shrinkage up to 139μm was measured. ANOVA results for CMP1 (F[4,20] = 1.65, p = 0.020) and CMP3 (F[4,20] = 0.44, p = -0.78) were not statistically significant. Similarly, K-W results for CMP2 were not significant (χ2= 3.62, p = 0.46).

Conclusions: Under optimal storage conditions, there were no significant dimensional changes in casts poured from alginate up to seven days.

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来源期刊
Primary dental journal
Primary dental journal Medicine-Medicine (all)
CiteScore
1.30
自引率
0.00%
发文量
49
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