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颌面硅橡胶弹性体的多孔性和颜色。

Porosity and color of maxillofacial silicone elastomer.

机构信息

Department of Allied Dental Science, Faculty of Applied Medical Sciences, Jordan University of Science and Technology, Irbid, Jordan.

出版信息

J Prosthodont. 2011 Jan;20(1):60-6. doi: 10.1111/j.1532-849X.2010.00652.x. Epub 2010 Nov 5.

Abstract

PURPOSE

Prosthesis color production and stability as a result of pore entrapment during mixing has not been investigated for maxillofacial silicone prostheses. The purpose of this study was to investigate pore numbers and percentages of a maxillofacial silicone elastomer mixed by two different techniques, using X-ray microfocus computerized tomography (Micro-CT), and to investigate the effect of porosity on color reproducibility and stability after two different aging conditions.

MATERIALS AND METHODS

Sixty-four disk-shaped specimens were prepared (8-mm diameter, 3-mm thick) by mixing TechSil S25 silicone elastomer (Technovent, Leeds, UK) following two techniques: manual mixing (n = 32) and mechanical mixing under vacuum (n = 32). Half the specimens in each group were intrinsically pigmented, and the other half remained unpigmented. Pore numbers, volumes, and percentages were calculated using the Micro-CT, and then specimens of each subgroup were stored in simulated sebum for 6 months (n = 8), and exposed to accelerated daylight aging for 360 hours (n = 8). Color change (ΔE) was measured at the start and end of conditioning. Pore numbers and percentages were analyzed using one-way Analysis of Variance (ANOVA) and Dunnett's-T3 post-hoc tests (p < 0.05). Independent t-test was used to detect differences (p < 0.05) in ΔE between manually and mechanically mixed specimens, in both unpigmented and pigmented states and to detect differences (p < 0.05) in ΔE before and after conditioning within each mixing method.

RESULTS

Mechanical mixing under vacuum reduced the number and percentage of pores in comparison to manual mixing, within pigmented and unpigmented silicone specimens (p < 0.05). Perceptible ΔE between manual and mechanical mixing techniques were 5.93 and 5.18 for both unpigmented and pigmented specimens, respectively. Under sebum storage, manually mixed unpigmented specimens showed lower ΔE (p < 0.05) than those that were mechanically mixed; however, pigmented silicone specimens showed the same ΔE (p > 0.05). After light aging, mixing method had no effect on ΔE of unpigmented specimens (p > 0.05). Furthermore, mechanically mixed pigmented specimens showed lower ΔE (p < 0.05).

CONCLUSIONS

Within silicone elastomers (whether pigmented or unpigmented), mechanical mixing under vacuum reduced pore numbers and percentages in comparison to manual mixing. For selected skin shade, pores affected the resultant color of prosthesis (color reproducibility). Additionally, silicone pores affected silicone color stability upon service.

CLINICAL SIGNIFICANCE

In fabricating maxillofacial prostheses, mechanically mixing silicone under vacuum produces pore-free prostheses, tending to enhance their color production and stability.

摘要

目的

在混合过程中由于孔的捕获而导致的义齿颜色的产生和稳定性,尚未在颌面硅橡胶义齿中进行研究。本研究的目的是使用 X 射线微焦点计算机断层扫描(Micro-CT)来研究两种不同技术混合的颌面硅橡胶弹性体的孔数和百分比,并研究在两种不同老化条件下孔隙率对颜色重现性和稳定性的影响。

材料和方法

通过混合 TechSil S25 硅橡胶(Technovent,英国利兹),制备了 64 个圆盘形试件(直径 8mm,厚 3mm),采用两种技术:手动混合(n=32)和真空下的机械混合(n=32)。每组的一半标本是内在着色的,另一半标本是未着色的。使用 Micro-CT 计算孔数、体积和百分比,然后将每个亚组的标本储存在模拟皮脂中 6 个月(n=8),并在加速日光老化中暴露 360 小时(n=8)。在调节前后测量颜色变化(ΔE)。使用单向方差分析(ANOVA)和 Dunnett's-T3 事后检验(p<0.05)分析孔数和百分比。独立 t 检验用于检测手动和机械混合标本在未着色和着色状态下的 ΔE 之间的差异(p<0.05),以及在每种混合方法中调节前后的 ΔE 之间的差异(p<0.05)。

结果

与手动混合相比,在着色和未着色的硅橡胶标本中,真空下的机械混合减少了孔的数量和百分比(p<0.05)。手动和机械混合技术在未着色和着色标本中分别产生 5.93 和 5.18 的可察觉 ΔE。在皮脂储存下,手动混合的未着色标本显示出较低的 ΔE(p<0.05),而机械混合的标本则显示出相同的 ΔE(p>0.05)。在光老化后,混合方法对未着色标本的 ΔE 没有影响(p>0.05)。此外,机械混合的着色标本显示出较低的 ΔE(p<0.05)。

结论

在硅橡胶弹性体(无论着色或未着色)中,与手动混合相比,真空下的机械混合减少了孔的数量和百分比。对于所选肤色,孔影响义齿的颜色(颜色重现性)。此外,硅橡胶中的孔会影响硅橡胶的颜色稳定性。

临床意义

在制作颌面义齿时,在真空下机械混合硅橡胶会产生无孔义齿,这有助于提高其颜色产生和稳定性。

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