King Shalinie, See Howard, Thomas Graham, Swain Michael
Faculty of Dentistry, The University of Sydney, NSW, Australia.
Dent Mater. 2008 Nov;24(11):1545-8. doi: 10.1016/j.dental.2008.03.021. Epub 2008 May 7.
The aim of the study is to investigate the visco-elastic response of an alginate irreversible hydrocolloid dental impression material during setting.
A novel squeeze film Micro-Fourier Rheometer (MFR, GBC Scientific Equipment, Australia) was used to determine the complex modulus of an alginate irreversible hydrocolloid dental impression material (Algident, ISO 1563 Class A Type 1, Dentalfarm Australia Pty. Ltd.) during setting after mixing. Data was collected every 30s for 10 min in one study and every 10 min for a total of 60 min in another study. A high level of repeatability was observed.
The results indicate that the MFR is capable of recording the complex shear modulus of alginate irreversible hydrocolloid for 60 min from the start of mixing and to simultaneously report the changing visco-elastic parameters at all frequencies between 1 Hz and 100 Hz. The storage modulus shows a dramatic increase to 370% of its starting value after 6 min and then reduces to 55% after 60 min. The loss modulus increases to a maximum of 175% of its starting value after 10 min and then reduces to 94% after 60 min.
The MFR enables the changes in the complex modulus through the complete setting process to be followed. It is anticipated this approach may provide a better method to compare the visco-elastic properties of impression materials and assist with identification of optimum types for different clinical requirements. The high stiffness of the instrument and the use of band-limited pseudo-random noise as the input signal are the main advantages of this technique over conventional rheometers for determining the changes in alginate visco-elasticity.
本研究旨在调查藻酸盐不可逆水胶体牙科印模材料在凝固过程中的粘弹性响应。
使用一种新型挤压薄膜微傅里叶流变仪(MFR,澳大利亚GBC科学设备公司)来测定藻酸盐不可逆水胶体牙科印模材料(Algident,ISO 1563 A类1型,澳大利亚牙科农场私人有限公司)混合后凝固过程中的复数模量。在一项研究中,每隔30秒收集数据,持续10分钟;在另一项研究中,每隔10分钟收集数据,总共收集60分钟。观察到了高度的重复性。
结果表明,MFR能够从混合开始起60分钟内记录藻酸盐不可逆水胶体的复数剪切模量,并同时报告1赫兹至100赫兹之间所有频率下不断变化的粘弹性参数。储能模量在6分钟后急剧增加至其初始值的370%,然后在60分钟后降至55%。损耗模量在10分钟后增加至其初始值的175%,然后在60分钟后降至94%。
MFR能够跟踪整个凝固过程中复数模量的变化。预计这种方法可能提供一种更好的方法来比较印模材料的粘弹性特性,并有助于确定不同临床需求的最佳类型。与传统流变仪相比,该仪器的高刚度以及使用带限伪随机噪声作为输入信号是该技术在测定藻酸盐粘弹性变化方面的主要优势。