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Hydraulic conductance model of ex vivo human dentin

机译:离体人类牙本质的水力传导模型

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摘要

The main objective of this work was to mount and test an experimental model to measure the hydraulic conductance of ex vivo dentin. Seventeen healthy third molars, with indication of extraction of healthy donors aged between 15 and 30 years were obtained by informed consent. After cleaning them, disinfecting them, including them in resin epoxy and cutting them, there were 17 samples of dentin, corresponding to a disk of resin with a coronal section of tooth showing the dentin exposed on both sides of it. Three machines to measure the hydraulic conductance of the dentin were assembled according to the description of the model of Pashley. Samples were installed in a Chamber of diffusion, connected by using silicone tubes to a graduated transfer pipette and a 20cm water column. Through the displacement of a bubble of water in the inside of the pipette, the hydraulic conductance of each sample was measured 3 times on the 14th, 21st, 28th and 35th day post extraction. The data were tabulated and analyzed statistically. There is no SS difference in the rate of flow of a measured sample in the three machines (p=0.5937). There is no SS difference in measurements of the hydraulic conductance of 13 samples of human dentin measured in days 14, 21, 28 and 35 postextraction (p=0.0704). It is possible to mount an experimental model to study the hydraulic conductance of dentin ex vivo, based on the model of Pashley. The model seems to be reliable, but more research is needed in order to validate its reliability.
机译:这项工作的主要目的是安装和测试一个实验模型,以测量离体牙本质的水力传导率。通过知情同意,获得十七名健康的第三磨牙,表明有年龄在15至30岁之间的健康捐献者被拔除。清洁,消毒后,包括在树脂环氧树脂中进行切割,然后进行切割,共有17个牙本质样品,对应于一盘带有冠状牙齿的树脂盘,表明牙本质的两面都暴露在外。根据对Pashley模型的描述,组装了三台用于测量牙本质水力传导率的机器。将样品安装在扩散室中,通过使用硅胶管将其连接到带刻度的移液管和20cm水柱上。通过移液管内部的水泡的位移,在提取后的第14、21、28和35天对每个样品的水力传导率进行了3次测量。将数据制成表格并进行统计分析。在三台机器中,被测样品的流速没有SS差异(p = 0.5937)。在提取后第14、21、28和35天测量的13个人类牙本质样品的水力传导率的测量结果中,SS没有差异(p = 0.0704)。基于Pashley模型,可以建立实验模型来研究牙本质离体的水力传导率。该模型似乎是可靠的,但是需要更多的研究来验证其可靠性。

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