首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Radiopacity of endodontic materials on film and a digital sensor.
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Radiopacity of endodontic materials on film and a digital sensor.

机译:胶片和数字传感器上的牙髓材料的射线不透性。

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摘要

The purpose of this study was to compare the radiographic appearance of 12 endodontic materials as visualized on either Kodak Ultra-speed D speed film (Eastman Kodak Company, Rochester, NY) or a Gendex eHD digital sensor (Gendex Dental Systems, Milan, Italy). Ten discs of each material were radiographed alongside an aluminum alloy 1100 (Alcoa, Pittsburgh, PA) stepwedge that was used for reference. For every radiograph, the average grayscale value of the material was converted into absorbance notation and compared with that of the reference stepwedge in order to determine the equivalent radiopacity in terms of millimeters of Al 1100 per millimeter of material. Two-way repeated-measures analysis of variance testing detected significant differences with respect to imaging system, material, and the interaction of the two factors (p < 0.001). The difference in a material's radiopacity as measured on the digital sensor compared with film was greater than 10% for 4 of the 12 materials and over 40% for InnoEndo (Heraus Kulzer, Armonk, NY). It was speculated that barium fillers cause this effect.
机译:这项研究的目的是比较12种牙髓材料的射线照相外观,这些图像在Kodak Ultra-speed D速度胶片(Eastman Kodak Company,纽约州罗彻斯特)或Gendex eHD数字传感器(Gendex Dental Systems,意大利米兰)上显示。将每种材料的十个圆片与铝合金1100(美国宾夕法尼亚州匹兹堡的Alcoa)阶梯楔一起进行射线照相,以用作参考。对于每张射线照片,将材料的平均灰度值转换为吸光度表示法,并与参考阶梯楔进行比较,以便确定以毫米/ Al 1100 /毫米材料为单位的等效射线不透性。方差测试的双向重复测量分析发现,在成像系统,材料和两个因素的相互作用方面存在显着差异(p <0.001)。用数字传感器测量的材料与胶片相比,材料的射线不透性的差异,对于12种材料中的4种大于10%,对于InnoEndo(Heraus Kulzer,Armonk,NY)大于40%。据推测钡填充剂会引起这种作用。

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