首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >A Novel Method for Characterizing Beam Hardening Artifacts in Cone-beam Computed Tomographic Images
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A Novel Method for Characterizing Beam Hardening Artifacts in Cone-beam Computed Tomographic Images

机译:一种新的锥形束束束型剖面术的方法

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Introduction: The beam hardening (BH) artifact produced by root filling materials in cone-beam computed tomographic (CBCT) images is influenced by their radio logic K absorption edge values. The purpose of this study was to describe a novel technique to characterize BH artifacts in CBCT images produced by 3 root canal filling materials and to evaluate the effects of a zirconium (Zr)-based root filling material with a lower K edge (17.99 keV) on the production of BH artifacts. Methods: The palatal root canals of 3 phantom model teeth were prepared and root filled with gutta-percha (GP), a Zr root filling material, and calcium hydroxide paste. Each phantom tooth was individually imaged using the CS 9000 CBCT unit (Carestream, Atlanta, GA). The "light" and "dark" components of the BH artifacts were quantified separately using Image.' software (National Institutes of Health, Bethesda, MD) in 3 regions of the root. Mixed-design analysis of variance was used to evaluate differences in the artifact area for the light and dark elements of the BH artifacts. Results: A statistically significant difference in the area of the dark portion of the BH artifact was found between all fill materials and in all regions of the phantom tooth root (P .05). GP generated a significantly greater dark but not light artifact area compared with Zr (P .05). Moreover, statistically significant differences between the areas of both the light and dark artifacts were observed within all regions of the tooth root, with the greatest artifact being generated in the coronal third of the root (P .001). Conclusions: Root canal filling materials with lower K edge material properties reduce BH artifacts along the entire length of the root canal and reduce the contribution of the dark artifact.
机译:介绍:锥形束电脑断层摄影(CBCT)图像中的根填充材料产生的梁硬化(BH)伪影受到其无线电逻辑K吸收边缘值的影响。本研究的目的是描述一种新的技术,以表征由3根根管填充材料产生的CBCT图像中的BH伪影,并评估锆(ZR)的根填充材料与较低k边缘(17.99kev)的影响论BH文物的生产。方法:制备3个幻影模型牙齿的腭根管,并填充有Gutta-Percha(GP)的根,Zr根填充材料和氢氧化钙糊。使用CS 9000 CBCT单元(Carestream,Atlanta,Ga)单独成像,每个幽灵齿。使用图像分开量化BH伪影的“光”和“暗”组分。软件(国家健康机构,Bethesda,MD)在根的3个地区。差异的混合设计分析用于评估BH伪影的光和暗元件的伪影区域的差异。结果:在所有填充材料和体模齿根的所有区域之间发现了BH伪影的暗部分区域的统计学显着差异(P <.05)。与Zr(P <0.05)相比,GP产生了明显更大但不是轻的伪影区域。此外,在齿根的所有区域内观察到光和暗伪像的区域之间的统计学上显着差异,并且在根的冠状三分之一(P <.001)中产生最大的伪像。结论:具有下k边缘材料的根管填充材料特性沿着根管的整个长度减少了BH伪像,减少了黑暗工件的贡献。

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