Does the shape of the field-of-view influence the magnitude of artefacts from high-density materials in cone-beam computed tomography?

IF 2.9 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Dento maxillo facial radiology Pub Date : 2023-10-01 Epub Date: 2023-09-04 DOI:10.1259/dmfr.20230147
Deivi Cascante-Sequeira, Rocharles Cavalcante Fontenele, Luciano Augusto Cano Martins, Danieli Moura Brasil, Matheus L Oliveira, Deborah Queiroz Freitas, Francisco Haiter-Neto
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Abstract

Objective: To compare cylindrical and convex triangular field-of-views (FOVs) concerning the magnitude of artefacts from high-density materials in cone-beam CT (CBCT).

Methods and materials: Cylinders of amalgam, chromium-cobalt, titanium, and zirconia were individually placed in the anterior and posterior regions of a polymethylmethacrylate phantom and scanned using cylindrical and convex triangular FOVs of the Veraview X800 CBCT device. Using the Image J software, 15 square regions of interest (ROIs) were placed in the axial reconstruction around the middle level of the cylinder and at distances of 0.5, 1.0, and 1.5 cm from the centre of the cylinder. Mean grey value and standard deviation of each ROI were averaged for each distance and subtracted from the values of a control ROI to calculate the magnitude of the artefacts by the grey value mean difference (GVMD) and grey value standard deviation (GVSD). Multiway analysis of variance with Tukey post-hoc test with a significance level of 5% evaluated the effect of the shape of the FOV, position inside the FOV, high-density material, and the distance of the artefact from the material.

Results: The convex triangular FOV increased the GVSD for all materials in the anterior and posterior regions at 0.5 cm compared to the cylindrical FOV (p < 0.0001). The convex triangular FOV showed greater GVMD for chromium-cobalt and zirconium in the anterior region and all materials in the posterior region at all distances (p < 0.0001).

Conclusion: The FOV shape influences the magnitude of artefacts from high-density materials. The convex triangular FOV showed greater artefact magnitude with variability among the high-density materials, region in the FOV, and distance from the material.

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在锥形束计算机断层扫描中,视场的形状是否会影响高密度材料伪影的大小?
目的:比较锥形束CT(CBCT)中高密度材料伪影大小的圆柱形和凸三角形视场(FOV)。方法和材料:将汞合金、铬钴、钛和氧化锆圆柱体分别放置在聚甲基丙烯酸甲酯体模的前部和后部区域,并使用Veraview X800 CBCT设备的圆柱形和凸三角形FOV进行扫描。使用Image J软件,将15个方形感兴趣区域(ROI)放置在圆柱体中间水平周围的轴向重建中,距离分别为0.5、1.0和1.5 距离圆柱体中心厘米。对每个距离平均每个ROI的平均灰度值和标准差,并从对照ROI的值中减去,以通过灰度值平均差(GVMD)和灰度值标准差(GVSD)来计算伪影的大小。Tukey事后检验的多元方差分析具有5%的显著性水平,评估了FOV的形状、FOV内部的位置、高密度材料以及伪影与材料的距离的影响。结果:凸三角形FOV使前部和后部所有材料的GVSD增加0.5 与圆柱形FOV相比(p<0.0001)。凸三角形FOV在所有距离上对前部区域的铬钴和锆以及后部区域的所有材料显示出更大的GVMD(p<0.001)。结论:FOV形状影响高密度材料伪影的大小。随着高密度材料、FOV中的区域和与材料的距离的变化,凸三角形FOV显示出更大的伪影幅度。
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来源期刊
CiteScore
5.60
自引率
9.10%
发文量
65
审稿时长
4-8 weeks
期刊介绍: Dentomaxillofacial Radiology (DMFR) is the journal of the International Association of Dentomaxillofacial Radiology (IADMFR) and covers the closely related fields of oral radiology and head and neck imaging. Established in 1972, DMFR is a key resource keeping dentists, radiologists and clinicians and scientists with an interest in Head and Neck imaging abreast of important research and developments in oral and maxillofacial radiology. The DMFR editorial board features a panel of international experts including Editor-in-Chief Professor Ralf Schulze. Our editorial board provide their expertise and guidance in shaping the content and direction of the journal. Quick Facts: - 2015 Impact Factor - 1.919 - Receipt to first decision - average of 3 weeks - Acceptance to online publication - average of 3 weeks - Open access option - ISSN: 0250-832X - eISSN: 1476-542X
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