1 Department of Oral Diagnosis, Division of Oral Radiology, Piracicaba Dental School, University of Campinas , Limeira , Brazil.
2 Division of Oral Radiology, School of Dentistry, Federal University of Bahia , Salvador , Brazil.
Dentomaxillofac Radiol. 2018 Dec;47(8):20180151. doi: 10.1259/dmfr.20180151. Epub 2018 Jun 27.
To evaluate the influence of kilovoltage (kVp) and metal artifact reduction tool (MAR) on the magnitude of cone beam CT (CBCT) artifacts.
A titanium and zirconia implants were inserted alternately in a posterior region of a mandible. CBCT exams were acquired with ProMax 3D (Planmeca Oy, Helsinki, Finland) and Picasso Trio machines (Vatech, Hwaseong, South Korea) using 70 kVp, 80 kVp and 90 kVp with and without MAR activation. The other exposure factors remained fixed at 5mA, field of view 80 × 50 mm and voxel 0.20 mm. The scans were performed before and after the insertion of the implants. Regions of interest were determined in different distances from the artifact production area (15, 25 and 35 mm) in an axial image, in which standard deviation (SD) of grayscale values was measured and contrast-to-noise ratio (CNR) was calculated. Analysis of variance was used to compare the data.
Overall, in cases where the artifact was pronounced, MAR was efficient in reducing SD values. MAR also improved the CNR of ProMax images, but did not affect the Picasso images. Additionally, the higher was the kVp, the lower was the SD value and the higher was the CNR in both machines.
In both machines, increasing kVp and MAR are effective in decreasing the CBCT artifacts in all their magnitude when they are pronounced. Therefore, the professionals should choose one of those options or even both considering the purpose of the CBCT imaging and radiation dose for the patient.
评估千伏(kVp)和金属伪影降低工具(MAR)对锥形束 CT(CBCT)伪影大小的影响。
将钛和氧化锆种植体交替插入下颌后区。使用 ProMax 3D(芬兰赫尔辛基的 Planmeca Oy)和 Picasso Trio 机器(韩国华城的 Vatech)获取 CBCT 检查,分别在 70 kVp、80 kVp 和 90 kVp 下,同时分别在激活和不激活 MAR 的情况下进行检查。其他曝光因素保持在 5mA、视野 80×50mm 和体素 0.20mm 不变。在植入前和植入后进行扫描。在轴位图像中,在距伪影产生区域 15、25 和 35mm 处的不同距离确定感兴趣区域,测量灰度值的标准差(SD)并计算对比度噪声比(CNR)。使用方差分析比较数据。
总体而言,在伪影明显的情况下,MAR 可有效降低 SD 值。MAR 还提高了 ProMax 图像的 CNR,但对 Picasso 图像没有影响。此外,kVp 越高,SD 值越低,两种机器的 CNR 越高。
在两种机器中,增加 kVp 和 MAR 可有效降低所有明显 CBCT 伪影的大小。因此,专业人员应根据 CBCT 成像的目的和患者的辐射剂量选择这些选项之一或两者都选择。