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Dosimetry analysis of panoramic‐imaging devices in different‐sized phantoms

机译:不同尺寸体模中全景成像设备的剂量学分析

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摘要

The aim of this study is to measure the radiographic dose in adult, adolescent, and child head‐sized PMMA phantoms for three panoramic‐imaging devices: the panoramic mode on two CBCT machines (Carestream 9300 and i‐CAT NG) and the Planmeca ProMax 2D. A SEDENTEXCT dose index adult phantom and custom‐built adolescent and pediatric PMMA dosimetry phantoms were used. Panoramic radiographs were performed using a Planmeca ProMax 2D and the panoramic mode on a Carestream 9300 CBCT and an i‐CAT NG using the protocols used clinically. Point dose measurements were performed at the center, around the periphery and on the surface of each phantom using a thimble ionization chamber. Five repeat measurements were taken at each location. For each machine, single‐factor ANOVA was conducted to determine dose differences between protocols in each phantom, as well as determine the differences in absorbed dose when the same protocol was used for different‐sized phantoms. For any individual phantom, using protocols with lower kVp, mA, or acquisition times resulted in statistically significant dose savings, as expected. When the same protocol was used for different‐sized phantoms, the smaller phantom had a higher radiation dose due to less attenuation of x‐rays by the smaller phantom and differences in the positioning of the ion chamber relative to the focal trough. The panoramic‐mode on the CBCT machines produce images suitable for clinical use with similar dose levels to the stand‐alone panoramic device. Significant dose savings may result by selecting age‐ and size‐ appropriate protocols for pediatric patients, but a wider range of protocols for children and adolescents may be beneficial.
机译:这项研究的目的是为三种全景成像设备测量成人,青少年和儿童头部大小的PMMA体模的射线照相剂量:两台CBCT机器(Carestream 9300和i-CAT NG)和Planmeca ProMax上的全景模式2D使用SEDENTEXCT剂量指数成人体模以及定制的青少年和儿童PMMA剂量学体模。使用Planmeca ProMax 2D和全景模式在Carestream 9300 CBCT和i-CAT NG上使用临床使用的协议进行全景射线照相。使用顶针电离室在每个幻像的中心,周围和表面上进行点剂量测量。在每个位置进行五次重复测量。对于每台机器,都进行了单因素方差分析,以确定每个体模中方案之间的剂量差异,以及确定将相同方案用于不同尺寸的体模时吸收剂量的差异。对于任何单个幻像,使用具有更低kVp,mA或采集时间的方案,都可以达到预期的统计学上显着的剂量节省。当相同的协议用于不同尺寸的体模时,较小的体模具有较高的辐射剂量,这是由于较小的体模对X射线的衰减较小,以及离子室相对于聚焦槽的位置有所不同。 CBCT机器上的全景模式产生的图像适合临床使用,其剂量水平与独立全景设备相似。通过为儿童患者选择适合年龄和大小的方案,可以节省大量的剂量,但是,针对儿童和青少年的更广泛的方案可能是有益的。

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