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计算机断层扫描透视期间基于光激励发光剂量计得出的X射线剂量分布评估。

Evaluation of an X-Ray Dose Profile Derived from an Optically Stimulated Luminescent Dosimeter during Computed Tomographic Fluoroscopy.

作者信息

Hasegawa Hiroaki, Sato Masanori, Tanaka Hiroshi

机构信息

Department of Bioinformatics, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo, Japan.

Department of Radiological Sciences, Graduate School of Health Sciences, Komazawa University, Setagaya-ku, Tokyo, Japan.

出版信息

PLoS One. 2015 Jul 7;10(7):e0132154. doi: 10.1371/journal.pone.0132154. eCollection 2015.

Abstract

The purpose of this study was to evaluate scatter radiation dose to the subject surface during X-ray computed tomography (CT) fluoroscopy using the integrated dose ratio (IDR) of an X-ray dose profile derived from an optically stimulated luminescent (OSL) dosimeter. We aimed to obtain quantitative evidence supporting the radiation protection methods used during previous CT fluoroscopy. A multislice CT scanner was used to perform this study. OSL dosimeters were placed on the top and the lateral side of the chest phantom so that the longitudinal direction of dosimeters was parallel to the orthogonal axis-to-slice plane for measurement of dose profiles in CT fluoroscopy. Measurement of fluoroscopic conditions was performed at 120 kVp and 80 kVp. Scatter radiation dose was evaluated by calculating the integrated dose determined by OSL dosimetry. The overall percent difference of the integrated doses between OSL dosimeters and ionization chamber was 5.92%. The ratio of the integrated dose of a 100-mm length area to its tails (-50 to -6 mm, 50 to 6 mm) was the lowest on the lateral side at 80 kVp and the highest on the top at 120 kVp. The IDRs for different measurement positions were larger at 120 kVp than at 80 kVp. Similarly, the IDRs for the tube voltage between the primary X-ray beam and scatter radiation was larger on the lateral side than on the top of the phantom. IDR evaluation suggested that the scatter radiation dose has a high dependence on the position and a low dependence on tube voltage relative to the primary X-ray beam for constant dose rate fluoroscopic conditions. These results provided quantitative evidence supporting the radiation protection methods used during CT fluoroscopy in previous studies.

摘要

本研究的目的是使用源自光激励发光(OSL)剂量计的X射线剂量剖面的积分剂量比(IDR),评估X射线计算机断层扫描(CT)透视期间受试者体表的散射辐射剂量。我们旨在获得定量证据,以支持先前CT透视期间使用的辐射防护方法。本研究使用多层CT扫描仪。OSL剂量计放置在胸部体模的顶部和侧面,以便剂量计的纵向与CT透视中用于测量剂量剖面的正交轴与切片平面平行。在120 kVp和80 kVp下进行透视条件的测量。通过计算OSL剂量测定法确定的积分剂量来评估散射辐射剂量。OSL剂量计与电离室之间的积分剂量总体百分比差异为5.92%。100毫米长度区域的积分剂量与其尾部(-50至-6毫米,50至6毫米)的比率在80 kVp时在侧面最低,在120 kVp时在顶部最高。不同测量位置的IDR在120 kVp时比在80 kVp时更大。同样,在体模的侧面,主X射线束与散射辐射之间的管电压的IDR比在顶部更大。IDR评估表明,在恒定剂量率透视条件下,散射辐射剂量对位置的依赖性较高,而相对于主X射线束对管电压的依赖性较低。这些结果提供了定量证据,支持先前研究中CT透视期间使用的辐射防护方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7cc/4494858/6485a1400b14/pone.0132154.g001.jpg

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