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推荐在影像引导放射治疗的锥形束计算机断层摄影中通过减小成像视野宽度来降低晶状体的曝光剂量:一项人体模型研究。

Recommendation for reducing the crystalline lens exposure dose by reducing imaging field width in cone-beam computed tomography for image-guided radiation therapy: an anthropomorphic phantom study.

机构信息

Department of Radiology, Koritsu Tatebayashi Kosei General Hospital, Gunma, Japan.

Graduate School of Radiological Technology, Gunma Prefectural College of Health Sciences, Gunma, Japan.

出版信息

Radiol Phys Technol. 2024 Sep;17(3):629-636. doi: 10.1007/s12194-024-00810-0. Epub 2024 Apr 30.

Abstract

In cone-beam computed tomography (CBCT) for image-guided radiation therapy (IGRT) of the head, we evaluated the exposure dose reduction effect to the crystalline lens and position-matching accuracy by narrowing one side (X2) of the X-ray aperture (blade) in the X-direction. We defined the ocular surface dose of the head phantom as the crystalline lens exposure dose and measured using a radiophotoluminescence dosimeter (RPLD, GD-352 M) in the preset field (13.6 cm) and in each of the fields when blade X2 aperture was reduced in 0.5 cm increments from 10.0 to 5.0 cm. Auto-bone matching was performed on CBCT images acquired five times with blade X2 aperture set to 13.6 cm and 5.0 cm at each position when the head phantom was moved from - 5.0 to + 5.0 mm in 1.0 mm increment. The maximum reduction rate in the crystalline lens exposure dose was - 38.7% for the right lens and - 13.2% for the left lens when blade X2 aperture was 5.0 cm. The maximum difference in the amount of position correction between blade X2 aperture of 13.6 cm and 5.0 cm was 1 mm, and the accuracy of auto-bone matching was similar. In CBCT of the head, reduced blade X2 aperture is a useful technique for reducing the crystalline lens exposure dose while ensuring the accuracy of position matching.

摘要

在头部锥形束 CT(CBCT)的图像引导放射治疗(IGRT)中,我们通过缩小 X 射线孔径(叶片)在 X 方向上的一侧(X2),评估了对晶状体的照射剂量减少效果和位置匹配准确性。我们将头部体模的眼部表面剂量定义为晶状体照射剂量,并使用放射性光致发光剂量计(RPLD,GD-352 M)在预设场(13.6 cm)和叶片 X2 孔径每次减小 0.5 cm 时的各个场中进行测量,从 10.0 减小到 5.0 cm。在头部体模从-5.0 到+5.0 mm 每次以 1.0 mm 的增量移动时,在每个位置上使用叶片 X2 孔径设置为 13.6 cm 和 5.0 cm 时,对五次采集的 CBCT 图像进行自动骨匹配。当叶片 X2 孔径为 5.0 cm 时,右眼晶状体的晶状体照射剂量最大减少率为-38.7%,左眼晶状体的晶状体照射剂量最大减少率为-13.2%。叶片 X2 孔径为 13.6 cm 和 5.0 cm 时位置校正量的最大差异为 1mm,自动骨匹配的准确性相似。在头部 CBCT 中,缩小叶片 X2 孔径是一种有用的技术,可以在确保位置匹配准确性的同时减少晶状体照射剂量。

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