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用于锥形束光学 CT 辐射剂量学的固定、针对特定物体的强度补偿。

Fixed, object-specific intensity compensation for cone beam optical CT radiation dosimetry.

机构信息

Department of Medical Biophysics, Schulich School of Medicine and Dentistry, The University of Western Ontario, London, Ontario, Canada.

出版信息

Phys Med Biol. 2018 Mar 16;63(6):06NT02. doi: 10.1088/1361-6560/aab17f.

Abstract

Optical cone beam computed tomography (CT) scanning of radiochromic gel dosimeters, using a CCD camera and a low stray light convergent source, provides fast, truly 3D radiation dosimetry with high accuracy. However, a key limiting factor in radiochromic gel dosimetry at large (⩾10 cm diameter) volumes is the initial attenuation of the dosimeters. It is not unusual to observe a 5-10×  difference in signal intensity through the dosimeter center versus through the surrounding medium in pre-irradiation images. Thus, all dosimetric information in a typical experiment is measured within the lower 10%-20% of the camera sensor's range, and re-use of gels is often not possible due to a lack of transmission. To counteract this, in this note we describe a simple method to create source compensators by printing on transparent films. This technique, which is easily implemented and inexpensive, is an optical analogue to the bowtie filter in x-ray CT. We present transmission images and solution phantom reconstructions to demonstrate that (1) placing compensators beyond the focal zone of the imaging lens prevents high spatial frequency features of the printed films from generating reconstruction artifacts, and (2) object-specific compensation considerably reduces the range of intensities measured in projection images. This will improve the measurable dose range in optical CT dosimetry, and will enable imaging of larger gel volumes (∼15 cm diameter). Additionally, it should enable re-use of dosimeters by printing a new compensator for a second experiment.

摘要

使用 CCD 相机和低杂散光会聚光源对放射变色凝胶剂量计进行光学锥形束 CT(CT)扫描,可以快速、准确地实现真正的 3D 放射剂量测量。然而,在大体积(≥10cm 直径)的放射变色凝胶剂量测量中,一个关键的限制因素是剂量计的初始衰减。在预辐照图像中,通过剂量计中心与周围介质的信号强度差异达到 5-10 倍并不罕见。因此,在典型实验中,所有的剂量测量信息都在相机传感器范围的 10%-20%以内进行测量,由于缺乏透射率,凝胶通常无法重复使用。为了克服这一问题,在本说明中,我们描述了一种通过在透明薄膜上打印来制作源补偿器的简单方法。这种技术易于实现且成本低廉,是 X 射线 CT 中的蝴蝶结滤光片的光学模拟。我们展示了透射图像和溶液体模重建,以证明(1)将补偿器放置在成像透镜的焦场外,可以防止打印薄膜的高空间频率特征产生重建伪影,以及(2)针对特定物体的补偿可以显著减少投影图像中测量的强度范围。这将改善光学 CT 剂量测量中的可测量剂量范围,并能够对更大的凝胶体积(约 15cm 直径)进行成像。此外,通过为第二个实验打印新的补偿器,它应该能够重复使用剂量计。

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