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推注材料与高吸水性聚丙烯和人造丝布的比较。

Comparison of Bolus Materials to Highly Absorbent Polypropylene and Rayon Cloth.

作者信息

Visscher Scott, Barnett Erin

机构信息

Radiation Medicine Program, Bahen Chant Radiation Treatment Centre, Stronach Regional Cancer Centre, Southlake Regional Health Centre, Newmarket, Ontario, Canada.

Radiation Medicine Program, Bahen Chant Radiation Treatment Centre, Stronach Regional Cancer Centre, Southlake Regional Health Centre, Newmarket, Ontario, Canada.

出版信息

J Med Imaging Radiat Sci. 2017 Mar;48(1):55-60. doi: 10.1016/j.jmir.2016.08.003. Epub 2016 Oct 27.

Abstract

This study assesses the utility of a highly absorbent polypropylene and rayon cloth (HAPRC) as a bolus material in radiation therapy. A comparison of various bolus materials used clinically at our center to the test bolus material, water-saturated HAPRC, was conducted. The reproducibility of the physical density was assessed by computerized tomography (CT) scanning the water-saturated HAPRC on a uniform density block phantom on multiple occasions, allowing the cloth to dry fully between subsequent CT scans. The cloth was found to have a consistent physical density between 0.8 and 1.0 g/cm. To evaluate the dosimetric impact of the various bolus materials, metal oxide semiconductor field effect transistor dosimetry measurements were performed for a 6 MV treatment beam on the anterior surface of an anthropomorphic thorax phantom. The ability of the bolus material to conform to an irregular surface was assessed by CT scanning the various bolus materials overlaying the nose of an anthropomorphic head phantom and another irregularly shaped test object. The HAPRC conforms well to irregular contours and is relatively inexpensive compared to Superflab and thermoplastic sheets. Before implementing the material into the clinical setting, an appropriate process for laundering the material should be determined, for hygienic reasons.

摘要

本研究评估了一种高吸水性聚丙烯和人造丝布(HAPRC)作为放射治疗中填充材料的效用。我们将中心临床使用的各种填充材料与测试填充材料——水饱和HAPRC进行了比较。通过在均匀密度块体模体上多次对水饱和HAPRC进行计算机断层扫描(CT)来评估物理密度的可重复性,在后续CT扫描之间让布完全干燥。发现该布的物理密度在0.8至1.0 g/cm之间保持一致。为了评估各种填充材料的剂量学影响,在拟人化胸部模体的前表面对6 MV治疗束进行了金属氧化物半导体场效应晶体管剂量测量。通过对覆盖拟人化头部模体的鼻子和另一个不规则形状测试物体的各种填充材料进行CT扫描,评估填充材料贴合不规则表面的能力。HAPRC能很好地贴合不规则轮廓,并且与Superflab和热塑性片材相比相对便宜。出于卫生原因,在将该材料应用于临床之前,应确定适当的洗涤材料的方法。

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