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首页> 外文期刊>Radiation measurements >The effect of pull back technique on dose distribution in the junction region for Sr-90/Y-90 intravascular brachytherapy sources
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The effect of pull back technique on dose distribution in the junction region for Sr-90/Y-90 intravascular brachytherapy sources

机译:撤回技术对Sr-90 / Y-90血管内近距离放射治疗源连接区剂量分布的影响

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摘要

The aim of this work is to investigate the effect of pull back technique on dose distribution in the junction region for intravascular brachytherapy (IVBT) with beta source train. In this purpose, the five positions which were created with 0 cm gap, 2.5, 5 mm gap and 2.5, 5 mm overlap between active seeds were studied. The measurement for IVBT beta source train (Novoste Beta Cath) with 40 mm active source length were performed using radiochromic film dosimetry. Radiochromic film measurements were performed using a specially manufactured phantom, which was made of a white polystyrene material in our department. Radiochromic films were calibrated using Co-60 beams with 50, 100, 150, 200 Gy doses at 5 cm depth within solid water phantom in the same day. In the presence of a 2.5 mm (1 seed) and 5 mm (2 seed) gap, the dose in the middle of junction region can be decreased to 44% and 23%, respectively. On the other hand, in the presence of a 2.5 mm (1 seed) and 5 mm (2 seed) overlap, the dose can be increased as to much as 62% and 74%, respectively. In an IVBT application using pull back technique, the best dose distribution in the junction region was obtained with a perfect end-to-end match and our results show that significant underdose or overdose regions in the junction can occur in the presence of gap or overlap. Therefore, to create a perfect end-to-end match in an IVBT application using pull back technique, all movements of balloon should be recorded and the sources have been carefully placed to irradiate the injured vessel part with sufficient radiation doses. (C) 2004 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是研究回弹技术对使用β源训练的血管内近距离放射治疗(IVBT)交界处剂量分布的影响。为此目的,研究了在活性种子之间以0 cm间隙,2.5、5 mm间隙和2.5、5 mm重叠形成的五个位置。使用放射致变色膜剂量法对具有40 mm有源源长度的IVBT beta源列(Novoste Beta Cath)进行测量。放射性变色膜的测量是使用我们部门中由白色聚苯乙烯材料制成的特殊制造的体模进行的。当天,在固态水体模中,使用Co-60光束以50、100、150、200 Gy剂量在5 cm深度处校准了放射致变色膜。在存在2.5毫米(1个种子)和5毫米(2个种子)间隙的情况下,接合区中间的剂量可分别降低至44%和23%。另一方面,在存在2.5毫米(1个种子)和5毫米(2个种子)重叠的情况下,剂量可以分别增加至多达62%和74%。在使用回拉技术的IVBT应用中,获得了最佳的端对端匹配的结区域最佳剂量分布,我们的结果表明,在存在间隙或重叠的情况下,结中可能出现明显的剂量不足或过量区域。因此,为了在使用回拉技术的IVBT应用中创建完美的端到端匹配,应记录气球的所有运动,并仔细放置放射源,以足够的辐射剂量照射受伤的血管部分。 (C)2004 Elsevier Ltd.保留所有权利。

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