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OUT-OF-FIELD DOSE MEASUREMENTS FOR 3D CONFORMAL AND INTENSITY MODULATED RADIOTHERAPY OF A PAEDIATRIC BRAIN TUMOUR

机译:小儿脑瘤3D适形和强度调制放射治疗的场外剂量测量

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摘要

The purpose of this study was to measure out-of-field organ doses in clinical conditions in anthropomorphic paediatric phantoms which received a simulated treatment of a brain tumour with intensity modulated radiotherapy (IMRT) and 3D con-formal radiotherapy (3D CRT). Organ doses measured with radiophotoluminescent and thermoluminescent dosemeters were on average 1.6 and 3.0 times higher for the 5 y-old than for the 10 y-old phantom for IMRT and 3D CRT, respectively. A larger 5-y to 10-y organ dose ratio for 3D CRT can be explained because the use of a mechanical wedge for the 5-y-old 3D CRT phantom treatment increased out-of-fleld doses. Due to different configurations of the radiation fields, for both phantoms, the IMRT technique resulted in a higher non-target brain dose and higher eye doses but lower thyroid doses compared to 3D CRT. For 3D CRT (which used a non-coplanar field configuration), eye doses were 3-6% and for IMRT (which used a coplanar field configuration) 27-30% of the treatment dose, respectively. For thyroid and more distant organs, doses were less than 1% of the treatment dose. Comparison of measured doses and doses calculated by the treatment planning system (TPS) showed that the TPS underestimated out-of-fleld doses both for IMRT and 3D CRT.
机译:这项研究的目的是在拟人化的小儿幻象的临床条件下测量野外器官剂量,该假人接受了强度调节放疗(IMRT)和3D保形放射疗法(3D CRT)对脑肿瘤的模拟治疗。对于IMRT和3D CRT,对于5岁儿童,用放射光致发光和热致发光剂量计测量的器官剂量分别平均高出1.6倍和3.0倍。可以解释3D CRT的更大的5y到10y器官剂量比,这是因为在5岁的3D CRT体模治疗中使用机械楔块会增加生产能力。由于对两个体模的辐射场配置不同,与3D CRT相比,IMRT技术导致更高的非目标大脑剂量和更高的眼睛剂量,但甲状腺剂量更低。对于3D CRT(使用非共面场配置),眼睛剂量分别为治疗剂量的3-6%,对于IMRT(使用共面场配置)的剂量分别为治疗剂量的27-30%。对于甲状腺和较远的器官,剂量小于治疗剂量的1%。比较测量的剂量和由治疗计划系统(TPS)计算的剂量,结果表明TPS低估了IMRT和3D CRT的生产能力不足剂量。

著录项

  • 来源
    《Radiation Protection Dosimetry》 |2017年第3期|331-340|共10页
  • 作者单位

    Ruder Boskovic Institute, Bijenicka cesta 54,10000 Zagreb, Croatia;

    Institute of Nuclear Physics PAN, Radzikowskiego 152, 31-342 Krakow, Poland;

    Belgium Nuclear Research Center (SCK-CEN), Boeretang 200, BE-2400 Mol, Belgium;

    Centre of Oncology M. Sklodowska-Curie Memorial Institute, Garncarska 11, 31-115 Krakow, Poland;

    Ruder Boskovic Institute, Bijenicka cesta 54,10000 Zagreb, Croatia;

    Ruder Boskovic Institute, Bijenicka cesta 54,10000 Zagreb, Croatia;

    Institute of Nuclear Physics PAN, Radzikowskiego 152, 31-342 Krakow, Poland;

    University of Newcastle, Faculty of Medical Sciences, Newcastle upon Tyne NE2 4HH, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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