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首页> 外文期刊>Nuclear instruments and methods in physics research >The thermoluminescence response of Ge-doped silica fibres for synchrotron microbeam radiation therapy dosimetry
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The thermoluminescence response of Ge-doped silica fibres for synchrotron microbeam radiation therapy dosimetry

机译:掺Ge的石英纤维对同步辐射微束辐射治疗剂量学的热致发光响应

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摘要

In radiation cancer therapy, the aim is to destroy the tumour cells in the treated area while minimizing damage to the surrounding normal tissue. Synchrotron microbeam radiation therapy offers considerable promise in this respect, based on knowledge that normal tissue can tolerate high doses of radiation over small volumes. At the ESRF microbeam radiation therapy facility, one of the several aspects being investigated is measurement of very high dose gradients (changing by hundreds of Cy over ~ 10 μm), as there is no established physical dosimetric system simultaneously providing accurate measurements of the doses in the microbeam peaks and valleys. Monte Carlo simulations have been obtained but these have yet to be validated by measurements. One possible means of obtaining micro dosimetric evaluations is use of the thermoluminescence (TL) produced by optical fibres. Previous studies at conventional electron linac radiotherapy facilities have shown that germanium-doped silica fibres offer useful sensitivity to radiotherapy doses it is being further established that commercially produced Ge-doped optical fibres can provide a TL-yield reproducibility of better than 4% (1 SD). Present experiments have investigated the thermoluminescence response of such fibres at incident energies of several tens of keV, for a wide range of doses, from 1 Gy to 10 kGy, revealing a linear correlation of r~2 ≥ 0.998 up to a dose of 2 kGy, encompassing the dosimetric needs of both conventional and synchrotron microbeam radiotherapy.
机译:在放射癌治疗中,目的是在最小化对周围正常组织的损害的同时破坏治疗区域中的肿瘤细胞。同步加速器微束放射疗法在这方面提供了可观的前景,这是基于对正常组织可以耐受小剂量高剂量放射的认识。在ESRF微束放射治疗设施中,正在研究的几个方面之一是测量非常高的剂量梯度(在〜10μm范围内变化数百Cy),因为没有既定的物理剂量系统同时提供剂量的准确测量。微束的峰谷。已经获得了蒙特卡罗模拟,但尚未通过测量验证。获得微剂量学评估的一种可能方式是使用由光纤产生的热致发光(TL)。常规电子直线加速器放射治疗设备的先前研究表明,掺锗的二氧化硅纤维对放射治疗剂量具有有用的敏感性,进一步确定的是,商业生产的掺Ge的光纤可以提供优于4%(1 SD)的TL产量重现性。 )。目前的实验已经研究了这种纤维在数十keV入射能量下的热致发光响应,适用于从1 Gy到10 kGy的大剂量范围,揭示了r〜2≥0.998直至2 kGy剂量的线性相关性。涵盖了常规和同步加速器微束放射治疗的剂量学需求。

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    Centre for Nuclear and Radiation Physics, Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford GU27XH, Surrey, United Kingdom Department of Physics, Faculty of Applied Sciences, Universiti Teknologi MARA Malaysia, Campus of Negeri Sembilan, 72000 Kuala Pilah, Malaysia;

    rnCentre for Nuclear and Radiation Physics, Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford GU27XH, Surrey, United Kingdom;

    rnCentre for Nuclear and Radiation Physics, Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford GU27XH, Surrey, United Kingdom CRUK-EPSRC Cancer Imaging Centre, Institute of Cancer Research, 15 Cotswold Road, SM2 5NG Sutton, United Kingdom;

    rnEuropean Synchrotron Radiation Facility (ESRF). 6 rue Horowitz, BP220, F-38043 Grenoble, France;

    rnEuropean Synchrotron Radiation Facility (ESRF). 6 rue Horowitz, BP220, F-38043 Grenoble, France;

    rnEuropean Synchrotron Radiation Facility (ESRF). 6 rue Horowitz, BP220, F-38043 Grenoble, France;

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  • 正文语种 eng
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  • 关键词

    dosimetry; dose response; ge-doped silica fibre; microbeam radiation therapy; synchrotron;

    机译:剂量学剂量反应锗掺杂的二氧化硅纤维;微束放射治疗;同步加速器;

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