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High mobility single crystal diamond detectors for dosimetry: Application to radiotherapy

机译:用于剂量学的高迁移率单晶金刚石探测器:在放射治疗中的应用

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摘要

Diamond exhibits properties of interest for applications in the medical field. It is a very attractive material for detector fabrication due to its intrinsic properties and particularly its soft-tissue equivalence (Z=6 compared to Z=7.42 for human tissue), mechanical robustness and radiation hardness. Detectors fabricated from natural diamonds are used in several hospitals as dosimetric tools for the dose measurement received by the patient during radiotherapy and for beam calibration. Natural diamond based devices are expensive and long delivery times are common. The use of synthetic single crystal diamond is a promising issue for point dosimeter. Here we report on the growth of synthetic diamond using the CVD technique to fabricate free standing single crystals. Samples were characterized from their optical and electronic properties (Raman, TOF) and mounted as solid ionisation chambers with blocking contacts, for the evaluation of their dosimetric properties. Clinical tests were conducted in a medical facility at the Institute Gustave Roussy (IGR) in France specialised in the medical treatment of tumours. The results obtained demonstrate that our single crystal diamond detectors comply with the required specifications for radiotherapy applications.
机译:金刚石展现出在医学领域中应用所感兴趣的特性。由于其固有特性,尤其是其软组织等效性(对于人体组织,Z = 6,而对于Z = 7.42),它对于探测器制造是一种非常有吸引力的材料,其机械强度和辐射硬度也很高。用天然钻石制成的探测器在几家医院中用作剂量工具,用于放射治疗期间患者接收的剂量测量以及射线校准。基于天然金刚石的装置价格昂贵,并且交货时间长是常见的。对于点剂量计,合成单晶金刚石的使用是一个有前途的问题。在这里,我们报道了使用CVD技术制造独立式单晶的人造金刚石的生长。根据样品的光学和电子特性(拉曼,TOF)对样品进行表征,并将其安装为带有封闭触点的固体电离室,以评估其剂量学特性。临床测试是在法国古斯塔夫·鲁西研究所(IGR)的一家医疗机构中进行的,该机构专门从事肿瘤的治疗。获得的结果表明,我们的单晶金刚石探测器符合放射治疗应用所需的规范。

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