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Phantom development and implementation for Gamma Knife (R) dosimetry

机译:伽马刀(R)剂量测定的幻影开发和实施

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Stereotactic radiosurgery is a procedure that primarily treats intracranial lesions to destroy tumour cells that are inaccessible surgically. Gamma Knife(center dot) is a stereotactic radiosurgery unit that can treat brain lesions using Co-60 beams, non-invasively. Fields from Gamma Knife(center dot) helmets are considered small, therefore, in order to ensure accurate dosimetry, detectors for dose measurements have to be carefully chosen. The IAEA TRS 483 code of practice is a standardized guide for dosimetric procedures and indication of detectors for reference dosimetry of small fields used in radiotherapy beams. The objective of this work was to assess the implementation of the TRS 483 recommendations for Gamma Knife(center dot) dosimetry, using two micro-ionization chambers, Exradin A16 and PTW Pinpoint 3D 31016. An acrylic phantom with the same dimensions as those provided by Elekta, Gamma Knife's manufacturer, was built as an alternative. The phantom was characterized for its implementation for Gamma Knife(center dot) dosimetry and to be used as part of an audit kit by a Secondary Standard Dosimetry Laboratory (SSDL) in Brazil. Alanine pellets were used as reference detector. Dosimetry results for the acrylic phantom were compared with the ones obtained in phantoms specified by Elekta, which are made of Acrylonitrile Butadiene Styrene (ABS) and Solid Water materials. TRS 483 recommended correction factors were used to calculate the absorbed dose to the water taking into consideration the phantom material. Absorbed dose measurements performed using the designed acrylic phantom showed results comparable to the ones obtained with commercially available phantoms. The new phantom is suitable for Gamma Knife reference and relative dosimetry. The results of this work aim to contribute to the implementation of the TRS 483, mainly in the area of Gamma Knife dosimetry and the use of small volume ionization chambers.
机译:定向定向放射牢是一种主要治疗颅内病变以破坏手术无法进入的肿瘤细胞的程序。伽玛刀(中心点)是一种立体定向放射牢房,可以使用CO-60梁,非侵入性地治疗脑病变。从伽马刀(中心点)头盔的田地被认为是小的,因此,为了确保准确的剂量测定,必须仔细选择用于剂量测量的探测器。 IAEA TRS 483的实践委员会是用于放射治疗梁中使用的小领域的参考剂量测定的探测器的标准化指南。这项工作的目的是评估使用两个微电离室,Exradin A16和PTW Pinpoint 3D 31016的伽马刀(中心点)剂量测定的TRS 483建议的实施。丙烯酸模型,与那些具有相同尺寸的丙烯酸幻影伽马刀制造商Elekta是另一种选择的。该幻影的特征在于其对伽马刀(中心点)剂量测定的实施,并用作巴西的二级标准剂量测定实验室(SSDL)作为审计套件的一部分。丙氨酸颗粒用作参考探测器。将丙烯酸含量的剂量测定结果与Elekta规定的含有丙烯腈丁二烯苯乙烯(ABS)和固体水材料制成的含量。 TRS 483推荐的校正因子用于考虑到幻像材料的吸收剂量。使用设计的丙烯酸体模进行的吸收剂量测量显示结果与用商业上可获得的模子获得的结果相当。新的幻影适用于伽马刀参考和相对剂量法。这项工作的结果旨在促进TRS 483的实施,主要是在伽马刀剂量测定和使用小体积电离室的领域。

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