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首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >A comparative description of three multipurpose phantoms (MPP) for external audits of photon beams in radiotherapy: the water MPP, the Umea MPP and the EC MPP.
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A comparative description of three multipurpose phantoms (MPP) for external audits of photon beams in radiotherapy: the water MPP, the Umea MPP and the EC MPP.

机译:放射治疗中对光子束进行外部审核的三种多功能体模(MPP)的比较描述:水MPP,Umea MPP和EC MPP。

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AIM: To present a technical description and intercomparison of three multipurpose phantoms (MPP) developed for mailed dosimetry checks of therapeutic photon beams in reference and non-reference conditions. MATERIALS: The W-MPP is a water MPP, whereas the Umea-MPP, made of perspex (PMMA, Plexiglas), and the EC-MPP, made of polystyrene, are solid MPPs. The W-MPP uses only thermoluminescent dosimeters (TLD) for dosimetry checks, the EC MPP uses film and TLD; the Umea phantom uses film and TLD, and offers in addition the possibility for ionization chamber measurements. Either using TLD or films, the MPPs have been designed to check on-axis and off-axis the following irradiation conditions: square and rectangular fields, asymmetric fields, wedged beams, oblique incidence and, for the solid MPPs, also the influence of inhomogeneities. RESULTS AND DISCUSSION: The MPPs have been compared for different aspects going from their dosimetric performance (number of dosimetric parameters that can be checked) to some practical consideration in the use of the different MPPs (set-up time, stability, instruction sheets, etc.). From a comparison between the solid multi-purpose phantoms, it turns out that the EC-MPP is capable of checking the largest number of dosimetric parameters per beam, but has the longest set-up time ( approximately 2 h) per beam according to the users. The Umea-MPP has a smaller number of set-ups (hence a smaller average time) and also includes some parameters not checked with the EC-MPP (e.g. SSD accuracy). The major drawback however of the Umea-MPP is considered to be its high density (>1.1 g/cm(3)) which increases the difficulty of the analysis with the treatment planning system. The W-MPP checks the smallest number of parameters, but is the fastest in set-up time, the easiest for mailing, and is water equivalent, which is advantageous for the TPS checks. The major drawback of this MPP is however the inability to check complete dose distribution (film) or inhomogeneities.
机译:目的:介绍在参考和非参考条件下开发的用于邮寄剂量学检查治疗性光子束的三种多功能体模(MPP)的技术说明和比较。材料:W-MPP是水MPP,而由有机玻璃(PMMA,Plexiglas)制成的Umea-MPP和由聚苯乙烯制成的EC-MPP是固态MPP。 W-MPP仅使用热辐射剂量计(TLD)进行剂量测定检查,EC MPP使用薄膜和TLD。 Umea幻影使用胶片和TLD,并且还提供了电离室测量的可能性。无论是使用TLD还是胶片,MPP均设计用于检查以下辐照条件:同轴和偏轴场,方形和矩形场,非对称场,楔形光束,倾斜入射以及对于固体MPP,还包括不均匀性的影响。结果与讨论:MPP从剂量性能(可以检查的剂量参数数量)到使用不同MPP的实际考虑因素(设置时间,稳定性,说明等)的不同方面进行了比较。 )。通过对实心多用途体模之间的比较,可以发现EC-MPP能够检查每束最大的剂量参数,但是根据使用情况,每束的建立时间最长(大约2小时)。用户。 Umea-MPP的设置数量较少(因此平均时间较短),并且还包含一些未经EC-MPP检查的参数(例如SSD精度)。然而,Umea-MPP的主要缺点被认为是其高密度(> 1.1 g / cm(3)),这增加了使用治疗计划系统进行分析的难度。 W-MPP检查参数的数量最少,但设置时间最快,最容易邮寄,并且水量等效,这对TPS检查很有利。但是,这种MPP的主要缺点是无法检查完整的剂量分布(薄膜)或不均匀性。

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