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首页> 外文期刊>Tumori. >Transmission, penumbra and leaf positional accuracy in commissioning and quality assurance program of a multileaf collimator for step-and-shoot IMRT treatments.
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Transmission, penumbra and leaf positional accuracy in commissioning and quality assurance program of a multileaf collimator for step-and-shoot IMRT treatments.

机译:多叶准直仪的调试和质量保证程序中的透射,半影和叶片位置精度,适用于IMRT步进式治疗。

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摘要

AIMS AND BACKGROUND: The performance characteristics of a commercial multileaf collimator (MLC) for intensity modulated radiation therapy (IMRT) and a comprehensive quality assurance program (QA) to be performed during the commissioning of the MLC were investigated. MATERIALS AND METHODS: The midleaf transmission and interleaf leakage, the in-plane penumbra and its in-plane/cross-plane variation, the cross-plane penumbra and its in-plane/cross-plane variation, and the leaf positional accuracy of a high-energy photon (6 MV) Sli Precise Elekta linear accelerator were measured. Kodak EDR2 Ready Pack film was used for MLC transmission measurement; for the other characterization measurements we used Kodak X-Omat XV2 Ready Pack film placed at 5 cm depth in a solid RW3 phantom. Each film was digitized with a laser scanning photodensitometer VXR-12 Plus using the Omni Pro-Accept 6.OA film dosimetry system and converted to dose by means of H&D curves. The dose calibration measurements were performed with a Farmer ionization chamber according to the guidelines of the IAEA Technical Report No. 277. RESULTS: The average midleaf transmission and interleaf leakage were 1.8% +/- 0.1% and 2.1% +/- 0.2%, respectively. The average value of the cross-plane penumbra was 5.4 mm +/- 0.3 mm with maximum variation less than 0.4 mm and 1.0 mm in the in-plane and cross-plane direction, respectively. The average value of the in-plane penumbra was 3.2 mm +/- 0.2 mm and 3.5 mm +/- 0.2 mm for the step side and groove side of the leaves, respectively. A dose profile perpendicular to the direction of the leaf travel passing through the central axis shows a tongue-and-groove effect of about 33%. The positional accuracy of the leaves was investigated according to AAPM Report No. 72 TG50; the deviation of the net optical density along all the match lines was less than +/- 20%. Moreover, the results obtained with a step field technique showed a positional accuracy of less than 1 mm. CONCLUSIONS: The results suggest the necessity of extensive knowledge of the MLC dosimetric characteristics for IMRT applications in order to allow physicists to study their influence on treatment delivery and to perform a comprehensive routine QA program of the investigated parameters.
机译:目的和背景:研究了用于强度调制放射治疗(IMRT)的商用多叶准直仪(MLC)的性能特性,以及在MLC调试期间要执行的综合质量保证程序(QA)。材料与方法:叶片的中叶传输和叶间泄漏,平面内半影及其平面/横断面变化,平面半影及其平面/横断面变化以及叶片的位置精度测量了高能光子(6 MV)Sli Precise Elekta线性加速器。使用柯达EDR2 Ready Pack胶片进行MLC透射测量;对于其他表征测量,我们使用柯达X-Omat XV2 Ready Pack胶片在RW3幻象中以5厘米深度放置。使用Omni Pro-Accept 6.OA薄膜剂量测定系统,通过激光扫描光密度计VXR-12 Plus将每张薄膜数字化,并通过H&D曲线将其转换为剂量。剂量校准测量是根据IAEA技术报告第277号的指南在农夫电离室中进行的。结果:平均中叶传输和叶间泄漏为1.8%+/- 0.1%和2.1%+/- 0.2%,分别。横断面半影的平均值为5.4mm +/- 0.3mm,在面内和横断面方向上的最大变化分别小于0.4mm和1.0mm。叶片的台阶侧和凹槽侧的平面内半影的平均值分别为3.2mm +/- 0.2mm和3.5mm +/- 0.2mm。垂直于通过中心轴的叶片行进方向的剂量分布显示出约33%的榫槽效应。根据AAPM报告第72号TG50对叶片的位置精度进行了研究。沿所有匹配线的净光密度偏差小于+/- 20%。而且,用步进场技术获得的结果表明位置精度小于1mm。结论:结果表明,对于IMRT应用,必须具有MLC剂量特性的广泛知识,以便允许物理学家研究其对治疗提供的影响并执行所研究参数的全面常规QA程序。

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