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用于小型多叶准直器射野的准直器铅门的剂量学效应

Dosimetric effect of collimating jaws for small multileaf collimated fields.

作者信息

Chow James C L, Seguin Melanie, Alexander Andrew

机构信息

Medical Physics Department, Grand River Regional Cancer Center, Grand River Hospital, PO. Box 9056, 835 King Street West, Kitchener, Ontario N2G 1G3, Canada.

出版信息

Med Phys. 2005 Mar;32(3):759-65. doi: 10.1118/1.1861413.

Abstract

The dosimetric effects from the jaw positioned close to the small field (0.5 x 0.5, 1 x 1, and 2 x 2 cm2) side-edge generated by a single-focused multileaf collimator (MLC) were measured and studied. The measurement is important in intensity modulated radiotherapy (IMRT) because generally the jaw cannot perfectly cover all the leaf-ends in a segment of irregular field. This leads to additional dose contributed by (1) the end surface of the jaw, (2) the leaf-end, and (3) the inter- and intraleaf leakage/transmissions during the dosimetric measurement. Moreover, most of the conventional treatment planning systems ignore these effects in the dose calculation. In this study, measurements were made using a Varian 21 EX linear accelerator with 6 MV photon beam through a MLC containing 120 leaves. Percentage depth dose, beam profile, and output for small fields were measured by varying the jaw at different positions away from the leaf-ends in the field side-edge. Moving the jaw away from the leaf-ends increases the output and penumbra width for the small fields. Such increase is particularly significant when the field size is small (0.5 x 0.5 cm2) and the degree of increase changes quickly when the jaw-end is at about 1-2 cm from the leaf-end. It is suggested that measurements should be carried out in the IMRT commissioning to provide information to physicists in reviewing the treatment planning system's accuracy regarding leaf leakage/transmission and jaw effects.

摘要

测量并研究了单聚焦多叶准直器(MLC)中靠近小射野(0.5×0.5、1×1和2×2 cm²)侧边缘的颌部所产生的剂量学效应。该测量在调强放射治疗(IMRT)中很重要,因为在不规则射野的某一段中,颌部通常无法完美覆盖所有叶片末端。这会导致在剂量学测量期间由(1)颌部端面、(2)叶片末端以及(3)叶片间和叶片内的泄漏/透射产生额外剂量。此外,大多数传统治疗计划系统在剂量计算中忽略了这些效应。在本研究中,使用配备6 MV光子束的Varian 21 EX直线加速器,通过一个包含120片叶片的MLC进行测量。通过在射野侧边缘将颌部置于远离叶片末端的不同位置,测量小射野的百分深度剂量、射野轮廓和输出剂量。将颌部移离叶片末端会增加小射野的输出剂量和半值层宽度。当射野尺寸较小时(0.5×0.5 cm²),这种增加尤为显著,并且当颌部末端距叶片末端约1 - 2 cm时,增加程度变化很快。建议在IMRT调试过程中进行测量,以便为物理学家提供信息,用于审查治疗计划系统在叶片泄漏/透射和颌部效应方面的准确性。

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