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MLC quality assurance techniques for IMRT applications.

机译:适用于IMRT应用的MLC质量保证技术。

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Intensity modulated radiotherapy (IMRT) requires extensive knowledge of multileaf collimator (MLC) leaf positioning accuracy, precision, and long-term reproducibility. We have developed a technique to efficiently measure the absolute position of each MLC leaf, over the range of leaf positions utilized in IMRT, based on dosimetric information. A single radiographic film was exposed to 6 MV x-rays for twelve exposures: one open field with a radio-opaque marker tray present, and eleven fields (1 x 28 cm strips via 1 cm gaps between opposed leaf pairs) separated by 2 cm center to center. The process was repeated while varying direction of leaf travel; each film was digitized using a commercial film dosimetry system. The digital images were manipulated to remove translation and rotation of the film data with respect to the collimator coordinate system by extraction of radiation dose profiles perpendicular to the MLC leaf motion and measuring the center of the x-ray leakage between leaves. Radiation dose profiles in the direction of leaf motion were acquired through the center of each leaf pair (leaves 2-28), which provided leaf position information every 2 cm with 0.2 mm precision. Nine separate leaf reproducibility studies over a 90 day period which evaluated 600 measurement points on each film show 0.3 mm precision for 95% confidence, while hysteresis studies show 0.5 mm precision. Absolute leaf position error measurements demonstrated a radial dependence, with a maximum of 1.5 mm at 16.4 cm from central axis, due to rotational error at calibration. Recalibration of the MLC leaves based utilizing this tool yields absolute leaf position measurements where 91.5% of all leaves/positions were within 0.5 mm, with a mean error of 0.1 mm and a maximum error less than 1.0 mm.
机译:强度调制放射疗法(IMRT)需要广泛了解多叶准直仪(MLC)叶片的定位精度,精度和长期可重复性。我们已经开发出一种技术,可以基于剂量信息在IMRT中使用的叶片位置范围内有效地测量每个MLC叶片的绝对位置。将一张射线照相胶片曝光于6 MV X射线下,进行十二次曝光:一个带有不透射线标记托盘的开放视野,以及11个视野(1 x 28 cm条带,相对叶片对之间有1 cm的间隙),相隔2 cm中心到中心。重复该过程,同时改变叶片的行进方向。使用商业胶片剂量测定系统将每张胶片数字化。通过提取垂直于MLC叶片运动的辐射剂量分布并测量叶片之间X射线泄漏的中心,对数字图像进行处理,以消除胶片数据相对于准直仪坐标系的平移和旋转。通过每个叶片对的中心(叶片2-28)获取叶片运动方向的辐射剂量分布图,每2 cm叶片以0.2 mm的精度提供叶片位置信息。在90天的时间里进行了九次单独的叶片重现性研究,评估了每张膜上的600个测量点,结果显示0.3 mm的精度达到95%的置信度,而磁滞研究显示0.5 mm的精度。绝对叶片位置误差测量结果显示出径向相关性,由于校准时的旋转误差,距中心轴16.4 cm处最大为1.5 mm。使用此工具对MLC叶片进行重新校准可得出绝对的叶片位置测量值,其中所有叶片/位置的91.5%都在0.5毫米内,平均误差为0.1毫米,最大误差小于1.0毫米。

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