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使用电子射野影像装置对多叶准直器叶片位移进行定量测量。

Quantitative measurement of MLC leaf displacements using an electronic portal image device.

作者信息

Yang Yong, Xing Lei

机构信息

Department of Radiation Oncology, Stanford University School of Medicine, Stanford, CA 94305-5304, USA.

出版信息

Phys Med Biol. 2004 Apr 21;49(8):1521-33. doi: 10.1088/0031-9155/49/8/010.

Abstract

The success of an IMRT treatment relies on the positioning accuracy of the MLC (multileaf collimator) leaves for both step-and-shoot and dynamic deliveries. In practice, however, there exists no effective and quantitative means for routine MLC QA and this has become one of the bottleneck problems in IMRT implementation. In this work we present an electronic portal image device (EPID) based method for fast and accurate measurement of MLC leaf positions at arbitrary locations within the 40 cm x 40 cm radiation field. The new technique utilizes the fact that the integral signal in a small region of interest (ROI) is a sensitive and reliable indicator of the leaf displacement. In this approach, the integral signal at a ROI was expressed as a weighted sum of the contributions from the displacements of the leaf above the point and the adjacent leaves. The weighting factors or linear coefficients of the system equations were determined by fitting the integral signal data for a group of pre-designed MLC leaf sequences to the known leaf displacements that were intentionally introduced during the creation of the leaf sequences. Once the calibration is done, the system can be used for routine MLC leaf positioning QA to detect possible leaf errors. A series of tests was carried out to examine the functionality and accuracy of the technique. Our results show that the proposed technique is potentially superior to the conventional edge-detecting approach in two aspects: (i) it deals with the problem in a systematic approach and allows us to take into account the influence of the adjacent MLC leaves effectively; and (ii) it may improve the signal-to-noise ratio and is thus capable of quantitatively measuring extremely small leaf positional displacements. Our results indicate that the technique can detect a leaf positional error as small as 0.1 mm at an arbitrary point within the field in the absence of EPID set-up error and 0.3 mm when the uncertainty is considered. Given its simplicity, efficiency and accuracy, we believe that the technique is ideally suitable for routine MLC leaf positioning QA.

摘要

调强放射治疗(IMRT)的成功依赖于多叶准直器(MLC)叶片在静态和动态照射时的定位精度。然而,在实际应用中,尚无有效的定量方法用于常规的MLC质量保证(QA),这已成为IMRT实施过程中的瓶颈问题之一。在本研究中,我们提出了一种基于电子射野影像装置(EPID)的方法,用于快速、准确地测量40 cm×40 cm辐射野内任意位置的MLC叶片位置。该新技术利用了这样一个事实,即感兴趣的小区域(ROI)内的积分信号是叶片位移的敏感且可靠指标。在这种方法中,ROI处的积分信号表示为该点上方叶片和相邻叶片位移贡献的加权和。通过将一组预先设计的MLC叶片序列的积分信号数据与在创建叶片序列时故意引入的已知叶片位移进行拟合,确定系统方程的加权因子或线性系数。一旦完成校准,该系统即可用于常规的MLC叶片定位QA,以检测可能的叶片误差。我们进行了一系列测试,以检验该技术的功能和准确性。我们的结果表明,所提出的技术在两个方面可能优于传统的边缘检测方法:(i)它以系统的方法处理问题,使我们能够有效考虑相邻MLC叶片的影响;(ii)它可以提高信噪比,从而能够定量测量极小的叶片位置位移。我们的结果表明,在不存在EPID设置误差的情况下,该技术能够在射野内的任意点检测到低至0.1 mm的叶片位置误差,考虑不确定性时为0.3 mm。鉴于其简单性、高效性和准确性,我们认为该技术非常适合用于常规的MLC叶片定位QA。

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