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非晶硅电子射野影像装置剂量测定中像素灵敏度变化及离轴响应的校正

Correction of pixel sensitivity variation and off-axis response for amorphous silicon EPID dosimetry.

作者信息

Greer Peter B

机构信息

Newcastle Mater Hospital, and University of Newcastle, Newcastle, New South Wales, Australia.

出版信息

Med Phys. 2005 Dec;32(12):3558-68. doi: 10.1118/1.2128498.

Abstract

The aim of this work is to determine the pixel sensitivity variation and off-axis dose response of an amorphous silicon electronic portal imaging device (EPID), and develop a correction method to improve EPID dosimetry. The uncorrected or raw pixel response of the aS500 amorphous silicon EPID shows differences in response (sensitivity) of individual pixels as well as a large off-axis differential response with respect to an ion chamber in water. Both can be corrected by division of raw images by the flood-field (FF) image. However, this leads to two problems for dosimetry: (1) the beam profile is present in both the raw image and FF image, and hence is "washed out" of the corrected image, and (2) any mismatch of EPID position between dosimetry and FF calibration means that the beam profile and off-axis response in the raw image and FF are misaligned. This causes artifacts in FF division and dosimetric errors. A method was developed to measure the off-axis response and pixel sensitivity variation separately to allow correction of images at any EPID position while retaining beam profile information. The pixel sensitivity variation is applied to the imager plane and is independent of imager position. The off-axis response depends on the imager plane position relative to the beam central axis. The pixel sensitivities were derived from multiple images of the same symmetric field acquired with the detector displaced laterally between each image. The off-axis response was measured by acquiring off-axis raw images (FF correction removed) and dividing out the off-axis beam fluence and previously determined pixel sensitivity differences. The dosimetric errors due to lateral and vertical detector displacement with the conventional FF calibration method were measured and compared to the new method. Corrected EPID profiles were then compared to beam profiles measured with ion chamber in water for open fields. The EPID was found to have a large off-axis differential response with respect to an ion chamber in water, particularly for 6 MV. This increased to 13% at 15 cm off-axis for 6 MV, and 3.5% for 18 MV at the isocenter plane. The dosimetric errors introduced by detector displacement with conventional FF calibration were found to be approximately 1% per centimeter of lateral detector displacement and 0.1% per centimeter of vertical displacement. These were reduced to less than 1% for any position with the new correction method. Corrected EPID images agreed with ion-chamber measurements to within 2% (excluding penumbra and low-dose areas outside the field) for various field sizes. The new correction method gives consistent dosimetry for any EPID position and retains beam profile information in the image.

摘要

这项工作的目的是确定非晶硅电子射野影像装置(EPID)的像素灵敏度变化和离轴剂量响应,并开发一种校正方法以改善EPID剂量测定。aS500非晶硅EPID未经校正或原始的像素响应显示出各个像素在响应(灵敏度)上的差异,以及相对于水中电离室的较大离轴差异响应。两者都可以通过用均整野(FF)图像除原始图像来校正。然而,这给剂量测定带来了两个问题:(1)原始图像和FF图像中都存在射野轮廓,因此在校正后的图像中被“消除”了;(2)剂量测定和FF校准之间EPID位置的任何不匹配意味着原始图像和FF中的射野轮廓和离轴响应未对准。这会导致FF除法中的伪影和剂量测定误差。开发了一种方法来分别测量离轴响应和像素灵敏度变化,以便在保留射野轮廓信息的同时,在任何EPID位置校正图像。像素灵敏度变化应用于成像平面,并且与成像器位置无关。离轴响应取决于成像平面相对于射野中心轴的位置。像素灵敏度是通过在每次图像采集之间使探测器横向位移来获取的同一对称射野的多幅图像得出的。离轴响应是通过采集离轴原始图像(去除FF校正)并除离轴射野注量和先前确定的像素灵敏度差异来测量的。测量了使用传统FF校准方法时由于探测器横向和垂直位移导致的剂量测定误差,并与新方法进行了比较。然后将校正后的EPID轮廓与在水中用电离室测量的开野射野轮廓进行比较。发现EPID相对于水中电离室有较大的离轴差异响应,特别是对于6 MV。对于6 MV,在离轴15 cm处增加到13%,对于18 MV在等中心平面处为3.5%。发现使用传统FF校准因探测器位移引入的剂量测定误差约为横向探测器位移每厘米1%和垂直位移每厘米0.1%。使用新的校正方法,对于任何位置这些误差都降低到小于1%。对于各种射野尺寸,校正后的EPID图像与电离室测量结果在2%以内一致(不包括半影和射野外的低剂量区域)。新的校正方法对于任何EPID位置都能给出一致的剂量测定,并在图像中保留射野轮廓信息。

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