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Computerized method for measurement of displacement vectors of target positions on EPID cine images in stereotactic radiotherapy

机译:在立体定向放射治疗中对EPID Cine图像上目标位置的位移矢量测量的计算机化方法

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The purpose of this study was to develop a computerized method for measurement of displacement vectors of target position on electronic portal imaging device (EPID) cine images in a treatment without implanted markers. Our proposed method was based on a template matching technique with cross-correlation coefficient between a reference portal (RP) image and each consecutive portal (CP) image acquired by the EPID. EPID images with 512 × 384 pixels (pixel size:0.56 mm) were acquired in a cine mode at a sampling rate of 0.5 frame/sec by using an energy of 4, 6, or 10MV on linear accelerators. The displacement vector of the target on each cine image was determined from the position in which took the maximum cross-correlation value between the RP image and each CP image. We applied our method to EPID cine images of a lung phantom with a tumor model simulating respiratory motion, and 5 cases with a non-small cell lung cancer and one case of metastasis. For validation of our proposed method, displacement vectors of a target position calculated by our method were compared with those determined manually by two radiation oncologists. As a result, for lung phantom images, target displacements by our method correlated well with those by the oncologists (r=0.972 - 0.994). Correlation values for 4 cases ranged from 0.854 to 0.991, but the values for the other two cases were 0.609 and 0.644. This preliminary result suggested that our method may be useful for monitoring of displacement vectors of target positions without implanted markers in stereotactic radiotherapy.
机译:本研究的目的是开发一种计算机化方法,用于测量电子门户成像装置(EPID)在没有植入标记的治疗中的电子门户成像装置(EPID)CINE图像上的目标位置的位移向量。我们所提出的方法基于模板匹配技术,其中通过EPID获取的参考门户(RP)图像和每个连续的门户(CP)图像之间的互相关系数。通过在线促进剂上使用4,6或10mV的能量,在电平模式下以0.5帧/秒的采样速率在电平模式下获得具有512×384像素(像素尺寸:0.56mm)的ePID图像。从在RP图像和每个CP图像之间采用最大互相关值的位置确定每个凝聚图像上的目标的位移矢量。我们将我们的方法用肿瘤模型模拟呼吸道运动的肺幻影EpiD图像的血液图像,以及具有非小细胞肺癌的5例和一种转移。为了验证我们所提出的方法,将通过我们方法计算的目标位置的位移载体与由两位放射肿瘤学家手动确定的目标。结果,对于肺幻影图像,我们的方法的目标位移与肿瘤学家的方法很好地相关(r = 0.972- 0.994)。 4例的相关值范围为0.854至0.991,但其他两种情况的值为0.609和0.644。这种初步结果表明,我们的方法可用于监测目标位置的位移载体,而无需植入定向放射治疗。

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