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The effect of irregular breathing patterns on internal target volumes in four-dimensional CT and cone-beam CT images in the context of stereotactic lung radiotherapy

机译:立体定向肺部放射治疗中四维CT和锥形束CT图像中不规则呼吸模式对内部目标体积的影响

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摘要

Purpose: Stereotactic lung radiotherapy is complicated by tumor motion from patient respiration. Four-dimensional CT (4DCT) imaging is a motion compensation method used in treatment planning to generate a maximum intensity projection (MIP) internal target volume (ITV). Image guided radiotherapy during treatment may involve acquiring a volumetric cone-beam CT (CBCT) image and visually aligning the tumor to the planning 4DCT MIP ITV contour. Moving targets imaged with CBCT can appear blurred and currently there are no studies reporting on the effect that irregular breathing patterns have on CBCT volumes and their alignment to 4DCT MIP ITV contours. The objective of this work was therefore to image a phantom moving with irregular breathing patterns to determine whether any configurations resulted in errors in volume contouring or alignment. Methods: A Perspex thorax phantom was used to simulate a patient. Three wooden "lung" inserts with embedded Perspex "lesions" were moved up to 4 cm with computer-generated motion patterns, and up to 1 cm with patient-specific breathing patterns. The phantom was imaged on 4DCT and CBCT with the same acquisition settings used for stereotactic lung patients in the clinic and the volumes on all phantom images were contoured. This project assessed the volumes for qualitative and quantitative changes including volume, length of the volume, and errors in alignment between CBCT volumes and 4DCT MIP ITV contours.
机译:目的:立体定向肺放疗会因患者呼吸引起的肿瘤运动而复杂化。二维CT(4DCT)成像是一种运动补偿方法,用于治疗计划中以生成最大强度投影(MIP)内部目标体积(ITV)。在治疗过程中以图像为指导的放射治疗可能涉及获取体积锥形束CT(CBCT)图像,并使肿瘤与计划的4DCT MIP ITV轮廓视觉对齐。用CBCT成像的运动目标可能看起来模糊,并且目前尚无研究报道不规则呼吸模式对CBCT体积及其与4DCT MIP ITV轮廓的对准的影响。因此,这项工作的目的是对以不规则呼吸模式运动的体模进行成像,以确定是否有任何配置导致体积轮廓或对齐方式错误。方法:使用有机玻璃胸模模拟患者。使用计算机生成的运动模式将三个带有嵌入式有机玻璃“病变”的木制“肺”插入物移动到4厘米,使用患者特定的呼吸模式将其移动到1厘米。幻像在4DCT和CBCT上成像,并使用了临床上用于立体定向肺部患者的相同采集设置,并对所有幻像图像上的体积进行了轮廓绘制。该项目评估了体积的定性和定量变化,包括体积,体积长度以及CBCT体积和4DCT MIP ITV轮廓之间的对齐误差。

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