Fassi Aurora, Schaerer Joël, Riboldi Marco, Sarrut David, Baroni Guido
Politecnico di Milano.
J Appl Clin Med Phys. 2015 Mar 8;16(2):5152. doi: 10.1120/jacmp.v16i2.5152.
The integration of in-room X-ray imaging and optical surface tracking has gained increasing importance in the field of image guided radiotherapy (IGRT). An essential step for this integration consists of temporally synchronizing the acquisition of X-ray projections and surface data. We present an image-based method for the synchronization of cone-beam computed tomography (CBCT) and optical surface systems, which does not require the use of additional hardware. The method is based on optically tracking the motion of a component of the CBCT/gantry unit, which rotates during the acquisition of the CBCT scan. A calibration procedure was implemented to relate the position of the rotating component identified by the optical system with the time elapsed since the beginning of the CBCT scan, thus obtaining the temporal correspondence between the acquisition of X-ray projections and surface data. The accuracy of the proposed synchronization method was evaluated on a motorized moving phantom, performing eight simultaneous acquisitions with an Elekta Synergy CBCT machine and the AlignRT optical device. The median time difference between the sinusoidal peaks of phantom motion signals extracted from the synchronized CBCT and AlignRT systems ranged between -3.1 and 12.9 msec, with a maximum interquartile range of 14.4 msec. The method was also applied to clinical data acquired from seven lung cancer patients, demonstrating the potential of the proposed approach in estimating the individual and daily variations in respiratory parameters and motion correlation of internal and external structures. The presented synchronization method can be particularly useful for tumor tracking applications in extracranial radiation treatments, especially in the field of patient-specific breathing models, based on the correlation between internal tumor motion and external surface surrogates.
室内X射线成像与光学表面跟踪的集成在图像引导放射治疗(IGRT)领域变得越来越重要。这种集成的一个关键步骤是在时间上同步X射线投影和表面数据的采集。我们提出了一种基于图像的方法来同步锥形束计算机断层扫描(CBCT)和光学表面系统,该方法不需要使用额外的硬件。该方法基于光学跟踪CBCT/龙门单元中一个组件的运动,该组件在CBCT扫描采集过程中旋转。实施了校准程序,以将光学系统识别的旋转组件的位置与自CBCT扫描开始以来经过的时间相关联,从而获得X射线投影采集与表面数据之间的时间对应关系。在一个电动移动体模上评估了所提出同步方法的准确性,使用Elekta Synergy CBCT机器和AlignRT光学设备同时进行了八次采集。从同步的CBCT和AlignRT系统中提取的体模运动信号的正弦峰值之间的中位时间差在-3.1至12.9毫秒之间,最大四分位间距为14.4毫秒。该方法还应用于从七名肺癌患者获取的临床数据,证明了所提出方法在估计呼吸参数的个体和每日变化以及内部和外部结构的运动相关性方面的潜力。基于内部肿瘤运动与外部表面替代物之间的相关性,所提出的同步方法对于颅外放射治疗中的肿瘤跟踪应用可能特别有用,尤其是在患者特异性呼吸模型领域。