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Characterization of Markerless Tumor Tracking Using the On-Board Imager of a Commercial Linear Accelerator Equipped With Fast-kV Switching Dual-Energy Imaging

机译:使用快速kV切换双能成像的商用线性加速器板式成像仪进行无标记肿瘤跟踪的特征

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PurposeTo describe and characterize fast-kV switching, dual-energy (DE) imaging implemented within the on-board imager of a commercial linear accelerator for markerless tumor tracking (MTT).Methods and MaterialsFast-kV switching, DE imaging provides for rapid switching between programmed tube voltages (ie, 60 and 120 kVp) from one image frame to the next. To characterize this system, the weighting factor used for logarithmic subtraction and signal difference-to-noise ratio were analyzed as a function of time and frame rate. MTT was evaluated using a thorax motion phantom and fast kV, DE imaging was compared versus single energy (SE) imaging over 360 degrees of rotation. A template-based matching algorithm was used to track target motion on both DE and SE sequences. Receiver operating characteristics were used to compare tracking results for both modalities.ResultsThe weighting factor was inversely related to frame rate and stable over time. After applying the frame rate–dependent weighting factor, the signal difference-to-noise ratio was consistent across all frame rates considered for simulated tumors ranging from 5 to 25 mm in diameter. An analysis of receiver operating characteristics curves showed improved tracking with DE versus SE imaging. The area under the curve for the 10-mm target ranged from 0.821 to 0.858 for SE imaging versus 0.968 to 0.974 for DE imaging. Moreover, the residual tracking errors for the same target size ranged from 2.02 to 2.18 mm versus 0.79 to 1.07 mm for SE and DE imaging, respectively.ConclusionsFast-kV switching, DE imaging was implemented on the on-board imager of a commercial linear accelerator. DE imaging resulted in improved MTT accuracy over SE imaging. Such an approach may have application for MTT of patients with lung cancer receiving stereotactic body radiation therapy, particularly for small tumors where MTT with SE imaging may fail.
机译:PURPOSETO描述和表征快速-KV切换,双能量(DE)成像在商用线性加速器的板载成像器内实现,用于无价值肿瘤跟踪(MTT)。方法和物料快速kV切换,DE成像提供快速切换从一个图像框架到下一个图像帧的编程管电压(即60和120 kVp)。为了表征该系统,作为时间和帧速率的函数分析了用于对数减法和信号差噪声比的加权因子。使用胸部运动幻像和快速kV评估MTT,比较成像与单一能量(SE)成像在360度旋转上进行比较。基于模板的匹配算法用于跟踪DE和SE序列上的目标运动。接收器操作特性用于比较两种方式的跟踪结果。评论加权因子与帧速率与帧速率相反,随着时间的推移稳定。在施加帧速率相关的加权因子之后,信号差异噪声比在考虑的所有帧速率上一致地是直径为5至25mm的帧速率。对接收器操作特性曲线的分析显示了DE与SE成像的改进跟踪。 10毫米靶曲线下的区域范围为0.821至0.858,用于硒成像与0.968〜0.974进行成像。此外,对于SE和DE成像,相同目标尺寸的剩余跟踪误差范围为2.02至2.18 mm。CONCLUSTIONSFAST-KV切换,在商业线性加速器的板载成像器上实现了DE成像。 。 De成像导致SE成像改善了MTT精度。这种方法可能对肺癌患者的MTT施用接受立体定向体放射疗法,特别是对于使用SE成像的MTT可能失效的小肿瘤。

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