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Patient study of in vivo verification of beam delivery and range, using positron emission tomography and computed tomography imaging after proton therapy

机译:质子治疗后使用正电子发射断层扫描和计算机断层摄影成像技术进行束流传输和范围体内验证的患者研究

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摘要

PURPOSE: To investigate the feasibility and value of positron emission tomography and computed tomography (PET/CT) for treatment verification after proton radiotherapy. METHODS AND MATERIALS: This study included 9 patients with tumors in the cranial base, spine, orbit, and eye. Total doses of 1.8-3 GyE and 10 GyE (for an ocular melanoma) per fraction were delivered in 1 or 2 fields. Imaging was performed with a commercial PET/CT scanner for 30 min, starting within 20 min after treatment. The same treatment immobilization device was used during imaging for all but 2 patients. Measured PET/CT images were coregistered to the planning CT and compared with the corresponding PET expectation, obtained from CT-based Monte Carlo calculations complemented by functional information. For the ocular case, treatment position was approximately replicated, and spatial correlation was deduced from reference clips visible in both the planning radiographs and imaging CT. Here, the expected PET image was obtained from an analytical model. RESULTS: Good spatial correlation and quantitative agreement within 30% were found between the measured and expected activity. For head-and-neck patients, the beam range could be verified with an accuracy of 1-2 mm in well-coregistered bony structures. Low spine and eye sites indicated the need for better fixation and coregistration methods. An analysis of activity decay revealed as tissue-effective half-lives of 800-1,150 s. CONCLUSIONS: This study demonstrates the feasibility of postradiation PET/CT for in vivo treatment verification. It also indicates some technological and methodological improvements needed for optimal clinical application.
机译:目的:探讨正电子发射断层扫描和计算机断层扫描(PET / CT)在质子放射治疗后进行治疗验证的可行性和价值。方法和材料:该研究纳入了9例颅底,脊柱,眼眶和眼部肿瘤的患者。每部分的总剂量为1.8-3 GyE和10 GyE(用于眼部黑色素瘤)分1或2场给药。从治疗后20分钟内开始使用商用PET / CT扫描仪进行成像30分钟。除2例患者外,其他患者均在成像过程中使用了相同的治疗固定装置。所测量的PET / CT图像被共同注册到计划的CT中,并与相应的PET期望值进行比较,该期望值是从基于CT的蒙特卡洛计算中获得,并辅以功能信息。对于眼部病例,治疗位置大致重复,并从计划X线照片和CT成像中可见的参考夹推导出空间相关性。在此,期望的PET图像是从分析模型获得的。结果:测得的和预期的活动之间有良好的空间相关性和定量一致性,在30%以内。对于头颈部患者,在共配良好的骨结构中可以验证光束范围为1-2 mm。脊柱和眼部位置低表明需要更好的固定和矫正方法。对活动衰减的分析显示组织有效半衰期为800-1,150 s。结论:本研究证明了放射后PET / CT在体内治疗验证中的可行性。它还表明了最佳临床应用所需的一些技术和方法上的改进。

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