首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >Electromagnetic real-time tumor position monitoring and dynamic multileaf collimator tracking using a Siemens 160 MLC: geometric and dosimetric accuracy of an integrated system.
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Electromagnetic real-time tumor position monitoring and dynamic multileaf collimator tracking using a Siemens 160 MLC: geometric and dosimetric accuracy of an integrated system.

机译:使用Siemens 160 MLC的电磁实时肿瘤位置监测和动态多叶准直仪跟踪:集成系统的几何和剂量学精度。

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PURPOSE: Dynamic multileaf collimator tracking represents a promising method for high-precision radiotherapy to moving tumors. In the present study, we report on the integration of electromagnetic real-time tumor position monitoring into a multileaf collimator-based tracking system. METHODS AND MATERIALS: The integrated system was characterized in terms of its geometric and radiologic accuracy. The former was assessed from portal images acquired during radiation delivery to a phantom in tracking mode. The tracking errors were calculated from the positions of the tracking field and of the phantom as extracted from the portal images. Radiologic accuracy was evaluated from film dosimetry performed for conformal and intensity-modulated radiotherapy applied to different phantoms moving on sinusoidal trajectories. A static radiation delivery to the nonmoving target served as a reference for the delivery to the moving phantom with and without tracking applied. RESULTS: Submillimeter tracking accuracy was observed for two-dimensional target motion despite the relatively large system latency of 500 ms. Film dosimetry yielded almost complete recovery of a circular dose distribution with tracking in two dimensions applied: 2%/2 mm gamma-failure rates could be reduced from 59.7% to 3.3%. For single-beam intensity-modulated radiotherapy delivery, accuracy was limited by the finite leaf width. A 2%/2 mm gamma-failure rate of 15.6% remained with tracking applied. CONCLUSION: The integrated system we have presented marks a major step toward the clinical implementation of high-precision dynamic multileaf collimator tracking. However, several challenges such as irregular motion traces or a thorough quality assurance still need to be addressed.
机译:目的:动态多叶准直器跟踪代表了一种有前途的方法,可以对移动的肿瘤进行高精度放射治疗。在本研究中,我们报告了将电磁实时肿瘤位置监测集成到基于多叶准直仪的跟踪系统中。方法和材料:集成系统的几何和放射学准确性得以表征。前者是根据在跟踪模式下辐射传送到体模期间获取的门图像进行评估的。根据从门户图像中提取的跟踪场和体模的位置计算跟踪误差。放射学准确性是通过胶片剂量法评估的,该胶片剂量学适用于正弦曲线轨迹上移动的不同体模的保形和强度调制放疗。静态辐射向不动目标的传递充当参考,用于在应用跟踪和不应用跟踪的情况下向运动体模的传递。结果:尽管相对较大的系统延迟500毫秒,但对于二维目标运动仍可观察到亚毫米级的跟踪精度。薄膜剂量测定法几乎可以完全恢复圆形剂量分布,并且可以在两个维度上进行跟踪:2%/ 2 mm的伽马射线失效率可以从59.7%降低到3.3%。对于单束强度调制放射治疗,准确度受到有限叶宽的限制。应用跟踪后,仍保持2%/ 2 mm的伽玛故障率15.6%。结论:我们提出的集成系统标志着高精度动态多叶准直仪跟踪临床实施的重要一步。但是,仍然需要解决一些挑战,例如不规则的运动轨迹或彻底的质量保证。

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