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首页> 外文期刊>Technology in cancer research & treatment. >Adaptation, Commissioning, and Evaluation of a 3D Treatment Planning System for High-Resolution Small-Animal Irradiation
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Adaptation, Commissioning, and Evaluation of a 3D Treatment Planning System for High-Resolution Small-Animal Irradiation

机译:高分辨率小动物辐照3D治疗计划系统的改编,调试和评估

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Although spatially precise systems are now available for small-animal irradiations, there are currently limited software tools available for treatment planning for such irradiations. We report on the adaptation, commissioning, and evaluation of a 3-dimensional treatment planning system for use with a small-animal irradiation system. The 225-kV X-ray beam of the X-RAD 225Cx microirradiator (Precision X-Ray) was commissioned using both ion-chamber and radiochromic film for 10 different collimators ranging in field size from 1 mm in diameter to 40 × 40 mm2. A clinical 3-dimensional treatment planning system (Metropolis) developed at our institution was adapted to small-animal irradiation by making it compatible with the dimensions of mice and rats, modeling the microirradiator beam orientations and collimators, and incorporating the measured beam data for dose calculation. Dose calculations in Metropolis were verified by comparison with measurements in phantoms. Treatment plans for irradiation of a tumor-bearing mouse were generated with both the Metropolis and the vendor-supplied software. The calculated beam-on times and the plan evaluation tools were compared. The dose rate at the central axis ranges from 74 to 365 cGy/min depending on the collimator size. Doses calculated with Metropolis agreed with phantom measurements within 3% for all collimators. The beam-on times calculated by Metropolis and the vendor-supplied software agreed within 1% at the isocenter. The modified 3-dimensional treatment planning system provides better visualization of the relationship between the X-ray beams and the small-animal anatomy as well as more complete dosimetric information on target tissues and organs at risk. It thereby enhances the potential of image-guided microirradiator systems for evaluation of dose–response relationships and for preclinical experimentation generally.
机译:尽管现在可以使用空间精确的系统来进行小动物辐照,但是目前有限的软件工具可用于此类辐照的治疗计划。我们报告了与小动物辐照系统一起使用的3维治疗计划系统的适应性,调试和评估。 X-RAD 225Cx微辐照器的225kV X射线束(精密X射线)使用离子室和放射致变色膜调试了10种不同的准直仪,范围从直径1 mm到40×40 mm < sup> 2 。我们机构开发的临床3维治疗计划系统(Metropolis)通过使其与小鼠和大鼠的尺寸兼容,对微辐照器光束方向和准直仪建模并结合测得的光束数据来适应小动物辐照计算。通过与幻像中的测量结果进行比较,验证了Metropolis中的剂量计算。使用Metropolis和供应商提供的软件生成了用于辐照荷瘤小鼠的治疗计划。比较了计算的接通时间和计划评估工具。中心轴上的剂量率取决于准直仪的大小,范围为74至365 cGy / min。使用Metropolis计算的剂量同意所有准直仪的幻像测量值均在3%以内。由Metropolis和供应商提供的软件计算的光束接通时间在等中心线的1%之内。改进的3维治疗计划系统可更好地显示X射线束与小动物解剖结构之间的关系,以及有关处于危险中的目标组织和器官的更完整的剂量信息。因此,它增强了图像引导微辐照器系统用于评估剂量反应关系和进行临床前实验的潜力。

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