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Applying physical science techniques and CERN technology to an unsolved problem in radiation treatment for cancer: the multidisciplinary ‘VoxTox’ research programme

机译:将物理科学技术和CERN技术应用于癌症放射治疗中尚未解决的问题:多学科 VoxTox研究计划

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摘要

The VoxTox research programme has applied expertise from the physical sciences to the problem of radiotherapy toxicity, bringing together expertise from engineering, mathematics, high energy physics (including the Large Hadron Collider), medical physics and radiation oncology. In our initial cohort of 109 men treated with curative radiotherapy for prostate cancer, daily image guidance computed tomography (CT) scans have been used to calculate delivered dose to the rectum, as distinct from planned dose, using an automated approach. Clinical toxicity data have been collected, allowing us to address the hypothesis that delivered dose provides a better predictor of toxicity than planned dose.
机译:VoxTox研究计划将物理科学方面的专业知识应用于放射疗法毒性问题,汇集了工程,数学,高能物理(包括大型强子对撞机),医学物理学和放射肿瘤学方面的专业知识。在我们最初的109例接受根治性放射治疗的前列腺癌患者中,每日影像引导计算机断层扫描(CT)扫描已被用于通过自动方法来计算向直肠的输送剂量,与计划剂量不同。已经收集了临床毒性数据,这使我们可以解决以下假设:输送剂量比计划剂量可提供更好的毒性预测指标。

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