Departments of Environmental Medicine and Radiation Oncology, University of Rochester Medical Center, Rochester, NY, USA.
Department of Physics and Astronomy, Louisiana State University, Baton Rouge, LA, USA.
Br J Radiol. 2019 Jan;92(1093):20180048. doi: 10.1259/bjr.20180048. Epub 2018 Apr 9.
Sir Oliver Scott, a philanthropist and radiation biologist and, therefore, the epitome of a gentleman and a scholar, was an early Director of the BECC Radiobiology Research Unit at Mount Vernon. His tenure preceded that of Jack Fowler, with both contributing to basic, translational and clinical thought and application in radiation across the globe. With respect to this review, Fowler's name in particular has remained synonymous with the use of models, both animal and mathematical, that assess and quantify the biological mechanisms that underlie radiation-associated normal tissue toxicities. An understanding of these effects is critical to the optimal use of radiation therapy in the clinic; however, the role that basic sciences play in clinical practice has been undergoing considerable change in recent years, particularly in the USA, where there has been a growing emphasis on engineering and imaging to improve radiation delivery, with empirical observations of clinical outcome taking the place of models underpinned by evidence from basic science experiments. In honour of Scott and Fowler's work, we have taken this opportunity to review how our respective fields of radiation biology and radiation physics have intertwined over the years, affecting the clinical use of radiation with respect to normal tissue outcomes. We discuss the past and current achievements, with the hope of encouraging a revived interest in physics and biology as they relate to radiation oncology practice, since, like Scott and Fowler, we share the goal of improving the future outlook for cancer patients.
奥利弗·斯科特爵士是一位慈善家和辐射生物学家,因此是绅士和学者的典范,他是芒特弗农 BECC 放射生物学研究单位的早期主任。他的任期早于杰克·福勒,他们都为全球的辐射基础、转化和临床思想和应用做出了贡献。就这篇综述而言,福勒的名字尤其与使用模型联系在一起,这些模型包括动物模型和数学模型,用于评估和量化辐射相关正常组织毒性的生物学机制。了解这些影响对于在临床中优化放疗的应用至关重要;然而,近年来基础科学在临床实践中的作用发生了相当大的变化,尤其是在美国,人们越来越强调工程和成像技术来改善辐射传递,用基于基础科学实验证据的模型来代替临床结果的经验观察。为了纪念斯科特和福勒的工作,我们借此机会回顾一下多年来我们各自的放射生物学和放射物理学领域是如何相互交织的,以及它们如何影响放射治疗对正常组织的临床应用。我们讨论了过去和现在的成就,希望能重新激发人们对与放射肿瘤学实践相关的物理和生物学的兴趣,因为就像斯科特和福勒一样,我们的目标是改善癌症患者的未来前景。