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首页> 外文期刊>Australasian physical & engineering sciences in medicine >Medical Physics in 2020: Will we still be relevant?
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Medical Physics in 2020: Will we still be relevant?

机译:2020年的医学物理学:我们仍然有意义吗?

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摘要

From the time when Roentgen and other physicists made the discoveries which led to the development of radiology, radiotherapy and nuclear medicine, medical physicists have played a pivotal role in the development of new technologies that have revolutionized the way medicine is practiced today. Medical physicists have been transforming scientific advances in the research laboratories to improving the quality of life for patients; indeed innovations such as computed tomography, positron emission tomography and linear accelerators which collectively have improved the medical outcomes for millions of people. In order for radiation-delivery techniques to improve in targeting accuracy, optimal dose distribution and clinical outcome, convergence of imaging and therapy is the key. It is timely for these two specialties to work closer again. This can be achieved by means of cross-disciplinary research, common conferences and workshops, and collaboration in education and training for all. The current emphasis is on enhancing the specific skill development and competency of a medical physicist at the expense of their future roles and opportunities. This emphasis is largely driven by financial and political pressures for optimizing limited resources in health care. This has raised serious concern on the ability of the next generation of medical physicists to respond to new technologies. In addition in the background loom changes of tsunami proportion. The clearly defined boundaries between the different disciplines in medicine are increasingly blurred and those between diagnosis, therapy and management are also following suit. The use of radioactive particles to treat tumours using catheters, high-intensity focused ultrasound, electromagnetic wave ablation and photodynamic therapy are just some areas challenging the old paradigm. The uncertainty and turf battles will only explode further and medical physicists will not be spared. How would medical physicists fit into this changing scenario? We are in the midst of molecular revolution. Are we prepared to explore the newer technologies such as nanotechnology, drug discovery, pre-clinical imaging, optical imaging and biomedical informatics? How are our curricula adapting to the changing needs? We should remember the late Professor John Cameron who advocated imagination and creativity - these important attributes will make us still relevant in 2020 and beyond. To me the future is clear: "To achieve more, we should imagine together."
机译:从伦琴(Roentgen)和其他物理学家做出发现导致放射学,放射疗法和核医学发展的时代起,医学物理学家就在新技术的发展中发挥了关键作用,这些新技术彻底改变了当今医学的实践方式。医学物理学家一直在改变研究实验室的科学进展,以改善患者的生活质量。实际上,诸如计算机断层扫描,正电子发射断层扫描和线性加速器之类的创新共同改善了数百万人的医疗成果。为了提高放射传递技术的靶向准确度,最佳剂量分布和临床结果,成像和治疗的融合是关键。现在这两个专业再次紧密合作是适当的。这可以通过跨学科研究,共同的会议和研讨会以及在所有人的教育和培训方面的合作来实现。当前的重点是增强医学物理学家的特定技能发展和能力,而以牺牲他们未来的角色和机会为代价。这种重点在很大程度上是由财政和政治压力来优化医疗保健中有限的资源所致。这引起了下一代医学物理学家应对新技术的能力的严重关注。另外织机在背景中海啸比例发生变化。医学不同学科之间的界限越来越模糊,诊断,治疗和管理之间的界限也随之而来。使用放射性颗粒通过导管,高强度聚焦超声,电磁波消融和光动力疗法治疗肿瘤只是挑战旧范例的一些领域。不确定性和地盘之争只会进一步爆发,医学物理学家将无法幸免。医学物理学家将如何适应这种不断变化的情况?我们正处于分子革命之中。我们是否准备好探索诸如纳米技术,药物发现,临床前成像,光学成像和生物医学信息学等较新的技术?我们的课程如何适应不断变化的需求?我们应该记住已故的约翰·卡梅伦教授提倡想象力和创造力-这些重要的属性将使我们在2020年及以后仍然具有重要意义。对我来说,未来是明确的:“要取得更大的成就,我们应该共同想象。”

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