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TU-E-211-01:作为医学物理学家建立多学科协作

TU-E-211-01: Establishing Multidisciplinary Collaboration as a Medical Physicist.

作者信息

Xing L, Fraass B, Ford E, Chang S

机构信息

Stanford University School of Medicine, Stanford, CA.

Cedars-Sinai Medical Center, Los Angeles, CA.

出版信息

Med Phys. 2012 Jun;39(6Part24):3907. doi: 10.1118/1.4735946.

Abstract

UNLABELLED

Many medical physicists are scientists at heart and their career fulfillment includes a balance of clinical service and research development. Multidisciplinary collaboration is a great way for the medical physicists to advance science and technology of our fields and the fields of our collaborators. Cross-pollination among scientists of different fields has been the key for some of the most significant breakthroughs in science and medicine and produced some of the most rewarding experiences for the individuals involved. However, medical physicists face unique challenges in establishing multidisciplinary collaboration because our time and resources for research are often quite limited compared to basic scientists. Yet we medical physicists are uniquely positioned and have a tremendous opportunity to create/contribute to multidisciplinary research: our fields are already multidisciplinary in nature and hospital environment is problem rich. How do we establish and carry out research collaboration with scientists of other fields? How to balance research with your higher priority clinical service? How do you find the right multidisciplinary collaboration in your own environment? We will discuss the challenges, provide real exemplary solutions to the above questions, and offer advise to medical physicists who are interested in starting or improving their multidisciplinary collaboration. There are different kinds of multidisciplinary collaborations a medical physicist can create and participate at different involvement levels. Multidisciplinary collaboration is not for every medical physicist but for those who seek and devote time to it, the experience can be truly rewarding and the impact can be enormous.

LEARNING OBJECTIVES

  1. Learn the types of multidisciplinary collaboration medical physicists can created/participated 2. Learn the approaches and strategies to develop collaborations with scientists and professional of other fields3. Understand the challenges and different approaches to balance clinical service and multidisciplinary research collaboration.
摘要

未标注

许多医学物理学家本质上都是科学家,他们职业成就感的实现包括临床服务与研究发展的平衡。多学科合作是医学物理学家推动我们领域以及合作领域的科学技术进步的绝佳方式。不同领域科学家之间的交叉融合一直是科学和医学领域取得一些最重大突破的关键,也为相关人员带来了一些最有价值的经历。然而,医学物理学家在建立多学科合作方面面临独特的挑战,因为与基础科学家相比,我们用于研究的时间和资源往往非常有限。然而,我们医学物理学家具有独特的地位,并有巨大的机会开展/为多学科研究做出贡献:我们的领域本质上已经是多学科的,而且医院环境中存在丰富的问题。我们如何与其他领域的科学家建立并开展研究合作?如何在优先级更高的临床服务与研究之间取得平衡?如何在自己的环境中找到合适的多学科合作?我们将讨论这些挑战,为上述问题提供切实可行的示例解决方案,并为有兴趣开展或改进多学科合作的医学物理学家提供建议。医学物理学家可以创建并参与不同参与程度的多种类型的多学科合作。多学科合作并非适用于每一位医学物理学家,但对于那些寻求并投入时间的人来说,这种经历可能会真正有回报,而且影响可能会非常巨大。

学习目标

  1. 了解医学物理学家可以创建/参与的多学科合作类型 2. 学习与其他领域的科学家和专业人员开展合作的方法和策略 3. 理解平衡临床服务与多学科研究合作所面临的挑战及不同方法。

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