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Web Based Interactive Medical Imaging Applications for Teaching Nuclear Medicine

机译:基于Web的交互式医学成像在核医学教学中的应用

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Medical Imaging is a multidisciplinary field which combines the knowledge of physics, mathematics, electrical and computer engineering in order to create images of anatomy and function of the human body for clinical and research purposes. The necessity to know the techniques of Medical Imaging in clinical and research laboratories has made Medical Imaging a major training area in Biomedical Engineering. The tremendous amount of information and rapid changes in the medical imaging field require teaching material to be more flexible to fit into the available class hours. Internet/Web-based education is one of the tools with which education is popularly delivered. Web-based interactive teaching models increase students learning gain in the field of medical imaging. We have developed interactive simulations and animation of Nuclear medicine imaging. These learning applications provide an easy understanding of the physics, principles and methods behind nuclear medicine to successfully deliver information for students. We simulated PET physics; the diverse mathematical derivations for image generation, recognition and reconstruction, and the parameters that influence resolution in a PET camera .The metabolism rate of glucose using [18F] fluoro-deoxy-glucose (FDG) with 3 compartmental models has been simulated. Animation of the major processes and routes in PET Reporter Gene Imaging using animal subject was also performed.
机译:医学成像是一个跨学科领域,结合了物理,数学,电气和计算机工程知识,可以创建用于临床和研究目的的人体解剖结构和功能图像。在临床和研究实验室中了解医学成像技术的必要性已使医学成像成为生物医学工程学的主要培训领域。大量的信息和医学成像领域的快速变化要求教材更加灵活,以适应可用的上课时间。基于Internet / Web的教育是普及教育的工具之一。基于网络的交互式教学模型可提高学生在医学影像领域的学习收益。我们已经开发了核医学成像的交互式模拟和动画。这些学习应用程序使您可以轻松理解核医学背后的物理学,原理和方法,从而为学生成功提供信息。我们模拟了PET物理;用于图像生成,识别和重建的各种数学推导以及影响PET相机分辨率的参数。使用3个分区模型模拟了[18F]氟-脱氧葡萄糖(FDG)的葡萄糖代谢率。还使用动物对象对PET Reporter基因成像中的主要过程和途径进行了动画处理。

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