Dikshit Aditya, Wu Dawei, Wu Chunyan, Zhao Weizhao
Department of Biomedical Engineering, College of Engineering, University of Miami, P.O. Box 248294, Coral Gables, FL 33124-0621, USA.
Comput Med Imaging Graph. 2005 Sep;29(6):395-404. doi: 10.1016/j.compmedimag.2005.02.001.
This report presents a recently developed web-based medical imaging simulation system for teaching students or other trainees who plan to work in the medical imaging field. The increased importance of computer and information technology widely applied to different imaging techniques in clinics and medical research necessitates a comprehensive medical imaging education program. A complete tutorial of simulations introducing popular imaging modalities, such as X-ray, MRI, CT, ultrasound and PET, forms an essential component of such an education. Internet technologies provide a vehicle to carry medical imaging education online. There exist a number of internet-based medical imaging hyper-books or online documentations. However, there are few providing interactive computational simulations. We focus on delivering knowledge of the physical principles and engineering implementation of medical imaging techniques through an interactive website environment. The online medical imaging simulation system presented in this report outlines basic principles underlying different imaging techniques and image processing algorithms and offers trainees an interactive virtual laboratory. For education purposes, this system aims to provide general understanding of each imaging modality with comprehensive explanations, ample illustrations and copious references as its thrust, rather than complex physics or detailed math. This report specifically describes the development of the tutorial for commonly used medical imaging modalities. An internet-accessible interface is used to simulate various imaging algorithms with user-adjustable parameters. The tutorial is under the MATLAB Web Server environment. Macromedia Director MX is used to develop interactive animations integrating theory with graphic-oriented simulations. HTML and JavaScript are used to enable a user to explore these modules online in a web browser. Numerous multiple choice questions, links and references for advanced study are provided in the tutorial for trainees to verify their understanding of each unit. It is expected that this tutorial will enhance medical imaging education, help trainees in subsequent analysis of image data, and form the basis for the development of more advanced technologies in the future.
本报告介绍了一种最近开发的基于网络的医学成像模拟系统,用于教学那些计划在医学成像领域工作的学生或其他学员。计算机和信息技术在临床和医学研究中广泛应用于不同成像技术,其重要性日益增加,这就需要一个全面的医学成像教育计划。一个完整的模拟教程,介绍如X射线、MRI、CT、超声和PET等流行的成像模态,是这种教育的重要组成部分。互联网技术为在线开展医学成像教育提供了一种手段。存在一些基于互联网的医学成像超级书籍或在线文档。然而,很少有提供交互式计算模拟的。我们专注于通过交互式网站环境来传授医学成像技术的物理原理和工程实现方面的知识。本报告中介绍的在线医学成像模拟系统概述了不同成像技术和图像处理算法背后的基本原理,并为学员提供了一个交互式虚拟实验室。出于教育目的,该系统旨在以全面的解释、丰富的插图和大量的参考文献为重点,让学员对每种成像模态有总体的理解,而不是复杂的物理知识或详细的数学内容。本报告具体描述了常用医学成像模态教程的开发。一个可通过互联网访问的界面用于模拟各种具有用户可调整参数的成像算法。该教程运行在MATLAB网络服务器环境下。Macromedia Director MX用于开发将理论与面向图形的模拟相结合的交互式动画。HTML和JavaScript用于让用户在网络浏览器中在线探索这些模块。教程中为学员提供了大量的多项选择题、链接和高级学习参考文献,以验证他们对每个单元的理解。预计本教程将加强医学成像教育,帮助学员在后续的图像数据分析中,并为未来更先进技术的发展奠定基础。