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磁共振成像虚拟仿真实验平台建设 被引量:8

The Construction of Magnetic Resonance Imaging Virtual Simulation Experimental Platform
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摘要 磁共振成像MRI是当前最为复杂的医学影像技术之一,也是生物医学工程专业本科生医学影像技术相关课程的教学重点和难点。针对华中科技大学生物医学工程专业在磁共振成像MRI教学中存在的一些问题,由任课教师根据自己的科研背景和授课体验,围绕学生应掌握的知识点,自主设计开发了一款适合生物医学工程专业教学的系统平台。该平台构建了包含磁共振医学成像原理展示、系统元件拆分、成像操作实践等多个环节的虚拟仿真综合设计实验,使学生系统掌握磁共振成像设备的基本结构、功能及操作流程。通过该平台教学,有助于学生利用虚拟实验锻炼综合应用知识的能力、自主学习能力、分析解决问题能力和动手实践能力,进一步提升了学生综合素养和创新创业能力。 Magnetic resonance imaging(MRI)is one of the most complex medical imaging technologies,and it is also the teaching emphasis and difficulty of medical imaging technology related courses for undergraduates majoring in biomedical engineering.In view of some problems existing in MRI teaching of biomedical engineering major in Huazhong University of Science and Technology,the teachers,revolving around the knowledge points that students should master,independently designed a system platform according to their own scientific research background and teaching experience.The platform consists of a comprehensive design virtual simulation experiment,including the display of MRI principles,system components splitting,and imaging operation practice,so that students can systematically master the basic structure,function and operation process of MRI equipment.The platform teaching helps exercise students’ability to comprehensively apply knowledge,autonomous learning,problem analysis and solving skills and practical ability by using virtual experiment,thereby further improving students’comprehensive quality and innovation and start-up ability.
作者 王国平 叶韶华 刘迎宾 郭彦彬 刘亚丰 赵元弟 WANG Guoping;YE Shaohua;LIU Yingbin;GUO Yanbin;LIU Yafeng;ZHAO Yuandi(College of Life Science and Technology,Huazhong University of Science and Technology,Wuhan 430074,China;Wuhan National Laboratory for Optoelectronics,Huazhong University of Science and Technology,Wuhan 430074,China)
出处 《实验科学与技术》 2021年第3期131-135,共5页 Experiment Science and Technology
基金 华中科技大学教学研究项目(2020108) 华中科技大学研究生教学研究项目(YY202042) 教育部产学合作协同育人项目(202002017014)。
关键词 生物医学工程 磁共振成像 教学改革 虚拟仿真实验 biomedical engineering magnetic resonance imaging teaching reform virtual simulation experiment
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  • 1苗真勇,厉伟,顾永琴.生物质快速热解技术研究进展[J].节能与环保,2005(2):13-15. 被引量:11
  • 2朱红,周竞学,张红光,李雨竹.构建适合创新人才培养的实践教学环境[J].实验技术与管理,2006,23(9):19-22. 被引量:33
  • 3Rhodes L A.Abbott C R,Fisher G,et al.High resolution magnetic resonance imaging of excised athero-sclerotic carotid tissue:the effects of specimen temperature on image contrast[J].J Cardi-ovasc Magn Reson,2007,9(6):915-920.
  • 4Hinton D P,Cury R C,Chan R C,et al.Bright and black blood imagingofthecarotidbifurcationat3.0T[J].Eur J Radiol,2006,57(3):403-411.
  • 5Geisler B S,Brandhoff F,Fiehler J,et al.Blood-oxygen-level-dependent MRI allows metabolic description of tissue at risk in acute stroke patients[J].Stroke,2006,37(7):1 778-1 784.
  • 6Kramer C M.Aaderson J D.MRI of atherosclerosis:diagnosis and monitoring therapy[J].Expert Rev Cardiovasc Ther,2007,5(1):69-80.
  • 7The Nobel Foundation. Press Rele: The 2003 Nobel Prize in Physiology of Medicine
  • 8Pearson M.Nature,2003;425:547,648
  • 9Vogel G.Science,2003;302:382-383
  • 10Internet 上诸多的 Web Site

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