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中国科学院 苏州生物医学工程技术研究所人事教育处 《人才快讯》2012年第三期 报告人简介 K. Kirk Shung obtained a B.S. in electrical engineering from Cheng-Kung University in Taiwan in 968, a M.S. in electrical engineering from University of Missouri, Columbia, MO in 1970 and a Ph. D. in electrical engineering from University of Washington, Seattle, WA, in 1975. He had taught at Pennsylvania State University, University Park, PA for 23 years before moving to the Department of Biomedical Engineering, University of Southern California, Los Angeles, CA, as a professor in 2002. He has been the director of NIH Resource on Medical Ultrasonic Transducer Technology since 1997 Dr. Shung is a life fellow of IEEE, and a fellow of the Acoustical Society of America and American Institute of Ultrasound in Medicine. He is a founding fellow of American Institute of Medical and Biological Engineering. He received the IEEE Engineering in Medicine and Biology Society Early Career Award in 1985 and was the coauthor of a paper that received the best paper award for IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control (UFFC) in 2000. He was elected an outstanding alumnus of Cheng-Kung University in Taiwan in 2001. He was selected as the distinguished lecturer for the IEEE UFFC society for 2002-2003. He received the holmes pioneer Award in basic Science from American Institute of Ultrasound in medicine in 2010. He was selected to receive the academic career achievement award from the ieee Engineering in Medicine and Biology Society in 2011 Dr Shung has published more than 400 papers and book chapters. He is the author of a textbook Principles of Medical Imaging "published by Academic Press in 1992 and a textbook Diagnostic Ultrasound: Imaging and Blood Flow Measurements"published by CrC press in 2005. He co-edited a book "Ultrasonic Scattering by Biological Tissues" published by CRC Press in 1993 He is an associate editor of IeEE Transactions on UFFC and a member of the editorial board of Ultrasound in Medicine and Biology. Dr. Shung's research interest is in ultrasonic transducers high frequency ultrasonic imaging, ultrasound microbeam, and ultrasonic scattering in tissues 清华大学学术报告四: Minimally Invasive Precision Diagnostic and Therapeutic Techniques for Intelligent Surgery 时间:7月4日下午3:00 地点:医学科学楼B321 报告人:廖洪恩教授(生物医学工程系) 报告摘要 Rapid technical advances in medical imaging and surgical robotics, including its growing application in therapy and interventional procedures, have attracted significant interest in the close integration of research in the life sciences, medicine, and engineering. Medical imaging is moving increasingly from a primarily diagnostic modality towards an intelligent therapeutic aid, driven the streamlining of diagnostic and therapeutic processes for human disease by means of multi-modality imaging and robotic-assisted surgery. These processes can be used to direct image-guided interventions allowing physicians not just to perform molecular profiling of disease in microscopic level but also for planning and personalized treatment. Many surgical procedures中国科学院 苏州生物医学工程技术研究所人事教育处 《人才快讯》2012 年第三期 9 报告人简介 K. Kirk Shung obtained a B.S. in electrical engineering from Cheng-Kung University in Taiwan in 1968, a M.S. in electrical engineering from University of Missouri, Columbia, MO in 1970 and a Ph.D. in electrical engineering from University of Washington, Seattle, WA, in 1975. He had taught at Pennsylvania State University, University Park, PA for 23 years before moving to the Department of Biomedical Engineering, University of Southern California, Los Angeles, CA, as a professor in 2002. He has been the director of NIH Resource on Medical Ultrasonic Transducer Technology since 1997. Dr. Shung is a life fellow of IEEE, and a fellow of the Acoustical Society of America and American Institute of Ultrasound in Medicine. He is a founding fellow of American Institute of Medical and Biological Engineering. He received the IEEE Engineering in Medicine and Biology Society Early Career Award in 1985 and was the coauthor of a paper that received the best paper award for IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control (UFFC) in 2000. He was elected an outstanding alumnus of Cheng-Kung University in Taiwan in 2001. He was selected as the distinguished lecturer for the IEEE UFFC society for 2002-2003. He received the Holmes Pioneer Award in Basic Science from American Institute of Ultrasound in Medicine in 2010. He was selected to receive the academic career achievement award from the IEEE Engineering in Medicine and Biology Society in 2011. Dr. Shung has published more than 400 papers and book chapters. He is the author of a textbook "Principles of Medical Imaging” published by Academic Press in 1992 and a textbook “Diagnostic Ultrasound: Imaging and Blood Flow Measurements” published by CRC press in 2005. He co-edited a book "Ultrasonic Scattering by Biological Tissues" published by CRC Press in 1993. He is an associate editor of IEEE Transactions on UFFC and a member of the editorial board of Ultrasound in Medicine and Biology. Dr. Shung’s research interest is in ultrasonic transducers, high frequency ultrasonic imaging, ultrasound microbeam, and ultrasonic scattering in tissues. 清华大学学术报告四 :Minimally Invasive Precision Diagnostic and Therapeutic Techniques for Intelligent Surgery 时间:7 月 4 日下午 3:00 地点:医学科学楼 B321 报告人:廖洪恩教授(生物医学工程系) 报告摘要 Rapid technical advances in medical imaging and surgical robotics, including its growing application in therapy and interventional procedures, have attracted significant interest in the close integration of research in the life sciences, medicine, and engineering. Medical imaging is moving increasingly from a primarily diagnostic modality towards an intelligent therapeutic aid, driven by the streamlining of diagnostic and therapeutic processes for human disease by means of multi-modality imaging and robotic-assisted surgery. These processes can be used to direct image-guided interventions allowing physicians not just to perform molecular profiling of disease in microscopic level but also for planning and personalized treatment. Many surgical procedures
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