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Counting holes in the Fermi sea ---- topological aspects of metals
Symmetries of Kitaev spin-S models and their implications
【低维量子物理国家重点实验室杰出学者讲座】Kagome Metals and Superconductors -...
【低维量子物理国家重点实验室杰出学者讲座】Imaging material strain using advan...
报告题目:
Functional Magnetic Resonance Imaging of the Auditory and Visual Systems
 报告人:
Condon Lau
Research Assistant Professor, Hong Kong University of 
Science and Technology Junior Fellow, Institute 
for Advanced Study, Hong Kong University of 
Science and Technology
报告时间:
2013-08-29 17:00
报告地点:
医学科学楼B323
主办单位:
医学院
  简介:
ABSTRACT:
Functional magnetic resonance imaging (fMRI) is arguably the leading neuroimaging technique. fMRI permits noninvasive and in vivo neuroimaging with millimeter spatial resolution and whole brain field of view. To date, fMRI has primarily been applied in humans with considerable success. Animal models such as the rat have also made important contributions to neuroscience. Performing fMRI in animals provides an important link between human and animal neuroscience research. We have applied and developed fMRI technologies to study the auditory and visual systems in the rat. This has enabled mapping of velocity encoding in the superior colliculus and tonotopic organization in the inferior colliculus. The newly developed swept source fMRI technology enables mapping tonotopic organization with superior frequency resolution and reduced image distortion compared to conventional fMRI approaches. fMRI has recently been applied to study plasticity in the adult auditory system following chronic acoustic exposure at moderate sound pressure levels.
 
Introduction about Dr Condon Lau:
Dr. Condon Lau is a research assistant professor in the Division of Biomedical Engineering at the Hong Kong University of Science and Technology. He received his B.S.E from Princeton University and his Ph.D. from the Massachusetts Institute of Technology (MIT). At MIT, he developed optical spectroscopy and imaging technologies for noninvasive early cancer detection. He underwent postdoctoral training at the University of Hong Kong where he developed functional magnetic resonance imaging (fMRI) technologies and applied fMRI to study auditory and visual functions. His research interests involve developing and applying biomedical imaging technologies.
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