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卫健学术沙龙:基于5G+人工智能的心理/精神健康服务与管理体系建设
Gauging spacetime inversions
AI合成化学前沿与战略研讨会暨国家智能化学数据中心启动会
Macro to micro- and nano-scale fluidic engineering for analytical chemistry
报告题目:
Optical Molecular Imaging From Single Molecule in Live Cell to Human Body
 报告人:
Mamoru Tamura
School of Medicine, Tsinghua University,Biejing, 
China and Faculty of Life Science, Hokkaido University,Sapporo,Japan

报告时间:
2009-11-19 14:00
报告地点:
清华大学医学科学楼C201室
主办单位:
第二附属医院、医学院
  简介:

邀 请 人:左焕琮

简 介:

        The recent advances of various optical technologies have opened the new field, Optical Molecular Imaging (OMI), which followed the completion of the human genome project. OMI covers extremely the wide range of space and times of various biological processes: those are from nm to cm in size, picosecond to second in time, and single molecule to complex molecular assembly in the tissue and even in the whole body , respectively.

Technically, optical microscope, endoscope, small animal imaging and brain or breast imaging of human body by diffuse optical tomography (DOT) are the typical representatives of these widespread methods and targets.

In this talk, the recent topics of optical imaging carried out in the laboratories of Hokkaido University together with several companies will be given as follows: (1) the microscope technology of fluorescence correlation spectroscopy (FCS) and cross correlation spectroscopy (FCCS) for the analysis of the dynamic behavior of fluorescent labeled proteins inside the live cells; (2) the multifunctional endoscope systems with the auto-fluorescence imaging and microscopic observations; (3) the multi-channel optical imaging systems by the near infrared light ( functional near-infrared spectroscopy, fNIRS ), which are now widely used for the functional imaging of human brain activity under the various tasks.

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