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  <title><![CDATA[PhD Proposal by Hao Zhang]]></title>
  <body><![CDATA[<p><strong>Hao Zhang</strong></p><p>PhD&nbsp;Proposal Presentation</p><p>&nbsp;</p><p><strong>Date</strong>: December 17, 2015 (Wednesday)</p><p><strong>Time</strong>: 9:00 pm (Beijing) / 8:00 am (Atlanta)</p><p><strong>Location</strong>:&nbsp;</p><p>New 1st COE Building,Room 208 (PKU campus at Beijing)&nbsp;</p><p>U.A. Whitaker Building, Mclnitre Conf. Room (GT campus at Atlanta)</p><p>&nbsp;</p><p><strong>Advisor:</strong></p><p>Peng Xi, &nbsp; &nbsp; &nbsp;PhD, &nbsp; &nbsp; &nbsp; &nbsp;Department of Biomedical Engineering, &nbsp; Peking University</p><p>Cheng Zhu, &nbsp; PhD, &nbsp; &nbsp; Department of Biomedical Engineering, &nbsp; Georgia Institute of Technology &amp; Emory University&nbsp;</p><p><strong>Committee Members:</strong></p><p>Tianyu Xie, &nbsp; &nbsp;PhD, &nbsp; &nbsp;Department of Biomedical Engineering, &nbsp; &nbsp;Peking University</p><p>Changhui Li, &nbsp; PhD, &nbsp; &nbsp; &nbsp; &nbsp; Department of Biomedical Engineering, &nbsp; Peking University</p><p>Juntao Gao, &nbsp; PhD, &nbsp; &nbsp; &nbsp; &nbsp;TNLIST, &nbsp; &nbsp;Tsinghua University</p><p>&nbsp;</p><p><strong>Title:&nbsp;</strong>Single Molecular Orientation Detection Microscopy</p><p><strong>Abstract: I</strong>n the past, fluorescence polarization techniques with wide-field, confocal, two-photon excitation (TPE), total internal reflection fluorescence (TIRF)&nbsp;and fluorescence recovery after photobleaching (FRAP)&nbsp;techniques were used to study protein structure and function. All these techniques were obstructed by the same problem: the observation volume is usually a complex system with more than one emitter. To reduce the number of molecules within an observation volume is crucial, as well as to find parameters describing the system instead of a single orientation. Utilizing the tunable transition rates of ON/OFF states of organic dyes or PA-FPs, single molecular orientation detection (SMOD) microsocpy introduces single molecular localization technique into fluorescence polarization imaging.&nbsp;Through imaging both intensity and dipole orientation of fluorescence probes in complicated systems at single molecular accuracy, Single Molecular Orientation Detection (SMOD) microscopy would be a powerful technique in studying structural organization of proteins and lipids.</p><p>&nbsp;</p><p> </p>]]></body>
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