中国科学院上海光学精密机械研究所(简称:上海光机所)成立于1964年5月,是我国建立最早、规模最大的激光科学技术专业研究所。发展至今,已形成以探索现代光学重大基础及应用基础前沿、发展大型激光工程技术并开拓激光与光电子高技术应用为重点的综合性研究所。研究...
中国科学院上海光学精密机械研究所(简称:上海光机所)是我国建立最早、规模最大的激光专业研究所,成立于1964年,现已发展成为以探索现代光学重大基础及应用基础前沿研究、发展大型激光工程技术并开拓激光与光电子高技术应用为重点的综合性研究所。重...
上海光机所国际合作工作始终围绕上海光机所的主责主业,以服务重大任务和国家需求为牵引,强化目标导向,注重内外集成协同,加强重大国际合作任务的谋划。坚持“战略布局,需求牵引,技术引领,合作共赢”的原则,基于科技部授予的国家国际科技合作基地及本单位学科技术优势,围绕“一带一路”国家倡议,深化拓展与发达国家实质性合作,夯实海外机构建设,积极培育和发起国际大科学计划,加强国际组织任职推荐,组织相关国际会议等,汇聚各类国际人才,建立以“平台-人才-项目-组织”合作模式,融入全球创新合作网络,助力上海光机所成为国际一流科研机构。上海光机所国际合作一直得到所领导的高度重视,历届所长亲自主管国际合作。1972年,上海光机所接待诺贝尔奖的美籍华裔科学家杨振宁,标志着我所第一次对外开放。2007年,被科技部首批授予“科技部国际科技合作基地”。2016年,科技部首次对全国2006-2008年间认定的113家国际合作基地进行了评估,上海光机所获评“优秀”。2021年,科技部首次对全国719家国际合作基地进行了评估,上海光机所持续获评“ 优秀”。王岐山副主席到上海光机所视察时,对上海光机所近几年取得的系列科技成果,以及重大国际合作项目“中以高功...
作为我国建立最早、规模最大的激光科学技术专业研究所,和首批上海市科普教育基地之一,中国科学院上海光学精密机械研究所(简称:上海光机所)在致力于科技创新的同时,十分重视科普工作。多年来,上海光机所借助科研院所强大的科普资源优势,围绕光学与激光科学技术,积极开展公众开放日、科普讲座、科技课堂、科普作品创...
题目:Coherent Raman Microscopy and Its Biomedical Imaging Applications
姓名:Fake Lu
单位:Harvard University
时间:2017年11月3日(周五)上午10:00
地点:溢智厅
摘要:
Label-free optical microscopy is an emerging technology in biology and medicine to perform live imaging without affecting cell functions or in vivo imaging of human with no fluorescent staining. While Raman spectroscopy has been used for molecular characterization for cancer detection with high sensitivity, imaging speed is always an issue. By coherently exciting and detecting the chemical bond vibration in molecules, coherent Raman scattering (CRS) microscopy, with two modalities of coherent anti-Stokes Raman scattering (CARS) and stimulated Raman scattering (SRS), has been used for label-free imaging of various biomolecules or drugs with high spatiotemporal resolution and high chemical specificity.
In this seminar, I will first review recent technical efforts that have greatly improved CRS imaging speed, detection sensitivity and spectral acquisition, and I will further present several label-free biomolecular imaging applications of the technology. In particular, transforming SRS microscopy for clinical use is a major direction of my research. The methodology of SRS label-free histopathology for rapid cancer detection and image-guided precision surgery has shown a great potential to impact on the current clinical practices of pathology and surgery.
His current research aims to establish an advanced biophotonics program focusing on coherent Raman and multiphoton microscopy technologies for imaging of living cells, in vivo animals and fresh human tissue at the most translational frontier for neuro-oncology and neuroscience studies.
报告人简介:
Dr. Fake Lu received his Bachelor degree in Optoelectronics and Master degree in Optical Engineering from Zhejiang University in China in 2003 and 2006, respectively, and PhD in Biomedical Engineering from the National University of Singapore in 2010.
Dr. Lu completed his initial postdoc training at Harvard University with Professor Sunney Xie (2011-2014). He was an Instructor in Neurosurgery at Harvard Medical School and Brigham and Women’s Hospital (2014-2017). He is currently an assistant professor in the Department of Biomedical Engineering at the Binghamton University, State University of New York. His research focuses on biophotonics and neurophotonics.
科研经历简介:
Brigham and Women’s Hospital and Harvard Medical School (05.2014–Present)
Department of Neurosurgery
Assistant Professor
Transforming stimulated Raman imaging for image-guided precision neurosurgery
- Established the methodology and the first reference system for label-free neurosurgical pathology with stimulated Raman microscopy;
- Published the first database of stimulated Raman imaging of brain tumors;
- Label-free characterization of biomolecules in human breast cancer (ongoing).
Harvard University (02.2011–Present)
Department of Chemistry and Chemical Biology
Research Fellow
Advisor: Professor X. Sunney Xie, PhD
Advanced technology and biomedical applications of stimulated Raman microscopy(collaborated with Dr. David E. Fisher at MGH-Dermatology)
- Developed multiplex stimulated Raman scattering (SRS) microscopy based on the acousto-optic tunable filter (AOTF) technology and Fourier Transform doubledemodulation.
- Traced lipid production in microalgae for potential green energy application using the developed multiplex SRS system.
- Enabled multicolor SRS imaging with multi-channel parallel detection;
- Realized label-free DNA imaging in vivo for the first time;
- Demonstrated in vivo counting of mitotic rate in the mouse skin;
- Demonstrated label-free SRS histology for human skin cancer diagnosis.
National University of Singapore (02.2006–01.2011)
Department of Biomedical Engineering
Graduate Researcher (PhD)
Contributed to the development of coherent Raman and multiphoton bioimaging
- Developed interferometric polarization methods to suppress the nonresonant background in coherent anti-Stokes Raman scattering (CARS) microscopy;
- Investigated the progression and correlation of liver steatosis and fibrosis in the same rat model using an integrated multimodal nonlinear optical imaging platform, including CARS, two-photon fluorescence (TPF) and second harmonic generation (SHG).
Zhejiang University (09.1999–01.2006)
Graduate Researcher (MS)
- Designed and fabricated narrowband optical filters to investigate spectral instability of the coating using ion-assisted-deposition method;
- Developed and integrated a visible projector based on liquid-crystal-on-silicon;
综合办公室
2017年11月1日
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