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分子的高压化学反应
清华2024高分子前沿讲座:聚乙烯催化剂研发过程中的一些思考
第479期“工物学术论坛”:大气压冷等离子体激活的生物医学(Engineering Biomedic...
【图书馆讲座】核心期刊投稿导引与科研评价新趋势
报告题目:
第104期“工物学术论坛”:Phase-contrast X-ray imaging: exploring new capabilities in medicine, life and material science
 报告人:
Prof. Marco Stampanoni
Swiss Light Source, Paul Scherrer Institute
报告时间:
2014-10-22 09:00
报告地点:
工物系刘卿楼302会议室
主办单位:
工物系
  简介:
High brightness is a fundamental property of third generation synchrotron facilities. Those deliver coherent beams, which intrinsically provide access to the phase information from a sample. The Swiss Light Source operates TOMCAT, a beamline dedicated to TOmographic Microscopy and Coherent rAdiology experimenTs. Our group develops cutting-edge equipment for non-destructive tomographic investigations and provides the necessary instrumentation for phase contrast imaging at spatial resolution ranging over four orders of magnitude as well as the acquisition of 3D volumes within a fraction of a second. This presentation will illustrate how phase contrast imaging can be implemented with applications in human radiology down to nanotomographic imaging of single cells. A brief review of the most advanced phase contrast imaging techniques will be provided, with particular emphasis on free-space propagation, grating-interferometry and full-field Zernike microscopy. Applications criteria as well as limitations for each technique will be presented, with the illustrative support of examples taken from daily experiments carried out at modern, third generation synchrotron facilities. Particular emphasis will be devoted to applications involving the investigation of life sciences relevant material like cells (organelles identification), soft tissue biopsies (tumor visualization, Alzheimer plaques detection), bones (canaliculi detection and statistical nano-morphometry), insects (biomechanics of tethered flight) and breast tissue (early breast cancer detection). Further, I will present results from a first clinical study based on phase contrast mammography, showing the potential of grating interferometry for early breast cancer detection as well as some preliminary data from our high-energy phase contrast prototype.
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