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【低维量子物理国家重点实验室杰出学者讲座】新型层间量子拖拽效应
NHC Catalysis, Medicines and Agrochemicals
Bio-inspired nanostructures for targeted delivery of macromolecules
学堂班系列讲座:“分子定制介孔晶体”
报告题目:
学术报告:科技论文写作培训
 报告人:
Robert Allen
英国南安普敦大学教授
《Biomedical Signal Processing & Control》杂志主编
报告时间:
2007-11-19 15:00
报告地点:
医学科学楼B323
主办单位:
清华大学医学院、Elsevier公司
  简介:

学术报告:科技论文写作培训

主要内容:(1)如何撰写高水平学术论文;(2)如何向国际学术期刊投稿。

 

主讲人简介:

Professor of Biodynamics and Control

Institute of Sound and Vibration Research

University of Southampton

 

Email ra@soton.ac.uk

Phone +44 (0) 23 8059 3746

Fax +44 (0) 23 8059 3190

 

Biographical Data

Robert Allen holds a Personal Chair in Biodynamics and Control at the Institute of Sound and Vibration Research (ISVR), University of Southampton, UK. Following training in the machine tool industry and a period as numerical control programme engineer (Dean, Smith & Grace Ltd., in collaboration with IBM UK) he studied at the University of Leeds and graduated with BSc (Hons) in Control Engineering and was awarded a PhD for research on modelling the dynamic characteristics of neural receptors. This was followed by Postdoctoral positions at the University of Leeds (Dept. Anaesthesia) on monitoring intracranial pressure of severely head-injured patients to prevent secondary brain damage, and at the Welsh National School of Medicine, Cardiff (Dept. Anaesthetics) on a parameter estimation approach to noninvasive measurement of cardiac output.
He moved to the University of Southampton (Faculty of Medicine) in 1984 to a newly-created position as Lecturer in Biocomputation, and from there to the Department of Mechanical Engineering in 1985 as Lecturer and Senior Lecturer in Control Engineering and to the ISVR in 1997.

Research Interests 

Research interests are currently focused on the development and application of signal processing techniques for biomedical systems analysis and on the bioinspired control of unmanned, underwater vehicles. Particular interests include: efficient estimation of auditory evoked potentials for assessment of hearing and of depth of anaesthesia, cerebral hydrodynamic modelling and noninvasive assessment of intracranial complicance, processing of fluoroscopic images for measurement of spine kinematics and understanding and development of bioinspired acoustic systems.

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