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Professor Duncan Shepherd Duncan Shepherd is a Professor of Bio medical Engineering.
Duncan has published over 90 peer reviewed journal papers and book chapters in the field of Bio louis vuitton alma key medical Engineering, mainly on the design and testing of medical devices. He has received major grants from Arthritis Research (UK), Commission of the European Communities, Engineering and Physical Sciences Research Council and the medical device industry. He has been invited to give talks on his research in Australia, Canada, India, Malaysia, the USA and the UK. His main areas of teaching are modules on mechanical engineering design and bio medical engineering. Duncan Shepherd gained a BEng in Mechanical Engineering from the University of Leeds in 1993. He went on to undertake research in Bio engineering in the Research School of Medicine, University vintage louis vuitton atlanta of Leeds. In 1997 was awarded a PhD for research on the mechanical properties of articular cartilage. From 1997 until 2004 he worked in Department of Bio Medical Physics Bio Engineering at the University of Aberdeen. He started work as a Research Fellow and in 2000 he was awarded a prestigious Leverhulme Trust Special Research Fellowship to undertake research on the design of a novel wrist implant. In 2002 he became a Lecturer in Bio engineering. Duncan moved to the University of Birmingham in 2004 as a Lecturer to help establish a new research area in Bio medical Engineering, located within the School of Mechanical Engineering. He was promoted to Senior Lecturer in 2006, Reader in 2011 and Professor in 2014. A spine simulator is being used to investigate: Tribology of disc arthroplasty Design of medical devices Duncan has experience in designing a louis vuitton bracelet 2012 range of medical devices including small joint arthroplasty, sternal fixation devices and surgical instruments. He uses solid modelling and finite element analysis to optimise designs, and has experience of working within the regulatory framework for the design of medical devices. He also has a range of experience of using materials testing machines to test medical devices to International Standards. Duncan has experience of measuring a range of mechanical properties of natural tissues. This research has included measurements of the viscoelastic properties of articular cartilage and louis vuitton save it bracelet the intervertebral disc, using Dynamic Mechanical Analysis. (2016) Design of a Dynamic External Finger Fixator. Journal of Medical Devices.
10: 041004 (1 6). (2016) Viscoelastic properties of a spinal posterior dynamic stabilisation device. Journal of the Mechanical Behavior of Biomedical Materials 59: 519.
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