Vinod Suresh
The University of Auckland, University of Auckland, Stanford University, Indian Institute of Technology Madras, University of California Irvine
About
Vinod's research focuses on the study of biotransport phenomena at scales ranging from the cellular to whole organism level. Current areas of interest are fluid transport in lung epithelium, neurovascular coupling, cardiovascular models for pharmacokinetics and pharmacodynamics, satiety signalling in the intestines and the rumen mechanics in sheep and cows. His projects combine mathematical, computational and empirical approaches to iteratively build, test and improve models. Techniques used in his work include cell culture and molecular biological experimentation, lumped parameter modelling and finite element modelling.
Employment
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The University of Auckland Senior Lecturer2014 - Present
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The University of Auckland Senior Lecturer2014 - Present
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The University of Auckland Senior Lecturer2014 - Present
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University of Auckland Principal Investigator and Senior Lecturer2007 - Present
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University of California Irvine Posdoctoral fellow2004 - 2007
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University of Michigan Postoctoral Fellow2002 - 2004
Education
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Stanford University PhD1997 - 2002
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Indian Institute of Technology Madras BTech1993 - 1997
Projects & Funding
Projects & funding information is unavailable.
Publications (75)
- Quantifying the Role of Duodenal Shape in Flow and Mixing: A Computational Fluid Dynamics Study on Anatomically Diverse Models Save
- A mathematical model of ENaC and Slc26a6 regulation by CFTR in salivary gland ducts Save
- Likelihood-based estimation and prediction for a measles outbreak in Samoa Save
- Reproducibility Study of Computational Modelling of Glucose Uptake by SGLT1 and GLUT2 in the Enterocyte Save
- Reproducibility Study of Computational Modelling of Glucose Uptake by SGLT1 and GLUT2 in the Enterocyte Save
- Anatomically realistic computational model of flow and mixing in the human duodenum Save
- A Systematic Review of Computational Fluid Dynamics Models in the Stomach and Small Intestine Save
- Computational Modelling of Glucose Uptake in the Enterocyte Save
- Modelling uptake and transport of therapeutic agents through the lymphatic system Save
- A Mathematical Model of Salivary Gland Duct Cells Save