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Shyam Diwakar, Ph.D.

Affiliations: 
2009-2020 School of Biotechnology Amrita Vishwa Vidyapeetham (Amrita University) 
 2020- Mind Brain Center Amrita Vishwa Vidyapeetham (Amrita University) 
Area:
computational neuroscience, local field potentials, EEG, cognitive sciences, virtual laboratory
Website:
http://www.amrita.edu/mindbrain
Google:
"Shyam Diwakar"
Bio:

Shyam Diwakar is the Director of the Amrita Mind Brain Center, a Faculty fellow at the Amrita Center for International Programs and a Professor at the Department of Electronics and Communication, Amrita School of Engineering, Amritapuri campus. He is the Institute Integration Coordinator and Co-investigator of VALUE (Virtual and Accessible Laboratories for Universalizing Education); a major virtual labs initiative supported by Sakshat mission of Ministry of Education, Government of India, and Principal Investigator of few other projects funded by Department of Science and Technology.
He was awarded the Young Faculty Research Fellowship under the Sir Visvesvaraya PhD scheme by Department of Electronics and Information Technology, Govt. of India in April 2016.
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Mean distance: 15.15 (cluster 11)
 
SNBCP

Collaborators

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Egidio D'Angelo collaborator 2009- University of Pavia
Egidio D'Angelo collaborator 2009- University of Pavia
Bharat Jayaraman collaborator 2009- SUNY Buffalo (Computer Science Tree)
Giovanni Naldi collaborator 2009- University of Milan
Viktor K. Jirsa collaborator 2020-2021 Aix Marseille Université
 (HBP Voiucher call BOLDSim)
Fausto Giunchiglia collaborator 2019-2023 Università di Trento
 (WeNet - The Internet of Us)
BETA: Related publications

Publications

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Vijayan A, Diwakar S. (2022) A cerebellum inspired spiking neural network as a multi-model for pattern classification and robotic trajectory prediction. Frontiers in Neuroscience. 16: 909146
Sasidharakurup H, Kumar G, Nair B, et al. (2021) Mathematical Modeling of Severe Acute Respiratory Syndrome Coronavirus 2 Infection Network with Cytokine Storm, Oxidative Stress, Thrombosis, Insulin Resistance, and Nitric Oxide Pathways. Omics : a Journal of Integrative Biology. 25: 770-781
Parasuram H, Gopinath S, Pillai A, et al. (2021) Quantification of Epileptogenic Network From Stereo EEG Recordings Using Epileptogenicity Ranking Method. Frontiers in Neurology. 12: 738111
Radhamani R, Kumar D, Nizar N, et al. (2021) What virtual laboratory usage tells us about laboratory skill education pre- and post-COVID-19: Focus on usage, behavior, intention and adoption. Education and Information Technologies. 1-19
Peñas-LLedó E, Terán E, Sosa-Macías M, et al. (2020) Challenges and Opportunities for Clinical Pharmacogenetic Research Studies in Resource-Limited Settings: Conclusions From the Council for International Organizations of Medical Sciences-Ibero-American Network of Pharmacogenetics and Pharmacogenomics Meeting. Clinical Therapeutics
Achuthan K, Nedungadi P, Kolil V, et al. (2020) Innovation Adoption and Diffusion of Virtual Laboratories International Journal of Online and Biomedical Engineering (Ijoe). 16: 4
Alphonse J, Diwakar S. (2020) Deploying a Web-based Electroencephalography Data Analysis Virtual Laboratory Procedia Computer Science. 171: 2420-2425
Santhosh AK, Sangilirajan M, Nizar N, et al. (2020) Computational Exploration of Neural Dynamics Underlying Music Cues Among Trained and Amateur Subjects Procedia Computer Science. 171: 1839-1847
Radhakrishnan S, Nutakki C, Diwakar S. (2020) Mathematical Modeling of fMRI BOLD responses related Nitric Oxide Production-Consumption and in the Cerebellum Granule Layer Procedia Computer Science. 171: 1606-1613
Sasidharakurup H, Nalarajan N, Nair M, et al. (2020) Computational modeling of convergent mechanisms in Alzheimer’s and Parkinson’s disease with insulin signaling using biochemical systems theory Procedia Computer Science. 171: 1598-1605
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