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Elife|December 2, 2022
A faster way to model neuronal circuitryAndrew P Davison, Shailesh Appukuttan
Frontiers in Integrative Neuroscience|November 25, 2022
Reproducing and quantitatively validating a biologically-constrained point-neuron model of CA1 pyramidal cellsShailesh Appukuttan, Andrew P Davison
Neuroinformatics|August 20, 2022
EBRAINS Live Papers - Interactive Resource Sheets for Computational Studies in NeuroscienceShailesh Appukuttan, Luca L Bologna, Felix Schürmann, et al.
Frontiers in Neuroinformatics|October 13, 2022
The EBRAINS Hodgkin-Huxley Neuron Builder: An online resource for building data-driven neuron modelsLuca Leonardo Bologna, Roberto Smiriglia, Carmen Alina Lupascu, et al.
Journal of Experimental Neuroscience|February 9, 2019
Electrophysiology of Syncytial Smooth MuscleRohit Manchanda, Shailesh Appukuttan, Mithun Padmakumar
Frontiers in Physiology|October 18, 2021
Effect of Variations in Gap Junctional Coupling on the Frequency of Oscillatory Action Potentials in a Smooth Muscle SyncytiumShailesh Appukuttan, Keith L Brain, Rohit Manchanda
Journal of Computational Neuroscience|October 9, 2014
A computational model of urinary bladder smooth muscle syncytium : validation and investigation of electrical propertiesShailesh Appukuttan, Keith L Brain, Rohit Manchanda
Journal of Neuroscience Methods|July 15, 2017
Modeling extracellular fields for a three-dimensional network of cells using NEURONShailesh Appukuttan, Keith L Brain, Rohit Manchanda
Cerebral Cortex (New York, N.Y. : 1991)|October 7, 2022
Difference in axon diameter and myelin thickness between excitatory and inhibitory callosally projecting axons in miceKaustuv Basu, Shailesh Appukuttan, Rohit Manchanda, et al.
Frontiers in Bioengineering and Biotechnology|November 11, 2017
A Method for the Analysis of AP Foot Convexity: Insights into Smooth Muscle BiophysicsShailesh Appukuttan, Mithun Padmakumar, Keith L Brain, et al.
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