Collins G. Assisi, PhD

Affiliations: 
2012- Biology IISER Pune, Pune, Maharashtra, India 
Area:
Computational Neuroscience, Olfaction, Hippocampus
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"Collins Assisi"
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Parents

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Viktor K. Jirsa grad student 2005 Florida Atlantic University
 (Theoretical and experimental studies of multisensory integration as a coupled dynamical system.)
J. A.S. Kelso grad student 2005 Florida Atlantic University
 (Theoretical and experimental studies of multisensory integration as a coupled dynamical system.)
Maxim Bazhenov post-doc 2005-2012 UC Riverside/Salk Institute
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Publications

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Neru A, Assisi C. (2021) Theta Oscillations Gate the Transmission of Reliable Sequences in the Medial Entorhinal Cortex. Eneuro. 8
Assisi C, Stopfer M, Bazhenov M. (2020) Optimality of sparse olfactory representations is not affected by network plasticity. Plos Computational Biology. 16: e1007461
Chen JY, Marachlian E, Assisi C, et al. (2015) Learning modifies odor mixture processing to improve detection of relevant components. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 179-97
Assisi C. (2013) The role of inhibition in the generation of reliable spike sequences Bmc Neuroscience. 14: 11
Assisi C, Stopfer M, Bazhenov M. (2012) Excitatory local interneurons enhance tuning of sensory information. Plos Computational Biology. 8: e1002563
Assisi C, Bazhenov M. (2012) Synaptic inhibition controls transient oscillatory synchronization in a model of the insect olfactory system. Frontiers in Neuroengineering. 5: 7
Assisi C, Stopfer M, Bazhenov M. (2011) Using the structure of inhibitory networks to unravel mechanisms of spatiotemporal patterning. Neuron. 69: 373-86
Banerjee A, Tognoli E, Assisi CG, et al. (2008) Mode level cognitive subtraction (MLCS) quantifies spatiotemporal reorganization in large-scale brain topographies. Neuroimage. 42: 663-74
Assisi C, Stopfer M, Laurent G, et al. (2007) Adaptive regulation of sparseness by feedforward inhibition. Nature Neuroscience. 10: 1176-84
Dhamala M, Assisi CG, Jirsa VK, et al. (2007) Multisensory integration for timing engages different brain networks. Neuroimage. 34: 764-73
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