Shovan Naskar

National Institute of Mental Health (NIMH) NIH 
Sensory system, barrel cortex, GABAergic interneurons, Austism, Down's syndrome, GABAergic transmission in developmental disorders
"Shovan Naskar"
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Laura Cancedda grad student 2012-2016 IIT
Soohyun Lee post-doc 2017- NIH


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Gabriele Deidda collaborator 2012-2015 IIT
Valter Tucci collaborator 2012-2016 IIT
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Qi J, Ye C, Naskar S, et al. (2022) Posteromedial thalamic nucleus activity significantly contributes to perceptual discrimination. Plos Biology. 20: e3001896
Parrini M, Naskar S, Alberti M, et al. (2021) Restoring neuronal chloride homeostasis with anti-NKCC1 gene therapy rescues cognitive deficits in a mouse model of Down syndrome. Molecular Therapy : the Journal of the American Society of Gene Therapy
Naskar S, Qi J, Pereira F, et al. (2021) Cell-type-specific recruitment of GABAergic interneurons in the primary somatosensory cortex by long-range inputs. Cell Reports. 34: 108774
Naskar S, Narducci R, Balzani E, et al. (2019) The development of synaptic transmission is time-locked to early social behaviors in rats. Nature Communications. 10: 1195
Keshavan S, Naskar S, Diaspro A, et al. (2017) Developmental refinement of synaptic transmission on micropatterned single layer graphene. Acta Biomaterialia
Contestabile A, Parrini M, Naskar S, et al. (2016) 53. A Neuro-Specific Gene Therapy Approach to Treat Cognitive Impairment in Down Syndrome by RNA Interference Molecular Therapy. 24: S23-S24
Keshavan S, Naskar S, Diaspro A, et al. (2016) Electrophysiology of Patterned Neuronal Networks on Monolayer Graphene Biophysical Journal. 110: 41a
Deidda G, Parrini M, Naskar S, et al. (2015) Excitatory GABAergic transmission impairs synaptic plasticity and memory in Down syndrome. International Journal of Developmental Neuroscience : the Official Journal of the International Society For Developmental Neuroscience. 47: 36
Deidda G, Parrini M, Naskar S, et al. (2015) Reversing excitatory GABAAR signaling restores synaptic plasticity and memory in a mouse model of Down syndrome. Nature Medicine. 21: 318-26
Deidda G, Allegra M, Cerri C, et al. (2015) Early depolarizing GABA controls critical-period plasticity in the rat visual cortex. Nature Neuroscience. 18: 87-96
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