个人简介
Research Associate, Dept. of Comparative Medicine, Stanford University (2002-2006)
Postdoctoral Research Fellow, Dept. of Neurology & Neurological Sciences, Stanford University (1997-2002)
Ph.D. in Neuroscience, University of Pennsylvania, Philadelphia, Pennsylvania (1997)
M.S. in Electrical Engineering, Drexel University, Philadelphia, Pennsylvania (1989)
B.Eng. in Electrical Engineering, Andhra University, India (1986)
近期论文
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Abbasi S, Kumar SS (2015) Layer-specific modulation of entorhinal cortical excitability by presubiculum in a rat model of Temporal Lobe Epilepsy. J. Neurophysiol. 114:2854-2866. [Link] new!
Badisa RB, Kumar SS, Mazzio E, Haughbrook RD, Allen JR, Davidson MW, Fitch-Pye CA, Goodman CB (2015) N-acetyl cysteine mitigates the acute effects of cocaine-induced toxicity in astroglia-like cells. PLoS One 10(1): e0114285. [Link]
Abbasi S, Kumar SS (2014) Regular-spiking cells in the presubiculum are hyperexcitable in a rat model of Temporal Lobe Epilepsy. J. Neurophysiol. 112:2888-2900. [Link]
Pilli J, Kumar SS (2014) Potentiation of convergent synaptic inputs onto pyramidal neurons in somatosensory cortex: Dependence on brain wave frequencies and NMDA receptor subunit composition. Neuroscience 272:271-285. [Link]
O'Neal-Moffitt G, Pilli J, Kumar SS, Olcese J (2014) Genetic deletion of melatonin receptors enhances murine cognitive and motor performance. Neuroscience 277:506-521. [Link]
Pilli J, Kumar SS (submitted 2013) Ion selectivity within N-methyl-D-aspartate receptors. Neuroscience.
Abbasi S, Kumar SS (2013) Electrophysiological and morphological characterization of cells in superficial layers of rat presubiculum. J. Comp. Neurol. 521:3116-3132. [Link]
Pilli J, Kumar SS (2012) Triheteromeric N-methyl-d-aspartate receptors differentiate synaptic inputs onto pyramidal neurons in somatosensory cortex: Involvement of the GluN3A subunit. Neuroscience 222:75-88. [Link]
Pilli J, Abbasi S, Richardson M, Kumar SS (2012) Diversity and excitability of deep layer entorhinal cortical neurons in a model of temporal lobe epilepsy. J. Neurophysiol. 108:1724-1738. [Link]
Kumar SS, Buckmaster PS (2007) Neuron-specific nuclear antigen NeuN in not detectable in gerbil substantia nigra pars reticulata. Brain Res. 1142:54-60. [Link]
Kumar SS, Jin X, Buckmaster PS, Huguenard JR (2007) Recurrent circuits in layer II of medial entorhinal cortex in a model of temporal lobe epilepsy. J. Neurosci. 27:1239-1246. [Link]
Kumar SS, Buckmaster PS (2006) Hyperexcitability, interneurons, and loss of GABAergic synapses in entorhinal cortex in a model of temporal lobe epilepsy. J. Neurosci. 26:4613-4623. [Link]
Kumar SS, Wen X, Yang Y, Buckmaster PS (2006) GABA-A receptor-mediated IPSCs and α1 subunit expression are not reduced in the substantia nigra pars reticulata of gerbils with inherited epilepsy. J. Neurophysiol. 95:2446-2455. [Link]
Kumar SS, Huguenard JR (2003) Pathway specific differences in subunit composition of synaptic NMDA receptors on pyramidal neurons in neocortex. J. Neurosci. 23(31):10074-10083. [Selected by the Faculty of 1000] [Link]
Kumar SS, Bacci A, Kharazia VK, Huguenard JR (2002) A developmental switch of AMPA-receptor subunits in neocortical pyramidal neurons. J. Neurosci. 22(8):3005-3015. [Link]
Kumar SS, Huguenard, JR (2001) Properties of excitatory synaptic connections mediated by the corpus callosum in the developing rat neocortex. J. Neurophysiol. 86(6):2973-2985. [Link]
Kumar SS, Faber DS (1998) Plasticity of first-order sensory synapses: Interactions between homosynaptic LTP and hetrosynaptically evoked dopaminergic potentiation. J. Neurosci. 19(5):1620-1635. [Link]
Silva A, Kumar SS, Pereda A, Faber DS (1995) Regulation of synaptic strength at mixed synapses: Effects of dopamine receptor blockade and protein kinase C activation. Neuropharmacology 34(11):1559-1565. [Link]
Kumar SS, Geuz A (1991) Adaptive Resonance Theory based adaptive pole placement for neurocontrollers. Neural Networks 4:319-335.
Komuro H, Obaid AL, Kumar SS, Salzberg BM (1990) Slices of mouse suprachiasmatic nucleus with attached optic nerve: recording of glutaminergic and GABA-ergic synaptic potentials using a voltage sensitive dye. Biological Bulletin 179(2):231.
Obaid AL, Komuro H, Kumar SS, Sugimori M, Lin JW, Cherkskey BD, Llinas R, Salzberg BM (1990) FTX, an HPLC-purified fraction of funnel web spider venom, blocks calcium channels required for normal release in peptidergic nerve terminals of mammals: optical measurements with and without voltage sensitive dyes. Biological Bulletin 179(2):232.