Vatsala Thirumalai

National Center for Biological Sciences, Bangalore 
circuits, computation & theory
"Vatsala Thirumalai"
Mean distance: 14.66 (cluster 6)


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Eve Marder grad student Brandeis
 (Implications of cotransmission and neuromodulation for neural network function.)
Hollis Cline post-doc CSHL
Michael J. O'Donovan research scientist National Institutes of Health
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Sitaraman S, Yadav G, Agarwal V, et al. (2021) Gjd2b-mediated gap junctions promote glutamatergic synapse formation and dendritic elaboration in Purkinje neurons. Elife. 10
Narayanan S, Thirumalai V. (2019) Contributions of the Cerebellum for Predictive and Instructional Control of Movement. Current Opinion in Physiology. 8: 146-151
Kondrychyn I, Robra L, Thirumalai V. (2017) Transcriptional Complexity and Distinct Expression Patterns of auts2 Paralogs in Danio rerio. G3 (Bethesda, Md.)
Robra L, Thirumalai V. (2016) The Intracellular Signaling Molecule Darpp-32 Is a Marker for Principal Neurons in the Cerebellum and Cerebellum-Like Circuits of Zebrafish. Frontiers in Neuroanatomy. 10: 81
Sengupta M, Thirumalai V. (2015) AMPA receptor mediated synaptic excitation drives state-dependent bursting in Purkinje neurons of zebrafish larvae. Elife. 4
Bakthavatsalam S, Das Sharma S, Sonawane M, et al. (2014) A zebrafish model of manganism reveals reversible and treatable symptoms that are independent of neurotoxicity. Disease Models & Mechanisms. 7: 1239-51
Jabeen S, Thirumalai V. (2013) Distribution of the gap junction protein connexin 35 in the central nervous system of developing zebrafish larvae. Frontiers in Neural Circuits. 7: 91
Thirumalai V, Behrend RM, Birineni S, et al. (2013) Preservation of VGLUT1 synapses on ventral calbindin-immunoreactive interneurons and normal locomotor function in a mouse model of spinal muscular atrophy. Journal of Neurophysiology. 109: 702-10
Thirumalai V, Cline HT. (2008) Endogenous dopamine suppresses initiation of swimming in prefeeding zebrafish larvae. Journal of Neurophysiology. 100: 1635-48
Thirumalai V, Cline HT. (2008) A commanding control of behavior. Nature Neuroscience. 11: 246-8
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