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The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 8, 2014
Parvalbumin and GAD65 interneuron inhibition in the ventral hippocampus induces distinct behavioral deficits relevant to schizophreniaRobin Nguyen, Mark D Morrissey, Vivek Mahadevan, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|June 23, 2012
Hyperpolarizing GABAergic transmission requires the KCC2 C-terminal ISO domainBrooke A Acton, Vivek Mahadevan, Adrianna Mercado, et al.
Frontiers in Cellular Neuroscience|October 7, 2015
Neto2-null mice have impaired GABAergic inhibition and are susceptible to seizuresVivek Mahadevan, Zahra Dargaei, Evgueni A Ivakine, et al.
Neuron|April 28, 2019
Neocortical Projection Neurons Instruct Inhibitory Interneuron Circuit Development in a Lineage-Dependent MannerJason C Wester, Vivek Mahadevan, Christopher T Rhodes, et al.
Frontiers in Cellular Neuroscience|March 13, 2020
Depolarizing GABA Transmission Restrains Activity-Dependent Glutamatergic Synapse Formation in the Developing Hippocampal CircuitChristopher K Salmon, Horia Pribiag, Claire Gizowski, et al.
Frontiers in Molecular Neuroscience|October 11, 2021
NMDARs Drive the Expression of Neuropsychiatric Disorder Risk Genes Within GABAergic Interneuron Subtypes in the Juvenile BrainVivek Mahadevan, Apratim Mitra, Yajun Zhang, et al.
The Journal of Biological Chemistry|February 26, 2017
A kainate receptor subunit promotes the recycling of the neuron-specific K+-Cl- co-transporter KCC2 in hippocampal neuronsJessica C Pressey, Vivek Mahadevan, C Sahara Khademullah, et al.
Elife|October 14, 2017
Native KCC2 interactome reveals PACSIN1 as a critical regulator of synaptic inhibitionVivek Mahadevan, C Sahara Khademullah, Zahra Dargaei, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 13, 2013
Neto2 is a KCC2 interacting protein required for neuronal Cl- regulation in hippocampal neuronsEvgueni A Ivakine, Brooke A Acton, Vivek Mahadevan, et al.
Cell Reports|June 10, 2014
Kainate receptors coexist in a functional complex with KCC2 and regulate chloride homeostasis in hippocampal neuronsVivek Mahadevan, Jessica C Pressey, Brooke A Acton, et al.
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