Nicole Sabaliauskas

Affiliations: 
New York University, New York, NY, United States 
Area:
GABA receptors
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"Nicole Sabaliauskas"
Mean distance: 15.9 (cluster 6)
 
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Chiye Aoki grad student 2006-2011 NYU
 (The impact of female hormone fluctuations on hippocampal GABAa receptor plasticity and spatial learning.)
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Publications

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Shen H, Sabaliauskas N, Yang L, et al. (2016) Role of α4-containing GABAA receptors in limiting synaptic plasticity and spatial learning of female mice during the pubertal period. Brain Research
Sabaliauskas N, Shen H, Molla J, et al. (2014) Neurosteroid effects at α4βδ GABAA receptors alter spatial learning and synaptic plasticity in CA1 hippocampus across the estrous cycle of the mouse. Brain Research
Aoki C, Wable G, Chowdhury TG, et al. (2014) α4βδ-GABAARs in the hippocampal CA1 as a biomarker for resilience to activity-based anorexia. Neuroscience. 265: 108-23
Wable GS, Barbarich-Marsteller NC, Chowdhury TG, et al. (2014) Excitatory synapses on dendritic shafts of the caudal basal amygdala exhibit elevated levels of GABAA receptor α4 subunits following the induction of activity-based anorexia. Synapse (New York, N.Y.). 68: 1-15
Chowdhury TG, Wable GS, Sabaliauskas NA, et al. (2013) Adolescent female C57BL/6 mice with vulnerability to activity-based anorexia exhibit weak inhibitory input onto hippocampal CA1 pyramidal cells. Neuroscience. 241: 250-67
Sabaliauskas N, Shen H, Homanics GE, et al. (2012) Knockout of the γ-aminobutyric acid receptor subunit α4 reduces functional δ-containing extrasynaptic receptors in hippocampal pyramidal cells at the onset of puberty. Brain Research. 1450: 11-23
Aoki C, Sabaliauskas N, Chowdhury T, et al. (2012) Adolescent female rats exhibiting activity-based anorexia express elevated levels of GABA(A) receptor α4 and δ subunits at the plasma membrane of hippocampal CA1 spines. Synapse (New York, N.Y.). 66: 391-407
Shen H, Sabaliauskas N, Sherpa A, et al. (2010) A critical role for alpha4betadelta GABAA receptors in shaping learning deficits at puberty in mice. Science (New York, N.Y.). 327: 1515-8
Aoki C, Kojima N, Sabaliauskas N, et al. (2009) Drebrin a knockout eliminates the rapid form of homeostatic synaptic plasticity at excitatory synapses of intact adult cerebral cortex. The Journal of Comparative Neurology. 517: 105-21
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