Walter E. Babiec, SB, SM

Affiliations: 
Neurobiology University of California, Los Angeles, Los Angeles, CA 
Area:
neural microcircuits, LTP, plasticity, NMDA/AMPA receptors, motoneurons, neural control of breathing
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"Walter Babiec"
Mean distance: 13.83 (cluster 6)
 
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Jack L. Feldman grad student 2005-2011 UCLA
 (Long-term Enhancement of Respiratory-Related Activity by Increasing the AMPA Receptor-Mediated Excitability of Hypoglossal Motoneurons In Vitro.)
Thomas J. O'Dell post-doc 2012- UCLA
Peyman Golshani post-doc 2011-2012 UCLA
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Publications

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Jami SA, Wilkinson BJ, Guglietta R, et al. (2023) Functional and phosphoproteomic analysis of β-adrenergic receptor signaling at excitatory synapses in the CA1 region of the ventral hippocampus. Scientific Reports. 13: 7493
Babiec WE, O'Dell TJ. (2017) Novel Ca(2+)-Dependent Mechanisms Regulate Spontaneous Release at Excitatory Synapses onto CA1 Pyramidal Cells. Journal of Neurophysiology. jn.00628.2017
Babiec WE, Jami SA, Guglietta R, et al. (2017) Differential Regulation of NMDA Receptor-Mediated Transmission by SK Channels Underlies Dorsal-Ventral Differences in Dynamics of Schaffer Collateral Synaptic Function. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Babiec WE, Guglietta R, O'Dell TJ. (2016) Basal levels of AMPA receptor GluA1 subunit phosphorylation at threonine 840 and serine 845 in hippocampal neurons. Learning & Memory (Cold Spring Harbor, N.Y.). 23: 127-33
Babiec WE, O'Dell TJ. (2015) Putting heterosynaptic plasticity in its place - as easy as PIE. The Journal of Physiology. 593: 3395-6
Babiec WE, Guglietta R, Jami SA, et al. (2014) Ionotropic NMDA receptor signaling is required for the induction of long-term depression in the mouse hippocampal CA1 region. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 34: 5285-90
Babiec WE, Faull KF, Feldman JL. (2012) Cyclothiazide-induced persistent increase in respiratory-related activity in vitro. The Journal of Physiology. 590: 4897-915
Saywell SA, Babiec WE, Neverova NV, et al. (2010) Protein kinase G-dependent mechanisms modulate hypoglossal motoneuronal excitability and long-term facilitation. The Journal of Physiology. 588: 4431-9
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