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Moshe Parnas
Moshe Parnas
Verified email at tauex.tau.ac.il - Homepage
Title
Cited by
Cited by
Year
Carvacrol is a novel inhibitor of Drosophila TRPL and mammalian TRPM7 channels
M Parnas, M Peters, D Dadon, S Lev, I Vertkin, I Slutsky, B Minke
Cell calcium 45 (3), 300-309, 2009
1962009
Odor discrimination in Drosophila: from neural population codes to behavior
M Parnas, AC Lin, W Huetteroth, G Miesenböck
Neuron 79 (5), 932-944, 2013
1492013
INSIGHTS ON TRP CHANNELS FROM IN VIVO STUDIES IN DROSOPHILA
B Minke, M Parnas
Annu. Rev. Physiol. 68, 649-684, 2006
922006
Membrane lipid modulations remove divalent open channel block from TRP-like and NMDA channels
M Parnas, B Katz, S Lev, V Tzarfaty, D Dadon, A Gordon-Shaag, ...
Journal of Neuroscience 29 (8), 2371-2383, 2009
622009
Odorant binding protein 69a connects social interaction to modulation of social responsiveness in Drosophila
A Bentzur, A Shmueli, L Omesi, J Ryvkin, JM Knapp, M Parnas, FP Davis, ...
PLoS Genetics 14 (4), e1007328, 2018
502018
Open Channel Block by Ca2+ Underlies the Voltage Dependence of Drosophila TRPL Channel
M Parnas, B Katz, B Minke
The Journal of general physiology 129 (1), 17-28, 2007
402007
Inhibitory muscarinic acetylcholine receptors enhance aversive olfactory learning in adult Drosophila
N Bielopolski, H Amin, AA Apostolopoulou, E Rozenfeld, H Lerner, ...
Elife 8, e48264, 2019
362019
Carvacrol together with TRPC1 elimination improve functional recovery after traumatic brain injury in mice
M Peters, V Trembovler, A Alexandrovich, M Parnas, L Birnbaumer, ...
Journal of Neurotrauma 29 (18), 2831-2834, 2012
312012
Linoleic acid inhibits TRP channels with intrinsic voltage sensitivity: Implications on the mechanism of linoleic acid action
M Parnas, M Peters, B Minke
Channels 3 (3), 164-166, 2009
252009
Differential Role for a Defined Lateral Horn Neuron Subset in Naïve Odor Valence in Drosophila
H Lerner, E Rozenfeld, B Rozenman, W Huetteroth, M Parnas
Scientific reports 10 (1), 6147, 2020
212020
Lateral axonal modulation is required for stimulus-specific olfactory conditioning in Drosophila
JE Manoim, AM Davidson, S Weiss, T Hige, M Parnas
Current Biology 32 (20), 4438-4450. e5, 2022
182022
PySight: plug and play photon counting for fast continuous volumetric intravital microscopy
H Har-Gil, L Golgher, S Israel, D Kain, O Cheshnovsky, M Parnas, ...
Optica 5 (9), 1104-1112, 2018
182018
GPCR voltage dependence controls neuronal plasticity and behavior
E Rozenfeld, M Tauber, Y Ben-Chaim, M Parnas
Nature Communications 12 (1), 7252, 2021
142021
Glial ER and GAP junction mediated Ca2+ waves are crucial to maintain normal brain excitability
S Weiss, LC Clamon, JE Manoim, KG Ormerod, M Parnas, JT Littleton
Glia 70 (1), 123-144, 2022
122022
Muscarinic modulation of antennal lobe GABAergic local neurons shapes odor coding and behavior
E Rozenfeld, H Lerner, M Parnas
Cell Reports 29 (10), 3253-3265. e4, 2019
102019
Olfactory stimuli and moonwalker SEZ neurons can drive backward locomotion in Drosophila
S Israel, E Rozenfeld, D Weber, W Huetteroth, M Parnas
Current Biology 32 (5), 1131-1149. e7, 2022
92022
6.4 Biophysics of TRP channels
M Parnas, M Peters, B Minke
Elsevier, 2012
62012
Two Parallel Pathways Mediate Olfactory-Driven Backward Locomotion
S Israel, E Rozenfeld, D Weber, W Huetteroth, M Parnas
bioRxiv, 2020.11. 23.393819, 2020
22020
Disruption of Glial Ca2+ Oscillations at the Drosophila Blood-Brain Barrier Predisposes to Seizure-Like Behavior
S Weiss, LC Clamon, JE Manoim, KG Ormerod, M Parnas, JT Littleton
bioRxiv, 2020.09. 16.285841, 2020
12020
Inhibitory muscarinic acetylcholine receptors enhance aversive olfactory conditioning in adult Drosophila
N Bielopolski, H Amin, AA Apostolopoulou, E Rozenfeld, H Lerner, ...
bioRxiv, 382440, 2018
12018
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