Ngā hua rapu - Neta Gazit
- E whakaatu ana i te 1 - 4 hua o te 4
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1
IGF-1 Receptor Differentially Regulates Spontaneous and Evoked Transmission via Mitochondria at Hippocampal Synapses mā Neta Gazit, Irena Vertkin, Ilana Shapira, Martin S. Helm, Edden Slomowitz, Maayan Sheiba, Yael Mor, Silvio O. Rizzoli, Inna Slutsky
I whakaputaina 2016Artigo -
2
APP Homodimers Transduce an Amyloid-β-Mediated Increase in Release Probability at Excitatory Synapses mā Hilla Fogel, Samuel Frère, Oshik Segev, Shashank Bharill, Ilana Shapira, Neta Gazit, Tiernan T. O’Malley, Edden Slomowitz, Yevgeny Berdichevsky, Dominic M. Walsh, Ehud Y. Isacoff, Joel A. Hirsch, Inna Slutsky
I whakaputaina 2014Artigo -
3
BDNF overexpression prevents cognitive deficit elicited by adolescent cannabis exposure and host susceptibility interaction mā Hadar Segal‐Gavish, Neta Gazit, Yael Barhum, Tali Ben‐Zur, Michal Taler, Shay Henry Hornfeld, Irit Gil‐Ad, Abraham Weizman, Inna Slutsky, Minae Niwa, Atsushi Kamiya, Akira Sawa, Daniel Offen, Ran Barzilay
I whakaputaina 2017Artigo -
4
Mitochondrial Regulation of the Hippocampal Firing Rate Set Point and Seizure Susceptibility mā Boaz Styr, N Gonen, Daniel Zarhin, Antonella Ruggiero, Refaela Atsmon, Neta Gazit, Gabriella Braun, Samuel Frère, Irena Vertkin, Ilana Shapira, Michal Harel, Leore R. Heim, Maxim Katsenelson, Ohad Rechnitz, Saja Fadila, Dori Derdikman, Moran Rubinstein, Tamar Geiger, Eytan Ruppin, Inna Slutsky
I whakaputaina 2019Artigo
Ngā utauta rapu:
Ngā marau whai pānga
Biology
Neuroscience
Biochemistry
Cell biology
Chemistry
Hippocampal formation
Receptor
Gene
Mitochondrion
Psychology
Amyloid (mycology)
Cannabinoid
Cannabis
Control engineering
DISC1
Dihydroorotate dehydrogenase
Dronabinol
Endocrinology
Engineering
Enzyme
Excitatory postsynaptic potential
Genetics
Hippocampus
Inorganic chemistry
Internal medicine
Medicine
Neurotransmission
Neurotrophic factors
Open field
Pharmacology