investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity...

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Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between gene function and brain disorders-crucial step in the development of novel efficient therapies. Cellular and Molecular Neurosciences Faculties: Yoav Gothilf, Ilana Lotan, Pablo Blinder, Nathan Dascal, Moshe Rehavi, Uri Ashery, Izhak Michaelevski, Inna Slutsky, Ari Barzilai, Bernard Attali Research Techniques : Electrophysiology, Slice recording, Total Internal Reflection Fluorescence (TIRF), stochastic optical reconstruction microscopy (STORM), multi-photon imaging, Fluorescence Resonance Energy Transfer (FRET),

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Page 1: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between gene function and brain disorders-crucial step in the development of novel efficient therapies.

Cellular and Molecular Neurosciences

Faculties: Yoav Gothilf, Ilana Lotan, Pablo Blinder, Nathan Dascal, Moshe Rehavi, Uri Ashery, Izhak Michaelevski, Inna Slutsky, Ari Barzilai, Bernard Attali

Research Techniques: Electrophysiology, Slice recording, Total Internal Reflection Fluorescence (TIRF), stochastic optical reconstruction microscopy (STORM), multi-photon imaging, Fluorescence Resonance Energy Transfer (FRET), Molecular genetics and Biochemistry, Proteomics, Mass-Spectrometry, Model simulation, Immunohistochemistry, MRI, Behavioral tests

Page 2: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Yoav GothilfThe circadian clock system: underlying molecular mechanisms, functional development and light entrainment. Hypothalamic control of sexual maturation and reproduction. Zebrafish as a model to study Alzheimer's disease

Page 3: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Ilana Lotanvoltage-gated potassium (Kv) channels in transmitter and hormone release

Page 4: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Pablo Blinderphysiology and structure of the neurovascular interface under normal and pathological conditions

Page 5: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Nathan DascalMolecular mechanisms of signal transduction by neurotransmitters in neurons, and their relation to cell function and to human disease

Page 6: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Moshe Rehavimolecular mechanisms of drugs for neuropsychiatric disorders

Page 7: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Uri Asherymolecular mechanisms of synaptic transmission and plasticity under normal conditions, during neurodegenerative diseases and in aging

The synaptic vesicle cycle

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8.6

8.4

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Page 8: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Izhak MichaelevskiMolecular and Functional Neurobiology of Mechanisms of the Episodic Memory and its impairment

Page 9: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Inna SlutskyRegulation of Hippocampal Plasticity: From Single Synapse Dynamics to Alzheimer’s Disease

Page 10: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Ari BarzilaiEffects of mal-functioning DNA damage response on neuro-glio-vascular units in brain diseases. Molecular mechanisms of optic nerve degeneration and regeneration

Page 11: Investigate biophysical, molecular and cellular mechanisms of synaptic transmission and plasticity under normal and pathological conditions-link between

Bernard AttaliStructure, biophysics and physiology of normal and diseased potassium channels in the brain and heart

Epilepsy