The following courses and further activities are offered by the CSN. All courses are open to all students within GGNB and to students of the Weizmann Institute of Science (WIS). All courses will be offered between April and September unless indicated otherwise. Specific dates will be circulated among the participants after students have signed up for the courses.
Supervisor(s) |
Title of Course |
Bähr |
Introduction to animal experiments |
Gail |
Introduction to Matlab in Systems Neuroscience |
Antal |
Transcranial magnetic- and electrical stimulation |
Antal |
Auditory and visual evoked potentials |
Geisel, Timme, Wolf |
Theoretical and Computational Neuroscience: Collective Dynamics Biological Neural Networks I |
Gail, Treue |
Non-invasive probing of brain function - Advanced Methods Course in Psychophysics |
Ehrenreich |
Translational Neuroscience: (A) Schizophrenia, (B) Multiple Sclerosis |
Fischer A |
Chromatin-immunoprecipitation and epigenomic gene-profiling in the adult brain |
Moser, Oshima-Takago |
Basics of electrophysiological measurements in slice preparations |
Fiala, Göpfert |
Drosophila Neurogenetics |
Nave, Rossner |
Microdissection combined with RNA analysis in the brain |
Nave, Möbius |
Subcellular localization of proteins by immunoelectron microscopy of cryosections |
Fischer A |
Chromatin-immunoprecipitation and epigenomic gene-profiling in the adult brain |
Nave |
Subcellular localization of proteins by immunoelectron microscopy of cryosections |
Bähr |
Introduction to animal experiments |
Bayer |
Alzheimer's disease: Behavioural and neuropathological analysis of transgenic mouse models |
Fiala, Göpfert |
Drosophila Neurogenetics |
Nave |
Microdissection combined with RNA analysis in the brain |
Antal |
Auditory and visual evoked potentials |
Antal |
Transcranial magnetic- and electrical stimulation |
Ehrenreich |
Translational Neuroscience: (A) Schizophrenia, (B) Multiple Sclerosis |
Fischer J |
Introduction to bioacoustic field methods: from recording to statistics |
Gail |
Introduction to Matlab in Systems Neuroscience |
Geisel et al. |
Stochastic processes in physics and biology |
Geisel, Timme, Wolf |
Theoretical and Computational Neuroscience: Collective Dynamics Biological Neural Networks II |
Geisel, Wolf et al. |
Theoretical and Computational Neuroscience: Collective Dynamics Biological Neural Networks I |
Moser, Treue, Göpfert, Fiala |
Fundamental principles of sensory processing |
Nave |
Subcellular localization of proteins by immunoelectron microscopy of cryosections |
Fischer A |
Chromatin-immunoprecipitation and epigenomic gene-profiling in the adult brain |
Bähr |
Introduction to animal experiments |
Bayer |
Alzheimer's disease: Behavioural and neuropathological analysis of transgenic mouse models |
Brose |
Hippocampal neurons primary culture and transfection |
Fiala, Göpfert |
Drosophila neurogenetics |
Nave |
Microdissection combined with RNA analysis in the brain |
Ehrenreich |
Translational Neuroscience: Schizophrenia (module A), Multiple Sklerosis (module B) |
Fiala, Göpfert, Moser, Wolf |
Fundamental principles of sensory processing |
Fischer J |
Introduction to bioacoustic field methods: from recording to statistics |
Gail |
Introduction to Matlab in Systems Neuroscience |
Gail, Treue |
Non-invasive probing of brain function Advanced Methods Course in Psychophysics |
Geisel, Wolf |
Theoretical and Computational Neuroscience: Collective Dynamics Biological Neural Networks I |
Geisel, Wolf |
Theoretical and Computational Neuroscience: Collective Dynamics Biological Neural Networks II |
Moser, Antal |
Auditory and visual evaked potentials |
Paulus, Antal |
Transcranial magnetic- and electrical stimulation |
Gail |
Introduction to Matlab in sensory system neuroscience |
Bähr, Lingor |
Introduction to animal experiments |
Bayer, Wirths |
Alzheimer's disease: Behavioural and neuropathological analysis of transgenic mouse models |
Brose, Varoqueaux, Soykan |
Hippocampal neurons primary culture and transfection |
Ehrenreich, Begemann, Bartels |
Translational Neuroscience |
Gail, Treue |
Non-invasive probing of brain function - Introduction to psychophysics |
Geisel, Nagler, Witt, Tchumatchenko |
How does Nature generate Time Series? Time Series Analysis and Modeling for Dummies |
Geisel, Timme, Wolf |
Theoretical and Computational Neuroscience: Collective Dynamics Biological Neural Networks I |
Heinrich |
Neuronal basis of acoustic communication in insects (II): Control of sound production |
Moser, Antal, Strenzke |
Auditory and visual evoked potential |
Moser, Göpfert, Fiala, Wolf, Schild |
Fundamental Principles of Sensory Processing |
Nave, Möbius |
Subcellular localization of proteins by immunoelectron microscopy of cryosections |
Paulus, Antal |
Transcranial magnetic- and direct current stimulation |
Brose, Varoqueaux |
Hippocampal neurons primary culture and transfection |
Fischer J, Hammerschmidt, Keller |
Introduction to bioacoustic field methods: from recordings to statistics |
Gail, Treue |
Non-invasive probing of brain function - An introduction to psychophysical methods |
Geisel, Thiemann, Brune |
Introduction to scientific computing in C |
Heinrich |
Neuronal basis of acoustic communication in insects (II): Control of sound production |
Moser, Nouvian, Antal, Strenzke, Hoch |
Auditory and visual evoked potentials |
Paulus, Antal |
Transcranial magnetic- and direct current stimulation |
Stumpner |
Neuronal basis of acoustic communication in insects (I): The auditory system |