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Interneuron Synaptic Plasticity — FOR 2143

Nur im aktuellen Bereich. Title: Interneuron Synaptic Plasticity. Subtitle: From Mechanism to Function. DFG funding: 2,23 Mio €. Prof Dr. Marlene Bartos. Institut für Physiologie I. Prof Dr. Imre Vida. NeuroCure Cluster of Excellence. Institut für Integrative Neuroanatomie. Prof Dr. Peer Wulff. Institut für Physiologie I. Dagmar.sonntag@physiologie.uni-freiburg.de.

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Interneuron Synaptic Plasticity — FOR 2143 | for2143.uni-freiburg.de Reviews
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Nur im aktuellen Bereich. Title: Interneuron Synaptic Plasticity. Subtitle: From Mechanism to Function. DFG funding: 2,23 Mio €. Prof Dr. Marlene Bartos. Institut für Physiologie I. Prof Dr. Imre Vida. NeuroCure Cluster of Excellence. Institut für Integrative Neuroanatomie. Prof Dr. Peer Wulff. Institut für Physiologie I. Dagmar.sonntag@physiologie.uni-freiburg.de.
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Interneuron Synaptic Plasticity — FOR 2143 | for2143.uni-freiburg.de Reviews

https://for2143.uni-freiburg.de

Nur im aktuellen Bereich. Title: Interneuron Synaptic Plasticity. Subtitle: From Mechanism to Function. DFG funding: 2,23 Mio €. Prof Dr. Marlene Bartos. Institut für Physiologie I. Prof Dr. Imre Vida. NeuroCure Cluster of Excellence. Institut für Integrative Neuroanatomie. Prof Dr. Peer Wulff. Institut für Physiologie I. Dagmar.sonntag@physiologie.uni-freiburg.de.

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for2143.uni-freiburg.de for2143.uni-freiburg.de
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Summary — Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143)

http://www.for2143.uni-freiburg.de/Aims

Nur im aktuellen Bereich. Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143). A fundamental feature of the brain is its ability to acquire and store novel information, which enables the individual organism to adapt to its changing environment. Learning and memory are dependent on the capacity of nerve cells to change the efficacy. Of their communication points, the synapses. To achieve our goal, we will apply an interdisciplinary approach,. Ihrer Kommunikationsstellen, der Synapsen. Ansatz da...

2

Current Events for FOR2143 — Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143)

http://www.for2143.uni-freiburg.de/for2143-events

Nur im aktuellen Bereich. Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143). Current Events for FOR2143. Prof Dr. Marlene Bartos. Institut für Physiologie I. Prof Dr. Imre Vida. NeuroCure Cluster of Excellence. Institut für Integrative Neuroanatomie. Prof Dr. Peer Wulff. Institut für Physiologie I. Dagmar.sonntag@physiologie.uni-freiburg.de.

3

TP4 Subcellular distribution and dynamics of glutamate receptors and Cav channels in interneuron plasticity — Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143)

http://www.for2143.uni-freiburg.de/projects/tp4

Nur im aktuellen Bereich. Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143). TP4 Subcellular distribution and dynamics of glutamate receptors and Cav channels in interneuron plasticity. PD Dr Akos Kulik. Prof Dr. Marlene Bartos. Institut für Physiologie I. Prof Dr. Imre Vida. NeuroCure Cluster of Excellence. Institut für Integrative Neuroanatomie. Prof Dr. Peer Wulff. Institut für Physiologie I. Dagmar.sonntag@physiologie.uni-freiburg.de.

4

TP5 Functional relevance of interneuron plasticity in the dentate gyrus — Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143)

http://www.for2143.uni-freiburg.de/projects/tp5

Nur im aktuellen Bereich. Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143). TP5 Functional relevance of interneuron plasticity in the dentate gyrus. Prof Dr. Peer Wulff. Prof Dr. Marlene Bartos. Institut für Physiologie I. Prof Dr. Imre Vida. NeuroCure Cluster of Excellence. Institut für Integrative Neuroanatomie. Prof Dr. Peer Wulff. Institut für Physiologie I. Dagmar.sonntag@physiologie.uni-freiburg.de.

5

Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143)

http://www.for2143.uni-freiburg.de/sitemap

Nur im aktuellen Bereich. Interneuron Synaptic Plasticity - DFG Research Unit (FOR 2143). Eine Übersicht der verfügbaren Artikel dieser Webseite. Bewegen Sie den Mauszeiger über einen Artikel und lassen Sie ihn dort für einige Sekunden, um eine Beschreibung des Artikels zu erhalten.

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physiologie.uni-freiburg.de physiologie.uni-freiburg.de

Physiology — Institute of Physiology — University of Freiburg, Germany

http://www.physiologie.uni-freiburg.de/index_p2.html

Only in current section. BKca-channels: After all it's Ca2 only. Mechanism of GABAB Receptor desensitization - KCTD-action on G Protein βγ Subunits. Automated Formation of Lipid Membrane Microarrays for Ionic Single-Molecule Sensing with Protein Nanopores. Cornichon 2 - distinction between fast and slow EPSCs. Spatial and temporal dynamics of the AMPA-Receptor Proteome. Membrane Physiology and -Technology. Systemic and Cellular Neurophysiology. FENS 2016 - Satellite Event. Publications A. Just. Modern ma...

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Service Staff — Institute of Physiology — University of Freiburg, Germany

http://www.physiologie.uni-freiburg.de/service-staff

Only in current section. BKca-channels: After all it's Ca2 only. Mechanism of GABAB Receptor desensitization - KCTD-action on G Protein βγ Subunits. Automated Formation of Lipid Membrane Microarrays for Ionic Single-Molecule Sensing with Protein Nanopores. Cornichon 2 - distinction between fast and slow EPSCs. Spatial and temporal dynamics of the AMPA-Receptor Proteome. Membrane Physiology and -Technology. Systemic and Cellular Neurophysiology. FENS 2016 - Satellite Event. Publications A. Just.

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Institute of Physiology — University of Freiburg, Germany

https://www.physiologie.uni-freiburg.de/teaching/downloads/vorlesung

Only in current section. BKca-channels: After all it's Ca2 only. Mechanism of GABAB Receptor desensitization - KCTD-action on G Protein βγ Subunits. Automated Formation of Lipid Membrane Microarrays for Ionic Single-Molecule Sensing with Protein Nanopores. Cornichon 2 - distinction between fast and slow EPSCs. Spatial and temporal dynamics of the AMPA-Receptor Proteome. Membrane Physiology and -Technology. Systemic and Cellular Neurophysiology. FENS 2016 - Satellite Event. Publications A. Just.

physiologie.uni-freiburg.de physiologie.uni-freiburg.de

Institute of Physiology — University of Freiburg, Germany

https://www.physiologie.uni-freiburg.de/teaching/courses

Only in current section. BKca-channels: After all it's Ca2 only. Mechanism of GABAB Receptor desensitization - KCTD-action on G Protein βγ Subunits. Automated Formation of Lipid Membrane Microarrays for Ionic Single-Molecule Sensing with Protein Nanopores. Cornichon 2 - distinction between fast and slow EPSCs. Spatial and temporal dynamics of the AMPA-Receptor Proteome. Membrane Physiology and -Technology. Systemic and Cellular Neurophysiology. FENS 2016 - Satellite Event. Publications A. Just.

physiologie.uni-freiburg.de physiologie.uni-freiburg.de

Open Positions — Institute of Physiology — University of Freiburg, Germany

http://www.physiologie.uni-freiburg.de/open-positions

Only in current section. BKca-channels: After all it's Ca2 only. Mechanism of GABAB Receptor desensitization - KCTD-action on G Protein βγ Subunits. Automated Formation of Lipid Membrane Microarrays for Ionic Single-Molecule Sensing with Protein Nanopores. Cornichon 2 - distinction between fast and slow EPSCs. Spatial and temporal dynamics of the AMPA-Receptor Proteome. Membrane Physiology and -Technology. Systemic and Cellular Neurophysiology. FENS 2016 - Satellite Event. Publications A. Just.

physiologie.uni-freiburg.de physiologie.uni-freiburg.de

Institute of Physiology — University of Freiburg, Germany

https://www.physiologie.uni-freiburg.de/teaching/downloads

Only in current section. BKca-channels: After all it's Ca2 only. Mechanism of GABAB Receptor desensitization - KCTD-action on G Protein βγ Subunits. Automated Formation of Lipid Membrane Microarrays for Ionic Single-Molecule Sensing with Protein Nanopores. Cornichon 2 - distinction between fast and slow EPSCs. Spatial and temporal dynamics of the AMPA-Receptor Proteome. Membrane Physiology and -Technology. Systemic and Cellular Neurophysiology. FENS 2016 - Satellite Event. Publications A. Just.

ineuron.org ineuron.org

Home [the iNeuronLab pages]

http://www.ineuron.org/dokuwiki

Receptor subunit in scattered somata of GABAergic interneurons. In the hippocampal CA1 area. We are a neuroscience research lab located at the Charite, Berlin. Part of the Institute of Integrative Neuroanatomy. And member of the NeuroCure Cluster. The Bernstein Center for Computational Neuroscience Berlin ( BCCN Berlin. And the GRK 1589. Research Training Group Sensory Computation in Neural Systems . Our group is also member of the DFG Research Unit Interneuron Synaptic Plasticity ( FOR 2143.

physiologie.uni-freiburg.de physiologie.uni-freiburg.de

Institute of Physiology — University of Freiburg, Germany

http://www.physiologie.uni-freiburg.de/sitemap

Only in current section. BKca-channels: After all it's Ca2 only. Mechanism of GABAB Receptor desensitization - KCTD-action on G Protein βγ Subunits. Automated Formation of Lipid Membrane Microarrays for Ionic Single-Molecule Sensing with Protein Nanopores. Cornichon 2 - distinction between fast and slow EPSCs. Spatial and temporal dynamics of the AMPA-Receptor Proteome. Membrane Physiology and -Technology. Systemic and Cellular Neurophysiology. FENS 2016 - Satellite Event. Publications A. Just.

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Interneuron Synaptic Plasticity — FOR 2143

Nur im aktuellen Bereich. Title: Interneuron Synaptic Plasticity. Subtitle: From Mechanism to Function. DFG funding: 2,23 Mio €. Prof Dr. Marlene Bartos. Institut für Physiologie I. Prof Dr. Imre Vida. NeuroCure Cluster of Excellence. Institut für Integrative Neuroanatomie. Prof Dr. Peer Wulff. Institut für Physiologie I. Dagmar.sonntag@physiologie.uni-freiburg.de.

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