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DFG Contacts

Stand: December 12, 2018

Dr. Andreas Görlich

Programme Officer
Life Sciences 2: Microbiology, Immunology, Neurosciences

E-Mail: andreas.goerlich@dfg.de
Telephone: +49 (228) 885-2566
Telefax: +49 (228) 885-713320
Kennedyallee 40
53175 Bonn

Tasks and Responsibilities

Scientific Areas of Responsibility

206-02 Neurosciences
206-03 Neurosciences

Scientific Areas of Responsibility (Deputy Contact)

206-01 Neurosciences
206-05 Neurosciences

Coordinated Programmes (procedural matters)

Priority Programmes

1757 Functional specializations of neuroglia as critical determinants of brain activity

Research Units

2143 Interneuron Plasticity – From Mechanisms to Higher Brain Functions
2705 Dissection of a Brain Circuit: Structure, Plasticity and Behavioral Function of the Drosophila mushroom body
2795 Synapses under stress: Early events induced by metabolic failure at glutamatergic synapses

Coordinated Programmes (scientific matters)


169 Crossmodal Learning: Adaptivity, Prediction and Interaction

Clusters of Excellence

171 Nanoscale Microscopy and Molecular Physiology of the Brain
307 Werner Reichardt Centre for Integrative Neuroscience (CIN)

Collaborative Research Centres

870 Assembly and Function of Neuronal Circuits
874 Integration and Representation of Sensory Processes
1080 Molecular and Cellular Mechanisms of Neural Homeostasis
1089 Synaptic Micronetworks in Health and Disease
1134 Functional ensembles: cellular components, patterned activity and plasticity of co-active neurons in local networks
1158 From nociception to chronic pain: Structure-function properties of neural pathways and their reorganisation
1233 Robust Vision — Inference Principles and Neural Mechanisms
1286 Quantitative Synaptology
1315 Mechanisms and disturbances in memory consolidation: From synapses to systems

Research Training Groups

1589 Sensory Computation in Neural Systems
1885 Molecular basis of sensory biology
1960 Neural Circuit Analysis on the Cellular and Subcellular Level
2416 MultiSenses-MultiScales: Novel approaches to decipher neural processing in multisensory integration