Postdocs

©

Dr. Mohammed Barham

A07

A07 Role of synaptic lipid modulated cortical excitability in motor control

©MedizinFotoKöln

Dr. Gerard N. Bischof

C04

C04 Apraxia in Alzheimer’s disease: Plastic reorganization of praxis networks in response to chronically progressive dysfunction

©MedizinFotoKöln

Dr. Heiko Endle

A07

A07 Role of synaptic lipid modulated cortical excitability in motor control

©MedizinFotoKöln

Dr. Birgit Engeland

B01

B01 Developmental mechanism affecting motor skills and motor control

©MedizinFotoKöln

Dr. Kathrin Giehl

C03 | C04

C03 Developmental mechanism affecting motor skills and motor control

C04 Apraxia in Alzheimer’s disease: Plastic reorganization of praxis networks in response to chronically progressive dysfunction

©MedizinFotoKöln

Dr. Lara-Jane Kepser

A07

A07 Role of synaptic lipid modulated cortical excitability in motor control

©MedizinFotoKöln

Dr. Sylvia Latarnik

C04

C04 Apraxia in Alzheimer’s disease: Plastic reorganization of praxis networks in response to chronically progressive dysfunction

sylvia.latarnik@uk-koeln.de

©

Dr. Lisa Leehr

A07

A07 Role of synaptic lipid modulated cortical excitability in motor control

©MedizinFotoKöln

Dr. Nan Liu

B04

B04 Motor control under uncertainty in the healthy human brain

©MedizinFotoKöln

Dr. Stephan Marguet

B01

B01 Developmental mechanism affecting motor skills and motor control

©private

Dr. Susanne Meinert

A07

A07 Role of synaptic lipid modulated cortical excitability in motor control

©private

Dr. Laura Perez Revuelta

A03

A03 Motor learning-induced plasticity of cerebellar purkinje neuron connectivity

©private

Dr. Anne Petzold

A04

A04 The role of the reward system in obesity- and ageing-associated changes of motor behaviours

©MedizinFotoKöln

Nora Rautenberg

C01

 C01 Identification and selective stimulation of motor recovery-related functional networks after experimental stroke

©MedizinFotoKöln

Dr. Lionel Rigoux

C06

C06 Major depression as a transient functional lesion model of motor control

©MedizinFotoKöln

Dr. Nils Rosjat

B03

B03 Modelling neuroal network dynamics underlying movements in health and disease

©MedizinFotoKöln

Dr. Vahid Rostami

A06

A06 Sensory-motor pathways controlling voluntary movements in health and disease

©MedizinFotoKöln

Dr. Malte Stockebrand

B01

B01 Developmental mechanism affecting motor skills and motor control

©MedizinFotoKöln

Dr. Michal Szczepanik

INF

INF Data Management for Computational Modelling

©MedizinFotoKöln

Dr. Masoud Tahmasian

B05

B05 Single-case predictions of motor abilities in helath and disease

©MedizinFotoKöln

Dr. Janine Tutas

A02

A02 Dysregulation of the autophagy-endolysosomal system as a putative pathological mechanism behind the motor control dysfunction

©MedizinFotoKöln

Dr. Pascal vogel

B01

B01 Developmental mechanism affecting motor skills and motor control

©private

Dr. Therese Wolfenstetter

A07

A07 Role of synaptic lipid modulated cortical excitability in motor control

©MedizinFotoKöln

Dr. Azamat Yeldesbay

B03

B03 Modelling neuroal network dynamics underlying movements in health and disease

©MedizinFotoKöln

Dr. Mingyu Yang

Jun. Res. Group | Dr. Valtcheva