Sort by
Refine Your Search
-
Category
-
Country
-
Employer
- Duke University
- The University of Iowa
- VIB
- Associação do Instituto Superior Técnico para a Investigação e Desenvolvimento _IST-ID
- CNRS
- ETH Zürich
- Forschungszentrum Jülich
- Hospital del Mar Research Institute, Barcelona
- Institute of Neurosciences
- Karl Landsteiner University of Health Sciences
- Poznan University of Physical Education, POLAND
- Universitat de Barcelona
- University of Exeter
- University of Oxford
- University of Texas at El Paso
- University of Warwick
- 6 more »
- « less
-
Field
-
) to investigate the properties of human circuits using surgical brain tissue samples. The selected candidate will apply either advanced imaging or patch-clamp electrophysiology techniques directly to surgically
-
, genetically encoded biosensors and electrophysiology, providing the opportunity to investigate synaptic function from cellular and molecular mechanisms to neuronal circuits. The position is particularly suited
-
microscopy, electrophysiology, and in vivo models to address fundamental questions in neuronal and synaptic physiology and pathophysiology. The position provides an excellent opportunity to pursue a PhD
-
stimulation (iES) and electrophysiological recordings (iEEG and single-unit recordings), with noninvasive brain stimulation and whole-brain neuroimaging to uncover causal brain circuit mechanisms across
-
. The student will use state-of-the-art in vivo electrophysiology, fibre photometry, fast-scan cyclic voltammetry, targeted optogenetic stimulation, behavioural tasks and computational modelling to record
-
(knowledge of Spike2 software is an additional asset); Basic knowledge of electrophysiological techniques, cell biology, anatomy, physiology, and physics; Availability and willingness to work flexible hours
-
will possess sufficient specialist knowledge in cognitive neuroscience, developmental science, reading/language, visual attention, neuroimaging or electrophysiology to work within the established
-
a leading research center in multiscale models for cardiac electrophysiology, with focus on simulating intracardiac electrograms as an enabling technology for arrhythmia characterization. CaMo@KIT
-
The tasks to be carried out by the hired individual include: Behavioral experiments to assess itch in CPT1C knockout models Electrophysiological recordings (current-clamp and voltage-clamp) from neuronal
-
electrophysiology The student will join a highly collaborative environment involving clinicians, engineers, mathematicians, and computer scientists, with access to unique clinical datasets and state-of-the-art