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University of Groningen invites applications for a First Stage Researcher position focusing on neural population dynamics in behaving mice. The project uses miniature calcium imaging and RFID-based tracking to link neural activity with behavior across lab and outdoor environments.
Candidates should have a Master’s in neuroscience or related fields, plus experience in behavioral and computational neuroscience and proficiency in Python or Matlab. English proficiency is required.
Organisation/Company University of Groningen Research Field Neurosciences » Neurobiology Neurosciences » Neurophysiology Researcher Profile First Stage Researcher (R1) Application Deadline 17 Sep 2026 - 22:00 (UTC) Country Netherlands Type of Contract Temporary Job Status Not Applicable Hours Per Week 38.0 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No
Understanding how patterns of neural activity give rise to behavior is a central challenge in neuroscience. Most of what we know about this relationship comes from rodent experiments performed under tightly controlled laboratory conditions. While these approaches are essential for identifying neural mechanisms, they capture only a fraction of the behavioral repertoire animals display in more complex environments.
What are you going to do?
In this project, you will investigate how neural population activity relates to behavior across environments ranging from standardized laboratory assays to large outdoor enclosures. Using miniaturized calcium imaging, you will record the activity of large populations of neurons in freely behaving mice and determine how neural activity relates to moment-to-moment behavioral changes.
A major component of the project will make use of large outdoor mouse enclosures at the University of Groningen. These environments allow mice to express a rich repertoire of species-typical behaviors, including exploration, shelter use, social interactions and responses to changing environmental conditions. You will combine RFID tracking, multi-camera recordings and deep-learning-based behavioral analysis to identify reproducible behavioral states and understand how they vary across individuals, sexes and environmental contexts.
Pharmacological manipulations will be used to experimentally validate specific behavioral states and investigate how they are modulated by neural systems involved in anxiety and behavioral adaptation. You will subsequently combine wireless miniature calcium imaging with automated behavioral monitoring to uncover the neural dynamics associated with these behaviors.
Methods: miniature calcium imaging, deep-learning-based behavioral tracking, RFID tracking, computational analysis of neural population activity, stereotaxic surgery, pharmacological manipulations and histology.
Candidates who do not meet all formal criteria but demonstrate strong affinity and motivation for the topic are strongly encouraged to apply
Ideally, you have:
What can you expect from us?
Information about applying
When scheduling meetings, we will take your schedule into account as much as possible. The University of Groningen considers social safety important. We strive to be a university where staff and students feel respected and at home, regardless of differences in background, experiences, perspectives, and identity. For more information, see also our page about our diversity policy .
Our selection procedure follows the guidelines of the NVP application code
Acquisition is not appreciated.
Additional comments
Do you have any questions or need more information?
Questions about your application process?
Diane ten Have (Education/Research Assistant): D.ten.Have@rug.nl