We are looking for a highly motivated postdoctoral research associate to join our team investigating the neurobiological basis memory and the role played by neuromodulator transmitter systems.
Within the hippocampus memory representations are stored and updated in a way that depends on uncertainty. This process relies on inputs that signpost new information and regulate the extent to which it is incorporated in future estimates by synaptic plasticity. We will test our central hypothesis that this signposting is performed by functionally overlapping neuromodulator systems interacting in an integrated fashion to signal different types of error and uncertainty. This signal enables appropriate updating of memories stored in the hippocampus providing realistic expectations on which to base decision making in uncertain situations, a fundamental process whose disruption is a core feature of multiple psychiatric disorders.
The role will involve electrophysiology and 2-photon imaging in rodent brain slices to measure where neuromodulation by acetylcholine, dopamine, noradrenaline and serotonin occurs in the hippocampal network and how this impacts network function and synaptic plasticity. These findings will inform a novel theoretical framework which will be iteratively refined by experiments to selectively manipulate neuromodulator release and downstream targets, providing mechanisms for how neuromodulators integrate to control synaptic plasticity. Ultimately this project will fundamentally reappraise the principles of neuromodulation and its therapeutic potential.
This is a highly collaborative project integrating expertise in neuromodulators and synaptic physiology (Mellor, Bristol), hippocampal representations (Dombeck, Northwestern) and computational modelling (Clopath, Imperial College). The team science approach will require individuals who think creatively and flourish in collaborative environments.
The role is part of a 7 year project that includes multiple posts within the team and is supported by the Wellcome Trust. The role is fixed term for 42 months with potential to extend.
You will:
- Conduct experiments in rodent brain slice tissue using electrophysiology and 2-photon microscopy.
- Stimulate and measure synaptic and neuronal responses using optogenetics and glutamate uncaging.
- Analyse large datasets using appropriate analytical approaches.
- Present data at meetings and to the research group.
- Collaborate across multiple teams.
- Update stakeholders regularly with progress and options for discussion.
- Develop research ideas, write papers and explore independent funding options.
You have:
- PhD in a relevant discipline, or equivalent research experience in an academic, industrial or clinical setting equivalent to a PhD
- A background in neuroscience and a passion for understanding the neurobiological basis of memory.
- Expertise in patch clamp electrophysiology and recording techniques (ideally in brain slices) is essential and experience with 2-photon imaging is desirable.
- Experience with data handling and analysis.
- A desire to work as part of a collaborative research team.
Please note: We're currently recruiting for two exciting opportunities. Be sure to check out our other vacancy to find the best fit for your skills and experience (Reference number ACAD108716).
Contract type: Open-ended with fixed funding for 42 months
Work pattern: Full-time
Grade: J
Salary: £44,746 - £50,253 per annum
School/Unit: School of Psychology and Neuroscience
This advert will close at 23:59 UK time Wednesday 30th September 2026
For informal queries please contact: Professor Jack Mellor, Professor of Neuroscience via email: [email protected]
It is anticipated that interviews will be held on Friday 16th October 2026
We recently launched our strategy to 2030 tying together our mission, vision and values.
Available documents
We are looking for a highly motivated postdoctoral research associate to join our team investigating the neurobiological basis memory and the role played by neuromodulator transmitter systems.
Within the hippocampus memory representations are stored and updated in a way that depends on uncertainty. This process relies on inputs that signpost new information and regulate the extent to which it is incorporated in future estimates by synaptic plasticity. We will test our central hypothesis that this signposting is performed by functionally overlapping neuromodulator systems interacting in an integrated fashion to signal different types of error and uncertainty. This signal enables appropriate updating of memories stored in the hippocampus providing realistic expectations on which to base decision making in uncertain situations, a fundamental process whose disruption is a core feature of multiple psychiatric disorders.
The role will involve electrophysiology and 2-photon imaging in rodent brain slices to measure where neuromodulation by acetylcholine, dopamine, noradrenaline and serotonin occurs in the hippocampal network and how this impacts network function and synaptic plasticity. These findings will inform a novel theoretical framework which will be iteratively refined by experiments to selectively manipulate neuromodulator release and downstream targets, providing mechanisms for how neuromodulators integrate to control synaptic plasticity. Ultimately this project will fundamentally reappraise the principles of neuromodulation and its therapeutic potential.
This is a highly collaborative project integrating expertise in neuromodulators and synaptic physiology (Mellor, Bristol), hippocampal representations (Dombeck, Northwestern) and computational modelling (Clopath, Imperial College). The team science approach will require individuals who think creatively and flourish in collaborative environments.
The role is part of a 7 year project that includes multiple posts within the team and is supported by the Wellcome Trust. The role is fixed term for 42 months with potential to extend.
You will:
- Conduct experiments in rodent brain slice tissue using electrophysiology and 2-photon microscopy.
- Stimulate and measure synaptic and neuronal responses using optogenetics and glutamate uncaging.
- Analyse large datasets using appropriate analytical approaches.
- Present data at meetings and to the research group.
- Collaborate across multiple teams.
- Update stakeholders regularly with progress and options for discussion.
- Develop research ideas, write papers and explore independent funding options.
You have:
- PhD in a relevant discipline, or equivalent research experience in an academic, industrial or clinical setting equivalent to a PhD
- A background in neuroscience and a passion for understanding the neurobiological basis of memory.
- Expertise in patch clamp electrophysiology and recording techniques (ideally in brain slices) is essential and experience with 2-photon imaging is desirable.
- Experience with data handling and analysis.
- A desire to work as part of a collaborative research team.
Please note: We're currently recruiting for two exciting opportunities. Be sure to check out our other vacancy to find the best fit for your skills and experience (Reference number ACAD108716).
Contract type: Open-ended with fixed funding for 42 months
Work pattern: Full-time
Grade: J
Salary: £44,746 - £50,253 per annum
School/Unit: School of Psychology and Neuroscience
This advert will close at 23:59 UK time Wednesday 30th September 2026
For informal queries please contact: Professor Jack Mellor, Professor of Neuroscience via email: [email protected]
It is anticipated that interviews will be held on Friday 16th October 2026
We recently launched our strategy to 2030 tying together our mission, vision and values.
Available documents
Similar Positions
-
Senior Research Associate In Neuroscience , University of Bristol;, United Kingdom, about 9 hours ago
The role We are looking for 2 highly motivated postdoctoral research associates to join our team investigating the neurobiological basis memory and the role played by neuromodulator transmitter sy...
-
Research Associate / Senior Research Associate , University of Bristol;, United Kingdom, 13 days ago
The role Microalgae are superabundant unicellular photosynthetic organisms which shape the health of aquatic ecosystems by producing oxygen, capturing carbon dioxide, and forming the basis of mari...
-
Cerebris Research Associate (Ai For Neurotechnology), University of Bath, United Kingdom, 5 days ago
About the role Join the CEREBRIS project, a flagship European Innovation Council (EIC) Pathfinder programme developing next-generation AI and neurotechnology to transform stroke diagnosis, prognos...
-
Cleaning Supervisor (Residential Facilities) , University of Bristol;, United Kingdom, 27 days ago
Contract type: Open ended Work hours: 17.5 hours per week The role The post holder will assist the Venues and Events Team in delivering high standards of cleanliness, presentation and customer ser...
-
Research Associate In Atmospheric Dynamics , University of Bath;, United Kingdom, 9 days ago
About the role Join a major new research programme investigating how atmospheric gravity waves shape the Earth’s atmosphere, weather & climate. You will study how these waves transport energy and ...
-
Groundsperson , University of Bristol;, United Kingdom, 27 days ago
Contract type: Open ended Work hours: 35.0 hours per week The role We are looking for a Groundsperson to join our Grounds Team at the University of Bristol's Coombe Dingle Sports Complex. This is ...