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Computational Neuroscientist, Modeling ​/ Theory

Job in Emeryville, Alameda County, California, 94608, USA
Listing for: Astera Institute
Full Time position
Listed on 2026-08-18
Job specializations:
  • Research/Development
    Data Scientist, Research Scientist
Job Description & How to Apply Below

Computational Neuroscientist

Astera Neuro is a research organization working to decipher the neural codes underlying perception, thought, behavior, and internal state. We are assembling a team to build the tools required to study neural activity at unprecedented scale, with direct promise for treating neurological and psychiatric disease.

Computational neuroscientists at Astera Neuro develop and lead research programs aimed at understanding the representations and dynamics underlying conscious access, and at converting that understanding into the ability to steer the system. The work sits at the intersection of cognitive theory, large-scale neural data, and machine learning, and draws on recordings from our primate, rodent, and human programs.

The opportunity is to create a new theoretical edifice for how the brain builds an internal model of the world, on data of a scale, breadth, and quality that has not previously existed.

Computation sits at the core of Astera Neuro, and the role is built around tight coupling with experiment: models are expected to make testable predictions and to propose the next experiment rather than wait for it. Depending on your background and interest, you may focus on modeling large-scale neural data, extracting structure from recordings that span many areas, sessions, animals, and species, or on theory, abstracting the key computational principles out of the data and into new NeuroAI architectures.

We welcome computational scientists trained outside neuroscience: backgrounds in control theory and robotics, theoretical physics, and statistics and machine learning are all highly valued here, and we expect that the theory we are after will need to draw on all of them. Title and scope are calibrated to track record.

What You Will Do
  • Build models of compositional neural representation, grounded in cognitive theory and fit to recordings: how the brain binds content to variables, composes structured thought, and updates it.
  • Build coupled dynamical systems models of the interactions between multiple brain areas, and test them against simultaneous multi-area recordings.
  • Analyze the fixed-point structure of these systems and characterize the landscape of stable states underlying percepts, thoughts, and internal states.
  • Derive how to sculpt inputs, using our optogenetic and electrical stimulation technology, to drive the system to chosen stable points, and validate those derivations in closed-loop write-in experiments.
  • Stitch data together across subjects and species into foundation models of neural activity, registered onto a common whole-brain functional and anatomical atlas.
  • Propose and help design new experiments. Identify the measurement or perturbation that would most sharply separate competing models, and work with the experimental teams to run it.
  • Abstract key computational principles from the data into new NeuroAI architectures, in some cases in direct collaboration with Astera AI.
  • Mentor research engineers, and at the senior or principal level, more junior scientists. Contribute to hiring, onboarding, and lab culture.
  • Contribute to publications, talks, open data and tooling releases, and engagement with the broader scientific community.

Required:

  • Conviction that the brain's internal model can be understood in full, and recognition that getting there requires a kind of science no single academic lab can do. We are betting on scale, on deep collaboration across science and engineering, and on open sharing of ideas and expertise in a full-stack environment.
  • Appetite for building theory rather than applying it. The framework that explains how a physical system converges on a stable internal model of the world does not yet exist. We are looking for people who want to build it, and who are willing to work on the data long enough to find out what it demands.
  • Strong computational skills, with fluency in Python and modern machine learning frameworks such as PyTorch or JAX, and comfort with large-scale data pipelines. You move between theory, data, and code fluently.
  • Comfort building on shared infrastructure rather than private projects. Recordings and perturbations will be registered onto…
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