Allen Institute for Brain Science

Scientist I Neural Circuits Theory

Pharmaceuticals & Biotech
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • PhD in neuroscience, physics, applied mathematics, statistics, or related field, or equivalent experience
  • Ability to theorize on collective dynamics in interacting systems
  • Strong scientific computing skills and proficiency in machine learning
  • Deep interest in neuroscience or biological systems
  • Collaborative experience with experimentalists
  • Excellent written and verbal communication skills
  • Strong publication record

Responsibilities

  • Develop mechanistic models of interacting neurons based on connectivity and neural activity data
  • Derive simplified descriptions of models to reveal connectivity features governing neural dynamics
  • Characterize model space consistent with datasets and determine connectivity constraints
  • Develop theories to identify the most informative experiments based on perturbations
  • Collaborate with experimentalists to formulate testable hypotheses regarding neural computation
  • Present findings at talks, conferences, and through publications

Benefits

  • Medical, dental, vision, and basic life insurance coverage for employees and families
  • Eligibility to enroll in the 401k plan
  • Paid time off as outlined in the benefits guide
  • Opportunity for relocation assistance
  • Potential for work visa sponsorship
Full Job Description
Scientist I • Neural Circuits Theory

The goal of the Neural Dynamics accelerator is to understand how the brain generates flexible behavior. We aim to uncover the algorithms• implemented by dynamics in brain-wide neural circuits'that allow animals to build internal models, process information, and choose actions.

We are searching for a Scientist to develop data-driven theories of how circuit structure shapes neural computation. The Scientist will use the Institute's large-scale connectivity atlases and brain-wide recordings to understand how the brain's wiring organizes neural dynamics and drives flexible behavior. The position offers a rare opportunity: distilling theories of computation from connectivity data produced at unprecedented scale, together with spike trains from thousands of neurons recorded simultaneously across multiple brain regions, and a wealth of targeted activity perturbations during behavior.

The ideal candidate has deep expertise in applied mathematics or statistical physics, fluency in modern machine learning for science, and a genuine interest in how the brain computes. The role requires close collaboration with experimentalists using state-of-the-art anatomical, electrophysiological, and imaging methods. The goal is to make fundamental discoveries about how mammalian circuit architecture gives rise to function, and to generate insights that shape new experiments at the Institute.

Essential Functions
  • Develop mechanistic models of many interacting neurons that can be fit directly to connectivity and neural activity data
  • Derive coarse-grained descriptions of these models, reducing them to a small number of variables that reveal which features of connectivity • cell-type composition, anatomical projections, the statistical structure of the wiring • govern neural dynamics
  • Characterize the space of models consistent with a given dataset, and determine how connectivity constrains that space
  • Develop theories for how different perturbations narrow that space, and use them to identify the most informative experiments to perform next
  • Collaborate with experimentalists to turn theory into testable hypotheses about neural computation
  • Present results to collaborators and the wider scientific community through talks, conferences, and publications

Note: Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. This description reflects management's assignment of essential functions; it does not proscribe or restrict the tasks that may be assigned.

Required Education and Experience
  • PhD in neuroscience, physics, applied mathematics, statistics or related field; or equivalent combination of degree and experience
  • Demonstrated ability to build theories of collective dynamics in systems of many interacting elements
  • Strong scientific-computing skills and familiarity with modern machine learning

Preferred Education and Experience
  • Deep interest in foundational questions in neuroscience or biological systems
  • Experience building models constrained by or fit to experimental data
  • Experience collaborating with experimentalists
  • Excellent written and verbal communication skills
  • Strong publication record

Physical Demands
  • Fine motor movements in fingers/hands to operate computers and other office equipment; repetitive motion with lab equipment

Position Type/Expected Hours of Work
  • This role is currently working onsite and is expected to work onsite for the majority of working hours. We are a Washington State employer, and the primary work location for all Allen Institute employees is 615 Westlake Ave N.; any remote work must be performed in Washington State.

Travel
  • Attendance and participation in national and international conferences required

Additional Comments
  • **Please note, this opportunity offers relocation assistance**
  • **Please note, this opportunity may offer work visa sponsorship**

Annualized Salary Range
  • $87,450 - $108,250 *

* Final salary depends on required education for the role, experience, and level of skills relevant to the role, along with work location, where applicable.

Benefits
  • Employees (and their families) are eligible to enroll in benefits per eligibility rules outlined in the Allen Institute's Benefits Guide. These benefits include medical, dental, vision, and basic life insurance. Employees are also eligible to enroll in the Allen Institute's 401k plan. Paid time off is also available as outlined in the Allen Institutes Benefits Guide. Details on the Allen Institute's benefits offering are located at the following link to the Benefits Guide: https://alleninstitute.org/careers/benefits .


About Allen Institute for Brain Science

The Allen Institute for Brain Science is a division of the Allen Institute, based in Seattle, Washington, that focuses on bioscience research. Founded in 2003, it is dedicated to accelerating the understanding of how the human brain works. With the intent of catalyzing brain research in different areas, the Allen Institute provides free data and tools to scientists. Started with $100 million in seed money from Microsoft co-founder and philanthropist Paul Allen in 2003, the institute tackles projects at the leading edge of science—far-reaching projects at the intersection of biology and technology. The resulting data create free, publicly available resources that fuel discovery for countless researchers. Hongkui Zeng is the director of the institute.
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