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Computational Neuroscience Jobs in Florida (NOW HIRING)

Neuroscientist, Research

Orlando, FL ยท On-site

$120 - $180/hr

Lead complex neuroscience research programs from concept to execution, analysis, and publication ... using computational, statistical, and modeling approaches * Apply advanced tools such as ...

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Computational Neuroscience information

See Florida salary details

$30

$41

$55

How much do computational neuroscience jobs pay per hour?

As of Aug 30, 2026, the average hourly pay for computational neuroscience in Florida is $41.05, according to ZipRecruiter salary data. Most workers in this role earn between $35.05 and $54.95 per hour, depending on experience, location, and employer.

What is computational neuroscience?

Computational neuroscience involves studying brain function through computer modeling and mathematical analysis. Computational neuroscientists perform research in which they collect data and create computer models based on the electrical patterns and biological functions of the brain. Researchers in this field may focus on making connections between brain functions and cognition, sensory experience, or the behavior of the central nervous system. They may use computer models and data to create theoretical models. Other scientists may test the models to see if they have biological or psychological applications.

What is computational neuroscience?

Computational neuroscience is an interdisciplinary field that uses mathematical models, computer simulations, and theoretical analysis to understand how the brain processes information. Researchers in this field aim to explain neural phenomena by modeling the functions of neurons, neural circuits, and overall brain systems. By combining principles from neuroscience, computer science, physics, and mathematics, computational neuroscience helps bridge the gap between biological data and theoretical understanding, ultimately advancing our knowledge of brain function and cognition.

What are the key skills and qualifications needed to thrive as a computational neuroscientist, and why are they important?

To thrive as a Computational Neuroscientist, you need a strong background in neuroscience, mathematics, and computer science, often supported by an advanced degree (PhD or MSc) in a related field. Proficiency with programming languages (such as Python or MATLAB), computational modeling software, and data analysis tools is typically required. Critical thinking, problem-solving, and effective collaboration are standout soft skills in this interdisciplinary field. These skills and qualities enable the development and interpretation of complex brain models, driving scientific discovery and innovation in neuroscience.

What are some common challenges faced by professionals in computational neuroscience, and how can they be addressed?

Professionals in computational neuroscience often encounter challenges such as integrating diverse data types (e.g., electrophysiological, imaging, and behavioral data) and keeping up with rapidly evolving computational tools and methods. Collaborating closely with experimental neuroscientists and computer scientists is essential to bridge knowledge gaps and ensure robust model development. Continuous learning through workshops, conferences, and online courses can help professionals stay current with new techniques and best practices in the field.

What is the difference between Computational Neuroscience vs Neuroscientist?

AspectComputational NeuroscienceNeuroscientist
Required CredentialsAdvanced degrees in neuroscience, computer science, or related fieldsTypically PhD in neuroscience or related disciplines
Work EnvironmentResearch labs, universities, tech companies focusing on modeling and data analysisResearch institutions, hospitals, universities studying brain function
Industry UsageDevelops models, algorithms, and simulations of neural systemsInvestigates brain mechanisms, conducts experiments, publishes research

Computational Neuroscience focuses on creating models and simulations of neural systems using computational methods, while Neuroscientists primarily conduct experimental research to understand brain function. Both roles often collaborate but differ in their approach and tools used.

How do you become a computational neuroscientist?

To become a computational neuroscientist, one typically earns a bachelor's degree in neuroscience, computer science, or a related field, followed by a master's or Ph.D. in computational neuroscience, neuroscience, or a quantitative discipline. Developing skills in programming, data analysis, and mathematical modeling, along with experience using tools like MATLAB or Python, is essential for research and analysis in this field.

What does computational neuroscience do?

Computational neuroscience is a field where professionals develop mathematical models and computer simulations to understand how the brain processes information, learns, and adapts. They often use programming skills and neurobiological data to analyze neural systems and contribute to advancements in neuroscience research and brain-inspired technologies.

What are the most commonly searched types of Computational Neuroscience jobs in Florida?

The most popular types of Computational Neuroscience jobs in Florida are:

What are popular job titles related to Computational Neuroscience jobs in Florida?

For Computational Neuroscience jobs in Florida, the most frequently searched job titles are:

What job categories do people searching Computational Neuroscience jobs in Florida look for?

The top searched job categories for Computational Neuroscience jobs in Florida are:

What cities in Florida are hiring for Computational Neuroscience jobs?

Cities in Florida with the most Computational Neuroscience job openings:

Infographic showing various Computational Neuroscience job openings in Florida as of August 2026, with employment types broken down into 1% Internship, 59% Full Time, 39% Part Time, and 1% Contract. Highlights an 50% Physical, 2% Hybrid, and 48% Remote job distribution, with an average salary of $85,378 per year, or $41 per hour.

Translational Post Doctoral Researcher - Agentic AI for Neurodegeneration

Titusville, FL โ€ข On-site, Remote

6084-Janssen Research & Development, LLC Legal Entity

$95K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

This job post hasย expired 1 day ago.ย Applications are no longer accepted.


Job description

Johnson & Johnson Innovative Medicine is seeking a Translational Post Doctoral Researcher โ€“ Agentic AI for Neurodegeneration for a 2โ€year fixedโ€term position. This position can be located in either Raritan, New Jersey; Titusville, New Jersey; Spring House, Pennsylvania; San Diego, California or Cambridge, Massachusetts (no fully remote option).

Location:

Cambridge, Massachusetts; Raritan, New Jersey; Titusville, New Jersey; Spring House, Pennsylvania; San Diego, California.

Role Overview

The role will be embedded in the Machine Intelligence (MI) team at J&J Innovative Medicine, working in partnership with the c-brAIn academic network. The researcher will engage with multiโ€modal neuroscience dataโ€”understanding each modality, building evaluation frameworks, and partnering with translational and experimental teams at Washington University in St. Louis and other partner institutions. Mentorship is designed to develop leaders at the intersection of Multiโ€Modal Data, AI Evaluation, and Neurodegeneration.

Key Responsibilities

Multiโ€Modal Data Integration: Characterize and integrate biomedical data modalitiesโ€”including digital pathology, neuroimaging, omics, and longitudinal clinical dataโ€”to develop specialized, domainโ€specific models for neurodegeneration. Multiโ€Modal Data Integration: Build and refine data engineering pipelines that harmonize heterogeneous modalitiesโ€”reconciling differences in spatial resolution, temporal scale, and dimensionalityโ€”into unified analytical frameworks. Multiโ€Modal Data Integration: Identify where crossโ€modal integration produces genuine insight versus where it introduces noise or artifact, establishing ground truth for downstream AI evaluation.

Agentic AI Evaluation: Critically assess AIโ€driven literature synthesis and automated "third reviewer" capabilities for detecting methodological weaknesses, logical gaps, and unsupported claims across data modalities.

Agentic AI Evaluation: Establish standards for how agentic systems incorporate overlooked or contradictory evidence such as negative findings or failed clinical trials and evaluate whether these integrations generate genuinely novel hypotheses.

Agentic AI Evaluation: Design evaluation frameworks for agentic AI systems operating across neuroscience data modalitiesโ€”assessing whether models can reason credibly across imaging, omics, and clinical evidence.

Agentic AI Evaluation: Develop benchmarks using synthetic and realโ€world multiโ€modal datasets that probe AI coโ€scientist capabilities under realistic research conditions, testing for robustness, reproducibility, and alignment with expertโ€level biomedical reasoning. Research & Communication: Serve as a neurodegeneration domain expert within the AI/ML team, ensuring that model outputs remain anchored to clinically relevant disease questions.

Research & Communication: Translate evaluation findings into actionable guidance for AI system development, bridging computational and experimental perspectives. Research & Communication: Publish evaluation methodologies and findings in leading journals and conferences (e.g., AD/PD, AAIC, NeurIPS). Research & Communication: Articulate emerging AI/ML approachesโ€”causal reasoning, intent classification, agentic planningโ€”to diverse audiences with clear framing of practical applications in drug discovery. Research & Communication: Coโ€author manuscripts, concept papers, and translational strategy documents.

Required Qualifications

Ph.D. (or M.D./Ph.D.) in neuroscience, neurobiology, computational neuroscience, biomedical informatics, or a closely related field (degree completed within the last three years or to be completed within the next six months). Deep knowledge of neurodegenerative disease biology (Alzheimer's, Parkinson's, etc.) including disease mechanisms, experimental models, and translational challenges.

Handsโ€on experience working with at least two of the following data modalities in a research context: neuroimaging (PET, MRI), digital pathology, omics, longitudinal clinical data. Familiarity with large language model architectures and agentic AI frameworks (e.g., LangGraph, DSPy, or equivalent orchestration tools). Proficiency in Python and common machineโ€learning/dataโ€engineering frameworks.

Excellent scientific communication skills and comfort working across computational, translational, and experimental teams. Selfโ€directed, with the ability to work both independently and within a diverse, multiโ€disciplinary team.

Preferred Qualifications

Experience building data pipelines that integrate heterogeneous biomedical data types. Familiarity with evaluation or benchmarking methodologies for AI/ML systems. Experience with natural language processing techniques: named entity recognition, natural language inference, knowledge graph construction. Knowledge of graph data structures, graph analytics, and graph platforms (Neo4j, Neptune). Familiarity with cloud infrastructure (AWS and/or Azure) for scalable pipelines.

Compensation and Benefits

Base pay range: $79,000 โ€“ $127,650 for positions in the United States. Eligible for an annual performance bonus in accordance with the applicable plan. Health, dental, vision, life insurance, shortโ€ and longโ€term disability, and business accident insurance. Group legal insurance and consolidated retirement plan (401(k)). Timeโ€off benefits: up to 120 hours of vacation per calendar year, up to 40 hours of sick time, up to 13 days of holiday pay (including floating holidays), up to 40 hours of work, personal and family time per calendar year.

Equal Opportunity Employer Johnson & Johnson is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, age, national origin, disability, protected veteran status or other characteristics protected by federal, state or local law. Johnson & Johnson is committed to providing an interview process that is inclusive of our applicants' needs.

If you are an individual with a disability and would like to request an accommodation, external applicants may contact us via the company's contact page and internal employees contact the accommodation resource.