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Neuroimaging Postdoc Jobs in Texas (NOW HIRING)

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Neuroimaging Postdoc information

What is the difference between Neuroimaging Postdoc vs Neuroimaging Research Scientist?

AspectNeuroimaging PostdocNeuroimaging Research Scientist
CredentialsPhD in neuroscience, psychology, or related fieldMaster's or PhD, often with postdoctoral experience
Work EnvironmentAcademic labs, universities, research institutionsResearch labs, industry, or academic settings
Primary FocusConducting independent research, training, publishingLeading research projects, applying findings, supervising
Typical DurationUsually 1-3 yearsVaries, often longer-term or permanent roles

While both roles involve neuroimaging techniques and research, a Neuroimaging Postdoc primarily focuses on conducting independent research and gaining experience, often in academic settings. In contrast, a Neuroimaging Research Scientist typically leads projects, applies research findings, and may have more responsibilities in supervising or managing research activities.

What is a neuroimaging postdoc?

Neuroimaging Postdocs are researchers who have completed their PhD and are engaged in advanced training and research using imaging techniques to study the brain and nervous system. Their work often involves using tools such as MRI, fMRI, PET, or EEG to investigate brain structure and function, and may focus on topics like cognition, neurological disorders, or brain development. They typically work in academic or medical research settings, collaborating with multidisciplinary teams to analyze data and publish scientific findings. The position allows them to further develop their expertise and prepare for independent research careers in neuroscience or related fields.

What types of collaborative projects can a neuroimaging postdoc expect to be involved in?

As a Neuroimaging Postdoc, you will frequently collaborate with multidisciplinary teams that may include neuroscientists, radiologists, psychologists, and computational scientists. These collaborations often span projects involving advanced data analysis, development of new imaging protocols, or integrating neuroimaging with behavioral or genetic data. Regular meetings, joint grant applications, and co-authorship on publications are common, providing valuable experience in teamwork and expanding your professional network. This collaborative environment helps you develop both technical and interpersonal skills essential for advancing in academia or industry.

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

To thrive as a Neuroimaging Postdoc, you need a strong background in neuroscience, advanced statistical analysis, and a PhD in a related field. Expertise with neuroimaging software (such as SPM, FSL, or AFNI), programming languages like Python or MATLAB, and experience handling large datasets are typically required. Critical thinking, problem-solving, and effective communication are vital soft skills for collaborating in multidisciplinary research teams. These skills ensure rigorous data analysis, meaningful scientific contributions, and successful project outcomes in a competitive research environment.

What cities in Texas are hiring for Neuroimaging Postdoc jobs?

Cities in Texas with the most Neuroimaging Postdoc job openings:

Infographic showing various Neuroimaging Postdoc job openings in Texas as of August 2026, with employment types broken down into 75% Full Time, and 25% Part Time. Highlights an 68% Physical, 3% Hybrid, and 29% Remote job distribution.

ASSISTANT PROFESSOR - Advanced Imaging (Neuroimaging)

University Of Texas Southwestern Medical Cent (The

Dallas, TX • On-site

Full-time

Medical, Retirement, PTO

Re-posted 14 days ago


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7.9

Company rating: 7.9 out of 10

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Job description

The Advanced Imaging Research Center (AIRC) at UT Southwestern Medical Center in Dallas, Texas, invites applications for a tenure-track Assistant Professor position in the field of methodological development for neuroimaging.

Potential topics include but are not limited to the development of innovative neuroimaging data analysis methods for human and pre-clinical applications and / or human 3T and 7T neuroimaging data acquisition methods. Research areas of interest include (i) functional MRI (i.e. Ultra-High resolution/layer specific, networks, novel analysis algorithms, distortion free acquisition); (ii) diffusion weighted MRI (i.e. Advanced modeling, model validation, spinal cord/heart); (iii) susceptibility weighted (SWI), quantitative (t1/t2/mt) and anatomical (Morphometry) MRI (i.e. Processing and quantification, motion correction, parallel transmission); (iv) functional and quantitative perfusion and angiography MRI and (v) machine-learning based reconstruction and analysis approaches. Integration of Neuro MRI with complementary functional neuroimaging methods such as simultaneous EEG or PET or cross-validation against invasive methods to enhance the physiological interpretation of neuroimaging contrasts is also a topic of great interest.

Applicants for this position should have a strong scientific record of accomplishment in neuroimaging methods development including novel data analysis and/or acquisition approaches and/or innovative approaches to validate neuroimaging contrasts supported by respective publications and grants. Experience in supervising graduate students and/or postdoctoral researchers is preferred. Applicants should have a Ph.D. degree in electrical engineering, physics, computational science, biomedical engineering or applied mathematics. Experience in either the development of novel and comprehensive data analysis pipelines or MRI sequence development is required. Faculty are expected to develop an independent, externally-funded research program and actively engage with clinical and basic research faculty across campus to apply the latest neuroimaging technologies to probe human brain function in health and diseases.

Applications should include a letter of interest and a curriculum vitae.

UTSouthwestern Medical Center is committed to an educational and working environment that provides equal opportunity to all members of the University community. Asan equal opportunity employer, UT Southwestern prohibits unlawful discrimination, including discrimination on the basis ofrace, color, religion, national origin, sex,sexual orientation, gender identity, gender expression,age, disability, genetic information, citizenship status, or veteran status.

This position is security-sensitive and subject to Texas Education Code 51.215, which authorizes UT Southwestern to obtain criminal history record information.

Appointment rank will be commensurate with academic accomplishment and experience. Consideration may be given to applicants seeking less than a full-time schedule.

To learn more about the benefits UT Southwestern offers, visithttps://www.utsouthwestern.edu/employees/hr-resources/

Benefits
    UT Southwestern is proud to offer a competitive and comprehensive benefits package to eligible employees. Our benefits are designed to support your overall wellbeing, and include:
    • PPO medical plan, available day one at no cost for full-time employee-only coverage
    • 100% coverage for preventive healthcare - no copay
    • Paid Time Off, available day one
    • Retirement Programs through the Teacher Retirement System of Texas (TRS)
    • Paid Parental Leave Benefit
    • Wellness programs
    • Tuition Reimbursement
    • Public Service Loan Forgiveness (PSLF) Qualified Employer
    • Learn more about these and other UTSW employee benefits!

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