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Functional Neuroimaging Jobs in Texas (NOW HIRING)

... neuroimaging and various multimodal interventional research programs. Candidates will need to have ... Experience providing psychotherapy for patient with functional neurological symptoms * Active ...

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Functional Neuroimaging information

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$41.9K

$76.7K

$120.6K

How much do functional neuroimaging jobs pay per year?

As of Aug 9, 2026, the average yearly pay for functional neuroimaging in Texas is $76,662.00, according to ZipRecruiter salary data. Most workers in this role earn between $71,300.00 and $87,600.00 per year, depending on experience, location, and employer.

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

To thrive as a Functional Neuroimaging Specialist, you need a solid background in neuroscience, psychology, or biomedical engineering, usually supported by an advanced degree and experience in neuroimaging research. Expertise in using MRI, fMRI, PET, and analysis software like SPM or FSL, along with familiarity with data processing and statistical tools, is critical. Strong analytical thinking, attention to detail, and collaboration skills help interpret complex data and work effectively with multidisciplinary teams. These competencies are vital to ensure accurate research findings, patient safety, and the advancement of brain science.

What are the typical collaborative relationships for a functional neuroimaging specialist within a research or clinical team?

Functional Neuroimaging specialists regularly collaborate with neurologists, radiologists, psychologists, and data scientists to design studies, interpret imaging results, and integrate findings into broader research or clinical objectives. They often work closely with MRI technologists and research coordinators to ensure proper data acquisition and protocol adherence. Effective interdisciplinary communication is key, as these roles require integrating neuroimaging insights with clinical assessments or experimental outcomes. Such collaboration not only enhances the quality of research but also opens pathways for professional growth and multidisciplinary learning.

What does functional neuroimaging do?

Functional neuroimaging is used by professionals in the field to measure and visualize brain activity in response to tasks or stimuli. Techniques such as fMRI and PET scans help identify active brain regions, supporting research and clinical diagnosis of neurological and psychological conditions.

What is the difference between Functional Neuroimaging vs Neuropsychologist?

AspectFunctional NeuroimagingNeuropsychologist
Required CredentialsAdvanced degrees in neuroscience or related fields, often with specialized training in neuroimaging techniquesDoctoral degree (PhD or PsyD) in psychology, with specialization in neuropsychology
Work EnvironmentResearch labs, hospitals, imaging centers, academic institutionsClinics, hospitals, private practices, research settings
Industry UsagePrimarily in research and clinical studies to visualize brain activityAssessing and diagnosing cognitive, behavioral, and neurological conditions

Functional Neuroimaging focuses on using imaging techniques like fMRI and PET scans to visualize brain activity, often in research settings. Neuropsychologists evaluate cognitive functions and diagnose neurological conditions through assessments. While both work within neuroscience, their roles differ in methods and application.

What is functional neuroimaging?

Functional neuroimaging refers to a set of techniques used to measure and visualize brain activity in real time, typically while a person performs specific tasks or experiences certain stimuli. Common methods include functional MRI (fMRI), positron emission tomography (PET), and magnetoencephalography (MEG). These tools help researchers and clinicians understand how different areas of the brain contribute to various mental processes and behaviors. Functional neuroimaging is widely used in neuroscience research, clinical diagnosis, and pre-surgical planning for brain surgeries.

How to become a functional neuroimaging analyst?

To become a functional neuroimaging analyst, typically a bachelor's degree in neuroscience, psychology, or a related field is required, often followed by a master's or Ph.D. specializing in neuroimaging or cognitive neuroscience. Skills in neuroimaging software such as SPM, FSL, or AFNI, along with knowledge of MRI and fMRI data analysis, are essential. Gaining experience through internships or research projects and obtaining certifications in neuroimaging techniques can enhance job prospects.

What are jobs that use functional neuroimaging?

Jobs that use functional neuroimaging include neurologists and neuropsychologists. Functional neuroimaging is a process that creates images that show activity in parts of the nervous system or brain. As a neurologist or neuropsychologist, you use these images for diagnosis and to develop treatment plans for patients. You analyze brain activity in patients who have brain injuries and mental disorders, using research and patient data to fulfill treatment and care duties. Your responsibilities include interpretation of scans, investigation of brain functions versus mind functions, and developing treatments for brain conditions. In engineer roles, you use technology tools to evaluate and measure brain functions.

What are the most commonly searched types of Functional Neuroimaging jobs in Texas? The most popular types of Functional Neuroimaging jobs in Texas are:
What job categories do people searching Functional Neuroimaging jobs in Texas look for? The top searched job categories for Functional Neuroimaging jobs in Texas are:
Infographic showing various Functional Neuroimaging job openings in Texas as of August 2026, with employment types broken down into 56% Full Time, and 44% Part Time. Highlights an 100% In-person job distribution, with an average salary of $76,662 per year, or $36.9 per hour.

ASSISTANT PROFESSOR - Advanced Imaging (Neuroimaging) [Req#: 882134, Position#: 126668]

UT Southwestern Medical Center

Dallas, TX • On-site

Full-time

Re-posted 10 days ago


UT Southwestern rating

7.9

Company rating: 7.9 out of 10

Based on 152 frontline employees who took The Breakroom Quiz

108th of 887 rated healthcare providers


Job description

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.
Qualifications
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.
Application Instructions
Applications should include a letter of interest and a curriculum vitae.

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