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Imaging Informatics Jobs in Tennessee (NOW HIRING)

Lifecycle management of all medical systems such as imaging, life support, dialysis, and monitoring ... Informatics, and Environmental Management Service (EMS). * Specific tasks include but are not ...

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Imaging Informatics information

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$47.2K

$106.4K

$271.4K

How much do imaging informatics jobs pay per year?

As of Sep 3, 2026, the average yearly pay for imaging informatics in Tennessee is $106,447.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,300.00 and $123,400.00 per year, depending on experience, location, and employer.

What is an imaging informatics?

An Imaging Informatics job focuses on managing and optimizing medical imaging systems, such as Picture Archiving and Communication Systems (PACS) and Radiology Information Systems (RIS). Professionals in this field ensure efficient storage, retrieval, and sharing of medical images while maintaining data integrity, security, and compliance with healthcare regulations. They collaborate with radiologists, IT teams, and healthcare providers to integrate imaging technologies with electronic health records (EHR) and improve workflow. This role requires a mix of technical expertise, problem-solving skills, and knowledge of medical imaging standards like DICOM and HL7.

What skills and qualifications are needed for imaging informatics?

To thrive in Imaging Informatics, you need a strong background in medical imaging technologies, data management, and healthcare IT, often supported by a degree in health informatics, computer science, or a related field. Familiarity with PACS, DICOM standards, RIS, and certifications such as CIIP (Certified Imaging Informatics Professional) are highly valued. Strong problem-solving abilities, communication skills, and an aptitude for teamwork help professionals excel when bridging clinical and technical teams. These competencies are critical to ensure safe, effective management of imaging data and support clinical care delivery.

What are common challenges faced by professionals in imaging informatics?

Professionals in Imaging Informatics often encounter challenges related to integrating various imaging systems, maintaining data security and patient privacy, and ensuring compatibility across different healthcare technologies. Another frequent challenge is balancing the technical needs of IT with the clinical requirements of radiologists and other healthcare providers. Close collaboration with multiple departments and continuous learning about new imaging software and regulations are essential aspects of the job. Being proactive and adaptable helps Imaging Informatics specialists navigate these hurdles effectively and ensures consistent, high-quality support for medical imaging operations.

What does imaging informatics do?

Imaging informatics involves managing, analyzing, and integrating medical images and related data using specialized software and systems. Professionals in this field work with picture archiving and communication systems (PACS), electronic health records, and imaging standards like DICOM to improve diagnostic workflows and patient care. Strong technical skills and knowledge of medical imaging are essential for this role.

What cities in Tennessee are hiring for Imaging Informatics jobs?

Cities in Tennessee with the most Imaging Informatics job openings:

Infographic showing various Imaging Informatics job openings in Tennessee as of August 2026, with employment types broken down into 66% Full Time, and 34% Contract. Highlights an 100% In-person job distribution, with an average salary of $106,447 per year, or $51.2 per hour.

Pharmacology, Addiction Science, and Toxicology Assistant or Associate Professor- College of Medi...

The University of Tennessee

Memphis, TN • On-site

Full-time

Re-posted 3 days ago


Job description

The Department of Pharmacology, Addiction Science, and Toxicology (PHAST) in the College of Medicine at the University of Tennessee Health Science Center invites applications for a  tenure-track Assistant Professor.

EDUCATION: Ph.D. or equivalent degree. 

DEPARTMENTAL PREFERENCES:

Candidates will be considered at the rank of Assistant Professor. All applicants should have a Ph.D. or equivalent degree, relevant postdoctoral experience, and a strong record of research productivity, optimal record of publications, and other academic accomplishments. Applicants should demonstrate their ability to secure external (extra-institutional) funding for their research program (e.g., NIH K99/R00). Candidates employing innovative methodologies in their research program are especially encouraged to apply, e.g. microfluidics and organoids, in vivo (e.g., miniscopes) or high-resolution imaging, AFM, computational neuroscience, large-scale neuronal ensemble electrophysiological recording, novel viral and genetic strategies for targeting and manipulating cells of the nervous system.

Applicants should submit a one-page cover letter, Curriculum Vitae, a summary of research interests (up to 3 pages) and future plans (up to 3 pages), and names of three references as a single PDF file.

For benefits information, please visit

https://www.uthsc.edu/hr/benefits/documents/benefits-preview-packet.pdf

DEPARTMENT OF PHARMACOLOGY, ADDICTION SCIENCE, AND TOXICOLOGY (PHAST) IN THE COLLEGE OF MEDICINE 

With its strong nucleus of Faculty devoted to neuropharmacology research, the PHAST Department at UT Health Science Center has continuously increased its level of extramural funding within the last decade.  The Department is located in the state-of-the-art UT Health Science Center Translational Science Research Building (http://www.uthsc.edu/pharmacology), which also houses researchers from the Departments of Physiology, and of Genetics, Genomics and Informatics.  The candidates will join a very strong core of PHAST scientists devoted to investigating varied aspects of substance use disorders, neurotoxicology, and neurodegenerative disease, including: genetics and genomics bases of alcohol/nicotine/opioid use disorders; mitochondrial stress contribution to FASD; alcohol-induced disruption of fetal brain circulation and developmental consequences;  neurocircuitry and neurotransmission involved in compulsive drug-seeking; neurobiological and neuropeptide transmission in the extended amygdala underlying escalated drug self-administration and its relation to stress-susceptibility; subcellular mechanisms underlying alcohol-caffeine, alcohol-lipid, and alcohol-neurosteroid cerebrovascular effects; ionic mechanisms underlying brain hypoperfusion induced by inhalants; cellular and molecular bases of neurodegenerative conditions, including AD, Parkinson's, vascular dementias, and retinal neurodegeneration.  Strong, collaborative research opportunities exist with the UT Health Science Center Department of Anatomy and Neurobiology and the UT Health Science Center inter-departmental Neuroscience Institute, both under new leadership, as well as the Knoxville campus of the University of Tennessee, the University of Memphis, and St. Jude Children's Research Hospital. 

The UT Health Science Center College of Medicine offers a generous start up package, and the Institution includes several core facilities, such as the Lab Animal Care Unit, the Regional Biocontainment Laboratory, the Molecular Resource Center, the Flow Cytometry and Flow Sorting core, the Molecular Bioinformatics Core, the Proteomics and Metabolomics Core, the Imaging Core, which houses a super-resolution microscopy unit, the Research Histology Core, a new Structural Biology core with access to several outside core facilities and national labs,  and free access to the ISAAC-NG high-performance computing clusters at the University of Tennessee. Furthermore, the PHAST Department sustains common facilities in laser confocal microscopy, laser capture microscopy, high-resolution fluorescence microscopy, and high-throughput robotic electrophysiology. 

Conduct research in the areas of substance use disorders, neurotoxicology, or pharmacology of neurodegenerative diseases.