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Computational Medicine Jobs (NOW HIRING)

Neurologist

Upper Saint Clair, PA · On-site

$305K - $381K/yr

Faculty collaborate closely with internationally recognized investigators across neuroscience, biomedical engineering, artificial intelligence, advanced neuroimaging, computational medicine ...

Neurologist

Bellevue, PA · On-site

$299K - $374K/yr

Faculty collaborate closely with internationally recognized investigators across neuroscience, biomedical engineering, artificial intelligence, advanced neuroimaging, computational medicine ...

Neurologist

Monroeville, PA · On-site

$317K - $395K/yr

Faculty collaborate closely with internationally recognized investigators across neuroscience, biomedical engineering, artificial intelligence, advanced neuroimaging, computational medicine ...

Neurologist

Swissvale, PA · On-site

$292K - $365K/yr

Faculty collaborate closely with internationally recognized investigators across neuroscience, biomedical engineering, artificial intelligence, advanced neuroimaging, computational medicine ...

Neurologist

Sharpsburg, PA · On-site

$331K - $414K/yr

Faculty collaborate closely with internationally recognized investigators across neuroscience, biomedical engineering, artificial intelligence, advanced neuroimaging, computational medicine ...

Showing results 41-60

Computational Medicine information

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$54

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How much do computational medicine jobs pay per hour?

As of Aug 13, 2026, the average hourly pay for computational medicine in the United States is $54.93, according to ZipRecruiter salary data. Most workers in this role earn between $46.88 and $73.56 per hour, depending on experience, location, and employer.

What is the difference between Computational Medicine vs Bioinformatics?

AspectComputational MedicineBioinformatics
Required CredentialsMaster's or PhD in biomedical, computational, or related fieldsMaster's or PhD in bioinformatics, computer science, or related fields
Work EnvironmentHospitals, research institutions, healthcare settingsResearch labs, biotech companies, academic institutions
Industry UsageHealthcare, clinical research, personalized medicineGenomics, molecular biology, data analysis
Common Search IntentUnderstanding clinical applications of computational methodsAnalyzing biological data and genetic information

Computational Medicine focuses on applying computational techniques to clinical and healthcare problems, often working within medical settings to improve patient outcomes. Bioinformatics primarily involves analyzing biological data, such as genetic sequences, in research or biotech environments. While both fields require advanced degrees and involve data analysis, Computational Medicine emphasizes clinical applications, whereas Bioinformatics centers on biological data analysis.

How does a computational medicine professional typically collaborate with clinicians and researchers in a healthcare setting?

Computational Medicine professionals frequently work as part of multidisciplinary teams, partnering closely with clinicians, biologists, and data scientists. They play a key role in translating complex biomedical data into actionable insights, often facilitating communication between technical and medical experts. Collaboration may involve developing predictive models, designing experiments, or integrating diverse data sources to support clinical decision-making. Regular meetings, joint problem-solving sessions, and shared project management tools are common practices to ensure alignment and foster innovation.

What jobs combine computer science and medicine?

Computational Medicine includes roles such as biomedical informaticians, bioinformatics analysts, and medical data scientists who develop algorithms, analyze healthcare data, and create models to improve patient care. These jobs often require skills in programming, statistics, and knowledge of biological systems, and may involve working with electronic health records, imaging, or genomic data.

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

To thrive in Computational Medicine, you need a strong background in biology, mathematics, statistics, and computer science, often supported by an advanced degree such as a PhD or MD/PhD. Proficiency with programming languages (such as Python or R), data analysis platforms, and bioinformatics tools is essential. Strong analytical thinking, collaboration, and communication skills help translate complex computational findings into actionable medical insights. These skills are crucial for advancing personalized medicine, developing predictive models, and improving patient outcomes through data-driven research.

What is computational medicine?

Computational medicine is an interdisciplinary field that uses mathematical models, computer simulations, and data analysis to understand, diagnose, and treat human diseases. By integrating data from biology, medicine, and engineering, computational medicine aims to improve patient outcomes through personalized medicine and predictive modeling. Professionals in this field work on developing algorithms and tools to analyze complex medical data, such as genomics, imaging, and electronic health records.
More about Computational Medicine jobs

What cities are hiring for Computational Medicine jobs?

Cities with the most Computational Medicine job openings:

What states have the most Computational Medicine jobs?

States with the most job openings for Computational Medicine jobs include:

Infographic showing various Computational Medicine job openings in the United States as of August 2026, with employment types broken down into 1% Locum Tenens, 2% As Needed, 84% Full Time, 11% Part Time, and 2% Contract. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution, with an average salary of $114,249 per year, or $54.9 per hour.

Open Rank UNMCCC IM Molecular Medicine Cancer Computational Biology & Bioinformatics

University of New Mexico

Albuquerque, NM

Full-time

Re-posted 19 days ago


University Of New Mexico rating

8.4

Company rating: 8.4 out of 10

Based on 55 frontline employees who took The Breakroom Quiz

99th of 618 rated colleges and universities


Job description

The University of New Mexico NCI-Designated Comprehensive Cancer Center (UNMCCC) and the Department of Medicine, Division of Molecular Medicine, at the UNM School of Medicine invite applications for faculty position in cancer-focused Computational Biology, Integrative Modeling, and Cancer Bioinformatics. This is an Open Rank, Open Track position. We seek highly interactive faculty who are developing strong track records of academic accomplishment including peer-reviewed funding and impactful publications in high quality journals, as well as more established senior faculty with sustained records of outstanding scholarly achievements. Successful candidates will have the opportunity to take advantage of large complex data sets, including but not limited to human genome sequencing and epigenetic data sets from multiple platforms and model systems; network reconstruction from transcriptomics and proteomics; high-resolution cellular, animal and human imaging data sets at multiple scales; and population science data (surveillance, cancer disparity patterns, epidemiology, behavioral, exposure) from large retrospective and prospective population cohorts. Many data sets include highly annotated patient information, including clinical and laboratory-generated correlative data, means of therapeutic intervention, and outcome, facilitating the development of computational models and algorithms predictive of response. Successful candidates will nucleate interdisciplinary interactions between scientists and physicians at the UNMCCC and UNM School of Medicine with our partnering institutions, including Sandia and Los Alamos National Laboratories with their large scale massively parallel computing infrastructure and outstanding teams of computational and informatics scientists. These collaborative interactions further enhance our ability to conduct computational, informatics, and systems biology research, inform clinical intervention strategies, and develop cutting-edge training programs for the next generation of cancer biologists and computational scientists. Successful applicants will also benefit from collaboration with several unique centers and programs at the UNMCCC including: The Molecular Discovery and High Throughput Target Screening Center (nmmlsc.health.unm.edu); one of the nation's 6 Chemical Biology Consortium Centers of Excellence in The NCI NExT Program; and The New Mexico Center for the Spatiotemporal Modeling of Cell Signaling (stmc.health.unm.edu), one of 13 NIH-funded National Centers for Systems Biology. The UNMCCC is also a member of the ORIEN National Network of NCI Cancer Centers engaged in cancer sequencing, precision oncology, data sharing, cancer clinical trials and collaborative research (http://oriencancer.org/). Significant resources, including excellent salaries, comprehensive start-up packages, and endowed positions, are available. Faculty rank and appointment will be commensurate with accomplishments.

The University of New Mexico Comprehensive Cancer Center (UNMCCC) The University of New Mexico Comprehensive Cancer Center is the Official Cancer Center of New Mexico and the only National Cancer Institute-designated Cancer Center in a 500-mile radius. Its more than 120 board-certified oncology specialty physicians include cancer surgeons in every specialty (abdominal, thoracic, bone and soft tissue, neurosurgery, genitourinary, gynecology, and head and neck cancers), adult and pediatric hematologists/medical oncologists, gynecologic oncologists, and radiation oncologists. They, along with more than 600 other cancer healthcare professionals (nurses, pharmacists, nutritionists, navigators, psychologists and social workers), provide treatment to 65% of New Mexico's cancer patients from all across the state and partner with community health systems statewide to provide cancer care closer to home. They treated approximately 14,000 patients in about 100,000 ambulatory clinic visits in addition to in-patient hospitalizations at UNM Hospital. A total of nearly 400 patients participated in cancer clinical trials testing new cancer treatments that include tests of novel cancer prevention strategies and cancer genome sequencing. The more than 100 cancer research scientists affiliated with the UNMCCC were awarded 35.7 million in federal and private grants and contracts for cancer research projects. Since 2015, they have published nearly 1000 manuscripts, and promoting economic development, they filed 136 new patents and launched 10 new biotechnology start-up companies. Finally, the physicians, scientists and staff have provided education and training experiences to more than 500 high school, undergraduate, graduate, and postdoctoral fellowship students in cancer research and cancer health care delivery. Learn more at https://unmhealth.org/cancer/


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