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How much do full time computational biomechanics jobs pay per hour?

As of Sep 2, 2026, the average hourly pay for full time computational biomechanics 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 a full time computational biomechanics professional?

A Full Time Computational Biomechanics professional uses mathematical models, computer simulations, and analytical techniques to study the mechanics of biological systems, such as the human body. They work in areas like research, healthcare, sports science, and medical device development to analyze movement, injury mechanisms, or the performance of implants. These professionals typically have a background in engineering, biomechanics, or computational sciences and use specialized software to interpret complex biomechanical data. Their work helps improve patient care, optimize athletic performance, and advance innovations in healthcare technology.

What are the typical projects and collaborative dynamics for a full time computational biomechanics professional?

Full-time computational biomechanics professionals often work on multidisciplinary projects, such as developing simulations of human movement, analyzing injury mechanisms, or optimizing medical device designs. Collaboration is key in this field; you will frequently work alongside biomechanical engineers, clinicians, software developers, and research scientists. Daily responsibilities can include coding and validating models, interpreting experimental data, and presenting findings to both technical and non-technical teams. This collaborative environment not only enhances problem-solving but also offers valuable learning opportunities and potential for career advancement through cross-functional exposure.

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

To thrive as a Full Time Computational Biomechanics professional, you need a strong background in biomechanics, mathematics, and computer science, typically supported by an advanced degree in biomedical engineering or a related field. Proficiency with simulation software (such as OpenSim or ANSYS), programming languages (like MATLAB or Python), and experience with data analysis tools are essential. Strong problem-solving abilities, attention to detail, and effective communication skills set individuals apart in this collaborative research-driven role. These competencies are crucial for developing accurate biomechanical models, conducting innovative research, and effectively sharing findings with multidisciplinary teams.

What is the difference between Full Time Computational Biomechanics vs Full Time Biomedical Engineer?

AspectFull Time Computational BiomechanicsFull Time Biomedical Engineer
Required CredentialsAdvanced degrees in biomechanics, engineering, or related fields; often requires specialized computational skillsBachelor's or master's in biomedical engineering or related fields; may include certifications in medical device design
Work EnvironmentResearch labs, universities, or industry focused on simulation and modeling of biological systemsHospitals, medical device companies, or research institutions working on device development and clinical applications
Industry UsagePrimarily in research, academia, and specialized industry sectorsBroader industry sectors including healthcare, medical device manufacturing, and clinical settings

While both roles involve engineering principles, Full Time Computational Biomechanics focuses on modeling biological systems through computational methods, whereas Full Time Biomedical Engineers work on designing and developing medical devices and solutions across various healthcare settings.

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Infographic showing various Full Time Computational Biomechanics job openings in the United States as of August 2026, with employment types broken down into 71% Full Time, 26% Part Time, 1% Temporary, and 2% Contract. Highlights an 69% Physical, 2% Hybrid, and 29% Remote job distribution, with an average salary of $114,249 per year, or $54.9 per hour.

Post Doctoral Associate-D'Amore Lab

University of Pittsburgh

Pittsburgh, PA โ€ข On-site

$47K - $64K/yr

Full-time

Re-posted 16 days ago


Job description

The laboratory of Antonio D'Amore, PhD, at the McGowan Institute for Regenerative Medicine, affiliated with the Departments of Surgery and Bioengineering at the University of Pittsburgh, is committed to excellence in research and to training the next generation of biomedical scientists.


We are seeking a highly motivated and talented full-time Postdoctoral Associate to join a multidisciplinary research team working on an NIH R01-funded project focused on tissue-engineered heart valves. The laboratory integrates biomaterials science, biomechanics, mechanobiology, computational modeling, advanced manufacturing, and preclinical validation to develop next-generation regenerative cardiovascular implants.


The laboratory operates in two locations: Pittsburgh and Palermo - RiMED, UPMC Italy. This position is fully based in Pittsburgh.ย 
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Qualifications:
ย ย ย ย PhD in Bioengineering, Biomedical Engineering, Mechanical Engineering, Materials Science, Regenerative Medicine, or a closely related field
ย ย ย ย Strong publication record, including first-author peer-reviewed articles
ย ย ย ย Demonstrated experience in experimental design, data analysis, and scientific writing
ย ย ย ย Excellent communication, organizational, and interpersonal skills
ย ย ย ย Ability to work both independently and collaboratively in a multidisciplinary environment
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Preferred qualifications include experience in one or more of the following areas:
ย ย ย ย Biomaterials and scaffold design/fabrication
ย ย ย ย Cardiovascular tissue engineering
ย ย ย ย Mechanical characterization of soft tissues or biomaterials
ย ย ย ย Cell culture and in vitro biological assays
ย ย ย ย Histology, immunohistochemistry, microscopy, and image analysis
ย ย ย ย Computational modeling, finite element analysis, or image-based modeling
ย ย ย ย Large-animal studies or translational/preclinical researchย 
ย ย ย ย Molecular biology techniques such as proteomics or gene expression analysis
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Job Summary:
The Postdoctoral Associate will contribute to independent and collaborative research projects related to the development, optimization, and preclinical evaluation of tissue-engineered heart valve technologies. The successful candidate will be expected to participate in the design and execution of experiments, analyze and interpret complex datasets, and help advance biomaterial and tissue-engineering strategies toward clinical translation.
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Specific responsibilities may include:
ย ย ย ย Designing and conducting in silico, in vitro and ex vivo experiments on biomaterials and tissue-engineered valve constructs
ย ย ย ย Polymeric heart valve processingย 
ย ย ย ย Performing mechanical, structural, biological, and imaging-based characterization of engineered constructs
ย ย ย ย Supporting in vivo and preclinical studies related to heart valve performance, remodeling, and functionality
ย ย ย ย Contributing to data integration across experimental and computational platforms
ย ย ย ย Preparing manuscripts for publication in peer-reviewed journals
ย ย ย ย Assisting in grant writing, reporting, and presentation of results at scientific meetings
ย ย ย ย Mentoring graduate, undergraduate, and visiting trainees in the laboratory as appropriate
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The ideal candidate will have a strong interest in translational cardiovascular bioengineering, a high level of scientific rigor, and the ability to thrive in a collaborative and intellectually demanding environment.
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To be considered for this position, applicants should provide a current curriculum vitae, a brief statement of research interests, and contact information for three references when applying through the University of Pittsburgh Talent Center, requisition number: 26004372
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Physical Effort:
Ordinary wet lab physical effort. May require lifting up to 25 lbs.
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Position Location:
Pittsburgh, PA
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The University of Pittsburgh offers competitive compensation and benefits packages.