1

Applied Biomechanics Researcher Jobs (NOW HIRING)

R&D Intern - Seattle

Kent, WA · On-site

$3.0K - $4.5K/mo

Sept 2026 Driveline Baseball is the industry leader in applied biomechanics and training as it ... R&D Interns report jointly to our CTO (company founder, Kyle Boddy), and the Assistant Director of ...

Be Seen First

... biomechanics, or applied scientific analysis Preferred Qualifications * Peer-reviewed publications or scientific presentations * Research experience in biomechanics, injury causation, human ...

Hands-on experience with biomechanical research applied to product design * Comfort with test equipment, data analysis, and CAD fundamentals * Strong analytical skills with proficiency in Excel or ...

next page

Showing results 1-20

Applied Biomechanics Researcher information

See salary details

$30K

$113.1K

$164.5K

How much do applied biomechanics researcher jobs pay per year?

As of Sep 9, 2026, the average yearly pay for applied biomechanics researcher in the United States is $113,102.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,000.00 and $154,000.00 per year, depending on experience, location, and employer.

What is an applied biomechanics researcher?

An Applied Biomechanics Researcher is a professional who studies the mechanics of human movement and applies this knowledge to solve practical problems in areas such as healthcare, sports, ergonomics, and rehabilitation. They use principles from biology, engineering, and physics to analyze body movements, understand injury mechanisms, and design interventions or devices that improve movement efficiency or reduce injury risk. Their work often involves conducting experiments, developing computational models, and collaborating with clinicians, engineers, or athletes. Applied Biomechanics Researchers play a key role in advancing technologies like prosthetics, orthotics, wearable sensors, and performance enhancement tools.

How does an applied biomechanics researcher typically collaborate with interdisciplinary teams during research projects?

Applied Biomechanics Researchers regularly work alongside professionals from fields such as engineering, physical therapy, medicine, and sports science. Collaboration often involves designing experiments, collecting and analyzing motion data, and interpreting results to inform product development or clinical interventions. Effective communication and teamwork are essential, as researchers must integrate knowledge from multiple disciplines to solve complex biomechanical problems and achieve research objectives. This collaborative environment fosters professional growth and can lead to opportunities for leadership or specialization within multidisciplinary projects.

What are the key skills and qualifications needed to thrive as an applied biomechanics researcher, and why are they important?

To thrive as an Applied Biomechanics Researcher, you need a strong background in biomechanics, engineering, or a related field, often supported by an advanced degree (MSc or PhD). Proficiency with motion capture systems, force platforms, data analysis software (such as MATLAB or Python), and statistical tools is typically required. Strong analytical thinking, attention to detail, and collaborative communication skills help researchers excel in cross-disciplinary teams. These skills and qualities are crucial for designing rigorous experiments, interpreting complex data, and advancing knowledge or applications in movement science.

What is the difference between Applied Biomechanics Researcher vs Biomechanical Engineer?

AspectApplied Biomechanics ResearcherBiomechanical Engineer
Required CredentialsMaster's or PhD in biomechanics, biomedical engineering, or related fieldsBachelor's or Master's in biomedical or mechanical engineering, often with biomechanics specialization
Work EnvironmentResearch labs, universities, healthcare institutionsMedical device companies, sports equipment firms, healthcare settings
Industry UsageAcademic research, clinical studies, product developmentDesign and testing of medical devices, sports gear, prosthetics

Applied Biomechanics Researchers focus on fundamental research and understanding biomechanical principles, often working in academic or clinical settings. Biomechanical Engineers apply this knowledge to develop and improve products like prosthetics or sports equipment, often working in industry. Both roles require strong technical skills but differ mainly in their focus on research versus application.

What are popular job titles related to Applied Biomechanics Researcher jobs?

For Applied Biomechanics Researcher jobs, the most frequently searched job titles are:

Infographic showing various Applied Biomechanics Researcher job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 73% Full Time, 24% Part Time, and 1% Contract. Highlights an 87% Physical, 2% Hybrid, and 11% Remote job distribution, with an average salary of $113,102 per year, or $54.4 per hour.

Sr. Applied Research Engineer - Biomechanics

Burlington, MA • On-site

Glaukos Corporation
Medical Equipment and Supplies Manufacturing • 51 - 200 employees

Other

Posted 8 days ago


Job description

Sr. Applied Research Engineer – Biomechanics – Burlington

What You’ll Do:

We are seeking a highly motivated and experienced scientist or engineer to join our Applied Research team and contribute to the advancement of next-generation technologies within our Corneal Health (CH) product portfolio. This role will play a central part in driving early-stage innovation, technology development, and translational research efforts aimed at expanding the capabilities and clinical impact of our ophthalmic medical device platforms.

The successful candidate will work at the intersection of computational modeling, experimental science, engineering, and clinical translation to develop new technologies and methodologies. A key focus of this role will be developing and validating computational and analytical models of corneal and tissue biomechanics, complemented by hands‑on imaging and elastography work that enables improved understanding and quantification of corneal structure and biomechanics.

The ideal candidate will bring deep expertise in tissue and corneal biomechanics and computational modeling, complemented by hands‑on experience with biomechanical imaging, elastography, signal processing, and algorithm design, with a strong interest in translating research concepts into robust, validated technologies.

How You’ll Contribute:
  • Contribute to the design and development of current and next-generation ophthalmic medical devices, from early research through translational development.
  • Develop, apply, and validate analytical and computational models of corneal and ocular tissue biomechanics, including finite element approaches, to characterize tissue behavior and therapeutic effects.
  • Use experimental and imaging-derived data to estimate material properties, perform inverse and parameter‑estimation analyses, and validate model predictions.
  • Support and perform biomechanical imaging and elastography measurements, including refinement of experimental setups used to quantify corneal biomechanical properties.
  • Develop, optimize, and maintain robust modeling, processing, and post‑processing algorithms and software pipelines for biomedical imaging and biomechanical data.
  • Collaborate with hardware, software, and systems engineering teams to integrate models, algorithms, and experimental methods into prototype and product‑level medical devices.
  • Oversee data collection, preprocessing, model and algorithm development, validation, and performance characterization through rigorous experimental testing.
  • Evaluate emerging modeling methods and measurement technologies to advance biomechanical characterization for ophthalmic applications.
  • Communicate technical results through design reviews, internal reports, and technical documentation; contribute to publications, patents, or regulatory submissions as appropriate.
How You’ll Get There:
  • PhD in Mechanical Engineering, Biomedical Engineering, Physics, or a related field, or an MS/Bachelor’s degree with equivalent industry experience.
  • 5–8+ years of relevant experience (3–5+ years with an MS degree or 0–4+ years with a PhD) in soft‑tissue biomechanics, computational modeling, experimental imaging, or quantitative analysis.
  • Demonstrated experience developing and validating biomechanical models of soft tissues, including constitutive modeling, finite element analysis, and parameter estimation from experimental data.
  • Working knowledge of biomechanical imaging and elastography, including measurement setups, data acquisition, and measurement system validation.
  • Hands‑on experience with finite element modeling tools; COMSOL Multiphysics experience is preferred.
#J-18808-Ljbffr