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Biomedical Engineering Graduate Jobs in Portland, OR

Biomedical Engineering Graduate information

See Portland, OR salary details

$43.5K

$100.5K

$148.5K

How much do biomedical engineering graduate jobs pay per year?

As of Aug 12, 2026, the average yearly pay for biomedical engineering graduate in Portland, OR is $100,543.00, according to ZipRecruiter salary data. Most workers in this role earn between $79,000.00 and $123,000.00 per year, depending on experience, location, and employer.

What can I do with a biomedical engineering graduate?

A biomedical engineering graduate can work in designing medical devices, developing healthcare technologies, and improving patient care through roles in research, product development, quality assurance, and regulatory compliance. They often work in hospitals, research labs, or medical device companies, utilizing skills in engineering, biology, and computer science.

What jobs can I get with a master's in biomedical engineering?

A master's in biomedical engineering qualifies graduates for roles such as biomedical engineer, medical device designer, clinical engineer, or research scientist. These positions often involve designing medical equipment, developing new technologies, and working in healthcare or research environments, sometimes requiring knowledge of regulatory standards and proficiency with CAD or lab tools.

Is a master's in biomedical engineering worth it?

A master's in biomedical engineering can enhance job prospects for biomedical engineering graduates by providing advanced technical skills, research experience, and specialization in areas like medical devices or imaging. It may lead to higher-level positions, increased earning potential, and opportunities in research or development environments. However, the value depends on individual career goals and the specific industry sector.

What is the difference between Biomedical Engineering Graduate vs Biomedical Equipment Technician?

AspectBiomedical Engineering GraduateBiomedical Equipment Technician
Required CredentialsBachelor's degree in biomedical engineering or related fieldAssociate's degree or certification in biomedical equipment technology
Work EnvironmentResearch labs, hospitals, medical device companiesHospitals, clinics, service and maintenance settings
Industry UsageDesign, development, and testing of medical devicesInstallation, repair, and maintenance of medical equipment

The Biomedical Engineering Graduate typically focuses on designing and developing medical devices, requiring a bachelor's degree in biomedical engineering. In contrast, a Biomedical Equipment Technician specializes in maintaining and repairing medical equipment, often with an associate's degree or certification. Both roles are vital in healthcare, but they differ in responsibilities, work environment, and required credentials.

What types of projects does a biomedical engineering graduate typically work on during their first year in the field?

As a Biomedical Engineering Graduate, you can expect to work on a variety of projects ranging from developing medical devices and diagnostic equipment to collaborating with clinicians on research and product testing. Early-career roles often involve tasks such as data analysis, prototype development, and conducting validation studies under the guidance of experienced engineers or scientists. Teamwork is essential, as you'll frequently collaborate with multidisciplinary teams—including healthcare professionals, regulatory specialists, and other engineers—to ensure that solutions meet both technical and clinical needs. These experiences help build a strong foundation for future specialization and career advancement.

What is a biomedical engineering graduate?

Biomedical engineering graduates are individuals who have completed a degree in biomedical engineering, an interdisciplinary field that combines principles of engineering, biology, and medicine. They are trained to design and develop medical devices, equipment, and software used in healthcare. Biomedical engineering graduates can work in hospitals, research laboratories, medical device companies, or pursue further studies. Their skills help bridge the gap between medicine and technology, contributing to advances in healthcare and patient outcomes.

What are the key skills and qualifications needed to thrive as a biomedical engineering graduate, and why are they important?

To thrive as a Biomedical Engineering Graduate, you need a solid understanding of biology, engineering principles, and mathematics, typically supported by a degree in biomedical engineering or a related field. Familiarity with CAD software, laboratory instrumentation, and regulatory standards such as FDA or ISO is often required. Strong problem-solving abilities, teamwork, and effective communication help graduates excel in multidisciplinary environments. These skills are crucial for designing innovative medical devices, collaborating with healthcare professionals, and ensuring compliance with industry standards.
What are popular job titles related to Biomedical Engineering Graduate jobs in Portland, OR? For Biomedical Engineering Graduate jobs in Portland, OR, the most frequently searched job titles are:
What job categories do people searching Biomedical Engineering Graduate jobs in Portland, OR look for? The top searched job categories for Biomedical Engineering Graduate jobs in Portland, OR are:
Infographic showing various Biomedical Engineering Graduate job openings in Portland, OR as of July 2026, with employment types broken down into 89% Full Time, 8% Part Time, 2% Contract, and 1% Nights. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $100,543 per year, or $48.3 per hour.

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Job description

Department Overview
The Knight Cancer Precision Biofabrication Hub is recruiting a postdoctoral researcher to support NIH-funded studies focused on engineering complex cancer-bone microphysiologic systems. The successful candidate will develop and apply vascularized, mineralized, and multicellular bone-on-chip platforms to investigate mechanisms of oral squamous cell carcinoma (OSCC) bone invasion and prostate cancer metastasis to bone. This position will involve 3D tissue engineering, organ-on-chip and microfluidic culture, hydrogel and matrix-based model development, advanced microscopy, quantitative image analysis, and molecular characterization of tumor-bone interactions.
Function/Duties of Position
Strong preference will be given to candidates with experience engineering complex 3D tissue models, organ-on-chip systems, cancer microenvironment models, bone biology, or biofabrication. Additional preferred expertise includes immune cell incorporation into engineered tissues, macrophage/osteoclast biology, mouse-derived immune or tumor models, neurobiology, neuron co-culture, innervated tissue models, and/or spatial omics.
An ideal candidate will have a strong record of publications, a proven record of independence, and the ability to work effectively with the principal investigator, collaborators, staff scientists, and trainees. The candidate should be highly organized, adaptable, detail-oriented, collaborative, and able to independently solve problems while helping advance multiple projects in parallel.
Duties include:
Perform experiments utilizing appropriate bioengineering, cell culture, imaging, and molecular techniques with proficiency; evaluate results; troubleshoot experiments; determine next steps; and present data.
Duties include developing and optimizing vascularized, mineralized, and multicellular bone-on-chip models; performing OSCC bone invasion studies with osteoblast/osteocyte/osteoclast components; performing prostate cancer bone metastasis studies involving vascularized and potentially innervated bone-on-chip systems; designing experiments evaluating tumor invasion, vascular association, osteoclastogenesis, bone remodeling, tumor phenotype, and microenvironmental crosstalk; incorporating immune or neural components into engineered tissues as appropriate; performing confocal/live imaging and quantitative image analysis; conducting immunostaining, qPCR, ELISA/Luminex, single cell spatial transcriptomics and related assays; staying current with relevant literature; and building new skills to maximize project potential.
Required Qualifications
  • M.D., M.D./Ph.D., or Ph.D.
  • Minimum of 3 years as a graduate student
  • Specialty: Bioengineering, Biomedical Engineering, Tissue Engineering, Cancer Biology, Bone Biology, or related field
  • Experience with mammalian cell culture and/or engineered tissue systems
  • Experience with mammalian cell culture and 3D culture systems
  • Experience developing or using engineered tissue models, organ-on-chip/microfluidic systems, hydrogels, biomaterials, or 3D bioprinting
  • Experience with fluorescence/confocal microscopy and quantitative image analysis
  • Familiarity with immunostaining and molecular/cellular assays such as qPCR, ELISA/Luminex, Western blotting, or related methods
  • Experience with data analysis and statistical methods
  • Excellent communication, analytical, and organizational skills
  • Ability to work independently and as part of a collaborative multidisciplinary team
  • Ability to synthesize one's own results and others' findings to formulate hypotheses
  • Ability to prioritize multiple tasks and coordinate multiple projects simultaneously
  • Ability to use tact and diplomacy to maintain effective working relationships

Preferred Qualifications
  • Experience working across interdisciplinary teams involving engineering, cancer biology, bone biology, clinicians, or computational collaborators
  • Strong publication record and evidence of independent scientific thinking
  • Experience with organ-on-chip or microphysiologic systems
  • Experience with vascularized tissue models, endothelial/pericyte co-culture, perfusable microfluidic systems, or advanced 3D imaging
  • Experience with bone biology, osteoblasts, osteocytes, osteoclasts, mineralized matrices, or bone remodeling assays
  • Experience with macrophage biology, osteoclastogenesis, immune cell co-culture, mouse immune cell isolation, or syngeneic mouse tumor/immune models
  • Experience with neurobiology, neuron differentiation, neurite outgrowth assays, neural co-culture, cancer-neuron interactions, or innervated tissue models
  • Experience with oral squamous cell carcinoma, prostate cancer, metastasis, invasion, EMT, or tumor microenvironment biology
  • Experience with spatial transcriptomics, single-cell RNA-seq, multiplex imaging, or analysis of high-dimensional datasets

Additional Details
Apply online. Please be sure to upload a Cover Letter and Resume/CV.
We offer a variety of benefits on top of joining a thriving organization:
  • Medical, dental and vision coverage at no or low cost to employees
    • Covered 100% for full-time employees and 88% for dependents
  • Several retirement plans to choose from with contributions from OHSU
  • 120 hours of vacation time per year
  • 96 hours of sick leave a year (prorated for part-time employees)
  • 9 paid holidays per year
  • Commuter subsidies
  • Tuition reimbursement
  • Access to group life insurance, disability insurance and other supplemental benefits
  • Annual Raises
  • Growth/Development Opportunities
  • Employee discounts to local and major businesses

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Why apply to OHSU?
We are Oregon's only public academic health center.
In addition to caring for patients, we lead groundbreaking research. We also train the next generation of health care professionals. As Portland's largest employer, we give you opportunities to learn and advance in a system of hospitals and clinics across Oregon and Southwest Washington.
All are welcome.
OHSU welcomes people of all ages, ethnicities, genders, national origins, religions and sexual orientations. We are striving to build an anti-racist, multicultural institution and encourage people with diverse backgrounds to apply.
To request reasonable accommodation, contact askhr@ohsu.edu

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About Oregon Health & Science University

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Oregon Health & Science University (OHSU) is a distinguished institution under the industry of higher education and healthcare, specifically in the field of medical science. Based in Portland, Oregon, US, it maintains a reputation for promoting research, teaching, patient care, and outreach. Established in 1887, OHSU has continually sought to redefine the parameters of healthcare delivery and biomedical discovery through its expansive catalog of programs and initiatives. A galvanizing mission drives OHSU: to improve the health and quality of life for all Oregonians through excellence, innovation, and leadership in health care, education, and research.

Industry

Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Portland, OR, US

Year founded

1887