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Biomedical Engineering Research Jobs in Baltimore, MD

R&D Engineer

Baltimore, MD · On-site

$90 - $130/hr

Master's or PhD degree in Engineering, Biomedical Engineering, Chemical Engineering, Materials ... in research and development, product development, formulation development, process development ...

R&D Engineer

Baltimore, MD · On-site

$80K - $100K/yr

Master's or PhD degree in Engineering, Biomedical Engineering, Chemical Engineering, Materials Science, Pharmaceutical Sciences, or a related technical field; advanced degree preferred. * Experience ...

Master's or PhD degree in Engineering, Biomedical Engineering, Chemical Engineering, Materials ... in research and development, product development, formulation development, process development ...

Showing results 21-40

Biomedical Engineering Research information

See Baltimore, MD salary details

$40.7K

$94.2K

$139.1K

How much do biomedical engineering research jobs pay per year?

As of Sep 5, 2026, the average yearly pay for biomedical engineering research in Baltimore, MD is $94,204.00, according to ZipRecruiter salary data. Most workers in this role earn between $74,000.00 and $115,300.00 per year, depending on experience, location, and employer.

What is biomedical engineering research?

A Biomedical Engineering Research job involves investigating and developing medical technologies, devices, and treatments to improve healthcare. Professionals in this field work on projects such as medical imaging, biomaterials, prosthetics, and tissue engineering. They collaborate with scientists, engineers, and medical professionals to test and refine innovations. Research tasks may include laboratory experiments, data analysis, and prototype development. The goal is to advance medical knowledge and create practical solutions for clinical applications.

What does someone in biomedical engineering research do?

A typical day in Biomedical Engineering Research can involve designing experiments, analyzing biological or medical data, and developing prototypes of medical devices or technologies. Professionals in this role often collaborate with clinicians, biologists, and other engineers to translate medical needs into technical solutions. Responsibilities may also include writing research reports, documenting results for regulatory compliance, and presenting findings at team meetings or conferences. The role is dynamic and multidisciplinary, offering the opportunity to engage with cutting-edge science and technology that directly impacts patient care and treatment advancements.

What are the key skills and qualifications needed to thrive in biomedical engineering research?

To thrive in Biomedical Engineering Research, you generally need a solid background in engineering principles, biology, and applied mathematics, often supported by a relevant bachelor's, master's, or doctoral degree. Experience with laboratory equipment, data analysis software (such as MATLAB or Python), and knowledge of regulatory standards like FDA or ISO are often required. Strong analytical thinking, creativity, and effective communication skills help researchers tackle complex challenges and collaborate across disciplines. These competencies enable professionals to develop innovative medical technologies and solutions that meet safety and efficacy standards in a highly regulated field.

Can a biomedical engineering researcher become a research scientist?

A biomedical engineering researcher can often transition to a research scientist role, especially if they have strong laboratory skills, experience with experimental design, and knowledge of relevant technologies. Both roles involve conducting experiments, analyzing data, and publishing findings, but research scientists may work in broader scientific fields or industries and may require advanced degrees or specific certifications. Career progression typically depends on experience, education, and the ability to lead projects or secure funding.

Can biomedical engineering researchers do research?

Yes, biomedical engineering researchers conduct research to develop new medical devices, technologies, and treatments. They often work in laboratories, hospitals, or industry settings, utilizing skills in engineering, biology, and computer science to advance healthcare solutions.

What are the most commonly searched types of Biomedical Engineering Research jobs in Baltimore, MD?

The most popular types of Biomedical Engineering Research jobs in Baltimore, MD are:

What are popular job titles related to Biomedical Engineering Research jobs in Baltimore, MD?

For Biomedical Engineering Research jobs in Baltimore, MD, the most frequently searched job titles are:

What job categories do people searching Biomedical Engineering Research jobs in Baltimore, MD look for?

The top searched job categories for Biomedical Engineering Research jobs in Baltimore, MD are:

Infographic showing various Biomedical Engineering Research job openings in Baltimore, MD as of August 2026, with employment types broken down into 89% Full Time, 6% Part Time, 4% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $94,204 per year, or $45.3 per hour.

Research Assistant - Center for Neurodevelopmental and Imaging Research

Kennedy Krieger Institute

Baltimore, MD • On-site

$36K - $60K/yr

Full-time

Re-posted 3 days ago


Key responsibilities

  • Assist with participant recruitment, assessment, and scheduling for neurodevelopmental research studies.

  • Coordinate and support MRI and other data collection sessions involving pediatric participants, ensuring adherence to protocols and safety procedures.

  • Process, analyze, and manage neuroimaging and behavioral datasets, including quality assurance and data organization.


Kennedy Krieger Institute rating

7.9

Company rating: 7.9 out of 10

Based on 19 frontline employees who took The Breakroom Quiz


Job description

The Research Assistant I assists behavioral and neuroimaging research focused on children with neurodevelopmental conditions with the Neurodevelopmental and Imaging Research Center. The Research Assistant I will play an integral role in all phases of research, including participant recruitment and assessment, MRI data acquisition, neuroimaging data processing, quantitative analysis, and dissemination of research findings. This role interacts with children and families in a clinical research environment and works independently with complex neuroimaging datasets and computational tools.


1. Assist with study enrollment, including screening potential participants, determining eligibility, scheduling appointments, preparing participant materials, and supporting participant retention and longitudinal follow-up efforts.
2. Prepare pediatric participants for MRI scanning, including mock scanner training, behavioral support, and facilitation of a positive and engaging research experience for children and families.
3. Administer, score, and support psychosocial, behavioral, clinical, physiologic, and neuroimaging research activities in accordance with study protocols and Institutional Review Board (IRB) requirements.
4. Maintain accurate study documentation, participant records, regulatory records, and research databases to ensure accessibility, completeness, and compliance with IRB standards.
5. Coordinate and support MRI and diffuse optical tomography (DOT) scanning sessions involving pediatric participants, ensuring adherence to study protocols and MRI safety procedures.
6. Coordinate and support collection of actigraphy, EEG, wearable sensor, biological motion capture, and computer vision-based data to assess physical activity, sleep health, physiological function, motor functioning, and movement patterns.
7. Perform quality assurance procedures for MRI, DOT, wearable sensor, and biological motion capture data acquisition; monitor scan and data quality; and troubleshoot issues during data collection.
8. Process structural and functional neuroimaging data using established pipelines and software tools, conduct image quality control, and identify imaging artifacts.
9. Assist with neuroimaging analyses, including brain morphometry, connectivity analyses, longitudinal modeling, and other analytical approaches across research modalities.
10. Process and analyze actigraphy, EEG, wearable sensor, biological motion capture, behavioral, and clinical datasets to quantify physical activity, sleep health, physiological outcomes, and motor function.
11. Manage, clean, integrate, organize, and maintain neuroimaging, wearable sensor, biological motion capture, behavioral, clinical, and imaging archive databases.
12. Write and maintain scripts for automated data processing, quality assurance, database management, data visualization, and reproducible research workflows using tools such as Python, MATLAB, R, or Bash.
13. Generate figures, tables, reports, and other materials for manuscripts, presentations, conference abstracts, grant applications, grant reporting, and academic, clinical, or community audiences.
14. Participate in laboratory meetings, research discussions, and meetings with research and administrative partners; assist with scheduling, agenda preparation, discussion facilitation, and note-taking as needed.


EDUCATION:
Bachelor's degree in Neuroscience, Psychology, Cognitive Science, Biomedical Engineering, Computer Science, Data Science, Biology, or a related field, required.

EXPERIENCE:
• Demonstrated interest in neurodevelopment, child development, neuroscience, or clinical research, required.
• One (1) year of experience with biomedical or social research experience preferred.
• Familiarity with neuroimaging software such as FreeSurfer, FSL, AFNI, SPM, MRICloud, or related platforms, preferred.
• Experience working with children, families, or clinical populations.
• Experience with statistical analysis and data visualization and proficiency in at least one programming language (e.g., Python, R, MATLAB), preferred.


USD $36,955.98/Yr.
USD $60,296.50/Yr.

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