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Imaging Research Associate Jobs in Washington (NOW HIRING)

... research associate to join his lab, which focuses on avian viruses. We are seeking a highly ... imaging devices as needed. Employees may work in conditions with fluctuating temperatures ...

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Imaging Research Associate information

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How much do imaging research associate jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for imaging research associate in Washington is $36.86, according to ZipRecruiter salary data. Most workers in this role earn between $29.66 and $41.92 per hour, depending on experience, location, and employer.

What is an imaging research associate?

Imaging Research Associates are professionals who support and conduct research studies involving medical imaging technologies, such as MRI, CT, or PET scans. They typically help design experiments, acquire and analyze imaging data, and ensure studies comply with regulatory and ethical standards. Their work is essential in advancing our understanding of diseases and developing new diagnostic or therapeutic techniques. Imaging Research Associates often collaborate closely with scientists, clinicians, and technical staff in research institutions or healthcare settings.

What are the key skills and qualifications needed to thrive as an imaging research associate?

To thrive as an Imaging Research Associate, a strong background in biomedical sciences, experience with imaging modalities (such as MRI, CT, or PET), and a relevant bachelor's or master's degree are essential. Familiarity with specialized imaging software, data analysis tools, and adherence to research protocols and regulatory requirements are typically required. Excellent analytical skills, attention to detail, and effective communication are vital soft skills for managing complex datasets and collaborating with multidisciplinary teams. These skills ensure accurate data collection, reliable research outcomes, and successful project execution in imaging studies.

What are some common challenges imaging research associates face when managing multiple imaging studies simultaneously?

Imaging Research Associates often juggle several studies at once, which can present challenges in prioritizing tasks, maintaining data accuracy, and adhering to strict study protocols. Balancing the coordination of patient appointments, quality control of imaging data, and timely communication with principal investigators requires excellent organizational skills and attention to detail. Collaborating with radiologists, technicians, and research coordinators is vital to ensure studies run smoothly and meet regulatory standards. Developing effective time management strategies and leveraging digital tools can help overcome these challenges.

What are popular job titles related to Imaging Research Associate jobs in Washington?

For Imaging Research Associate jobs in Washington, the most frequently searched job titles are:

What cities in Washington are hiring for Imaging Research Associate jobs?

Cities in Washington with the most Imaging Research Associate job openings:

Infographic showing various Imaging Research Associate job openings in Washington as of August 2026, with employment types broken down into 1% As Needed, 68% Full Time, 23% Part Time, 3% Temporary, and 5% Contract. Highlights an 92% Physical, 1% Hybrid, and 7% Remote job distribution, with an average salary of $76,660 per year, or $36.9 per hour.

Senior Research Scientist (PREP0004257)

Johns Hopkins University

Gaithersburg, MD • On-site

$107K - $136K/yr

Full-time

Re-posted 16 days ago


Johns Hopkins University rating

8.0

Company rating: 8.0 out of 10

Based on 71 frontline employees who took The Breakroom Quiz

191st of 631 rated colleges and universities


Job description

Description
PREP Research Associate
This position is part of the National Institute of Standards (NIST) Professional Research Experience (PREP) program. NIST recognizes that its research staff may wish to collaborate with researchers at academic institutions on specific projects of mutual interest, thus requires that such institutions must be the recipient of a PREP award. The PREP program requires staff from a wide range of backgrounds to work on scientific research in many areas. Employees in this position will perform technical work that underpins the scientific research of the collaboration.
Research Title:
Open-Architecture Additive Manufacturing Platform Development
The work will entail:
As part of its efforts to meet the needs of U.S. manufacturers in advanced manufacturing, the National Institute of Standards and Technology (NIST) has developed an open-architecture Additive Manufacturing (AM) platform. This platform consists of open-architecture AM testbeds, including the Additive Manufacturing Metrology Testbed (AMMT) and the Laser Processing and Metrology Testbed (LPDT), as well as an open-architecture AM processing software utility known as Smart Additive Manufacturing (SAM). AMMT is a full-scale AM machine equipped with dual lasers and the capability to emulate most commercial laser powder bed fusion machines while building industrial-scale parts. It is powered by open-architecture pointwise control technology and supports closed-loop control based on in-situ measurements of melt pool area using field-programmable gate array (FPGA)-based cameras and layer-wise surface profile measured by a laser profiler. LPDT is a portable testbed that can be installed and operated under high-energy synchrotron X-ray measurements to observe internal process phenomena, using the same control architecture as AMMT, and complements the AM process measurements conducted on AMMT. The SAM utility converts computer-aided design (CAD) designs into scan commands with maximum flexibility, compatible with both Common Layer Interface (CLI) and G-code and provides full transparency through intermediate output files including sliced layers, G-code, and pointwise commands, enabling unambiguous execution on open-architecture AM testbeds. Together, this platform enables research that advances additive manufacturing from a geometry-focused paradigm to a material-focused and process-aware framework. The Research Associate will assist NIST engineers in developing and improving this platform, including new mechanical, electrical, and optical hardware and control software for the AM testbeds, enhancing the SAM software utilities, supporting experiment planning and execution at NIST and external synchrotron X-ray facilities, and contributing to data processing, analysis, and dissemination efforts that support the NIST open-architecture AM platform.
U.S. Citizen preferred
Key responsibilities will include but are not limited to:
§ Analyzing, pre-processing, and formatting data generated from NIST AM testbeds, and comparing these data with datasets acquired from other NIST systems and external collaborators.
§ Developing methods to fuse multi-modality data from AM process monitoring for process anomaly detection and quality assessment.
§ Presenting research results at internal and external meetings and assisting in organizing workshops to disseminate NIST open-architecture AM platforms.
§ Providing assistance with CAD, digital signal processing hardware and algorithms, and prototyping of new measurement systems on the AM testbeds.
§ Assisting in deploying real-time feedback control capabilities on AMMT and LPDT as a retrofit solution for existing AM systems.
§ Providing technical support for the planning, execution, and data collection phases of experiments conducted on the AMMT at NIST.
§ Providing end-to-end support for synchrotron-based research, from the logistics of LPDT transport and setup at external facilities to the post-experimental analysis of complex X-ray diffraction data
Qualifications
§ PhD degree in Mechanical Engineering, Information Science, or a closely related field.
§ Eight or more years of relevant research experience in additive manufacturing or closely related advanced manufacturing systems.
§ Demonstrated expertise in laser-based metal additive manufacturing processes.
§ Extensive experience with in-situ measurements and process monitoring applied to advanced manufacturing processes. Experience with high-speed visible and thermographic imaging techniques preferred.
§ Strong background and demonstrated experience working with and developing applied machine learning and deep learning algorithms, with experience in machine vision and image processing applications preferred.
§ Experience with AM system control frameworks and familiarity with industry AM communication protocols.
§ Experience with FPGA-based sensing systems, including familiarity with FPGA architectures and at least one FPGA programming or integration workflow.
§ Demonstrated professional service and leadership experience, including organizing workshops, seminars, conferences, or hackathon-style technical events.
§ Strong oral and written communication skills, supported by a record of peer-reviewed publications and presentations to technical and multidisciplinary audiences.
Application Instructions
Please upload the following with your application:
• CV/Resume
*Please limit C.V to 3 pages only and ONLY include a valid email address for your contact info. Your resume will not be considered if the following information is included on your CV/resume.
Self portraits
Phone number
Home address/Country
Citizenship status
Languages spoken
Sex/Gender
Privacy Act Statement
Authority: 15 U.S.C. § 278g-1(e)(1) and (e)(3) and 15 U.S.C. § 272(b) and (c)
Purpose: The National Institute for Standards and Technology (NIST) hosts the Professional Research Experience Program (PREP) which is designed to provide valuable laboratory experience and financial assistance to undergraduates, post-bachelor's degree holders, graduate students, master's degree holders, postdocs, and faculty.
PREP is a 5-year cooperative agreement between NIST laboratories and participating PREP Universities to establish a collaborative research relationship between NIST and U.S. institutions of higher education in the following disciplines including (but may not be limited to) biochemistry, biological sciences, chemistry, computer science, engineering, electronics, materials science, mathematics, nanoscale science, neutron science, physical science, physics, and statistics. This collection of information is needed to facilitate administrative functions of the PREP Program.
Routine Uses: NIST will use the information collected to perform the requisite reviews of the applications to determine eligibility, and to meet programmatic requirements. Disclosure of this information is also subject to all the published routine uses as identified in the Privacy Act System of Records Notices: NIST-1: NIST Associates.
Disclosure: Furnishing this information is voluntary. When you submit the form, you are indicating your voluntary consent for NIST to use of the information you submit for the purpose stated.

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About Johns Hopkins University

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Gilman believed that teaching and research go hand in hand—that success in one depends on success in the other—and that a modern university must do both well. He also believed that sharing our knowledge and discoveries would help make the world a better place. In 145 years, we haven’t strayed from that vision. This is still a destination for excellent, ambitious scholars and a world leader in teaching and research. Distinguished professors mentor students in the arts and music, humanities, social and natural sciences, engineering, international studies, education, business, and the health professions. Those same faculty members, along with their colleagues at the university’s Applied Physics Laboratory, have made us the nation’s leader in federal research and development funding every year since 1979. That’s a fitting distinction for America’s first research university, a place that has revolutionized higher education in the U.S. and continues to bring knowledge and discoveries to the world.

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Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Baltimore, MD, US

Year founded

1876