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Computational Imaging Jobs in Silver Spring, MD (NOW HIRING)

... acoustics, hyperspectral imaging, and EO/IR sensing. Within these areas, we perform work on ... Evaluate and recommend computational architectures (CPU, DSP, FPGA, or hybrid) best suited to ...

... acoustics, hyperspectral imaging, and EO/IR sensing. Within these areas, we perform work on ... Evaluate and recommend computational architectures (CPU, DSP, FPGA, or hybrid) best suited to ...

... acoustics, hyperspectral imaging, and EO/IR sensing. Within these areas, we perform work on ... Evaluate and recommend computational architectures (CPU, DSP, FPGA, or hybrid) best suited to ...

Associate Director of AI and Data

Rockville, MD · On-site

$60K - $60K/yr

D. in Computer Science, Bioinformatics, Computational Biology, Data Science, or a related ... Specialized knowledge in High-Content Imaging, Cheminformatics, Genomics, or Real-World Data (RWD ...

... acoustics, hyperspectral imaging, and EO/IR sensing. Within these areas, we perform work on ... Evaluate and recommend computational architectures (CPU, DSP, FPGA, or hybrid) best suited to ...

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Computational Imaging information

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How much do computational imaging jobs pay per hour?

As of Aug 16, 2026, the average hourly pay for computational imaging in Silver Spring, MD is $56.78, according to ZipRecruiter salary data. Most workers in this role earn between $48.46 and $76.06 per hour, depending on experience, location, and employer.

What is a computational imaging?

A Computational Imaging job involves developing algorithms and techniques to enhance, reconstruct, or extract information from images using computational methods. Professionals in this field work at the intersection of imaging hardware, signal processing, and artificial intelligence to improve image quality and enable new imaging capabilities. These roles are common in industries like medical imaging, computer vision, scientific research, and autonomous systems. Strong skills in programming, mathematics, and image processing are typically required.

What are the key skills and qualifications needed to thrive in computational imaging, and why are they important?

To thrive in Computational Imaging, you need a strong background in mathematics, computer science, and image processing, usually supported by an advanced degree in a related field. Expertise with programming languages like Python or MATLAB, experience with imaging software, and sometimes familiarity with machine learning frameworks are essential. Strong problem-solving abilities, teamwork, and effective communication skills set top candidates apart. These capabilities enable professionals to design and implement innovative algorithms that solve complex imaging challenges across industries such as healthcare, manufacturing, and remote sensing.

What types of projects might a computational imaging professional work on in a typical company?

Computational Imaging professionals often work on projects such as developing advanced algorithms for medical image reconstruction, enhancing image quality in cameras, or creating systems for non-destructive testing in manufacturing. Day-to-day responsibilities can include collaborating with multidisciplinary teams of engineers, scientists, and product managers to solve complex imaging problems and support product development. These roles may involve both research and prototyping, as well as optimizing solutions for deployment in real-world applications. The variety of projects allows for skill growth and frequent opportunities to see your work directly impact products and services.

What are popular job titles related to Computational Imaging jobs in Silver Spring, MD?

For Computational Imaging jobs in Silver Spring, MD, the most frequently searched job titles are:

What job categories do people searching Computational Imaging jobs in Silver Spring, MD look for?

The top searched job categories for Computational Imaging jobs in Silver Spring, MD are:

Infographic showing various Computational Imaging job openings in Silver Spring, MD as of August 2026, with employment types broken down into 85% Full Time, 10% Part Time, and 5% Contract. Highlights an 91% In-person, and 9% Remote job distribution, with an average salary of $118,109 per year, or $56.8 per hour.

Neuroimaging & Image Acquisition and Processing Analyst

Evon Medics, LLC

Ellicott City, MD • On-site

$70K - $110K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 15 days ago


Job description

Evon Medics, LLC is a leading medical device and neuroscience research company dedicated to developing groundbreaking therapies for Alzheimer’s Disease, Opioid Use Disorder, Traumatic Brain Injury, Chronic Pain, and other neurological conditions. As part of our mission, advanced neuroimaging techniques, including MRI, fMRI, diffusion-weighted MRI, and PET imaging modalities, are critical to our research and development.

We are seeking an experienced Neuroimaging Processing Analyst who specializes in acquisition, processing and analyzing neuroimaging data. This role involves harmonizing image acquisitions across sites and working with large-scale MRI, fMRI, diffusion-weighted MRI, and PET datasets to extract meaningful insights that drive innovation in our cutting-edge research and medical device development.

Job Description:

•             As a Neuroimaging & Image Acquisition and Processing Analyst, you will work closely with our neuroscience, R&D, and clinical research teams to develop and implement advanced imaging analysis pipelines for MRI, fMRI, diffusion-weighted MRI, PET, and other neuroimaging modalities. You will be responsible for harmonizing image acquisitions across study sites, processing, analyzing, and interpreting complex neuroimaging datasets, contributing to groundbreaking research in neurological disease diagnostics and treatment development. In addition to developing cutting-edge image processing algorithms, you will play a key role in designing neuroimaging experiments, computational models, optimizing data workflows, and ensuring compliance with research and clinical standards. Collaboration with cross-functional teams, including radiologists, biomedical engineers, neuroscientists, and clinicians, will be integral to integrating imaging findings into ongoing research and device development projects. The ideal candidate is a highly skilled and independent expert in neuroimaging analysis, comfortable working with large datasets, implementing AI-based solutions, and advancing state-of-the-art imaging techniques.

Key Responsibilities:

Image Acquisition, Processing & Analysis

•             Develop, implement, and optimize advanced image acquisition and processing algorithms for brain MRI, fMRI, diffusion-weighted MRI, PET, and other neuroimaging data.

•             Perform statistical analysis, segmentation, filtering, and preprocessing of imaging datasets.

•             Conduct MR bias correction, histogram analysis, and principle axis transformation for enhanced image interpretation.

•             Implement image registration, surface fitting, and reconstruction techniques for accurate visualization.

Data Interpretation & Research Support

•             Analyze neuroimaging datasets to derive quantitative insights supporting R&D projects.

•             Develop pipelines for automated processing and reproducibility in imaging workflows.

•             Collaborate with neuroscience and engineering teams to integrate imaging results into research findings for publications.

Technical Expertise & Development

•             Work with machine learning and AI-based approaches for neuroimage analysis.

•             Maintain and enhance processing tools for large-scale neuroimaging datasets.

•             Ensure compliance with HIPAA and research standards when handling patient imaging data.

Qualifications:

Education & Experience

•             Master’s or PhD in Biomedical Engineering, Computer Science, Neuroimaging, Neuroscience, or a related field.

•             5+ years of experience in neuroimaging data processing, analysis, and interpretation. Familiarity with the human connectome project (HCP) guidelines.

Technical Skills

•             Strong expertise in brain MRI, fMRI, diffusion-weighted MRI, and PET image processing.

•             Experience with neuroimaging toolkits such as SPM, FSL, FreeSurfer, ANTs, AFNI, ITK, or similar.

•             Proficiency in Python, MATLAB, or C++ for image analysis and algorithm development.

•             Hands-on experience with brain image segmentation, registration, and statistical modeling.

•             Strong understanding of signal and image processing techniques used in neuroimaging.

Preferred Skills

•             Familiarity with machine learning techniques applied to neuroimaging.

•             Knowledge of cloud computing for large-scale imaging datasets (AWS, Google Cloud).

•             Previous experience working in healthcare, clinical trials, or neuroscience research is a plus.

We offer a competitive salary and benefits package. If you believe you have a strong candidacy for this role and unable to apply on this portal, kindly send your resume and cover letter to recruitment@evonmedics.org with the subject line “Neuroimaging & Image Aquisition and Processing Analyst”. Also indicate your earliest start date, if considered for the role.

View the company website https://www.evonmedics.com and our LinkedIn page https://www.linkedin.com/company/evon-medics-llc for more information about the company.

Company Description

Evon Medics, LLC is a medical device and neuroscience research company that develops innovative devices, therapeutics, diagnostics, and digital therapeutics set to disrupt the healthcare industry. We are leading the development of Disease Modifying Therapies (DMT) for Alzheimer’s Disease, Opioid Use Disorder, Traumatic Brain Injury, Chronic Pain, and other neurological diseases that have remained elusive to treatment. Our breakthrough therapeutic products have the potential to reap first-to-market benefits for a DMT in the markets we compete, and we are laser-focused on the commercialization and distribution of our products to help alleviate the sufferings of billions of patients all over the world.