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Computational Imaging Jobs in Oregon (NOW HIRING)

Core experience developing machine learning models for biomedical applications, specifically in medical imaging, computational pathology, genomics, transcriptomics, multi-omics, or molecular ...

Scientist - Endometrial Biology

Portland, OR · On-site

$37.50 - $47/hr

... imaging, and functional data to generate mechanistic insight and guide experimental iteration. * Collaborate across disciplines: Partner with embryology, bioengineering, and computational teams to ...

Scientist - Endometrial Biology

Portland, OR · On-site

$37.50 - $47/hr

... imaging, and functional data to generate mechanistic insight and guide experimental iteration. * Collaborate across disciplines: Partner with embryology, bioengineering, and computational teams to ...

... digital pathology imaging, and longitudinal clinical metadata * Design rigorous clinical ... Partner with Computational Biology, Translational Science, and Medical Affairs teams to translate ...

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Computational Imaging information

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$43

$58

$78

How much do computational imaging jobs pay per hour?

As of Jul 27, 2026, the average hourly pay for computational imaging in Oregon is $58.07, according to ZipRecruiter salary data. Most workers in this role earn between $49.57 and $77.79 per hour, depending on experience, location, and employer.

What is a Computational Imaging job?

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 the Computational Imaging position, 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 the most commonly searched types of Computational Imaging jobs in Oregon? The most popular types of Computational Imaging jobs in Oregon are:
What are popular job titles related to Computational Imaging jobs in Oregon? For Computational Imaging jobs in Oregon, the most frequently searched job titles are:
Infographic showing various Computational Imaging job openings in Oregon as of July 2026, with employment types broken down into 2% Locum Tenens, 73% Full Time, 24% Part Time, and 1% Contract. Highlights an 64% Physical, 3% Hybrid, and 33% Remote job distribution, with an average salary of $120,794 per year, or $58.1 per hour.
Lead, Footwear Computational Design

Lead, Footwear Computational Design

Nike

Beaverton, OR • On-site

Full-time

Posted 2 days ago


Nike rating

7.6

Company rating: 7.6 out of 10

Based on 274 frontline employees who took The Breakroom Quiz

7th of 104 rated fashion retailers


Job description

WHO YOU'LL WORK WITH
We are seeking a Lead Computational Designer to join the Footwear Digital Design Studio within Nike's Innovation Team. The Digital Design Studio, part of the Advanced Digital Creation Studio, is dedicated to evolving how product is designed, pairing advanced algorithmic and geometric exploration with emerging tools like Generative AI to expand the design space and shape new ways of working. The successful candidate will report to the Director of Footwear Digital Design and will lead computational workstreams alongside innovators, designers, and engineers.
WHO WE ARE LOOKING FOR
We are looking for a creative, hands-on computational designer who leads through the work, with a strong design portfolio, deep fluency in algorithmic and geometric design, and a clear point of view on where the discipline is going. You bring proven experience translating complex design intent into algorithms and geometry, and you treat methods of make, from 3D tooling to machine code and toolpath design, as part of the creative space rather than a downstream concern. You are energized by emerging tools, including Generative AI, and you actively integrate them into your process to push aesthetic and functional outcomes further. You thrive in collaborative, multi-disciplinary teams, lead by example, and help peers level up their craft as you push your own.
What you bring:
  • Bachelor's Degree in Art, Architecture, Industrial Design, or Computer Science (visual design/imaging focus) or related field. Will accept any suitable combination of education, experience and training.
  • 5+ years experience using computational design in product design or related fields, with a portfolio demonstrating advanced algorithmic and geometric work.
  • Highly skilled in 2D design and 3D modeling software (Rhino/Grasshopper, Houdini, Maya, Blender, Adobe Suite, etc.)
  • Proficiency in coding languages (Python, C#, Vex) for creative applications and computational design thinking, including toolpath and machine-code generation.
  • Experience with Generative AI tools and workflows (image, geometry, or code generation) applied to design ideation, exploration, or production is a strong plus.
  • Curiosity and conviction about future ways of working - eager to challenge legacy processes and bring the team along.
  • Prefer 3+ years experience in 3D printing solutions and/or computational methods of make.
  • Possess an in depth understanding of digital creation market trends and new technologies.
  • Ability to think critically and creatively in solving complex problems.
  • Ability to communicate effectively with cross-disciplinary teams of product designers, developers, and engineers.

WHAT YOU'LL WORK ON
As the Lead Computational Designer, you will develop design algorithms for product concepts within Nike Innovation and Inline Product Creation. Your primary work involves designing through code, tailoring your outputs to meet manufacturing needs whether 3D tooling, 2D print files, or machine code. You will manage multiple projects simultaneously, ensuring all deliverables meet the highest quality standards, and helping define how the team works in the next era of digital design.
• You will lead advanced algorithm and geometry creation across product concepts, owning the path from creative intent to manufacturable output, including toolpath design and machine-code generation where the geometry meets the method of make.
• You will drive exploration of Generative AI and emerging tools, piloting workflows that integrate AI, performance data, and 3D geometry into the team's everyday process.
• You will partner daily in Rhino/Grasshopper and procedural environments (Houdini or equivalent), independently developing algorithms to fulfill project requirements while raising the technical bar for the team.
• You will serve as an integrated computational lead on multi-disciplinary product teams, while also helping shape the broader Digital Design team's craft, tools, and ways of working.
• You will collaborate with development and manufacturing teams to evolve the intersection of design aesthetics, performance, and innovative methods of make, translating new manufacturing methods back into design opportunity.
• You will maintain the culture and reputation of the Digital Design team in your daily interactions.
• You may travel to support product development as needed.
We offer a number of accommodations to complete our interview process including screen readers, sign language interpreters, accessible and single location for in-person interviews, closed captioning, and other reasonable modifications as needed. If you discover, as you navigate our application process, that you need assistance or an accommodation due to a disability, please complete the Candidate Accommodation Request Form.

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