Innovation starts from the heart. At Edwards, we put patients first. We invest a significant proportion of our revenue towards research and development to drive and develop groundbreaking medical innovations for structural heart disease. As part of our R&D Engineering team, you will work closely with our Quality and Manufacturing teams to develop the latest tools and technologies to address significant, unmet clinical needs that impact patients’ lives around the world.
Job Summary:
R&D Engineer - Clinical Imaging focused on TAVR-related processes, leading research and knowledge integration to support process implementation and algorithm development for cardiac CT analysis.
The role involves defining segmentation protocols, standardizing clinical data, and collaborating closely with clinical specialists and multidisciplinary teams, with a strong understanding of the clinical aspects of TAVR planning.
How you will make an impact:
Develop and own segmentation protocols for complex cardiac structures to ensure high-quality and reproducible data
Support the generation, preparation, and interpretation of cardiac CT data used across multiple project workstreams.
Develop Python-based tools for medical data processing, including DICOM handling and anonymization
Collaborate closely with physicians and Clinical Specialists to translate clinical needs into technical solutions
Act as a key integration point between physicians, Clinical Specialists, software developers, simulation engineers, and algorithm teams to ensure alignment and successful project execution
Drive cross-functional collaboration, proactively identify gaps and requirements, and ensure that clinical and technical needs are effectively translated into project deliverables.
Standardize ground truth definitions and anatomical annotations for use in algorithm and AI development
Evaluate and implement segmentation and analysis tools based on performance, usability, and scalability
Lead tasks end-to-end, from concept and investigation to implementation and delivery
Define algorithmic requirements for TAVR-related measurements, including centerline extraction, plane definition, and geometric calculations.
What you’ll need:
Bachelor in Biomedical Engineering or Equivalent
Strong technical aptitude and ability to understand and learn complex software tools
Ability to independently learn and adopt new technologies
Experience with Python
Experience with medical imaging and segmentation tools (e.g., Simpleware, 3D Slicer), Experience working with medical imaging data and analysis tools
Knowledge of CT imaging, cardiac anatomy, and cardiovascular concepts (advantage)
Ability to collaborate effectively with physicians and Clinical Specialists
Ability to communicate using professional clinical language and understand basic medical terminology and anatomy
Ability to effectively lead and facilitate clinical discussions with physicians and clinical stakeholders. Strong presentation skills – ability to clearly present complex topics
Ability to influence and align cross-functional stakeholders without direct authority.
Ability to maintain a system-level perspective and understand the interactions between multiple technical and clinical workstreams.
What else we look for:
Strong self-learning capability and ability to independently acquire new knowledge
Strong critical thinking skills with the ability to proactively identify gaps, raise concerns, and drive solutions independently.
High level of independence and ability to investigate complex problems
Creative thinking and strong problem-solving skills
Ability to handle and manage challenges effectively
Demonstrated ownership and ability to independently drive tasks and projects from concept through execution.
Skills Required
- Bachelor in Biomedical Engineering or Equivalent
- Strong technical aptitude and ability to understand and learn complex software tools
- Ability to independently learn and adopt new technologies
- Experience with Python
- Experience with Simpleware, Slicer, SolidWorks
- Experience working with medical imaging data and analysis tools
- Knowledge of CT imaging, cardiac anatomy, and cardiovascular concepts
- Ability to collaborate effectively with physicians and Clinical Specialists
- Ability to communicate using professional clinical language and understand basic medical terminology and anatomy
- Strong preparation and ownership of clinical meetings
- Strong presentation skills
- Ability to engage, motivate, and drive colleagues and stakeholders
- Strong self-learning capability and ability to independently acquire new knowledge
- Creative thinking and strong problem-solving skills
- Ability to handle and manage challenges effectively
- Proven ability to drive tasks forward and ensure progress
Edwards Lifesciences Compensation & Benefits Highlights
The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about Edwards Lifesciences and has not been reviewed or approved by Edwards Lifesciences.
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Healthcare Strength — Health coverage is considered strong, with multiple plan choices, HSA options, and fertility support, and the company highlights holistic well‑being programs.
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Retirement Support — A company 401(k) match and well‑regarded retirement offerings add clear long‑term value to total compensation.
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Equity Value & Accessibility — An Employee Stock Purchase Plan with a discount and look‑back feature makes equity ownership accessible and enhances the total rewards package.
Edwards Lifesciences Insights
What We Do
Edwards Lifesciences (NYSE: EW), is the global leader in patient-focused medical innovations for structural heart disease, as well as critical care and surgical monitoring. We thrive on discovery and expanding the boundaries of medical technology, serving patients in 100+ countries, with the help of our employees in areas including Clinical Affairs, Quality Engineering, Research & Development, Regulatory Affairs, Sales & Marketing, corporate functions and more. Our roots date back to 1958 when Miles Lowell Edwards, a retired engineer with a background in hydraulics and fuel pump operations, set out to build the first artificial heart. Edwards believed the heart could be mechanized and was encouraged by Dr. Albert Starr to focus on developing an artificial heart valve. After just two years, the first Starr-Edwards mitral valve was developed and successfully placed in a patient. This innovation spawned Edwards Laboratories. Miles’ fascination with healing the heart and helping patients with heart disease stemmed from his own experience with rheumatic fever as a teenager and continues to fuel our patient-first culture today. Today, we are as passionate about providing innovative solutions for people fighting cardiovascular disease as we have ever been. It's our Credo. It takes integrity, collaboration, innovation, and focus. We are leaders in the design and manufacture of tissue replacement heart valves and repair products as well as advanced hemodynamic monitoring. We partner with physicians to innovate products designed to help patients live longer, healthier, and more productive lives. Our work is both rewarding and a privilege. The importance of what we do defines our approach. We work together to create an environment where ideas can flourish and we provide our people with the resources, expertise and support to bring those ideas to life. For our legal terms and trademarks, please visit: https://www.edwards.com/legal/legal-terms





