Finite Element (FEA) Research Engineer
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Requirements
- 3-5 years experience in a research environment in biomechanical and musculoskeletal areas preferably with medical devices
- Bachelor's (or preferably Master's/PhD Degree) in Biomedical Engineering, Mechanical Engineering, or a related field with 2-3 years of FEA and simulation experience in the field of orthopedics
- Demonstrated computer skills to be able to evaluate product designs using available CAE software (ABAQUS/ANSYS/CREO)
- Ability to create models and non-linear material behavior in FEA software
- Familiarity with medical image segmentation software (e.g
Benefits
Additional Information
At Globus Medical, we move with a sense of urgency to deliver innovations that improve the quality of life of patients with musculoskeletal disorders. Our team is inspired by the needs of these patients, and the surgeons and healthcare providers who treat them. We embrace a culture of exceptional response by partnering with researchers and educators to transform clinical insights into tangible solutions. Our solutions improve the techniques and outcomes of surgery so patients can resume their lives as quickly as possible. Position Summary: The Finite Element (FEA) Research Engineer will be responsible for leading computational simulation efforts, including the development, validation, and execution of FEA models for spine (and/or trauma and joint reconstruction) to address unmet clinical needs. This role bridges the gap between engineering and clinical application by working directly with surgeons and internal research teams to simulate biomechanical environments to advance research initiatives and findings within the company. While the primary focus is on finite element analysis (FEA), the individual will also be responsible for operating micro-CT systems, supporting animal studies, and providing analytical support for cross-functional biomechanics engineers. The person needs to have strong self-starting qualities to independently manage coordination of multiple projects to ensure timely and successful completion. Must be enthusiastic, positive, even tempered and have strong skills in areas of dependability, interpersonal relationships, communication, organizational, flexibility and maturity. Essential Functions : Develops advanced computational protocols and finite element models in collaboration with surgeons and researchers; specifically, plans and executes general and patient-specific spinal simulations to identify pros/cons in clinical treatments to optimize surgical outcomes in musculoskeletal fields Develops anatomical models from diagnostic data and validates mechanical analysis with experimental data Leads project activities involving surgeons and internal personnel, including simulation kick-off meetings, presentation of virtual stress analysis. Supports biomechanics engineers by providing analytical data and integrating experimental bench testing results with computational models. Ensures publication submission deadlines are met and generates a steady stream of peer-reviewed publications and podium presentations focused on computational biomechanics. Creates detailed technical reports on simulation results, validation metrics, and the status of various research projects. Perform FEA on engineering proposals and designs to determine feasibility based on mechanical performance, wear stimulation, and fatigue testing May additionally support product development with FEA virtual insights into 1). mechanical performance of pipeline products needed for re-design/improvement iterations or 2). engineering rationale needed for worst-case sizing or regulatory body submissions (as needed) Works with PD, Sales & Marketing, and surgeons to identify new opportunities for computational research and virtual testing - including other kinematic musculoskeletal models. Operates and maintains micro-CT imaging systems, including specimen preparation, high-resolution scanning, and volumetric data analysis Assists in the execution of animal studies, focusing on image-based quantitative analysis of tissue response and implant integration Assist in the planning, creation, and maintenance of a state-of-the art research laboratory with all necessary equipment Create and build a reputation as the best musculoskeletal computational research facility Adheres to the letter and spirit of the company Code of Conduct, the AdvaMed Code, MedTech Code, and all other company policies. Ensures Compliance with applicable governmental laws, rules, and regulations, both in the United States and internationally, by completing introductory and annual training and maintaining knowledge of compliance as it applies to your role Represents the company in a professional manner and uphold the highest standards of ethical business practices and socially responsible conduct in all interactions with other employees, customers, suppliers, and other third parties Reasonable accommodations may be made to enable individuals with disabilities to perform these essential functions.
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