Cardiovascular Innovation Engr

Columbia University

New York, NY

JOB DETAILS
SALARY
$105,000–$120,000 Per Year
SKILLS
3D Modeling, 3D Printing, Analysis Skills, Anatomy, Automation, Biomedical Engineering, Blender, C++ Programming Language, CAD (Computer-Aided Design) Software, Cardiology, Cardiovascular, Cardiovascular Disease, Catheterization, Clinical Data, Clinical Information Systems, Clinical Nursing, Clinical Research, Computational Engineering, Computer Science, D Programming Language, Data Analysis, Digital Imaging and Communications in Medicine (DICOM), Echocardiography, FDM (Frequency Division Multiplexing), Finite Element Analysis, Fluid Mechanics and Dynamics, Grant Writing, Hospital, Intellectual Property (IP), Laboratory, Laboratory Management, MATLAB, Magnetic Resonance Imaging (MRI), Mechanical Engineering, Medical Equipment, Medical Imaging, Model Validation, Needs Assessment, Patient Care, Pediatrics, Property Maintenance, Publications, Python Programming/Scripting Language, Quality Assurance, Service Level Agreement (SLA), Simulation, SolidWorks, Statistics, Team Player, Technical Research, Training/Teaching
LOCATION
New York, NY
POSTED
4 days ago

Cardiovascular Innovation Engr

  • 558404
  • Columbia University Medical Center
  • Pediatrics
  • Full Time
  • Opening on: Jul 16 2026
  • Grade 105

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  • Job Type: Officer of Administration
  • Bargaining Unit:
  • Regular/Temporary: Regular
  • End Date if Temporary:
  • Hours Per Week: 35
  • Standard Work Schedule:
  • Building:
  • Salary Range: $105,000.00 - $120,000.00

The salary of the finalist selected for this role will be set based on a variety of factors, including but not limited to departmental budgets, qualifications, experience, education, licenses, specialty, and training. The above hiring range represents the University''s good faith and reasonable estimate of the range of possible compensation at the time of posting.

Position Summary

Cardiac 3D Printing Program utilizes patient-specific 3D models derived from imaging scans to improve surgical planning and outcomes. The engineer will create patient-specific 3D models of hearts to help surgeons understand intricate anatomy and plan complex repairs for congenital heart defects.

At CUIMC, we are leaders in teaching, research, and patient care and are proud of the service and support we provide to our community. Columbia University offers a range of benefits to help you, and your dependents stay healthy, build long-term financial security, meet educational and professional goals, and more. Explore your options for Health and Welfare, Employee Assistance, Tuition Programs, and Retirement Benefits.

Responsibilities

  • Perform segmentation to create and optimize 3D digital and printed models from medical imaging data (CT, MRI, echocardiography).
  • Operate and maintain 3D printing technologies, including material selection and post-processing.
  • Lead simulation efforts for surgical training including optimization of physical models to mimic vascular tissue.
  • Develop and utilize patient-specific cardiovascular models to conduct computational fluid dynamics (CFD) simulations that inform clinical decision-making.
  • Use state-of-the-art CFD software (e.g., Fluent, SimVascular) to simulate and analyze blood flow through patient-specific cardiovascular anatomies.
  • Apply computational modeling, engineering analysis, and numerical methods to address clinical challenges in cardiac patients.
  • Design and conduct benchtop experiments to complement and validate computational modeling and device development efforts.
  • Perform statistical analysis of experimental and simulation results to support research and clinical applications
  • Assist in computational fluid dynamics (CFD) and finite element analysis (FEA) for hemodynamic studies.
  • To work with the 3D lab manager collaboratively to engage in innovative directions for the 3D lab.
  • Improve workflows for segmentation, model generation, and quality assurance.
  • Support research initiatives and contribute to academic presentations, publications and grant proposals.
  • Train other engineers, technologists and researchers on 3D modeling software and printing techniques as needed.
  • Research and assist with the preparation of intellectual property filings as needed.
  • Conceptualize, design and develop new medical devices and technologies including surgical and catheter devices, 3D modeling and simulation techniques in collaboration with the team.
  • Design and conduct benchtop experiments to complement and/or refine designs and validate computational modeling studies as part of the development process.
  • Work collaboratively with cardiologists, cardiovascular surgeons, nurses, and clinical teams to obtain patient data, understand clinical needs, and refine modeling and device design.
  • Performs related duties & responsibilities as assigned/requested.

Minimum Qualifications

  • A Bachelor's Degree in Mechanical Engineering, Biomedical Engineering, or Computer Science; plus 4 years of related experience.

Preferred Qualifications

  • Master's degree preferred.
  • Experience working with clinical teams in a hospital or research setting.
  • Prior experience in cardiovascular modeling or congenital heart disease applications.
  • Programming experience (Python, MATLAB, or C++) for automation and data analysis.
  • Use state-of-the-art CFD software (Fluent, SimVascular, etc.).

Other Requirements

  • Experience with 3D segmentation software (Mimics, 3D Slicer, Materialise, etc.).
  • Proficiency in CAD software (SolidWorks, MeshLab, Blender, etc.).
  • Familiarity with 3D printing technologies (SLA, SLS, FDM) and materials.
  • Knowledge of medical imaging (DICOM) and analysis techniques.
  • Experience with computational modeling (CFD, FEA) is a plus.

Equal Opportunity Employer / Disability / Veteran

Columbia University is committed to the hiring of qualified local residents.

About the Company

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Columbia University