MRI Technical Engineer Location: US (Preferred locations: Nashville TN / Cincinnati OH / Rochester MN any US location acceptable with travel twice per quarter) Overview: This role supports development and validation of advanced MRI methods including:
Careers With Purpose Sanford Health, the largest rural health system in the United States, is dedicated to transforming the health care experience and providing access to world-class health care in America’s heartland. Facility: Bemidji Medical Center
MRI Engineer Role This role supports the development, integration, and validation of advanced MRI methods across two research workstreams: Oscillating Gradient Diffusion (OGSE/OGD) in collaboration with Vanderbilt University FLORET-based UTE imaging (non-Cartesian) in collaboration with Cincinnati Childrens
Radiology / Cardiology Pay: $2,395.48 to $2,588.44 weekly Assignment Length: 13 Weeks Schedule: 3x12-Hour 17:30 - 06:00 Openings: 1 Start Date: 08/10/2026 Experience: 1.0 year(s) Certifications: ARRT R, BLS Skills: Abdomen, Abdominal Magnetic resonance angiogram (MRA),
Respiratory Therapist Sanford Health, the largest rural health system in the United States, is dedicated to transforming the health care experience and providing access to world-class health care in Americas heartland. Facility: Bemidji Medical Center Location:
MRI Technical Engineer Location: Nashville, TN (OR) Cincinnati, OH (OR) Rochester, MN (any location in the US can suffice. Occasional travel to Nashville and Cincinnati would be required. Twice a quarter) Contract Type: Contract Role Summary:
Need project/program management skills with basic SW and MRI understanding (preferred) Our customer is trying to develop some SW related to 2 MRI workstreams namely oscillating gradient diffusion (OGSE/OGD) MRI methods in partnership with Vanderbilt University and
Role Summary This role supports the development, integration, and validation of advanced MRI methods across two research workstreams: Oscillating Gradient Diffusion (OGSE/OGD) in collaboration with Vanderbilt University, and FLORET‑based UTE imaging (non‑Cartesian) in collaboration with Cincinnati Children’s