Jaane Rauschenberg
Papers
2
Total Citations
5
H-Index
2
About
Jaane Rauschenberg is a biomedical engineer specializing in magnetic resonance imaging (MRI) guided interventions and non-invasive therapeutic technologies. Her research focuses on developing fast pulse sequences for real-time needle guidance and advancing MR-guided Focused Ultrasound Surgery (MRgFUS) systems. In her key work on outer volume suppression in steady state sequences (OVSuSS), she pioneered a method enabling sub-second acquisition times for visualizing rigid instrument trajectories within moving organs during percutaneous interventions—a critical advancement for precision in dynamic anatomical environments. Her contributions to MRgFUS include the development of a robotic assistance system aimed at expanding the limited commercial availability of these ablation platforms, enhancing the precision of non-invasive tissue treatment. Though her published works have garnered modest citation counts (3 and 2 citations respectively), they represent foundational steps in translating MRI guidance into practical, real-time interventional tools. Rauschenberg’s research sits at the intersection of sequence design, robotics, and therapy delivery, offering tangible solutions for improving the safety and efficacy of image-guided procedures. Her work continues to influence the evolution of interventional MRI, particularly in moving organ applications.
Research Focus
Key Achievements
Top Papers
- 1
- 2MR guided FUS therapy with a Robotic Assistance System2 citations · 2009