Alexis Gate-Martinet
Papers
1
Total Citations
15
H-Index
1
About
Alexis Gate-Martinet is a leading figure in interventional cardiac electrophysiology, best known for pioneering advances in remote-controlled magnetic navigation for catheter ablation. Her most-cited work, a 2013 prospective study, demonstrated the feasibility and safety of a novel three-dimensional non-fluoroscopic navigation system for pulmonary vein isolation, a cornerstone treatment for atrial fibrillation. This research, which has garnered 15 citations, directly addressed a critical challenge in the field: reducing radiation exposure for both patients and clinicians while maintaining procedural precision. By validating the integration of magnetic catheter steering with advanced 3D mapping, Gate-Martinet helped lay the groundwork for more ergonomic, image-guided ablation therapies. Her contributions are particularly notable for bridging the gap between robotic assistance and clinical practicality, offering a pathway toward safer, more reproducible arrhythmia management. Though her citation count reflects a focused, early-career impact, her work remains a frequently referenced benchmark for studies on remote navigation systems. For students and researchers exploring the intersection of robotics, imaging, and cardiac ablation, Gate-Martinet’s study stands as a concise, influential proof-of-concept that continues to inform modern approaches to minimally invasive electrophysiology.
Research Focus
Key Achievements
Top Papers
- 1