Justin G. Miller
Papers
2
Total Citations
29
H-Index
2
About
Justin G. Miller is a pioneering biomedical engineer whose research lies at the intersection of interventional cardiology and robotic-assisted medical imaging. His primary contributions focus on developing real-time MRI-guided robotic systems for transcatheter aortic valve replacement (TAVR), a minimally invasive procedure for treating aortic stenosis. Miller’s work addresses a critical challenge: enabling high-resolution, radiation-free imaging during TAVR by integrating robotic manipulation with magnetic resonance imaging. His two most-cited papers—"Robotic-assisted real-time MRI-guided TAVR: from system deployment to in vivo experiment in swine model" (15 citations) and "Robot-assisted real-time magnetic resonance image–guided transcatheter aortic valve replacement" (14 citations)—demonstrate the first successful in vivo deployments of this technology in animal models. These studies showcase his ability to translate complex engineering concepts into practical surgical solutions, bridging the gap between laboratory innovation and clinical application. Miller’s research has significant implications for reducing procedural risks and improving outcomes in structural heart disease, positioning him as a key figure in the evolution of image-guided robotic interventions.
Research Focus
Key Achievements
Top Papers
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