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IEEE Transactions on Bio-Medical Engineering|July 15, 2026
A Novel Lead Construct to Reduce MRI-Induced RF Heating: Construction, In Vitro Validation, and In Vivo PredictionsTayeb Zaidi, Francesca Marturano, Pia Sanpitak, et al.Plos One|December 9, 2022
A comparative study of RF heating of deep brain stimulation devices in vertical vs. horizontal MRI systemsJasmine Vu, Bhumi Bhusal, Bach T Nguyen, et al.Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|September 10, 2022
The Position and Orientation of the Pulse Generator Affects MRI RF Heating of Epicardial Leads in ChildrenBhumi Bhusal, Fuchang Jiang, Daniel Kim, et al.Arxiv|June 5, 2026
Weight-Guided Constraints for Body Model and Lead Selection in Pediatric CIED MRI Safety SimulationsSafa Hameed, Kaylee Henry, Fuchang Jiang, et al.IEEE Transactions on Electromagnetic Compatibility|December 13, 2021
Machine learning-based prediction of MRI-induced power absorption in the tissue in patients with simplified deep brain stimulation lead modelsJasmine Vu, Bach T Nguyen, Bhumi Bhusal, et al.Magnetic Resonance in Medicine|April 28, 2025
Comparative study of radiofrequency heating in deep brain stimulation devices during MRI at 1.5 T and 0.55 T: Challenging the assumption of safety at low field strengthsBhumi Bhusal, Pia Panravi Sanpitak, Fuchang Jiang, et al.Diagnostics (Basel, Switzerland)|September 9, 2023
Age Matters: A Comparative Study of RF Heating of Epicardial and Endocardial Electronic Devices in Pediatric and Adult Phantoms during Cardiothoracic MRIFuchang Jiang, Kaylee R Henry, Bhumi Bhusal, et al.Magnetic Resonance in Medicine|August 1, 2023
Modifying the trajectory of epicardial leads can substantially reduce MRI-induced RF heating in pediatric patients with a cardiac implantable electronic device at 1.5TFuchang Jiang, Bhumi Bhusal, Bach Nguyen, et al.Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|October 6, 2020
Device Configuration and Patient's Body Composition Significantly Affect RF Heating of Deep Brain Stimulation Implants During MRI: An Experimental Study at 1.5T and 3TBhumi Bhusal, Bach T Nguyen, Jasmine Vu, et al.Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|October 6, 2020
RF heating of deep brain stimulation implants during MRI in 1.2 T vertical scanners versus 1.5 T horizontal systems: A simulation study with realistic lead configurationsEhsan Kazemivalipour, Jasmine Vu, Stella Lin, et al.Pageof 4