Optical force sensor with enhanced resolution for MRI guided biopsy D Uzun, O Ülgen, Ö Kocatürk IEEE Sensors Journal 20 (16), 9202-9208, 2020 | 25 | 2020 |
Phantom study of a fiber optic force sensor design for biopsy needles under MRI NO Ulgen, D Uzun, O Kocaturk Biomedical optics express 10 (1), 242-251, 2019 | 15 | 2019 |
A 20‐gauge active needle design with thin‐film printed circuitry for interventional MRI at 0.55 T DK Yildirim, C Bruce, D Uzun, T Rogers, K O’Brien, R Ramasawmy, ... Magnetic resonance in medicine 86 (3), 1786-1801, 2021 | 9 | 2021 |
An interventional MRI guidewire combining profile and tip conspicuity for catheterization at 0.55 T DK Yildirim, D Uzun, CG Bruce, JM Khan, T Rogers, WH Schenke, ... Magnetic resonance in medicine 89 (2), 845-858, 2023 | 6 | 2023 |
EDEN (Electrocardiographic Radial Depth Navigation) A Novel Approach to Navigate Inside Heart Muscle CG Bruce, DK Yildirim, A Kolandaivelu, JM Khan, T Rogers, D Uzun, ... Clinical Electrophysiology 9 (8_Part_3), 1741-1754, 2023 | 3 | 2023 |
FPI based force sensor for prostate biopsy needle interventions under MRI D Uzun, O Ulgen, O Kocaturk Optical Fiber Sensors, ThE6, 2018 | 2 | 2018 |
Interventional device tracking under MRI via alternating current controlled inhomogeneities D Uzun, DK Yildirim, CG Bruce, RN Halaby, AE Jaimes, A Potersnak, ... Magnetic Resonance in Medicine 92 (1), 346-360, 2024 | | 2024 |
TABERNACL: Temporary Hemodynamic Stabilization In Vivo RN Halaby, CG Bruce, DK Yildirim, D Uzun, T Rogers, JM Khan, ... Circulation: Cardiovascular Interventions 17 (5), e013898, 2024 | | 2024 |
EVALUATION OF FPI BASED CUSTOM FORCE SENSOR DESIGN FOR BIOPSY NEEDLES D Uzun, O Ulgen, O Kocaturk | | |
ENHANCED FPI BASED FORCE SENSOR DESIGNED FOR MRI COMPATIBLE BIOPSY NEEDLE D Uzun, O Kocaturk | | |