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S V Setlur Nagesh

Showing results (1-10 of 38) with videos related to

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Proceedings of Spie--The International Society for Optical Engineering|March 12, 2021
Investigation of the need for an x-ray scatter-reduction grid during neurointerventional proceduresS V Setlur Nagesh, D R Bednarek, S Rudin
Proceedings of Spie--The International Society for Optical Engineering|June 30, 2017
Real time implementation of anti-scatter grid artifact elimination method for high resolution x-ray imaging CMOS detectors using Graphics Processing Units (GPUs)R Rana, S V Setlur Nagesh, D R Bednarek, et al.
Proceedings of Spie--The International Society for Optical Engineering|June 15, 2018
Anti-scatter grid artifact elimination for high-resolution x-ray imaging detectors without a prior scatter distribution profileS V Setlur Nagesh, R Rana, D R Bednarek, et al.
Proceedings of Spie--The International Society for Optical Engineering|March 5, 2021
Characterization of velocity patterns produced by pulsatile and constant flows using 1000 fps high-speed angiography (HSA)A Shields, S V Setlur Nagesh, C Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|February 23, 2016
A Combination of Spatial and Recursive Temporal Filtering for Noise Reduction when Using Region of Interest (ROI) Fluoroscopy for Patient Dose Reduction in Image Guided Vascular Interventions with Significant Anatomical MotionS V Setlur Nagesh, P Khobragade, C Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|June 27, 2017
Use of patient specific 3D printed neurovascular phantoms to evaluate the clinical utility of a high resolution x-ray imagerS V Setlur Nagesh, M Russ, C N Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|August 19, 2022
Comparison of quantitative imaging characteristics between a new, larger-FOV 1000 fps high-speed angiographic (HSA) photon-counting detector (Aries) with a smaller HSA detector (Actaeon)X Wu, A Shields, S V Setlur Nagesh, et al.
Proceedings of Spie--The International Society for Optical Engineering|April 5, 2021
Evaluation of methods to derive blood flow velocity from 1000 fps high-speed angiographic sequences (HSA) using optical flow (OF) and computational fluid dynamics (CFD)A Shields, S V Setlur Nagesh, C Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|June 9, 2018
Use of a CMOS-based micro-CT system to validate a ring artifact correction algorithm on low-dose image dataAlexander R Podgorsak, S V Setlur Nagesh, Daniel Bednarek, et al.
Proceedings of Spie--The International Society for Optical Engineering|October 28, 2024
Fluoroscopic Procedure-Room Scatter-Dose Reduction Using a Region-of-Interest (ROI) AttenuatorMartina P Orji, Kyle Williams, S V Setlur Nagesh, et al.
Pageof 4

Showing results (1-10 of 38) with videos related to

Sort By:
Pageof 4
Proceedings of Spie--The International Society for Optical Engineering|March 12, 2021
Investigation of the need for an x-ray scatter-reduction grid during neurointerventional proceduresS V Setlur Nagesh, D R Bednarek, S Rudin
Proceedings of Spie--The International Society for Optical Engineering|June 30, 2017
Real time implementation of anti-scatter grid artifact elimination method for high resolution x-ray imaging CMOS detectors using Graphics Processing Units (GPUs)R Rana, S V Setlur Nagesh, D R Bednarek, et al.
Proceedings of Spie--The International Society for Optical Engineering|June 15, 2018
Anti-scatter grid artifact elimination for high-resolution x-ray imaging detectors without a prior scatter distribution profileS V Setlur Nagesh, R Rana, D R Bednarek, et al.
Proceedings of Spie--The International Society for Optical Engineering|March 5, 2021
Characterization of velocity patterns produced by pulsatile and constant flows using 1000 fps high-speed angiography (HSA)A Shields, S V Setlur Nagesh, C Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|February 23, 2016
A Combination of Spatial and Recursive Temporal Filtering for Noise Reduction when Using Region of Interest (ROI) Fluoroscopy for Patient Dose Reduction in Image Guided Vascular Interventions with Significant Anatomical MotionS V Setlur Nagesh, P Khobragade, C Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|June 27, 2017
Use of patient specific 3D printed neurovascular phantoms to evaluate the clinical utility of a high resolution x-ray imagerS V Setlur Nagesh, M Russ, C N Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|August 19, 2022
Comparison of quantitative imaging characteristics between a new, larger-FOV 1000 fps high-speed angiographic (HSA) photon-counting detector (Aries) with a smaller HSA detector (Actaeon)X Wu, A Shields, S V Setlur Nagesh, et al.
Proceedings of Spie--The International Society for Optical Engineering|April 5, 2021
Evaluation of methods to derive blood flow velocity from 1000 fps high-speed angiographic sequences (HSA) using optical flow (OF) and computational fluid dynamics (CFD)A Shields, S V Setlur Nagesh, C Ionita, et al.
Proceedings of Spie--The International Society for Optical Engineering|June 9, 2018
Use of a CMOS-based micro-CT system to validate a ring artifact correction algorithm on low-dose image dataAlexander R Podgorsak, S V Setlur Nagesh, Daniel Bednarek, et al.
Proceedings of Spie--The International Society for Optical Engineering|October 28, 2024
Fluoroscopic Procedure-Room Scatter-Dose Reduction Using a Region-of-Interest (ROI) AttenuatorMartina P Orji, Kyle Williams, S V Setlur Nagesh, et al.
Pageof 4