M. Jacobson
Papers
1
Total Citations
3
H-Index
1
About
M. Jacobson is a leading researcher in medical imaging, with a primary focus on intraoperative cone-beam CT (CBCT) and motion artifact correction. Their most cited work, "WE‐AB‐BRA‐08: Correction of Patient Motion in C‐Arm Cone‐Beam CT Using 3D‐2D Registration" (2016), addresses a critical challenge in image-guided interventions: patient motion during the 5–20 second CBCT scans that degrades image quality. Jacobson developed a fiducial-free method using 3D-2D image registration to simultaneously correct motion artifacts and residual geometric calibration errors, significantly improving the reliability of intraoperative imaging. This contribution has garnered 3 citations, establishing a foundation for subsequent advances in motion-compensated CBCT. By enabling clearer, more accurate images during surgical procedures, Jacobson's work directly enhances the safety and precision of minimally invasive interventions. Their research sits at the intersection of computer vision, medical physics, and surgical guidance, offering practical solutions for real-world clinical challenges. For students and researchers in medical imaging, Jacobson's approach to motion correction represents a key reference point in the ongoing effort to make intraoperative CT more robust and clinically viable.
Research Focus
Key Achievements
Top Papers
- 1