Felix Ginzinger
Papers
1
Total Citations
6
H-Index
1
About
Felix Ginzinger is a researcher at the forefront of medical imaging, specializing in cone-beam computed tomography (CBCT) and advanced artifact reduction techniques. His work addresses a critical challenge in CBCT: the cone-beam artifacts that degrade image quality in conventional circular scans. Ginzinger’s most notable contribution is the development of saddle trajectories integrated with infrared tracking, a novel approach that significantly reduces these artifacts by improving data completeness. His 2024 paper on this method has already garnered 6 citations, underscoring its immediate relevance and impact in the field. By combining robotic CBCT systems with precise tracking, Ginzinger enhances the reliability of reconstructions for clinical applications. This work not only advances imaging technology but also holds promise for safer, more accurate diagnostics in radiology and interventional procedures. Ginzinger’s innovative fusion of robotics and imaging marks him as a rising figure in medical physics, with his research poised to shape the next generation of CBCT systems.
Research Focus
Key Achievements
Top Papers
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