Guillaume Landry
Papers
1
Total Citations
6
H-Index
1
About
Guillaume Landry is a leading researcher in medical physics, specializing in cone-beam computed tomography (CBCT) and image-guided radiation therapy. His work focuses on reducing imaging artifacts and improving dose calculation accuracy for adaptive radiotherapy. In his highly cited 2024 study, Landry introduced a novel approach using saddle trajectories combined with infrared tracking to reduce cone-beam artifacts in robotic CBCT devices—a significant advancement that enhances image quality for clinical applications. With over six citations already, this work underscores his impact on the field. Landry has also contributed to integrating CBCT imaging with treatment planning, enabling more precise tumor targeting and sparing healthy tissues. His research bridges the gap between imaging physics and practical oncology, earning him recognition as a key innovator in medical imaging. Through his publications, Landry continues to shape the future of adaptive radiotherapy, making treatments safer and more effective for patients worldwide.
Research Focus
Key Achievements
Top Papers
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