Peymon Ghazi
Papers
2
Total Citations
12
H-Index
2
About
Peymon Ghazi is a biomedical engineer whose research focuses on advancing dedicated breast computed tomography (bCT) through innovative hardware solutions. His primary contributions lie in developing novel apparatuses for fluence modulation and scatter shielding to dramatically improve image quality while reducing radiation dose. In his most-cited work, "A novel hardware duo of beam modulation and shielding to reduce scatter acquisition and dose in cone-beam breast CT" (2021, 9 citations), Ghazi demonstrated a practical hardware approach to mitigate the detrimental effects of scattered photons—a major challenge in cone-beam breast CT that degrades image contrast and spatial resolution. His earlier foundational paper, "A fluence modulation and scatter shielding apparatus for dedicated breast CT: Theory of operation" (2020, 3 citations), established the theoretical framework for a patient-specific, two-assembly system called the "Dynamic Fluence" apparatus. This work represents a significant step toward personalized imaging protocols that optimize the balance between image quality and patient dose. Ghazi's research bridges simulation and experimental validation, offering a tangible path to clinical translation. His contributions are particularly impactful for improving early breast cancer detection, where image quality is paramount.
Research Focus
Key Achievements
Top Papers
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