Papers
5
Total Citations
32
H-Index
4
About
Owen Dillon is a biomedical engineer whose research focuses on pushing the boundaries of intraoperative cone beam computed tomography (CBCT) imaging, particularly for orthopedic, cardiac, and thoracic interventions. His major contribution lies in extending the limited field-of-view of conventional CBCT systems to accommodate long and wide anatomical sites—a critical need in orthopedic surgery. His 2022 paper on continuous multi-turn reverse helical scans (14 citations) demonstrated a novel method for longitudinal 3D imaging, while his 2023 work on dual-isocenter scans (6 citations) further expanded both longitudinal and lateral coverage. In cardiac imaging, Dillon developed the ACROBEAT framework (6 citations), an adaptive acquisition technique that optimizes the trade-off between radiation dose and image quality during interventional cardiac procedures. He has also pioneered 4D respiratory CBCT for motion-mitigated thoracic imaging (4 citations) and established practical workflows for arbitrary non-circular C-arm orbits (2 citations), enabling dose reduction and metal artifact suppression. His work directly addresses real-world clinical bottlenecks, making intraoperative guidance safer, more accurate, and more versatile.
Research Focus
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Top Papers
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