Papers
2
Total Citations
48
H-Index
2
About
Hoyeon Lee is a researcher whose work bridges the critical intersection of spinal neurosurgery and advanced radiation therapy, with a particular focus on precision and motion compensation. Her key research areas include minimally invasive spine surgery, robotic-assisted surgical techniques, and respiratory motion management in radiotherapy. Lee’s major contribution lies in developing and validating innovative approaches to improve treatment accuracy and patient outcomes. Her most cited work, "Oblique paraspinal approach for thoracic disc herniations using tubular retractor with robotic holder," demonstrates a novel, less invasive surgical technique that has garnered 38 citations, reflecting its influence on spinal surgery practice. Additionally, her research on "Geometric and dosimetric verification of a recurrent neural network algorithm to compensate for respiratory motion using an articulated robotic couch" (10 citations) showcases her pioneering integration of artificial intelligence with robotic systems to enhance radiotherapy precision. This work highlights her ability to combine computational modeling with clinical application, addressing a critical challenge in treating moving tumors. Lee’s interdisciplinary approach and technical innovations have positioned her as a notable contributor to both surgical and radiation oncology fields, with her work cited by peers seeking to advance patient care through technology.
Research Focus
Key Achievements
Top Papers
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