Dingjun Hao
Papers
19
Total Citations
394
H-Index
9
About
Dingjun Hao is a spine surgeon and clinical researcher whose work has significantly advanced the field of minimally invasive and technology-assisted spinal surgery. His research centers on robotic-guided surgery, computer-assisted navigation, and pedicle screw fixation techniques, with a particular focus on improving accuracy, safety, and clinical outcomes for patients with complex spinal pathologies including degenerative scoliosis, lumbar disease, and traumatic fractures. Hao's most influential contributions involve rigorous comparative analyses of emerging surgical technologies. His 2017 study benchmarking four guided technologies for pedicle screw insertion, which has garnered over 110 citations, helped establish evidence-based criteria for adopting robotic systems in spine surgery. His follow-up work in 2018, with 81 citations, further validated robotic platforms against conventional techniques in adult degenerative scoliosis across large patient cohorts exceeding 1,000 implanted screws. Beyond robotics, Hao has explored innovative combinations of 3D-printed patient-specific devices and computer-assisted reduction for tibial fractures, and pioneered applications such as robot-assisted pediculoplasty for Kummell's disease. His investigations of China's TINAVI orthopedic robot represent meaningful contributions to domestically developed surgical technology. Collectively, his body of work has meaningfully shaped how surgeons evaluate and implement precision-guided tools in modern spinal and orthopedic practice.
Research Focus
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Top Papers
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