Ziyin Han
Papers
2
Total Citations
15
H-Index
2
About
Ziyin Han is a rising orthopedic researcher focused on advancing minimally invasive fracture fixation through surgical robotics and digital planning technologies. His work centers on two key areas: robot-assisted femoral neck fracture treatment and 3D printing-enhanced pelvic fracture surgery. Han’s most cited study, with 8 citations, demonstrated the short-term effectiveness of orthopedic robot-assisted femoral neck system (FNS) fixation for fresh femoral neck fractures, showing significant advantages over traditional manual operations. His subsequent 2024 study, with 7 citations, broke new ground by combining preoperative 3D printing planning with robotic screw placement for pelvic fractures, revealing superior outcomes compared to robotic assistance alone. This integrated approach represents a notable achievement in precision orthopedics, potentially reducing surgical invasiveness and improving patient recovery. Han’s work directly addresses critical challenges in trauma surgery—optimizing screw trajectory and minimizing soft tissue damage—while his comparative methodology provides robust evidence for clinical adoption. Though early in his career, his focused contributions to robotic and 3D-printed orthopedic solutions are gaining traction, offering a blueprint for next-generation fracture management.
Research Focus
Key Achievements
Top Papers
- 1
- 2