Joonhwan Shin
Papers
2
Total Citations
25
H-Index
2
About
Joonhwan Shin is an emerging researcher at the forefront of robotic bioprinting and advanced manufacturing for biomedical applications. His work focuses on enhancing the precision and capability of 3D bioprinting systems, with particular emphasis on overcoming the fundamental limitations of traditional fabrication approaches in tissue engineering and organ fabrication. Shin's most notable contribution, "Precision improvement of robotic bioprinting via vision-based tool path compensation" (2024), has already garnered 23 citations, demonstrating rapid uptake within the field. This work addresses critical challenges in bioprinting including non-linear material behavior, layer shifting, and trajectory tracking errors — longstanding obstacles that hinder reliable organ and tissue fabrication. By integrating vision-based feedback into the printing workflow, Shin developed an innovative solution that meaningfully improves output fidelity. Building on this foundation, his 2025 work on multi-axis robotic printing tackles the geometric constraints of conventional Cartesian bioprinters, pushing toward the fabrication of complex curved structures such as vascular networks. Together, these contributions position Shin as a promising voice in the convergence of robotics, computer vision, and biomedical engineering — fields whose intersection holds transformative potential for regenerative medicine and pharmaceutical research.
Research Focus
Key Achievements
Top Papers
- 1
- 2