Minah Suh
Papers
1
Total Citations
9
H-Index
1
About
Minah Suh is a pioneering force at the intersection of neural engineering and soft bioelectronics, dedicated to creating next-generation neuroprosthetic systems that restore sensory-motor function. Her most cited work, "Performance‐Recoverable Closed‐Loop Neuroprosthetic System" (2025, 9 citations), tackles a critical bottleneck in the field: the mismatch between rigid electronics and soft, living neural tissue. Suh’s major contribution lies in developing bioelectronics with mechanical properties comparable to biological tissues, enabling long-term stable, closed-loop interfaces that can recover performance after damage. This work addresses the persistent challenge of durability in implantable devices, moving beyond proof-of-concept toward clinically viable solutions. Her research is notable for its emphasis on “performance-recoverable” designs—systems that self-heal or adapt to maintain functionality over time, a paradigm shift from traditional static implants. With a growing citation footprint, Suh is shaping the future of neuroprosthetics, where seamless integration with the nervous system promises to restore movement and sensation for patients with paralysis or limb loss. Her work exemplifies how materials science and neuroscience converge to build truly symbiotic human-machine interfaces.
Research Focus
Key Achievements
Top Papers
- 1Performance‐Recoverable Closed‐Loop Neuroprosthetic System9 citations · 2025