Kofi Appiah
Papers
3
Total Citations
46
H-Index
2
About
Dr. Kofi Appiah is a leading researcher at the intersection of neuromorphic engineering and computer vision, with a core focus on developing ultra-fast, biologically-inspired vision systems for real-time applications. His most significant contributions center on the mathematical modeling and hardware implementation of the Lobula Giant Movement Detector (LGMD), a wide-field visual neuron from the locust nervous system that excels at detecting looming objects and collision threats. Dr. Appiah’s seminal work, including a modified LGMD model and its FPGA implementation (2010, 27 citations), pioneered the translation of this biological mechanism into efficient, resource-limited hardware. By introducing additional depth movement features (2009, 18 citations), he enhanced the model’s ability to distinguish approach velocity and proximity. His recent research on an FPGA-based neuromorphic vision system accelerator (2024) further advances this field, aiming to achieve the high-level scene understanding and ultra-fast processing required for secure, real-time interaction in embedded systems. Through this fusion of neuroscience and engineering, Dr. Appiah’s work has laid a critical foundation for next-generation, low-power collision avoidance and event-driven vision systems.
Research Focus
Key Achievements
Top Papers
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- 3An FPGA-based neuromorphic vision system accelerator1 citations · 2024