Funabashi Shinntarou
Papers
1
Total Citations
15
H-Index
1
About
Dr. Shinntarou Funabashi is a pioneering researcher at the intersection of brain-machine interfaces (BMIs), augmented reality (AR), and machine vision. His most influential work introduces a novel dynamic AR visual stimulation (AR-VS) paradigm that fuses machine vision with steady-state visual evoked potentials (SSVEPs). In a landmark 2021 study (15 citations), Funabashi demonstrated that this hybrid approach enables brain-controlled robots to perform complex tasks—such as self-moving and object grabbing—64% faster than traditional SSVEP methods. This breakthrough significantly enhances the speed and intuitiveness of non-invasive BMIs, opening new possibilities for assistive robotics and real-world neuroprosthetics. By optimizing AR-VS for dynamic environments, his research bridges the gap between virtual cues and physical action, offering a scalable framework for future neuroergonomic systems. Funabashi’s work is shaping the next generation of human-machine collaboration, where augmented reality and neural decoding converge to restore and augment motor function.
Research Focus
Key Achievements
Top Papers
- 1