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In the past, I have designed non-invasive vagus nerve stimulators (VNS) for acute stroke recovery, feedback controlled neuromuscular stimulators for grasping, EEG-based BCIs. I have also worked on a clinical study funded by NIH (Grant # R01NS081854) and lead University of Houston's team, in determining the efficacy of BCI-controlled robotic rehabilitation on stroke motor recovery.
Previously, I have worked on projects that involved measuring hand tremors using a "smart" glove, as well as designing RF communication circuits for a student satellite project at IIT Bombay, India. I have also participated in an NIH-funded entrepreneurial training program, organized by Coulter foundation, for understanding biomedical device product cycle, FDA regulations, fund raising, etc.
Previously, I have worked on projects that involved measuring hand tremors using a "smart" glove, as well as designing RF communication circuits for a student satellite project at IIT Bombay, India. I have also participated in an NIH-funded entrepreneurial training program, organized by Coulter foundation, for understanding biomedical device product cycle, FDA regulations, fund raising, etc.
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Frontiers in neuroscience (2023): 1210328
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IEEE Transactions on Human-Machine Systemsno. 6 (2023): 996-1005
Frontiers in neuroscience (2023): 1210544-1210544
Nikunj Arunkumar Bhagat, Manikanta Ruppa
2023 10th International Conference on Signal Processing and Integrated Networks (SPIN)pp.538-542, (2023)
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