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Kevin Nathan

Showing results (1-10 of 11) with videos related to

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Frontiers in Human Neuroscience|January 22, 2016
Negligible Motion Artifacts in Scalp Electroencephalography (EEG) During Treadmill WalkingKevin Nathan, Jose L Contreras-Vidal
Scientific Data|April 25, 2018
A mobile brain-body imaging dataset recorded during treadmill walking with a brain-computer interfaceYongtian He, Trieu Phat Luu, Kevin Nathan, et al.
Scientific Data|June 1, 2026
EEG-Controlled Exoskeleton for Walking and Standing: A Longitudinal Multimodal Dataset of Healthy IndividualsShantanu Sarkar, Kevin Nathan, Atilla Kilicarslan, et al.
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|March 9, 2017
Unscented Kalman filter for neural decoding of human treadmill walking from non-invasive electroencephalographyTrieu Phat Luu, Yongtian He, Sho Nakagame, et al.
Frontiers in Human Neuroscience|July 6, 2017
Multi-Trial Gait Adaptation of Healthy Individuals during Visual Kinematic PerturbationsTrieu Phat Luu, Yongtian He, Sho Nakagome, et al.
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|January 9, 2015
An integrated neuro-robotic interface for stroke rehabilitation using the NASA X1 powered lower limb exoskeletonYongtian He, Kevin Nathan, Anusha Venkatakrishnan, et al.
American Journal of Physical Medicine & Rehabilitation|February 27, 2018
Neural Decoding of Robot-Assisted Gait During Rehabilitation After StrokeJose L Contreras-Vidal, Magdo Bortole, Fangshi Zhu, et al.
Medrxiv : the Preprint Server for Health Sciences|July 17, 2025
High-gamma electrocorticography activity represents perceived vibration intensity in human somatosensory cortexOranatt Chaichanasittikarn, Lauren Diaz, Neha Thomas, et al.
Journal of Neural Engineering|April 12, 2016
Powered exoskeletons for bipedal locomotion after spinal cord injuryJose L Contreras-Vidal, Nikunj A Bhagat, Justin Brantley, et al.
Research Square|October 16, 2023
A click-based electrocorticographic brain-computer interface enables long-term high-performance switch-scan spellingNathan Crone, Daniel Candrea, Samyak Shah, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Frontiers in Human Neuroscience|January 22, 2016
Negligible Motion Artifacts in Scalp Electroencephalography (EEG) During Treadmill WalkingKevin Nathan, Jose L Contreras-Vidal
Scientific Data|April 25, 2018
A mobile brain-body imaging dataset recorded during treadmill walking with a brain-computer interfaceYongtian He, Trieu Phat Luu, Kevin Nathan, et al.
Scientific Data|June 1, 2026
EEG-Controlled Exoskeleton for Walking and Standing: A Longitudinal Multimodal Dataset of Healthy IndividualsShantanu Sarkar, Kevin Nathan, Atilla Kilicarslan, et al.
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|March 9, 2017
Unscented Kalman filter for neural decoding of human treadmill walking from non-invasive electroencephalographyTrieu Phat Luu, Yongtian He, Sho Nakagame, et al.
Frontiers in Human Neuroscience|July 6, 2017
Multi-Trial Gait Adaptation of Healthy Individuals during Visual Kinematic PerturbationsTrieu Phat Luu, Yongtian He, Sho Nakagome, et al.
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|January 9, 2015
An integrated neuro-robotic interface for stroke rehabilitation using the NASA X1 powered lower limb exoskeletonYongtian He, Kevin Nathan, Anusha Venkatakrishnan, et al.
American Journal of Physical Medicine & Rehabilitation|February 27, 2018
Neural Decoding of Robot-Assisted Gait During Rehabilitation After StrokeJose L Contreras-Vidal, Magdo Bortole, Fangshi Zhu, et al.
Medrxiv : the Preprint Server for Health Sciences|July 17, 2025
High-gamma electrocorticography activity represents perceived vibration intensity in human somatosensory cortexOranatt Chaichanasittikarn, Lauren Diaz, Neha Thomas, et al.
Journal of Neural Engineering|April 12, 2016
Powered exoskeletons for bipedal locomotion after spinal cord injuryJose L Contreras-Vidal, Nikunj A Bhagat, Justin Brantley, et al.
Research Square|October 16, 2023
A click-based electrocorticographic brain-computer interface enables long-term high-performance switch-scan spellingNathan Crone, Daniel Candrea, Samyak Shah, et al.
Pageof 2