| 2019 | SMC | A Translational Roadmap for a Brain-Machine-Interface (BMI) System for Rehabilitation. | Alexander Craik, Atilla Kilicarslan, Jos L. Contreras-Vidal |
| 2019 | SMC | EEG-based Neural Decoding of Gait in Developing Children. | Trieu Phat Luu, David Eguren, Manuel Cestari, Jos L. Contreras-Vidal |
| 2017 | SMC | Prediction of lower-limb joint kinematics from surface EMG during overground locomotion. | Justin A. Brantley, Trieu Phat Luu, Sho Nakagame, Jos L. Contreras-Vidal |
| 2017 | SMC | Cortical features of locomotion-mode transitions via non-invasive EEG. | Trieu Phat Luu, Justin A. Brantley, Fangshi Zhu, Jos L. Contreras-Vidal |
| 2017 | SMC | EEG-based brain-computer interface to a virtual walking avatar engages cortical adaptation. | Trieu Phat Luu, Yongtian He, Sho Nakagome, Jos L. Contreras-Vidal |
| 2017 | SMC | Prediction of EMG envelopes of multiple terrains over-ground walking from EEG signals using an unscented Kalman filter. | Sho Nakagome, Trieu Phat Luu, Justin A. Brantley, Jos L. Contreras-Vidal |
| 2014 | SMC | Identifying engineering, clinical and patient's metrics for evaluating and quantifying performance of brain-machine interface (BMI) systems. | Jos L. Contreras-Vidal |
| 2009 | HCI | Brain Processes and Neurofeedback for Performance Enhancement of Precision Motor Behavior. | Bradley D. Hatfield, Amy J. Haufler, Jos L. Contreras-Vidal |
| 1991 | ICASSP | A robust real-time pitch detector based on neural networks. | Horacio Martinez-Alfaro, Jos L. Contreras-Vidal |