A Closed-Loop Brain-Computer Interface Triggering an Active Ankle-Foot Orthosis for Inducing Cortical Neural Plasticity. Xu, R., Jiang, N., Mrachacz-Kersting, N., Lin, C., Prieto, G. A., Moreno, J. C., Pons, J. L., Dremstrup, K., & Farina, D. IEEE Trans. Biomed. Engineering, 61(7):2092-2101, 2014.
A Closed-Loop Brain-Computer Interface Triggering an Active Ankle-Foot Orthosis for Inducing Cortical Neural Plasticity. [link]Link  A Closed-Loop Brain-Computer Interface Triggering an Active Ankle-Foot Orthosis for Inducing Cortical Neural Plasticity. [link]Paper  bibtex   
@article{journals/tbe/XuJMLPMPDF14,
  author = {Xu, Ren and Jiang, Ning and Mrachacz-Kersting, Natalie and Lin, Chuang and Prieto, Guillermo Asin and Moreno, Juan C. and Pons, José Luis and Dremstrup, Kim and Farina, Dario},
  ee = {http://dx.doi.org/10.1109/TBME.2014.2313867},
  interhash = {ae692aa875295eb31658441a3858813a},
  intrahash = {b18133a45695ca74021706151a3c530b},
  journal = {IEEE Trans. Biomed. Engineering},
  number = 7,
  pages = {2092-2101},
  title = {A Closed-Loop Brain-Computer Interface Triggering an Active Ankle-Foot Orthosis for Inducing Cortical Neural Plasticity.},
  url = {http://dblp.uni-trier.de/db/journals/tbe/tbe61.html#XuJMLPMPDF14},
  volume = 61,
  year = 2014
}

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