Publications

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Author Title [ Type(Desc)] Year
Book Chapter
Muceli, S. , Vujaklija, I. , Jiang, N. , Amsuess, S. , Graimann, B. , Aszmann, O. C. , & Farina, D. . (2017). A Biologically-Inspired Robust Control System for Myoelectric Control. In Converging Clinical and Engineering Research on Neurorehabilitation II (pp. 975–979). Springer.
Mrachacz-Kersting, N. , Jiang, N. , Aliakbaryhosseinabadi, S. , Xu, R. , Petrini, L. , Lontis, R. , Dremstrup, K. , et al. (2015). The Changing Brain: Bidirectional Learning Between Algorithm and User. In Brain-Computer Interface Research (pp. 115–125). Springer.
Jiang, N. , Mrachacz-Kersting, N. , Xu, R. , Dremstrup, K. , & Farina, D. . (2014). An Accurate, Versatile, and Robust Brain Switch for Neurorehabilitation. In Brain-Computer Interface Research (pp. 47–61). Springer International Publishing.
Aliakbaryhosseinabadi, S. , Jiang, N. , Vuckovic, A. , Lontis, R. , Dremstrup, K. , Farina, D. , & Mrachacz-Kersting, N. . (2014). Detection of Movement Intention from Movement-Related Cortical Potentials with Different Paradigms. In Replace, Repair, Restore, Relieve–Bridging Clinical and Engineering Solutions in Neurorehabilitation (pp. 237–244). Springer International Publishing.
Jochumsen, M. , Niazi, I. Khan, Rovsing, H. , Rovsing, C. , Nielsen, G. A. R. , Andersen, T. K. , Dong, N. P. T. , et al. (2014). Detection of Movement Intentions through a Single Channel of Electroencephalography. In Replace, Repair, Restore, Relieve–Bridging Clinical and Engineering Solutions in Neurorehabilitation (pp. 465–472). Springer International Publishing.
Savić, A. , Lontis, R. , Jiang, N. , Popović, M. , Farina, D. , Dremstrup, K. , & Mrachacz-Kersting, N. . (2014). Movement Related Cortical Potentials and Sensory Motor Rhythms during Self Initiated and Cued Movements. In Replace, Repair, Restore, Relieve–Bridging Clinical and Engineering Solutions in Neurorehabilitation (pp. 701–707). Springer International Publishing.
Mrachacz-Kersting, N. , Niazi, I. Khan, Jiang, N. , Pavlovic, A. M. , Radovanović, S. , Kostic, V. , Popovic, D. , et al. (2013). A novel brain-computer interface for chronic stroke patients. In Converging Clinical and Engineering Research on Neurorehabilitation (pp. 837–841). Springer Berlin Heidelberg.
Farina, D. , Jiang, N. , Rehbaum, H. , Muceli, S. , & Sartori, M. . (2013). Simultaneous and Proportional Myocontrol of Multiple Degrees of Freedom. In Converging Clinical and Engineering Research on Neurorehabilitation (pp. 1225–1228). Springer Berlin Heidelberg.
Conference Paper
Mrachacz-Kersting, N. , Jiang, N. , Xu, R. , Dremstrup, K. , & Farina, D. . (Submitted). Plasticity following skilled learning and the implications for BCI performance. In International Brain-Computer Interface Conference, BCI.
Kristensen, S. Rom, Niazi, I. Khan, Jochumsen, M. , Jiang, N. , Farina, D. , & Mrachacz-Kersting, N. . (Submitted). Changes in corticospinal excitability following the use of a BCI based protocol combined with sham visual feedback. In International Conference on NeuroRehabilitation, ICNR (pp. 599–602).
Mrachacz-Kersting, N. , Jiang, N. , Niazi, I. Khan, Pavlović, A. , Radovanović, S. , Kostić, V. , Dremstrup, K. , et al. (Submitted). The potential of imagination and artificial afference in stroke rehabilitation. In Symposium on Neural Network Applications in Electrical Engineering, NEUREL.
Karimi, F. , Kofman, J. , Mrachcz-Kersting, N. , Farina, D. , & Jiang, N. . (2016). Comparison of EEG spatial filters for movement related cortical potential detection. In Engineering in Medicine and Biology Society (EMBC), 2016 IEEE 38th Annual International Conference of the (pp. 1576–1579). IEEE.
Scheel, H. , Xu, R. , Jiang, N. , Mrachacz-Kersting, N. , Dremstrup, K. , & Farina, D. . (2015). Influence of external cues on synchronized brain-computer interface based on movement related cortical potentials. In Neural Engineering (NER), 2015 7th International IEEE/EMBS Conference on (pp. 45–48). IEEE.
Aliakbaryhosseinabadi, S. , Jiang, N. , Petrini, L. , Farina, D. , Dremstrup, K. , & Mrachacz-Kersting, N. . (2015). Robustness of movement detection techniques from motor execution: Single trial movement related cortical potential. In Neural Engineering (NER), 2015 7th International IEEE/EMBS Conference on (pp. 13–16). IEEE.
Kapelner, T. , Jiang, N. , Vujaklija, I. , Aszmann, O. C. , Holobar, A. , & Farina, D. . (2015). Classification of motor unit activity following targeted muscle reinnervation. In Neural Engineering (NER), 2015 7th International IEEE/EMBS Conference on (pp. 652–654). IEEE.
Aliakbaryhosseinabadi, S. , Petrini, L. , Jiang, N. , Farina, D. , Dremstrup, K. , & Mrachacz-Kersting, N. . (2014). Effect of different attentional level and task repetition on single-trial movement-related cortical potential. In International Brain-Computer Interface Conference, BCI.
Jiang, N. , & Farina, D. . (2014). Myoelectric control of upper limb prosthesis: current status, challenges and recent advances. In Front. Neuroeng. Conference Abstract: MERIDIAN 30M Workshop. doi: 10.3389/conf. fneng (Vol. 4).
Dremstrup, K. , Niazi, I. K. , Jochumsen, M. , Jiang, N. , Mrachacz-Kersting, N. , & Farina, D. . (2014). Rehabilitation Using a Brain Computer Interface Based on Movement Related Cortical Potentials–A Review. In XIII Mediterranean Conference on Medical and Biological Engineering and Computing 2013 (pp. 1659–1662). Springer International Publishing.
Mrachacz-Kersting, N. , Jiang, N. , Niazi, I. Khan, Pavlović, A. M. , Radovanović, S. , Kostić, V. S. , Dremstrup, K. , et al. (2012). The potential of imagination and artificial afference in stroke rehabilitation. In Neural Network Applications in Electrical Engineering (NEUREL), 2012 11th Symposium on (pp. 115–117). IEEE.
Rehbaum, H. , Jiang, N. , Paredes, L. , Amsuess, S. , Graimann, B. , & Farina, D. . (2012). Real time simultaneous and proportional control of multiple degrees of freedom from surface EMG: preliminary results on subjects with limb deficiency. In 2012 Annual International Conference of the IEEE Engineering in Medicine and Biology Society (pp. 1346–1349). IEEE.

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