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Panetsos, F., Avenda˜o, C., Negredo, P., Castro, J., & Bonacasa, V. (2008). Neural prosthe-
ses: Electrophysiological and histological evaluation of central nervous system alterations
due to long-term implants of sieve electrodes to peripheral nerves in cats. IEEE Trans-
actions on Neural Systems and Rehabilitation Engineering , 16 , 223-232.
Park, S. H., & Lee, S. P. (1998). EMG pattern recognition based on artificial intelligence
techniques. IEEE Transactions on Rehabilitation Engineering , 6 , 400-405.
Peckham, P. H., Keith, M. W., Kilgore, K. L., Grill, J. H., Wuolle, K. S., Thrope, G. B.,
et al. (2001). Efficacy of an implanted neuroprosthesis for restoring hand grasp in
tetraplegia: A multicenter study. Archives of Physical Medicine and Rehabilitation , 82 ,
1380-1388.
Popovic, M. R., Curt, A., Keller, T., &Dietz, V. (2001). Functional electrical stimulation for
grasping and walking: Indications and limitations. Spinal Cord , 39 , 403-412.
Popovic, M. R., & Keller, T. (2005). Modular transcutaneous functional electrical stimula-
tion system. Medical Engineering & Physics , 27 , 81-92.
Ragnarsson, K. T. (2007). Functional electrical stimulation after spinal cord injury: Current
use, therapeutic effects and future directions. Spinal Cord , 46 , 255-274.
Raspopovic, S., Carpaneto, J., Udina, E., Navarro, X., & Micera, S. (2010). On the iden-
tification of sensory information from mixed nerves by using single-channel cuff elec-
trodes. Journal of Neuroengineering Rehabilitation , 7 , 17.
Rosen, J. M., Grosser, M., & Hentz, V. R. (1990). Preliminary experiments in nerve regen-
eration through laser-drilled holes in silicon chips. Restorative Neurology and Neuroscience ,
2 (2), 89-102.
Rossini, P. M., Micera, S., Benvenuto, A., Carpaneto, J., Cavallo, G., Citi, L., et al. (2010).
Double nerve intraneural interface implant on a human amputee for robotic hand con-
trol. Clinical Neurophysiology , 121 , 777-783.
Rupp, R., & Gerner, H. J. (2004). Neuroprosthetics of the upper extremity—Clinical appli-
cation in spinal cord injury and future perspectives. Biomedizinische Technik/Biomedical
Engineering , 49 , 93-98.
Schiefer, M. A., Polasek, K. H., Triolo, R. J., Pinault, G. C. J., & Tyler, D. J. (2010). Selec-
tive stimulation of the human femoral nerve with a flat interface nerve electrode. Journal
of Neural Engineering , 7 , 026006.
Schuind, F., Abramowicz, D., & Schneeberger, S. (2007). Hand transplantation: The state-
of-the-art. Journal of Hand Surgery, British & European , 32 , 2-17.
Schultz, A. E., & Kuiken, T. A. (2011). Neural interfaces for control of upper limb prosthe-
ses: The state of the art and future possibilities. PM&R , 3 , 55-67.
Scott, R. N., & Parker, P. A. (1988). Myoelectric prostheses: State of the art. Journal of Medical
Engineering & Technology , 12 , 143-151.
Sensinger, J. W., Schultz, A. E., &Kuiken, T. A. (2009). Examination of force discrimination
in human upper limb amputees with reinnervated limb sensation following peripheral
nerve transfer. IEEE Transactions on Neural Systems and Rehabilitation Engineering , 17 ,
438-444.
Stein, R. B., & Mushahwar, V. (2005). Reanimating limbs after injury or disease. Trends in
Neuroscience , 28 , 518-524.
Stieglitz, T. (2007). Neural prostheses in clinical practice: Biomedical microsystems in neu-
rological rehabilitation. Acta Neurochirurgica Supplement , 97 , 411-418.
Tarler, M. D., &Mortimer, J. T. (2004). Selective and independent activation of four motor
fascicles using a four contact nerve-cuff electrode. IEEE Transactions on Neural Systems
and Rehabilitation Engineering , 12 , 251-257.
Tesfayesus, W., & Durand, D. M. (2006). Blind source separation of neural recordings and
control signals. In 28th Annual International Conference of the IEEE Engineering in Medicine
and Biology Society (pp. 731-734).
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