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[1] M.C. Carrozza, B. Massa, S. Micera, R. Lazzarini, M. Zecca, P. Dario, “The Development of a Novel Prosthetic Hand – Ongoing Research and Preliminary Results”, IEEE Trans Mechatronics, vol. 7, pp. 108-114, 2002.

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110 Bibliography:

[1] M.C. Carrozza, B. Massa, S. Micera, R. Lazzarini, M. Zecca, P. Dario, “The Development of a Novel Prosthetic Hand – Ongoing Research and Preliminary Results”, IEEE Trans Mechatronics, vol. 7, pp. 108-114, 2002.

[2] Navarro X, Krueger T, Lago N, Micera S, Stieglitz T, Dario P,” A critical review of interfaces with the peripheral nervous system for the control of neuroprotheses and hybrid bionic systems”

Journal of the Peripheral Nervous System no.10, pp.229–258, 2005.

[3] Stieglitz T, Meyer J. “Characterization of flexible electrodes with integrated cables for recording and stimulating peripheral nerves” 5th Vienna International Workshop on FES. pp.145-148, 1995.

[4] Rodríguez FJ, Ceballos D, Schüttler M, Valderrama E, Stieglitz T, Navarro X.,” Polyimide cuff electrodes for phreiperial nerve stimulation”. Journal of Neuroscience Methods vol.98, pp.105-118, 2000.

[5] Navarro X, Valderrama E, Stieglitz T, Schüttler M, “Selective fascicular stimulation of the rat sciatic nerve with multipolar polymide cuff electrodes”.Restorative Neurology and Neuroscience vol. 18, pp.9-21, 2001.

[6] Klaus Peter Koch, “Microfabrication of Neuroprostheses”. Technical note. IBMT

[7] Lago N, Yoshida K, Koch KP, Navarro X. “Assessments of Biocompatibility of Chronicallly iImplanted Polyimide and Platinum Intrafascicular Electrodes” .IEEE Transactions on biomedical engineering Vol.54. No.2 , pp. 281-290, February 2007

[8] Navarro X., and others. “Neurobiological evaluation of thin-film LIFEs as a peripherial nerve interface”.

[9] Dhillon G., Horch K.” Direct Neural Sensory Feedback and Control of Prosthetic Arm”. IEEE TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, VOL.13, NO.

4, December 2005.

[10] Dhillon G, and others. “Effects of Short-Term Training on Sensory and Motor Function in

Severs Nerves of Long-Term Human Amputees”. J. Neurophysiology Vol. 93, pp. 2625-2633, 2005.

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111 [11] Siliva Bossi, and others. “Shape Alloy Microactuation of tf-LIFEs:Preliminary Results” . IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, VOL 54. NO. 6 June 2007.

[12] Upshaw B., Sinkjaer T. “Digital Signal Processing Algorithms for the Detection of Afferent Nerve Activity Recorded from Cuff Electrodes” IEEE Transactions on rehabilitation Engineering Vol.6 No.2 June 1998

[13] Choi C. and others. “Classification of Afferent Signals Recorded with a Single Cuff Electrode”.2007

[14] Navarro X., Kennedy W.” Changes in sudomotor nerve territories with aging in the mouse”.

Journal of Autonomic Nervous System, Vol. 31, pp. 101-108, 1990.

[15] M. Zecca, S. Micera, M. C. Carrozza, P. Dario, “Control of Multifunctional Prosthetic Hands by Processing the Electromyographic Signal”. Critical Reviews™ in Biomedical Engineering, Vol.

30(4–6),pp.459–485, 2002.

[16] WIKIpedia-free internet encyclopaedia. www.wikipedia.org

[17] K. Nazarpour , A. R. Sharafat , and S. M. P. Firoozabadi Surface EMG Signal Classification Using a Selective Mix of Higher Order Statistics Proceedings of the 2005 IEEE Engineering in

Medicine and Biology 27th Annual Conference Shanghai, China, September 1-4, 2005 [18] Johnatan Shlens “A tutorial on PCA”. 2005

[19] Z. Nikolic, D. Popovic et al., “Instrumentation for ENG and EMG recordings in FES systems,”

IEEE Trans. Biomed. Eng., vol. 41, no. 7, pp. 703–706, 1994

[20] Alireza Khadivi, Kianoush Nazarpour, Hamid Soltanain Zadeh “SEMG CLASSIFICATION FOR UPPER-LIMB PROSTHESIS CONTROL USING HIGHER ORDER STATISTICS”. IEEE

©pp.385-388, 2005.

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