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Neurological Research
A Journal of Progress in Neurosurgery, Neurology and Neurosciences
Volume 30, 2008 - Issue 10: Nerve Regeneration and Nerve Repair
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Articles

A novel neuroprosthetic interface with the peripheral nervous system using artificially engineered axonal tracts

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Pages 1063-1067 | Published online: 19 Jul 2013

  • Chapin JK, Moxon KA, Markowitz RS, et al. Real-time control of a robot arm using simultaneously recorded neurons in the motor cortex. Nat Neurosci 1999; 2: 664–670
  • Guger C, Schlogl A, Walterspacher D, et al. Design of an EEG-based brain—computer interface (BO) from standard components running in real-time under Windows. Biomed Tech 1999; 44: 12–16
  • Wolpaw JR, McFarland DJ. Control of a two-dimensional move-ment signal by a noninvasive brain—computer interface in humans. Proc Natl Acad Sci USA 2004; 101: 17849–17854
  • Wolpaw JR, Birbaumer N, McFarland DJ, et al. Brain—computer interfaces for communication and control. Clin Neurophysiol 2002; 113: 767–791
  • Lebedev MA, Nicolelis MA. Brain—machine interfaces: Past, present and future. Trends Neurosci 2006; 29: 536–546
  • Palmer C. A microwire technique for recording single neurons in unrestrained animals. Brain Res Bull 1978; 3: 285–289
  • Maynard EM, Hatsopoulos NG, Ojakangas CL, et al. Neuronal interactions improve cortical population coding of movement direction. J Neurosci 1999; 19: 8083–8093
  • Donoghue JP. Connecting cortex to machines: Recent advances in brain interfaces. Nat Neurosci 2002; 5 (Suppl.): 1085-1088
  • Taylor DM, Tillery SI, Schwartz AB. Direct cortical control of 3D neuroprosthetic devices. Science 2002; 296: 1829–1832
  • Hochberg LR, Serruya MD, Friehs GM, et al. Neuronal ensemble control of prosthetic devices by a human with tetraplegia. 2006; 442: 164–171
  • Rao SM, Binder JR, Hammeke TA, et al. Somatotopic mapping of the human primary motor cortex with functional magnetic resonance imaging. Neurology 1995; 45: 919–924
  • Navarro X, Krueger TB, Lago N, et al. A critical review of interfaces with the peripheral nervous system for the control of neuroprosth-eses and hybrid bionic systems. I Peripher Nerv Syst 2005; 10: 229–258
  • Grill WM, Mortimer JT. Stability of the input—output properties of chronically implanted multiple contact nerve cuff stimulating electrodes. IEEE Trans Rehab Eng 1998; 6: 364–373
  • Warwick K, Gasson M, Hutt B, et al. The application of implant technology for cybernetic systems. Arch Neurol 2003; 60: 1369–1373
  • Branner A, Stein RB, Fernandez E, et al. Long-term stimulation and recording with a penetrating microelectrode array in cat sciatic nerve. IEEE Trans Biomed Eng 2004; 51: 146–157
  • Kuiken TA, Dumanian GA, Lipschutz RD, et al. The use of targeted muscle reinnervation for improved myoelectric prosthesis control in a bilateral shoulder disarticulation amputee. Prosthet Orthot Int 2004; 28: 245–253
  • Kuiken TA, Miller LA, Lipschutz RD, etal. Targeted reinnervation for enhanced prosthetic arm function in a woman with a proximal amputation: A case study. Lancet 2007; 369: 371–380
  • Kuiken TA, Marasco PD, Lock BA, etal. Redirection of cutaneous sensation from the hand to the chest skin of human amputees with targeted reinnervation. Proc Nat! Acad Sci USA 2007; 104: 20061–20066
  • Dhillon GS, Lawrence SM, Hutchinson DT, etal. Residual function in peripheral nerve stumps of amputees: Implications for neural control of artificial limbs. . 1 Hand Surg (Am) 2004; 29: 605–615
  • Smith DH, Wolf JA, Meaney DE. A new strategy to produce sustained growth of central nervous system axons: Continuous mechanical tension. Tissue Eng 2001; 7: 131–139
  • Pfister BJ, lwata A, Meaney DF, et al. Extreme stretch growth of integrated axons. J Neurosci 2004; 24: 7978-7983
  • Pfister BJ, lwata A, Taylor AG, et al. Development of transplantable nervous tissue constructs comprised of stretch-grown axons. J Neurosci Methods 2005; 153: 95-103
  • Pfister BJ, Bonislawski DP, Smith DH, et al. Stretch-grown axons retain the ability to transmit active electrical signals. FEBS Lett 2006; 580: 3525–3531
  • Huang JH, Zhang JZ, Groff RE, et al. Living nerve constructs bridging peripheral nerve lesions demonstrate long-term survival and restoration of function. ] Neurotrauma 2004; 21: 1297
  • Cullen DK, Vukasinovic J, Glezer A, etal. Microfluidic engineered high cell density three-dimensional neural cultures. .1 Neural Eng 2007; 4: 159–172
  • Pfister BJ, Huang JH, Zager EL, et al. Engineering nerve constructs for clinical application. .1 Neurotrauma 2004; 21: 1288

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