Phase-Dependent Effects of Spinal Cord Stimulation on Locomotor Activity
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[1] C. Rovainen. Physiological and anatomical studies on large neurons of central nervous system of the sea lamprey (Petromyzon marinus). I. Müller and Mauthner cells. , 1967, Journal of neurophysiology.
[2] C. Rovainen. Physiological and anatomical studies on large neurons of central nervous system of the sea lamprey (Petromyzon marinus). II. Dorsal cells and giant interneurons. , 1967, Journal of neurophysiology.
[3] A. Winfree. The geometry of biological time , 1991 .
[4] P. Holmes,et al. Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields , 1983, Applied Mathematical Sciences.
[5] S. Grillner,et al. The effect of dorsal root transection on the efferent motor pattern in the cat's hindlimb during locomotion. , 1984, Acta physiologica Scandinavica.
[6] P. Wallén,et al. Fictive locomotion in the lamprey spinal cord in vitro compared with swimming in the intact and spinal animal. , 1984, The Journal of physiology.
[7] From Clocks to Chaos: The Rhythms of Life , 1988 .
[8] R. A. Davidoff. Neural Control of Rhythmic Movements in Vertebrates , 1988, Neurology.
[9] A. McClellan. Brainstem command systems for locomotion in the lamprey: localization of descending pathways in the spinal cord , 1988, Brain Research.
[10] D Paydarfar,et al. Phase resetting of respiratory rhythm: effect of changing respiratory "drive". , 1989, The American journal of physiology.
[11] Leon Glass,et al. The effects of superior laryngeal nerve stimulation on the respiratory rhythm: phase-resetting and aftereffects , 1990, Brain Research.
[12] N. Curtin,et al. Interactions between muscle activation, body curvature and the water in the swimming lamprey. , 1995, Symposia of the Society for Experimental Biology.
[13] A. Cohen,et al. Dynamic behavior of a neural network model of locomotor control in the lamprey. , 1996, Journal of neurophysiology.
[14] A. McClellan,et al. Descending control of turning locomotor activity in larval lamprey: neurophysiology and computer modeling. , 1997, Journal of neurophysiology.
[15] S. Grossberg,et al. Neural control of interlimb oscillations , 1997, Biological Cybernetics.
[16] S Grossberg,et al. Neural control of interlimb oscillations. II. Biped and quadruped gaits and bifurcations. , 1997, Biological cybernetics.
[17] Anders Lansner,et al. Intersegmental coordination in the lamprey: simulations using a network model without segmental boundaries , 1997, Biological Cybernetics.
[18] M. Dimitrijevic,et al. Evidence for a Spinal Central Pattern Generator in Humans a , 1998, Annals of the New York Academy of Sciences.
[19] P. Holmes,et al. Simple models for excitable and oscillatory neural networks , 1998, Journal of mathematical biology.
[20] S. Grillner,et al. Modeling of the Spinal Neuronal Circuitry Underlying Locomotion in a Lower Vertebratea , 1998, Annals of the New York Academy of Sciences.
[21] S. Grillner,et al. Intrinsic function of a neuronal network — a vertebrate central pattern generator 1 Published on the World Wide Web on 8 April 1998. 1 , 1998, Brain Research Reviews.
[22] S Grillner,et al. Simulations of neuromuscular control in lamprey swimming. , 1999, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[23] J. Abbas,et al. Brain-spinal cord interactions stabilize the locomotor rhythm to an external perturbation. , 1999, Biomedical sciences instrumentation.
[24] J A Hoffer,et al. Restoration of use of paralyzed limb muscles using sensory nerve signals for state control of FES-assisted walking. , 1999, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[25] S. Grillner,et al. The intrinsic function of a motor system — from ion channels to networks and behavior 1 1 Published on the World Wide Web on 22 November 2000. , 2000, Brain Research.
[26] H. Hultborn. State‐dependent modulation of sensory feedback , 2001, The Journal of physiology.
[27] D. McCrea. Spinal circuitry of sensorimotor control of locomotion , 2001, The Journal of physiology.
[28] A. Cohen,et al. Impact of movement and movement-related feedback on the lamprey central pattern generator for locomotion. , 2001, The Journal of experimental biology.
[29] R. Herman,et al. Spinal cord stimulation facilitates functional walking in a chronic, incomplete spinal cord injured , 2002, Spinal Cord.
[30] S. Grillner,et al. Cellular bases of a vertebrate locomotor system–steering, intersegmental and segmental co-ordination and sensory control , 2002, Brain Research Reviews.
[31] Peter Saunders. The geometry of biological time (2nd edn), by Arthur T. Winfree. Pp. 777. £46.50. 2001 ISBN 0 387 98992 7 (Springer). , 2002, The Mathematical Gazette.
[32] Anders Lansner,et al. Computer simulation of the segmental neural network generating locomotion in lamprey by using populations of network interneurons , 2004, Biological Cybernetics.
[33] O. A. Nikitin,et al. Initiation of Locomotor Activity in Spinal Cats by Epidural Stimulation of the Spinal Cord , 2003, Neuroscience and Behavioral Physiology.
[34] Tim Kiemel,et al. Estimating the Strength and Direction of Functional Coupling in the Lamprey Spinal Cord , 2003, Journal of Computational Neuroscience.
[35] Jiping He,et al. Epidural spinal-cord stimulation facilitates recovery of functional walking following incomplete spinal-cord injury , 2004, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[36] P. Wallén,et al. The neuronal correlate of locomotion in fish , 1980, Experimental Brain Research.
[37] V. Mushahwar,et al. Intraspinal microstimulation generates functional movements after spinal-cord injury , 2004, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[38] M. Dimitrijevic,et al. Stepping-like movements in humans with complete spinal cord injury induced by epidural stimulation of the lumbar cord: electromyographic study of compound muscle action potentials , 2004, Spinal Cord.
[39] S. Harkema,et al. Locomotor activity in spinal cord-injured persons. , 2004, Journal of applied physiology.
[40] S. Scarpetta,et al. Mathematical analysis and simulations of the neural circuit for locomotion in lampreys. , 2004, Physical review letters.
[41] N.V. Thakor,et al. Electrical Stimulation of a Spinal Central Pattern Generator for Locomotion , 2005, Conference Proceedings. 2nd International IEEE EMBS Conference on Neural Engineering, 2005..
[42] V. Edgerton,et al. Hindlimb stepping movements in complete spinal rats induced by epidural spinal cord stimulation , 2005, Neuroscience Letters.