Locomotor circuits in the mammalian spinal cord (original) (raw)
Deciphering the organization and modulation of spinal locomotor central pattern generators
Patrick Whelan
Journal of Experimental Biology, 2006
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Diversity of molecularly defined spinal interneurons engaged in mammalian locomotor pattern generation
Shawn Hochman
Journal of Neurophysiology, 2017
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Organization of the Mammalian Locomotor CPG: Review of Computational Model and Circuit Architectures Based on Genetically Identified Spinal Interneurons(1,2,3)
Natalia Shevtsova
eNeuro, 2015
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Distribution of Central Pattern Generators for Rhythmic Motor Outputs in the Spinal Cord of Limbed Vertebratesa
Ole Kiehn
Annals of The New York Academy of Sciences, 1998
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The mammalian central pattern generator for locomotion
Pierre Guertin
Brain Research Reviews, 2009
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Key central pattern generators of the spinal cord
Pierre Guertin
Journal of Neuroscience Research, 2009
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Genetic Identification of Spinal Interneurons that Coordinate Left-Right Locomotor Activity Necessary for Walking Movements
Guillermo Lanuza
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Organization of left-right coordination of neuronal activity in the mammalian spinal cord locomotor CPG: insights from computational modeling
Ilya rybak
BMC Neuroscience, 2014
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Spinal interneurons providing input to the final common path during locomotion
Tuan Nam Bui
Breathe, Walk and Chew: The Neural Challenge: Part I, 2010
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Locomotor-Like Rhythms in a Genetically Distinct Cluster of Interneurons in the Mammalian Spinal Cord
Linying Wu
Journal of Neurophysiology, 2004
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Neuronal activity in the isolated mouse spinal cord during spontaneous deletions in fictive locomotion: insights into locomotor central pattern generator organization
Natalia Shevtsova
The Journal of Physiology, 2012
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Modelling spinal circuitry involved in locomotor pattern generation: insights from deletions during fictive locomotion
Ilya rybak
The Journal of Physiology, 2006
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Organization of left–right coordination in the mammalian locomotor network
Ole Kiehn
Brain Research Reviews, 2002
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Delineating the Diversity of Spinal Interneurons in Locomotor Circuits
Guillermo Lanuza
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Spinal V3 interneurons and left-right coordination in mammalian locomotion
Ilya rybak
2019
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Locomotor rhythmogenesis in the isolated rat spinal cord: a phase-coupled set of symmetrical flexion extension oscillators
John Simmers
The Journal of Physiology, 2007
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Asymmetric Operation of the Locomotor Central Pattern Generator in the Neonatal Mouse Spinal Cord
O. Kiehn
Journal of Neurophysiology, 2008
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Excitatory components of the mammalian locomotor CPG
ernesto restrepo
Brain Research Reviews, 2008
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DCC mediated axon guidance of spinal interneurons is essential for normal locomotor central pattern generator function
Nadine Bernhardt
Developmental Biology, 2012
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Firing Properties of Identified Interneuron Populations in the Mammalian Hindlimb Central Pattern Generator
O. Kiehn
The Journal of Neuroscience, 2002
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Development and functional organization of spinal locomotor circuits
Ole Kiehn
Current opinion in neurobiology, 2011
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Organization of mammalian locomotor rhythm and pattern generation
Ilya rybak
Brain Research Reviews, 2008
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Genetic Ablation of V2a Ipsilateral Interneurons Disrupts Left-Right Locomotor Coordination in Mammalian Spinal Cord
Katharina Quinlan
Neuron, 2008
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Identification of minimal neuronal networks involved in flexor-extensor alternation in the mammalian spinal cord
Ole Kiehn
Neuron, 2011
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The mammalian central pattern generator for
Pierre Guertin
2009
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Netrin-1-Dependent Spinal Interneuron Subtypes Are Required for the Formation of Left-Right Alternating Locomotor Circuitry
Nadine Bernhardt
Journal of Neuroscience, 2009
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Modelling genetic reorganization in the mouse spinal cord affecting left-right coordination during locomotion
Ole Kiehn
The Journal of physiology, 2013
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Evidence for a Spinal Central Pattern Generator in Humansa
Milan R Dimitrijevic
Annals of the New York Academy of Sciences, 1998
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Central pattern generators and the control of rhythmic movements
Eve Marder
Current Biology, 2001
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V1 and V2b Interneurons Secure the Alternating Flexor-Extensor Motor Activity Mice Require for Limbed Locomotion
Guillermo Lanuza
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