Sensory pathways and their modulation in the control of locomotion

[1]  F. Plum Handbook of Physiology. , 1960 .

[2]  S. Grillner Control of Locomotion in Bipeds, Tetrapods, and Fish , 1981 .

[3]  K. Sillar,et al.  Phase-dependent reversal of reflexes mediated by the thoracocoxal muscle receptor organ in the crayfish, Pacifastacus leniusculus. , 1986, Journal of neurophysiology.

[4]  U. Bässler Functional principles of pattern generation for walking movements of stick insect forelegs: the role of the femoral chordotonal organ afferences , 1988 .

[5]  K G Pearson,et al.  Proprioceptive input patterns elevator activity in the locust flight system. , 1988, Journal of neurophysiology.

[6]  M. Hulliger,et al.  Ensemble proprioceptive activity in the cat step cycle: towards a representative look-up chart. , 1989, Progress in brain research.

[7]  F. Clarac,et al.  Direct evidence for presynaptic inhibitory mechanisms in crayfish sensory afferents. , 1992, Journal of neurophysiology.

[8]  K. Pearson,et al.  Reorganization of sensory regulation of locust flight after partial deafferentation. , 1992, Journal of neurobiology.

[9]  K. Pearson Common principles of motor control in vertebrates and invertebrates. , 1993, Annual review of neuroscience.

[10]  D A McCrea,et al.  Disynaptic group I excitation of synergist ankle extensor motoneurones during fictive locomotion in the cat. , 1995, The Journal of physiology.

[11]  S. Grillner,et al.  Neural networks that co-ordinate locomotion and body orientation in lamprey , 1995, Trends in Neurosciences.

[12]  K. Pearson Proprioceptive regulation of locomotion , 1995, Current Opinion in Neurobiology.

[13]  M. Burrows,et al.  Proprioceptive sensory neurons of a locust leg receive rhythmic presynpatic inhibition during walking , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[14]  A. Büschges Role of local nonspiking interneurons in the generation of rhythmic motor activity in the stick insect. , 1995, Journal of neurobiology.

[15]  A. Roberts,et al.  Effects of site of tactile stimulation on the escape swimming responses of hatchling Xenopus laevis embryos , 1995 .

[16]  D. McCrea,et al.  Group I extensor afferents evoke disynaptic EPSPs in cat hindlimb extensor motorneurones during fictive locomotion. , 1996, The Journal of physiology.

[17]  E. Marder,et al.  Principles of rhythmic motor pattern generation. , 1996, Physiological reviews.

[18]  Octopamine induces steady-state reflex reversal in crayfish thoracic ganglia. , 1996, Journal of neurophysiology.

[19]  Robertson,et al.  Recovery of the flight system following ablation of the tegulae in immature adult locusts , 1996, The Journal of experimental biology.

[20]  P. Katz Neurons, Networks, and Motor Behavior , 1996, Neuron.

[21]  J. Gossard Control of transmission in muscle group IA afferents during fictive locomotion in the cat. , 1996, Journal of neurophysiology.

[22]  BÜSchges,et al.  Gain changes in sensorimotor pathways of the locust leg , 1996, The Journal of experimental biology.

[23]  Jaynie F. Yang,et al.  Short latency, non-reciprocal group I inhibition is reduced during the stance phase of walking in humans , 1996, Brain Research.

[24]  M. Burrows The Neurobiology of an Insect Brain , 1996 .

[25]  T. Sinkjaer,et al.  Soleus stretch reflex modulation during gait in humans. , 1996, Journal of neurophysiology.

[26]  R B Stein,et al.  Gain of the triceps surae stretch reflex in decerebrate and spinal cats during postural and locomotor activities. , 1996, The Journal of physiology.

[27]  S Grillner,et al.  Monosynaptic input from cutaneous sensory afferents to fin motoneurons in lamprey , 1996, The Journal of comparative neurology.

[28]  J. Coast Handbook of Physiology. Section 12. Exercise: Regulation and Integration of Multiple Systems , 1997 .

[29]  S. Zill,et al.  The tarso-pretarsal chordotonal organ as an element in cockroach walking , 1997, Journal of Comparative Physiology A.

[30]  K. Pearson,et al.  Modification of group I field potentials in the intermediate nucleus of the cat spinal cord after chronic axotomy of an extensor nerve , 1997, Neuroscience Letters.

[31]  K. Pearson,et al.  Plasticity in reflex pathways controlling stepping in the cat. , 1997, Journal of neurophysiology.

[32]  F. Kuenzi,et al.  Ionic currents, transmitters and models of motor pattern generators , 1997, Current Opinion in Neurobiology.

[33]  K. Pearson,et al.  Effects of extensor muscle afferents on the timing of locomotor activity during walking in adult rats , 1997, Brain Research.

[34]  S. Grillner,et al.  Locomotor‐Related Presynaptic Modulation of Primary Afferents in the Lamprey , 1997, The European journal of neuroscience.

[35]  D. Cattaert,et al.  Neural mechanisms of reflex reversal in coxo-basipodite depressor motor neurons of the crayfish. , 1997, Journal of neurophysiology.

[36]  H Wolf,et al.  Plasticity of synaptic connections in sensory-motor pathways of the adult locust flight system. , 1997, Journal of neurophysiology.

[37]  R. Stein,et al.  Identification, Localization, and Modulation of Neural Networks for Walking in the Mudpuppy (Necturus Maculatus) Spinal Cord , 1998, The Journal of Neuroscience.

[38]  W. Stein,et al.  Modulation of sensorimotor pathways associated with gain changes in a posture-control network of an insect , 1998, Journal of Comparative Physiology A.

[39]  Free-Flight Ability in Locusts Recovering from Partial Deafferentation , 1998, Naturwissenschaften.

[40]  A. Roberts,et al.  Asymmetries in sensory pathways from skin to motoneurons on each side of the body determine the direction of an avoidance response in hatchling Xenopus tadpoles , 1998, The Journal of physiology.

[41]  U. Bässler,et al.  Pattern generation for stick insect walking movements—multisensory control of a locomotor program , 1998, Brain Research Reviews.

[42]  W. Kristan,et al.  A neuronal network for computing population vectors in the leech , 1998, Nature.

[43]  Thomas Kindermann,et al.  Walknet--a biologically inspired network to control six-legged walking , 1998, Neural Networks.

[44]  Ranulfo Romo,et al.  Presynaptic inhibition and neural control , 1998 .