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Brain Research Reviews
|
September 11, 2007
Origin of excitatory drive to a spinal locomotor network
Alan Roberts, W-C Li, S R Soffe, et al.
Journal of Neurophysiology
|
July 1, 1985
Synaptic potentials in motoneurons during fictive swimming in spinal Xenopus embryos
A Roberts, N Dale, W H Evoy, et al.
Symposia of the Society for Experimental Biology
|
January 1, 1983
Initiation and control of swimming in amphibian embryos
A Roberts, S R Soffe, J D Clarke, et al.
Development (Cambridge, England)
|
June 1, 1991
Neuroanatomical and functional analysis of neural tube formation in notochordless Xenopus embryos; laterality of the ventral spinal cord is lost
J D Clarke, N Holder, S R Soffe, et al.
Journal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology
|
March 3, 2004
Brainstem control of activity and responsiveness in resting frog tadpoles: tonic inhibition
T D Lambert, W-C Li, S R Soffe, et al.
Science (New York, N.Y.)
|
August 28, 1981
Neural control of swimming in a vertebrate
A Roberts, J A Kahn, S R Soffe, et al.
Trends in Neurosciences
|
June 1, 1993
Neuronal control of swimming locomotion: analysis of the pteropod mollusc Clione and embryos of the amphibian Xenopus
Arshavsky YuI, G N Orlovsky, Panchin YuV, et al.
Annals of the New York Academy of Sciences
|
February 3, 1999
Central circuits controlling locomotion in young frog tadpoles
A Roberts, S R Soffe, E S Wolf, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
June 25, 2004
Primitive roles for inhibitory interneurons in developing frog spinal cord
W-C Li, Shin-ichi Higashijima, D M Parry, et al.
The Journal of Comparative Neurology
|
December 18, 2001
Defining classes of spinal interneuron and their axonal projections in hatchling Xenopus laevis tadpoles
W C Li, R Perrins, S R Soffe, et al.
Page
of 4
Search research articles
Search
Showing results (31-40 of 40) with videos related to
Sort By:
Page
of 4
You have reached the last page of results.
This site can display upto 40 results.
Brain Research Reviews
|
September 11, 2007
Origin of excitatory drive to a spinal locomotor network
Alan Roberts, W-C Li, S R Soffe, et al.
Journal of Neurophysiology
|
July 1, 1985
Synaptic potentials in motoneurons during fictive swimming in spinal Xenopus embryos
A Roberts, N Dale, W H Evoy, et al.
Symposia of the Society for Experimental Biology
|
January 1, 1983
Initiation and control of swimming in amphibian embryos
A Roberts, S R Soffe, J D Clarke, et al.
Development (Cambridge, England)
|
June 1, 1991
Neuroanatomical and functional analysis of neural tube formation in notochordless Xenopus embryos; laterality of the ventral spinal cord is lost
J D Clarke, N Holder, S R Soffe, et al.
Journal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology
|
March 3, 2004
Brainstem control of activity and responsiveness in resting frog tadpoles: tonic inhibition
T D Lambert, W-C Li, S R Soffe, et al.
Science (New York, N.Y.)
|
August 28, 1981
Neural control of swimming in a vertebrate
A Roberts, J A Kahn, S R Soffe, et al.
Trends in Neurosciences
|
June 1, 1993
Neuronal control of swimming locomotion: analysis of the pteropod mollusc Clione and embryos of the amphibian Xenopus
Arshavsky YuI, G N Orlovsky, Panchin YuV, et al.
Annals of the New York Academy of Sciences
|
February 3, 1999
Central circuits controlling locomotion in young frog tadpoles
A Roberts, S R Soffe, E S Wolf, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
June 25, 2004
Primitive roles for inhibitory interneurons in developing frog spinal cord
W-C Li, Shin-ichi Higashijima, D M Parry, et al.
The Journal of Comparative Neurology
|
December 18, 2001
Defining classes of spinal interneuron and their axonal projections in hatchling Xenopus laevis tadpoles
W C Li, R Perrins, S R Soffe, et al.
Page
of 4