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Behavioural Brain Research
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August 18, 2004
Instrumental learning within the spinal cord: VI. The NMDA receptor antagonist, AP5, disrupts the acquisition and maintenance of an acquired flexion response
Robin L Joynes, Kamran Janjua, James W Grau
Behavioral Neuroscience
|
February 27, 2008
Peripheral inflammation undermines the plasticity of the isolated spinal cord
Michelle A Hook, John R Huie, James W Grau
Experimental Neurology
|
November 8, 2016
Complete spinal cord injury (SCI) transforms how brain derived neurotrophic factor (BDNF) affects nociceptive sensitization
Yung-Jen Huang, Kuan H Lee, James W Grau
Physiology & Behavior
|
February 28, 2017
Fixed spaced stimulation restores adaptive plasticity within the spinal cord: Identifying the eliciting conditions
Kyle M Baumbauer, Joel D Turtle, James W Grau
Behavioural Brain Research
|
September 18, 2012
AMPA receptor mediated behavioral plasticity in the isolated rat spinal cord
Kevin C Hoy, J Russell Huie, James W Grau
Frontiers in Behavioral Neuroscience
|
February 24, 2016
Learning about Time within the Spinal Cord II: Evidence that Temporal Regularity Is Encoded by a Spinal Oscillator
Kuan H Lee, Yung-Jen Huang, James W Grau
Behavioral Neuroscience
|
December 16, 2004
Pain in a balance: noxious events engage opposing processes that concurrently modulate nociceptive reactivity
Eric D Crown, James W Grau, Mary W Meagher
Pain
|
January 1, 1982
Controllability, coping behavior, and stress-induced analgesia in the rat
Steven F Maier, Robert C Drugan, James W Grau
Biology
|
February 25, 2022
Role of Descending Serotonergic Fibers in the Development of Pathophysiology after Spinal Cord Injury (SCI): Contribution to Chronic Pain, Spasticity, and Autonomic Dysreflexia
Gizelle N K Fauss, Kelsey E Hudson, James W Grau
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
November 20, 2009
Timing in the absence of supraspinal input II: regularly spaced stimulation induces a lasting alteration in spinal function that depends on the NMDA receptor, BDNF release, and protein synthesis
Kyle M Baumbauer, John R Huie, Abbey J Hughes, et al.
Page
of 7
Search research articles
Search
Showing results (11-20 of 68) with videos related to
Sort By:
Page
of 7
Behavioural Brain Research
|
August 18, 2004
Instrumental learning within the spinal cord: VI. The NMDA receptor antagonist, AP5, disrupts the acquisition and maintenance of an acquired flexion response
Robin L Joynes, Kamran Janjua, James W Grau
Behavioral Neuroscience
|
February 27, 2008
Peripheral inflammation undermines the plasticity of the isolated spinal cord
Michelle A Hook, John R Huie, James W Grau
Experimental Neurology
|
November 8, 2016
Complete spinal cord injury (SCI) transforms how brain derived neurotrophic factor (BDNF) affects nociceptive sensitization
Yung-Jen Huang, Kuan H Lee, James W Grau
Physiology & Behavior
|
February 28, 2017
Fixed spaced stimulation restores adaptive plasticity within the spinal cord: Identifying the eliciting conditions
Kyle M Baumbauer, Joel D Turtle, James W Grau
Behavioural Brain Research
|
September 18, 2012
AMPA receptor mediated behavioral plasticity in the isolated rat spinal cord
Kevin C Hoy, J Russell Huie, James W Grau
Frontiers in Behavioral Neuroscience
|
February 24, 2016
Learning about Time within the Spinal Cord II: Evidence that Temporal Regularity Is Encoded by a Spinal Oscillator
Kuan H Lee, Yung-Jen Huang, James W Grau
Behavioral Neuroscience
|
December 16, 2004
Pain in a balance: noxious events engage opposing processes that concurrently modulate nociceptive reactivity
Eric D Crown, James W Grau, Mary W Meagher
Pain
|
January 1, 1982
Controllability, coping behavior, and stress-induced analgesia in the rat
Steven F Maier, Robert C Drugan, James W Grau
Biology
|
February 25, 2022
Role of Descending Serotonergic Fibers in the Development of Pathophysiology after Spinal Cord Injury (SCI): Contribution to Chronic Pain, Spasticity, and Autonomic Dysreflexia
Gizelle N K Fauss, Kelsey E Hudson, James W Grau
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
November 20, 2009
Timing in the absence of supraspinal input II: regularly spaced stimulation induces a lasting alteration in spinal function that depends on the NMDA receptor, BDNF release, and protein synthesis
Kyle M Baumbauer, John R Huie, Abbey J Hughes, et al.
Page
of 7