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Kyle M Baumbauer

Showing results (1-10 of 39) with videos related to

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Behavioral Neuroscience|February 16, 2011
Timing in the absence of supraspinal input III: regularly spaced cutaneous stimulation prevents and reverses the spinal learning deficit produced by peripheral inflammationKyle M Baumbauer, James W Grau
Brain Research Reviews|June 2, 2009
Pain and learning in a spinal system: contradictory outcomes from common originsKyle M Baumbauer, Erin E Young, Robin L Joynes
Physiology & Behavior|February 28, 2017
Fixed spaced stimulation restores adaptive plasticity within the spinal cord: Identifying the eliciting conditionsKyle M Baumbauer, Joel D Turtle, James W Grau
The Journal of Perinatal & Neonatal Nursing|April 25, 2017
Neurobiological Consequences of Early Painful Experience: Basic Science Findings and Implications for Evidence-Based PracticeErin E Young, Amy DʼAgata, Dorothy Vittner, et al.
Brain, Behavior, and Immunity|March 27, 2007
Lipopolysaccharide induces a spinal learning deficit that is blocked by IL-1 receptor antagonismErin E Young, Kyle M Baumbauer, Audrea Elliot, et al.
Behavioral Neuroscience|October 3, 2007
Neonatal hind-paw injury disrupts acquisition of an instrumental response in adult spinal ratsErin E Young, Kyle M Baumbauer, Audrea Elliot, et al.
Behavioral Neuroscience|October 3, 2007
Local anesthetic treatment significantly attenuates acute pain responding but does not prevent the neonatal injury-induced reduction in adult spinal behavioral plasticityErin E Young, Kyle M Baumbauer, Jessica Hillyer, et al.
Behavioral Neuroscience|October 3, 2007
Neurokinin receptors modulate the impact of uncontrollable stimulation on adaptive spinal plasticityKyle M Baumbauer, Erin E Young, Kevin C Hoy, et al.
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 synthesisKyle M Baumbauer, John R Huie, Abbey J Hughes, et al.
Behavioral Neuroscience|February 28, 2007
Intrathecal administration of neurokinin 1 and neurokinin 2 receptor antagonists undermines the savings effect in spinal rats seen in an instrumental learning paradigmKyle M Baumbauer, Erin E Young, Kevin C Hoy, et al.
Pageof 4

Showing results (1-10 of 39) with videos related to

Sort By:
Pageof 4
Behavioral Neuroscience|February 16, 2011
Timing in the absence of supraspinal input III: regularly spaced cutaneous stimulation prevents and reverses the spinal learning deficit produced by peripheral inflammationKyle M Baumbauer, James W Grau
Brain Research Reviews|June 2, 2009
Pain and learning in a spinal system: contradictory outcomes from common originsKyle M Baumbauer, Erin E Young, Robin L Joynes
Physiology & Behavior|February 28, 2017
Fixed spaced stimulation restores adaptive plasticity within the spinal cord: Identifying the eliciting conditionsKyle M Baumbauer, Joel D Turtle, James W Grau
The Journal of Perinatal & Neonatal Nursing|April 25, 2017
Neurobiological Consequences of Early Painful Experience: Basic Science Findings and Implications for Evidence-Based PracticeErin E Young, Amy DʼAgata, Dorothy Vittner, et al.
Brain, Behavior, and Immunity|March 27, 2007
Lipopolysaccharide induces a spinal learning deficit that is blocked by IL-1 receptor antagonismErin E Young, Kyle M Baumbauer, Audrea Elliot, et al.
Behavioral Neuroscience|October 3, 2007
Neonatal hind-paw injury disrupts acquisition of an instrumental response in adult spinal ratsErin E Young, Kyle M Baumbauer, Audrea Elliot, et al.
Behavioral Neuroscience|October 3, 2007
Local anesthetic treatment significantly attenuates acute pain responding but does not prevent the neonatal injury-induced reduction in adult spinal behavioral plasticityErin E Young, Kyle M Baumbauer, Jessica Hillyer, et al.
Behavioral Neuroscience|October 3, 2007
Neurokinin receptors modulate the impact of uncontrollable stimulation on adaptive spinal plasticityKyle M Baumbauer, Erin E Young, Kevin C Hoy, et al.
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 synthesisKyle M Baumbauer, John R Huie, Abbey J Hughes, et al.
Behavioral Neuroscience|February 28, 2007
Intrathecal administration of neurokinin 1 and neurokinin 2 receptor antagonists undermines the savings effect in spinal rats seen in an instrumental learning paradigmKyle M Baumbauer, Erin E Young, Kevin C Hoy, et al.
Pageof 4