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    John Huie

    TitleAssistant Researcher
    SchoolUCSF School of Medicine
    DepartmentNeurological Surgery
    Address1001 Potrero Ave
    San Francisco CA 94110
    Phone415-206-8753
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      Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Researchers can login to make corrections and additions, or contact us for help.
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      1. Huie JR, Morioka K, Haefeli J, Ferguson AR. What is Being Trained? How Divergent Forms of Plasticity Compete to Shape Locomotor Recovery after Spinal Cord Injury. J Neurotrauma. 2016 Nov 22. PMID: 27875927.
        View in: PubMed
      2. Garraway SM, Huie JR. Spinal Plasticity and Behavior: BDNF-Induced Neuromodulation in Uninjured and Injured Spinal Cord. Neural Plast. 2016; 2016:9857201. PMID: 27721996.
        View in: PubMed
      3. Talbott JF, Nout-Lomas YS, Wendland MF, Mukherjee P, Huie JR, Hess CP, Mabray MC, Bresnahan JC, Beattie MS. Diffusion-Weighted Magnetic Resonance Imaging Characterization of White Matter Injury Produced by Axon-Sparing Demyelination and Severe Contusion Spinal Cord Injury in Rats. J Neurotrauma. 2016 May 15; 33(10):929-42. PMID: 26483094.
        View in: PubMed
      4. Huie JR, Stuck ED, Lee KH, Irvine KA, Beattie MS, Bresnahan JC, Grau JW, Ferguson AR. AMPA Receptor Phosphorylation and Synaptic Colocalization on Motor Neurons Drive Maladaptive Plasticity below Complete Spinal Cord Injury(1,2,3). eNeuro. 2015 Sep-Oct; 2(5). PMID: 26668821.
        View in: PubMed
      5. Grau JW, Huie JR, Lee KH, Hoy KC, Huang YJ, Turtle JD, Strain MM, Baumbauer KM, Miranda RM, Hook MA, Ferguson AR, Garraway SM. Metaplasticity and behavior: how training and inflammation affect plastic potential within the spinal cord and recovery after injury. Front Neural Circuits. 2014; 8:100. PMID: 25249941; PMCID: PMC4157609.
      6. Garraway SM, Woller SA, Huie JR, Hartman JJ, Hook MA, Miranda RC, Huang YJ, Ferguson AR, Grau JW. Peripheral noxious stimulation reduces withdrawal threshold to mechanical stimuli after spinal cord injury: role of tumor necrosis factor alpha and apoptosis. Pain. 2014 Nov; 155(11):2344-59. PMID: 25180012; PMCID: PMC4253555.
      7. Irvine KA, Ferguson AR, Mitchell KD, Beattie SB, Lin A, Stuck ED, Huie JR, Nielson JL, Talbott JF, Inoue T, Beattie MS, Bresnahan JC. The Irvine, Beatties, and Bresnahan (IBB) Forelimb Recovery Scale: An Assessment of Reliability and Validity. Front Neurol. 2014; 5:116. PMID: 25071704; PMCID: PMC4083223.
      8. Ferguson AR, Huie JR, Crown ED, Baumbauer KM, Hook MA, Garraway SM, Lee KH, Hoy KC, Grau JW. Maladaptive spinal plasticity opposes spinal learning and recovery in spinal cord injury. Front Physiol. 2012; 3:399. PMID: 23087647; PMCID: PMC3468083.
      9. Ferguson AR, Huie JR, Crown ED, Grau JW. Central nociceptive sensitization vs. spinal cord training: opposing forms of plasticity that dictate function after complete spinal cord injury. Front Physiol. 2012; 3:396. PMID: 23060820; PMCID: PMC3463829.
      10. Hoy KC, Huie JR, Grau JW. AMPA receptor mediated behavioral plasticity in the isolated rat spinal cord. Behav Brain Res. 2013 Jan 1; 236(1):319-26. PMID: 22982187; PMCID: PMC3482296.
      11. Grau JW, Huie JR, Garraway SM, Hook MA, Crown ED, Baumbauer KM, Lee KH, Hoy KC, Ferguson AR. Impact of behavioral control on the processing of nociceptive stimulation. Front Physiol. 2012; 3:262. PMID: 22934018; PMCID: PMC3429038.
      12. Huie JR, Baumbauer KM, Lee KH, Bresnahan JC, Beattie MS, Ferguson AR, Grau JW. Glial tumor necrosis factor alpha (TNFa) generates metaplastic inhibition of spinal learning. PLoS One. 2012; 7(6):e39751. PMID: 22745823; PMCID: PMC3379985.
      13. Stück ED, Christensen RN, Huie JR, Tovar CA, Miller BA, Nout YS, Bresnahan JC, Beattie MS, Ferguson AR. Tumor necrosis factor alpha mediates GABA(A) receptor trafficking to the plasma membrane of spinal cord neurons in vivo. Neural Plast. 2012; 2012:261345. PMID: 22530155; PMCID: PMC3317039.
      14. Huie JR, Garraway SM, Baumbauer KM, Hoy KC, Beas BS, Montgomery KS, Bizon JL, Grau JW. Brain-derived neurotrophic factor promotes adaptive plasticity within the spinal cord and mediates the beneficial effects of controllable stimulation. Neuroscience. 2012 Jan 3; 200:74-90. PMID: 22056599; PMCID: PMC3249495.
      15. Baumbauer KM, Huie JR, Hughes AJ, Grau JW. 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. J Neurosci. 2009 Nov 18; 29(46):14383-93. PMID: 19923273; PMCID: PMC2800823.
      16. Ferguson AR, Bolding KA, Huie JR, Hook MA, Santillano DR, Miranda RC, Grau JW. Group I metabotropic glutamate receptors control metaplasticity of spinal cord learning through a protein kinase C-dependent mechanism. J Neurosci. 2008 Nov 12; 28(46):11939-49. PMID: 19005059; PMCID: PMC2628285.
      17. Hook MA, Huie JR, Grau JW. Peripheral inflammation undermines the plasticity of the isolated spinal cord. Behav Neurosci. 2008 Feb; 122(1):233-49. PMID: 18298266; PMCID: PMC2665167.
      18. Hook MA, Liu GT, Washburn SN, Ferguson AR, Bopp AC, Huie JR, Grau JW. The impact of morphine after a spinal cord injury. Behav Brain Res. 2007 May 16; 179(2):281-93. PMID: 17383022; PMCID: PMC1965266.
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