James Eisenach to Ganglia, Spinal
This is a "connection" page, showing publications James Eisenach has written about Ganglia, Spinal.
Connection Strength
3.436
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Boada MD, Gutierrez S, Eisenach JC. Peripheral oxytocin restores light touch and nociceptor sensory afferents towards normal after nerve injury. Pain. 2019 05; 160(5):1146-1155.
Score: 0.638
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Boada MD, Gutierrez S, Aschenbrenner CA, Houle TT, Hayashida K, Ririe DG, Eisenach JC. Nerve injury induces a new profile of tactile and mechanical nociceptor input from undamaged peripheral afferents. J Neurophysiol. 2015 Jan 01; 113(1):100-9.
Score: 0.464
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Hobo S, Hayashida K, Eisenach JC. Oxytocin inhibits the membrane depolarization-induced increase in intracellular calcium in capsaicin sensitive sensory neurons: a peripheral mechanism of analgesic action. Anesth Analg. 2012 Feb; 114(2):442-9.
Score: 0.381
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Ririe DG, Liu B, Clayton B, Tong C, Eisenach JC. Electrophysiologic characteristics of large neurons in dorsal root ganglia during development and after hind paw incision in the rat. Anesthesiology. 2008 Jul; 109(1):111-7.
Score: 0.301
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Ma W, Eisenach JC. Neuronal nitric oxide synthase is upregulated in a subset of primary sensory afferents after nerve injury which are necessary for analgesia from alpha2-adrenoceptor stimulation. Brain Res. 2007 Jan 05; 1127(1):52-8.
Score: 0.269
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Tong C, Conklin D, Clyne BB, Stanislaus JD, Eisenach JC. Uterine cervical afferents in thoracolumbar dorsal root ganglia express transient receptor potential vanilloid type 1 channel and calcitonin gene-related peptide, but not P2X3 receptor and somatostatin. Anesthesiology. 2006 Apr; 104(4):651-7.
Score: 0.258
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Liu B, Eisenach JC. Hyperexcitability of axotomized and neighboring unaxotomized sensory neurons is reduced days after perineural clonidine at the site of injury. J Neurophysiol. 2005 Nov; 94(5):3159-67.
Score: 0.250
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Ma W, Zhang Y, Bantel C, Eisenach JC. Medium and large injured dorsal root ganglion cells increase TRPV-1, accompanied by increased alpha2C-adrenoceptor co-expression and functional inhibition by clonidine. Pain. 2005 Feb; 113(3):386-394.
Score: 0.238
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Boada MD, Ririe DG, Eisenach JC. Post-discharge hyperpolarization is an endogenous modulatory factor limiting input from fast-conducting nociceptors (AHTMRs). Mol Pain. 2017 Jan-Dec; 13:1744806917726255.
Score: 0.136
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Boada MD, Eisenach JC, Ririe DG. Mechanical sensibility of nociceptive and non-nociceptive fast-conducting afferents is modulated by skin temperature. J Neurophysiol. 2016 Jan 01; 115(1):546-53.
Score: 0.126
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Boada MD, Gutierrez S, Giffear K, Eisenach JC, Ririe DG. Skin incision-induced receptive field responses of mechanosensitive peripheral neurons are developmentally regulated in the rat. J Neurophysiol. 2012 Aug; 108(4):1122-9.
Score: 0.099
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Boada MD, Houle TT, Eisenach JC, Ririe DG. Differing neurophysiologic mechanosensory input from glabrous and hairy skin in juvenile rats. J Neurophysiol. 2010 Dec; 104(6):3568-75.
Score: 0.088
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Duflo F, Zhang Y, Eisenach JC. Electrical field stimulation to study inhibitory mechanisms in individual sensory neurons in culture. Anesthesiology. 2004 Mar; 100(3):740-3.
Score: 0.056
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Boada MD, Ririe DG, Martin CW, Martin SJ, Kim SA, Eisenach JC, Martin TJ. Nociceptive input after peripheral nerve injury results in cognitive impairment and alterations in primary afferent physiology in rats. Pain. 2020 05; 161(5):960-969.
Score: 0.043
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Gutierrez S, Alvarado-Vázquez PA, Eisenach JC, Romero-Sandoval EA, Boada MD. Tachykinins modulate nociceptive responsiveness and sensitization: In vivo electrical characterization of primary sensory neurons in tachykinin knockout (Tac1 KO) mice. Mol Pain. 2019 Jan-Dec; 15:1744806919845750.
Score: 0.039
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Boada DM, Martin TJ, Peters CM, Hayashida K, Harris MH, Houle TT, Boyden ES, Eisenach JC, Ririe DG. Fast-conducting mechanoreceptors contribute to withdrawal behavior in normal and nerve injured rats. Pain. 2014 Dec; 155(12):2646-2655.
Score: 0.029
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Boada MD, Gutierrez S, Houle T, Eisenach JC, Ririe DG. Developmental differences in peripheral glabrous skin mechanosensory nerve receptive field and intracellular electrophysiologic properties: phenotypic characterization in infant and juvenile rats. Int J Dev Neurosci. 2011 Dec; 29(8):847-54.
Score: 0.023