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Neuroscience|December 13, 2000
Disparate spinal and supraspinal opioid antinociceptive responses in beta-endorphin-deficient mutant miceJ S Mogil, J E Grisel, M D Hayward, et al.Behavior Genetics|July 1, 1995
Oligogenic determination of morphine analgesic magnitude: a genetic analysis of selectively bred mouse linesJ S Mogil, P Flodman, M A Spence, et al.Genes, Brain, and Behavior|July 17, 2010
Positional cloning of a quantitative trait locus contributing to pain sensitivity: possible mediation by Tyrp1A Fortin, E Diez, J Ritchie, et al.Life Sciences|January 1, 1995
Localization to chromosome 10 of a locus influencing morphine analgesia in crosses derived from C57BL/6 and DBA/2 strainsJ K Belknap, J S Mogil, M L Helms, et al.Neuroreport|January 20, 1997
Involvement of endogenous orphanin FQ in electroacupuncture-induced analgesiaJ H Tian, W Xu, W Zhang, et al.Osteoarthritis and Cartilage|December 29, 2009
ADAMTS-5 deficient mice do not develop mechanical allodynia associated with osteoarthritis following medial meniscal destabilizationA M Malfait, J Ritchie, A S Gil, et al.Journal of Neurochemistry|June 5, 2001
Constitutive expression of functional GABA(B) receptors in mIL-tsA58 cells requires both GABA(B(1)) and GABA(B(2)) genesB M Chronwall, T D Davis, M W Severidt, et al.Mammalian Genome : Official Journal of the International Mammalian Genome Society|June 23, 2001
Quantitative trait loci influencing morphine antinociception in four mapping populationsS E Bergeson, M L Helms, L A O'Toole, et al.Neuroscience|November 5, 2013
Inflammation enhances Y1 receptor signaling, neuropeptide Y-mediated inhibition of hyperalgesia, and substance P release from primary afferent neuronsB K Taylor, W Fu, K E Kuphal, et al.Neuroscience|May 23, 2009
Gnao1 (G alphaO protein) is a likely genetic contributor to variation in physical dependence on opioids in miceB Kest, S B Smith, A Schorscher-Petcu, et al.Pageof 9