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Brain Research|November 27, 1992
Chronic selective activation of excitatory opioid receptor functions in sensory neurons results in opioid 'dependence' without toleranceK F Shen, S M CrainBrain Research|March 13, 1992
After chronic opioid exposure sensory neurons become supersensitive to the excitatory effects of opioid agonists and antagonists as occurs after acute elevation of GM1 gangliosideS M Crain, K F ShenScience (New York, N.Y.)|July 23, 1982
Nerve growth factor attenuates neurotoxic effects of taxol on spinal cord-ganglion explants from fetal miceE R Peterson, S M CrainScience (New York, N.Y.)|April 18, 1975
Development of specific sensory-evoked synaptic networks in fetal mouse cord-brainstem culturesS M Crain, E R PetersonThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 1, 1994
Nerve growth factor rapidly prolongs the action potential of mature sensory ganglion neurons in culture, and this effect requires activation of Gs-coupled excitatory kappa-opioid receptors on these cellsK F Shen, S M CrainBrain Research|July 10, 1989
Dual opioid modulation of the action potential duration of mouse dorsal root ganglion neurons in cultureK F Shen, S M CrainInfection and Immunity|May 1, 1992
Mouse antibody to phosphocholine can protect mice from infection with mouse-virulent human isolates of Streptococcus pneumoniaeD E Briles, C Forman, M CrainProceedings of the National Academy of Sciences of the United States of America|January 1, 1987
Nerve growth factor regulates the action potential duration of mature sensory neuronsA Chalazonitis, E R Peterson, S M CrainBrain Research|August 23, 1988
Preferential cholinergic projections by embryonic spinal cord neurons within cocultured mouse superior cervical gangliaA Chalazonitis, S M Crain, J A KesslerPageof 14