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The Journal of Comparative Neurology|May 1, 1988
Capsaicin-induced neuronal degeneration: silver impregnation of cell bodies, axons, and terminals in the central nervous system of the adult ratS Ritter, T T DinhThe Journal of Comparative Neurology|June 1, 1991
Prior optic nerve transection reduces capsaicin-induced degeneration in rat subcortical visual structuresS Ritter, T T DinhBrain Research|April 9, 1986
Progressive postnatal dilation of brain ventricles in spontaneously hypertensive ratsS Ritter, T T DinhThe Journal of Comparative Neurology|April 1, 1992
Age-related changes in capsaicin-induced degeneration in rat brainS Ritter, T T DinhThe Journal of Comparative Neurology|June 15, 1990
Capsaicin-induced neuronal degeneration in the brain and retina of preweanling ratsS Ritter, T T DinhBrain Research|March 28, 1994
2-Mercaptoacetate and 2-deoxy-D-glucose induce Fos-like immunoreactivity in rat brainS Ritter, T T DinhCell Regulation|April 1, 1991
Assessment of receptor-dependent activation of phosphatidylcholine hydrolysis by both phospholipase D and phospholipase CT T Dinh, D A KennerlyBrain Research|March 10, 2000
Localization of hindbrain glucoreceptive sites controlling food intake and blood glucoseS Ritter, T T Dinh, Y ZhangThe Journal of Comparative Neurology|March 10, 2001
Immunotoxic destruction of distinct catecholamine subgroups produces selective impairment of glucoregulatory responses and neuronal activationS Ritter, K Bugarith, T T DinhBrain Research|September 12, 1998
Subgroups of hindbrain catecholamine neurons are selectively activated by 2-deoxy-D-glucose induced metabolic challengeS Ritter, I Llewellyn-Smith, T T DinhPageof 5