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Brain Research|July 21, 1987
Tyrosine hydroxylase-like immunoreactivity is distributed in the matrix compartment of normal human and Huntington's disease striatumR J Ferrante, N W KowallThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 11, 1991
Proliferative and degenerative changes in striatal spiny neurons in Huntington's disease: a combined study using the section-Golgi method and calbindin D28k immunocytochemistryR J Ferrante, N W Kowall, E P RichardsonArchives of Neurology|March 1, 1979
The isolated human cortex. A Golgi analysis of Krabbe's diseaseR S Williams, R J Ferrante, V S CavinessJournal of Neuropathology and Experimental Neurology|January 1, 1978
The Golgi rapid method in clinical neuropathology: the morphologic consequences of suboptimal fixationR S Williams, R J Ferrante, V S CavinessAnnals of the New York Academy of Sciences|February 15, 2000
Neurotoxicity and oxidative damage of beta amyloid 1-42 versus beta amyloid 1-40 in the mouse cerebral cortexA M Klein, N W Kowall, R J FerranteActa Neuropathologica|November 15, 1976
The cellular pathology of microgyria. A Golgi analysisR S Williams, R J Ferrante, V S CavinessBrain Pathology (Zurich, Switzerland)|February 16, 1999
Oxidative stress in Huntington's diseaseS E Browne, R J Ferrante, M F BealBrain Research|March 30, 1999
Increased nitrotyrosine immunoreactivity in substantia nigra neurons in MPTP treated baboons is blocked by inhibition of neuronal nitric oxide synthaseR J Ferrante, P Hantraye, E Brouillet, et al.Journal of Neurochemistry|October 28, 1999
Tissue transglutaminase is increased in Huntington's disease brainM Lesort, W Chun, G V Johnson, et al.Neuroreport|November 17, 2001
Lipoic acid improves survival in transgenic mouse models of Huntington's diseaseO A Andreassen, R J Ferrante, A Dedeoglu, et al.Pageof 9