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Brain Research Bulletin|January 1, 1994
Chemoarchitectonics of axonal and perikaryal acetylcholinesterase along information processing systems of the human cerebral cortexM M Mesulam, C GeulaThe Journal of Histochemistry and Cytochemistry : Official Journal of the Histochemistry Society|February 1, 1981
Concurrent acetylcholinesterase staining and gamma-aminobutyric acid uptake of cortical neurons in cultureM M Mesulam, M DichterThe Journal of Comparative Neurology|September 15, 1980
Brain stem projections of sensory and motor components of the vagus complex in the cat: I. The cervical vagus and nodose ganglionM Kalia, M M MesulamThe Journal of Comparative Neurology|August 10, 1981
Organization of afferent input to subdivisions of area 8 in the rhesus monkeyH Barbas, M M MesulamNeuroscience|July 1, 1985
Cortical afferent input to the principalis region of the rhesus monkeyH Barbas, M M MesulamArchives of Neurology|February 1, 1981
Adult-onset stuttering treated with anticonvulsantsR Baratz, M M MesulamCerebral Cortex (New York, N.Y. : 1991)|March 1, 1996
Systematic regional variations in the loss of cortical cholinergic fibers in Alzheimer's diseaseC Geula, M M MesulamThe Journal of Comparative Neurology|September 8, 1988
Nucleus basalis (Ch4) and cortical cholinergic innervation in the human brain: observations based on the distribution of acetylcholinesterase and choline acetyltransferaseM M Mesulam, C GeulaArchives of Neurology|June 1, 1987
Right cerebral dominance in spatial attention. Further evidence based on ipsilateral neglectS Weintraub, M M MesulamAnnals of Neurology|December 1, 1988
Acetylcholinesterase-rich pyramidal neurons in the human neocortex and hippocampus: absence at birth, development during the life span, and dissolution in Alzheimer's diseaseM M Mesulam, C GeulaPageof 36