Douglas Rosene
Douglas Rosene
Professor of Anatomy and Neurobiology, Boston University
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Hippocampal efferents reach widespread areas of cerebral cortex and amygdala in the rhesus monkey
DL Rosene, GW Van Hoesen
Science 198 (4314), 315-317, 1977
Cingulate cortex of the rhesus monkey: I. Cytoarchitecture and thalamic afferents
BA Vogt, DN Pandya, DL Rosene
Journal of Comparative Neurology 262 (2), 256-270, 1987
The geometric structure of the brain fiber pathways
VJ Wedeen, DL Rosene, R Wang, G Dai, F Mortazavi, P Hagmann, ...
Science 335 (6076), 1628-1634, 2012
The hippocampal formation of the primate brain: a review of some comparative aspects of cytoarchitecture and connections
DL Rosene, GW Van Hoesen
Cerebral cortex: further aspects of cortical function, including hippocampus …, 1987
Thalamic and cortical afferents differentiate anterior from posterior cingulate cortex in the monkey
BA Vogt, DL Rosene, DN Pandya
Science 204 (4389), 205-207, 1979
A cryoprotection method that facilitates cutting frozen sections of whole monkey brains for histological and histochemical processing without freezing artifact.
DL Rosene, NJ Roy, BJ Davis
Journal of Histochemistry & Cytochemistry 34 (10), 1301-1315, 1986
Fixation variables in horseradish peroxidase neurohistochemistry. I. The effect of fixation time and perfusion procedures upon enzyme activity.
DL Rosene, MM Mesulam
Journal of Histochemistry & Cytochemistry 26 (1), 28-39, 1978
Neurobiological bases of age-related cognitive decline in the rhesus monkey
A Peters, DL Rosene, MB Moss, TL Kemper, CR Abraham, J Tigges, ...
Journal of Neuropathology & Experimental Neurology 55 (8), 861-874, 1996
β-secretase activity increases with aging in human, monkey, and mouse brain
H Fukumoto, DL Rosene, MB Moss, S Raju, BT Hyman, MC Irizarry
The American journal of pathology 164 (2), 719-725, 2004
Sensitivity in horseradish peroxidase neurohistochemistry: a comparative and quantitative study of nine methods.
MM Mesulam, DL Rosene
Journal of Histochemistry & Cytochemistry 27 (3), 763-773, 1979
Are neurons lost from the primate cerebral cortex during normal aging?
A Peters, JH Morrison, DL Rosene, BT Hyman
Cerebral cortex (New York, NY: 1991) 8 (4), 295-300, 1998
Patterns of cognitive decline in aged rhesus monkeys
JG Herndon, MB Moss, DL Rosene, RJ Killiany
Behavioural brain research 87 (1), 25-34, 1997
Efferents and centrifugal afferents of the main and accessory olfactory bulbs in the hamster
BJ Davis, F Macrides, WM Youngs, SP Schneider, DL Rosene
Brain research bulletin 3 (1), 59-72, 1978
White matter hyperintensities in vascular contributions to cognitive impairment and dementia (VCID): Knowledge gaps and opportunities
J Alber, S Alladi, HJ Bae, DA Barton, LA Beckett, JM Bell, SE Berman, ...
Alzheimer's & Dementia: Translational Research & Clinical Interventions 5 …, 2019
Cerebellar Purkinje cells are reduced in a subpopulation of autistic brains: a stereological experiment using calbindin-D28k
ER Whitney, TL Kemper, ML Bauman, DL Rosene, GJ Blatt
The Cerebellum 7, 406-416, 2008
Comparison of the efferents of the amygdala and the hippocampal formation in the rhesus monkey: II. Reciprocal and non‐reciprocal connections
RC Saunders, DL Rosene, GW Van Hoesen
Journal of Comparative Neurology 271 (2), 185-207, 1988
Hippocampal formation lesions produce memory impairment in the rhesus monkey
LL Beason‐Held, DL Rosene, RJ Killiany, MB Moss
Hippocampus 9 (5), 562-574, 1999
A comparison of the efferents of the amygdala and the hippocampal formation in the rhesus monkey: I. Convergence in the entorhinal, prorhinal, and perirhinal cortices
RC Saunders, DL Rosene
Journal of Comparative Neurology 271 (2), 153-184, 1988
Increased microglial activation and protein nitration in white matter of the aging monkey☆
JA Sloane, W Hollander, MB Moss, DL Rosene, CR Abraham
Neurobiology of aging 20 (4), 395-405, 1999
Subicular input from temporal cortex in the rhesus monkey
GW Van Hoesen, DL Rosene, MM Mesulam
Science 205 (4406), 608-610, 1979
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