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P D Coleman

Showing results (61-70 of 85) with videos related to

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Neurobiology of Aging|November 1, 1992
Reduced GAP-43 message levels are associated with increased neurofibrillary tangle density in the frontal association cortex (area 9) in Alzheimer's diseaseP D Coleman, A M Kazee, L Lapham, et al.
Lancet (London, England)|September 17, 1994
Differences in the pattern of hippocampal neuronal loss in normal ageing and Alzheimer's diseaseM J West, P D Coleman, D G Flood, et al.
Ugeskrift for Laeger|May 29, 1995
[Differential neuronal loss in the hippocampus in normal aging and in patients with Alzheimer disease]M J West, P D Coleman, D G Flood, et al.
Journal of Anatomy|December 1, 1977
Complexity of branching dendritic trees: dependence on number of trees per cell and effects of branch loss during sectioningM L Samuels, J E Mittenthal, G P McCabe, et al.
Brain Research|February 3, 1987
Dendritic extent in human dentate gyrus granule cells in normal aging and senile dementiaD G Flood, S J Buell, G J Horwitz, et al.
Neurochemistry International|October 2, 2001
Two-dimensional gel analysis of secreted proteins induced by interleukin-1 beta in rat astrocytesJ W Chang, D A Young, P D Coleman, et al.
Gene|October 15, 1993
The human brain homeogene, DLX-2: cDNA sequence and alignment with the murine homologueD J Selski, N E Thomas, P D Coleman, et al.
The Journal of Bone and Joint Surgery. American Volume|December 1, 1971
Antibiotic penetration of experimental bone hematomasF C Wilson, J N Worcester, P D Coleman, et al.
Brain Research. Molecular Brain Research|February 1, 1996
Gap-43 message levels in anterior cerebellum in Alzheimer's diseaseJ E Cheetham, M R Martzen, A M Kazee, et al.
Neurobiology of Aging|December 22, 2000
Clathrin assembly protein AP-2 is detected in both neurons and glia, and its reduction is prominent in layer II of frontal cortex in Alzheimer's diseaseP J Yao, J M Weimer, T M O'Herron, et al.
Pageof 9

Showing results (61-70 of 85) with videos related to

Sort By:
Pageof 9
Neurobiology of Aging|November 1, 1992
Reduced GAP-43 message levels are associated with increased neurofibrillary tangle density in the frontal association cortex (area 9) in Alzheimer's diseaseP D Coleman, A M Kazee, L Lapham, et al.
Lancet (London, England)|September 17, 1994
Differences in the pattern of hippocampal neuronal loss in normal ageing and Alzheimer's diseaseM J West, P D Coleman, D G Flood, et al.
Ugeskrift for Laeger|May 29, 1995
[Differential neuronal loss in the hippocampus in normal aging and in patients with Alzheimer disease]M J West, P D Coleman, D G Flood, et al.
Journal of Anatomy|December 1, 1977
Complexity of branching dendritic trees: dependence on number of trees per cell and effects of branch loss during sectioningM L Samuels, J E Mittenthal, G P McCabe, et al.
Brain Research|February 3, 1987
Dendritic extent in human dentate gyrus granule cells in normal aging and senile dementiaD G Flood, S J Buell, G J Horwitz, et al.
Neurochemistry International|October 2, 2001
Two-dimensional gel analysis of secreted proteins induced by interleukin-1 beta in rat astrocytesJ W Chang, D A Young, P D Coleman, et al.
Gene|October 15, 1993
The human brain homeogene, DLX-2: cDNA sequence and alignment with the murine homologueD J Selski, N E Thomas, P D Coleman, et al.
The Journal of Bone and Joint Surgery. American Volume|December 1, 1971
Antibiotic penetration of experimental bone hematomasF C Wilson, J N Worcester, P D Coleman, et al.
Brain Research. Molecular Brain Research|February 1, 1996
Gap-43 message levels in anterior cerebellum in Alzheimer's diseaseJ E Cheetham, M R Martzen, A M Kazee, et al.
Neurobiology of Aging|December 22, 2000
Clathrin assembly protein AP-2 is detected in both neurons and glia, and its reduction is prominent in layer II of frontal cortex in Alzheimer's diseaseP J Yao, J M Weimer, T M O'Herron, et al.
Pageof 9