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References
Articles referenced by this article (48)
Dendritic growth in the aged human brain and failure of growth in senile dementia.
Science, (4420):854-856 1979
MED: 493989
Neuroplasticity failure in Alzheimer's disease: bridging the gap between plaques and tangles.
Neuron, (3):521-529 1999
MED: 10595506
Multivesicular bodies in cortical dendrites of two patients with Alzheimer's disease.
J Neurol Sci, (2):259-264 1978
MED: 650258
Dendritic changes in the basal nucleus of Meynert and in the diagonal band nucleus in Alzheimer's disease--a quantitative Golgi investigation.
Neuroscience, (4):1265-1278 1986
MED: 3822121
Synaptic and neuritic alterations during the progression of Alzheimer's disease.
Neurosci Lett, (1):67-72 1994
MED: 7970158
Morphometric and dendritic analysis of fascia dentata granule cells in human aging and senile dementia.
Brain Res, (2):217-229 1987
MED: 3828794
Fab1p PtdIns(3)P 5-kinase function essential for protein sorting in the multivesicular body.
Cell, (6):847-858 1998
MED: 9865702
Ubiquitin-dependent sorting into the multivesicular body pathway requires the function of a conserved endosomal protein sorting complex, ESCRT-I.
Cell, (2):145-155 2001
MED: 11511343
Endosome-associated complex, ESCRT-II, recruits transport machinery for protein sorting at the multivesicular body.
Dev Cell, (2):283-289 2002
MED: 12194858
Show 10 more references (10 of 48)
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