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1 th, and presumably the same number of single excrescences.
2 tum) and an increase in the number of thorny excrescences.
5 tions of CA3 pyramidal neurons termed thorny excrescences and these structures were smaller in the ab
9 oids burst-firing CA3 neurons lacking thorny excrescences (athorny cells), and only weakly excites CA
11 fied the number, length, and distribution of excrescence clusters on proximal and midfield pyramidal
13 alterations in endothelial cell morphology, excrescences (guttae) and thickening of the endothelial
14 ients with and 2 (2%) of 99 subjects without excrescences had cerebral ischemic events (80% power to
15 ative data on the number and distribution of excrescences in adult rats are available because, first,
16 valence, evolution and embolic risk of valve excrescences in normal subjects and patients with and wi
17 king CA3 pyramidal neurons expressing thorny excrescences, largely avoids burst-firing CA3 neurons la
18 excrescences, we estimated an average of 41 excrescences/neuron, and suggest that a pyramidal neuron
21 , Ntf3-cKO mice had fewer and smaller thorny excrescences on proximal apical dendrites of CA3 neurons
22 he dentate gyrus, have more elaborate thorny excrescences on their proximal dendrites, and project mo
26 ished ultrastructural measurements of single excrescences, we estimated an average of 41 excrescences
30 rs and it is not possible to identify single excrescences within these clusters at the light microsco