Science, Volume 308, Issues 5726-5731John Michels (Journalist) American Association for the Advancement of Science, 2005 |
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Page 1315
... microglial processes ( fig . S2B ) . Microglial processes and protrusions sam- pled the extracellular space in a seemingly random fashion and at a high turnover rate . To quantify the volume fraction surveyed by microglia per time , we ...
... microglial processes ( fig . S2B ) . Microglial processes and protrusions sam- pled the extracellular space in a seemingly random fashion and at a high turnover rate . To quantify the volume fraction surveyed by microglia per time , we ...
Page 1316
... microglial processes and protrusions contact neighboring astrocytes ( left ) , neuronal cell bodies ( center ; unstained dark areas ) , and the astrocytic sheath around a microvessel ( right ) . Images are overlays of the green microglia ...
... microglial processes and protrusions contact neighboring astrocytes ( left ) , neuronal cell bodies ( center ; unstained dark areas ) , and the astrocytic sheath around a microvessel ( right ) . Images are overlays of the green microglia ...
Page 1317
... microglia and red - stained astro- cytes before and 10 min after the laser - induced lesion . ( Bottom ) Microglia morphology at intermediate time points showing rapid , targeted movement of microglial processes toward the injured blood ...
... microglia and red - stained astro- cytes before and 10 min after the laser - induced lesion . ( Bottom ) Microglia morphology at intermediate time points showing rapid , targeted movement of microglial processes toward the injured blood ...
Contents
1296 | 1221 |
RANDOM SAMPLES | 1253 |
J Vandermeer and I Perfecto Response R E Green | 1260 |
Copyright | |
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