Rapid Morphologic Plasticity of Peri-Infarct Dendritic Spines After Focal Ischemic Stroke
Author(s) -
Craig E. Brown,
Charles Wong,
Timothy H. Murphy
Publication year - 2008
Publication title -
stroke
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.397
H-Index - 319
eISSN - 1524-4628
pISSN - 0039-2499
DOI - 10.1161/strokeaha.107.498238
Subject(s) - dendritic spine , medicine , stroke (engine) , forelimb , cortex (anatomy) , neuroscience , ischemia , neuroplasticity , cerebral cortex , anatomy , pathology , biology , cardiology , hippocampal formation , mechanical engineering , engineering
Focal stroke is associated with cell death, abnormal synaptic activity, and neurologic impairments. Given that many of these neuropathologic processes can be attributed to events that occur shortly after injury, it is necessary to understand how stroke affects the structure of neurons in surviving peri-infarct regions, particularly at the level of the dendritic spines, which transmit normal and potentially abnormal and injurious synaptic signaling. Recently, we described ischemia-induced changes in the structure of layer 1 dendritic tufts of transgenic mice expressing YFP in layer 5 cortical neurons. However, these in vivo imaging experiments could not address ischemia-related phenomena that occur in deeper cortical structures/layers, other cortical regions, or submicron changes in dendritic spine structure.
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