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Structural and functional MRI following 4-aminopyridine-induced seizures: a comparative imaging and anatomical study
P F Fabene1, R Weiczner, P Marzola
1Section of Anatomy and Histology, Department of Morphological and Biomedical Sciences, Faculty of Medicine, Strada Le Grazie 8, 37134 Verona, Italy. paolo@anatomy.univr.it
Abstract:
Structural and functional MRI was used in conjunction with computerized electron microscopy morphometry to study changes 2 h, 24 h and 3 days after 4-aminopyridine-induced seizures lasting 2 h in rats. T2 (relaxation time) values showed changes throughout the cerebral cortex, hippocampus, amygdala and medial thalamus, with a different temporal progression, showing a complete recovery only after 3 days. Two hours after seizures, the apparent diffusion coefficient was decreased throughout the brain compared to control animals, and a further decrease was evident 24 h after seizures. This was followed by a complete recovery at 3 days post-seizures. Functional MRI was performed using regional cerebral blood volume (rCBV) maps. The rCBV was increased shortly after convulsions (2 h) in all structures investigated, with a significant return to baseline values in the parietal cortex and hippocampus, but not in the medial thalamic nuclei, 24 h after seizure onset. No rCBV alterations were detected 3 days after seizures. Electron microscopy of tissue samples of parietal neocortex and hippocampus revealed prominent astrocytic swelling 2 h post-convulsions which decreased thereafter gradually. In conclusion, this experiment reports for the first time structural and functional brain alterations, lasting several hours, in 4-aminopyridine-treated rats after seizure onset. MRI approach combined with histological and ultrastructural analysis provided a clarification of the mechanisms involved in the brain acute response to ictal activity.
Insights
Structural and functional MRI revealed brain changes after 4-aminopyridine-induced seizures in rats. These alterations, including astrocytic swelling, resolved within three days, indicating the brain
Area of Science:
- Neuroscience
- Neuroimaging
- Pathology
Background:
- Seizures can cause acute structural and functional brain changes.
- Understanding these changes is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the temporal dynamics of brain alterations following 4-aminopyridine-induced seizures using MRI and electron microscopy.
- To clarify the mechanisms underlying the brain's acute response to seizure activity.
Main Methods:
- Structural and functional MRI (T2 values, apparent diffusion coefficient, regional cerebral blood volume) were employed.
- Computerized electron microscopy morphometry was used to analyze tissue samples.
- Experiments were conducted on rats at 2 hours, 24 hours, and 3 days post-seizure.
Main Results:
- MRI revealed widespread changes in T2 values and apparent diffusion coefficient, with recovery by 3 days.
- Regional cerebral blood volume increased acutely post-seizure, with partial recovery by 24 hours.
- Electron microscopy showed significant astrocytic swelling 2 hours post-seizure, which gradually decreased.
Conclusions:
- This study provides the first report of structural and functional brain alterations lasting several hours after 4-aminopyridine-induced seizures in rats.
- The combined MRI and ultrastructural analysis elucidated the mechanisms of the brain's acute response to ictal activity.
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