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Network Analysis of Foramen Ovale Electrode Recordings in Drug-resistant Temporal Lobe Epilepsy Patients
Published on: December 18, 2016
"Tectonic" hippocampal malformations in patients with temporal lobe epilepsy
Robert S Sloviter1, Hemant S Kudrimoti, Kenneth D Laxer
1Departments of Pharmacology and Neurology, University of Arizona College of Medicine, 1501 N. Campbell Avenue, Tucson, AZ 85724, USA. sloviter@u.arizona.edu
Insights
A developmental anomaly in the hippocampus, characterized by CA1/subicular layer expansions and dentate gyrus invaginations, may predispose individuals to epilepsy. This condition, often undetected by standard imaging, appears linked to early febrile seizures.
Area of Science:
- Neuroscience
- Neuropathology
- Developmental Biology
Background:
- Temporal lobe epilepsy (TLE) is often associated with hippocampal sclerosis.
- Subtle hippocampal malformations may underlie TLE in some patients.
- Conventional imaging frequently fails to detect these subtle anomalies.
Purpose of the Study:
- To investigate a specific hippocampal malformation characterized by CA1/subicular layer expansion and dentate gyrus invagination.
- To determine the neuropathological features and clinical associations of this anomaly.
- To explore its potential role in the pathogenesis of epilepsy.
Main Methods:
- Histological and immunohistochemical analysis of hippocampi from epilepsy surgery patients and autopsy controls.
- Comparison of imaging findings with histological results.
- Analysis of clinical history, including febrile seizures.
Main Results:
- A subgroup of TLE patients exhibited bulbous CA1/subicular expansions with dentate gyrus invaginations.
- These anomalies often showed minor cell loss compared to typical hippocampal sclerosis.
- Standard imaging methods often missed these subtle structural changes.
- Immunostaining confirmed neuronal presence and suggested abnormal dentate gyrus lamination.
Conclusions:
- Developmental malformations of the CA1/subicular layers may disrupt dentate gyrus development.
- These hippocampal anomalies might create hyperexcitable temporal lobe structures.
- Such developmental anomalies could serve as a substrate for early febrile seizures and subsequent epilepsy.
Abstract:
Histological analysis of hippocampi removed en bloc during surgical treatment of temporal lobe epilepsy revealed a subgroup of patients with bulbous expansions of the CA1 pyramidal cell/subicular layers that were consistently accompanied by "tectonic" invaginations of the adjacent dentate gyrus. Most hippocampi containing the CA1/subicular anomaly and the tectonically deformed dentate gyrus exhibited minor cell loss compared to hippocampi with typical hippocampal sclerosis, and retrospective analysis revealed that conventional imaging methods usually failed to detect subtle hippocampal atrophy or abnormal signal characteristics in patients with this anomaly. Cells within the anomaly exhibited the spherical appearance of undifferentiated pyramidal layer neurons, and were immunopositive for the neuronal marker NeuN. Immunostaining for the synaptic marker beta-synuclein suggested abnormal dentate gyrus lamination in segments containing the pyramidal cell layer anomaly, but not in unaffected areas of the same specimens. Despite differences in the extent of neuronal loss between patients with hippocampal sclerosis and those with the CA1/subicular anomaly, the incidence of antecedent febrile seizures was similar in both groups. In a comparison group of hippocampi obtained at autopsy, structural irregularities were evident, but were consistently less disruptive to hippocampal architecture than the anomalies observed in epilepsy patients. We hypothesize that developmental malformation of the CA1 pyramidal cell/subicular layers may adversely influence the subsequent development of the adjacent dentate gyrus, and may render temporal lobe structures hyperexcitable and more vulnerable to relatively innocuous seizures and injuries. Thus, these presumably developmental hippocampal anomalies may serve as substrates for early febrile seizures and subsequent epilepsy.
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