Focal Sleep Spindle Deficits Reveal Focal Thalamocortical Dysfunction and Predict Cognitive Deficits in Sleep
Mark A Kramer1, Sally M Stoyell2, Dhinakaran Chinappen2
1Department of Mathematics and Statistics, Boston University, Boston, Massachusetts 02215.
Insights
Childhood epilepsy with centrotemporal spikes (CECTS) involves sleep disruptions affecting thalamocortical circuits. This study reveals sleep spindle deficits correlate with cognitive issues in children with CECTS, identifying spindles as a potential treatment target.
Area of Science:
- Neuroscience
- Epileptology
- Developmental Pediatrics
Background:
- Childhood epilepsy with centrotemporal spikes (CECTS) is a common focal epilepsy syndrome with unknown etiology.
- CECTS is characterized by sleep-activated epileptiform discharges and cognitive difficulties, suggesting thalamocortical circuit disruption.
- Previous research has not evaluated the link between sleep spindles and cognitive symptoms in epileptic encephalopathies due to challenges in spindle detection.
Purpose of the Study:
- To validate a novel method for accurate sleep spindle detection in epilepsy patients.
- To investigate the relationship between sleep spindles, epileptic activity, and cognitive function in children with CECTS.
- To explore sleep spindles as a potential biomarker and therapeutic target for cognitive dysfunction in CECTS.
Main Methods:
- Validated a new automated method for precise sleep spindle quantification in EEG recordings.
- Recruited a cohort of children with CECTS undergoing high-density EEG during sleep and cognitive assessments.
- Analyzed the correlation between spindle deficits, spike frequency, and cognitive performance over time.
Main Results:
- Children with CECTS exhibit transient, focal deficits in sleep spindles during symptomatic phases.
- Sleep spindle rates showed an inverse correlation with epileptic spike rates.
- Sleep spindle rates, not spike rates, predicted cognitive task performance.
Conclusions:
- Findings demonstrate focal thalamocortical circuit dysfunction in CECTS.
- Sleep spindles are identified as a mechanistic biomarker for cognitive dysfunction in CECTS.
- Sleep spindles represent a promising therapeutic target for cognitive deficits in this common childhood epilepsy.
Abstract:
Childhood epilepsy with centrotemporal spikes (CECTS) is the most common focal epilepsy syndrome, yet the cause of this disease remains unknown. Now recognized as a mild epileptic encephalopathy, children exhibit sleep-activated focal epileptiform discharges and cognitive difficulties during the active phase of the disease. The association between the abnormal electrophysiology and sleep suggests disruption to thalamocortical circuits. Thalamocortical circuit dysfunction resulting in pathologic epileptiform activity could hinder the production of sleep spindles, a brain rhythm essential for memory processes. Despite this pathophysiologic connection, the relationship between spindles and cognitive symptoms in epileptic encephalopathies has not been previously evaluated. A significant challenge limiting such work has been the poor performance of available automated spindle detection methods in the setting of sharp activities, such as epileptic spikes. Here, we validate a robust new method to accurately measure sleep spindles in patients with epilepsy. We then apply this detector to a prospective cohort of male and female children with CECTS with combined high-density EEGs during sleep and cognitive testing at varying time points of disease. We show that: (1) children have a transient, focal deficit in spindles during the symptomatic phase of disease; (2) spindle rate anticorrelates with spike rate; and (3) spindle rate, but not spike rate, predicts performance on cognitive tasks. These findings demonstrate focal thalamocortical circuit dysfunction and provide a pathophysiological explanation for the shared seizures and cognitive symptoms in CECTS. Further, this work identifies sleep spindles as a potential treatment target of cognitive dysfunction in this common epileptic encephalopathy.SIGNIFICANCE STATEMENT Childhood epilepsy with centrotemporal spikes is the most common idiopathic focal epilepsy syndrome, characterized by self-limited focal seizures and cognitive symptoms. Here, we provide the first evidence that focal thalamocortical circuit dysfunction underlies the shared seizures and cognitive dysfunction observed. In doing so, we identify sleep spindles as a mechanistic biomarker, and potential treatment target, of cognitive dysfunction in this common developmental epilepsy and provide a novel method to reliably quantify spindles in brain recordings from patients with epilepsy.
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