Związek struktury wzgórza mózgu i połączeń funkcjonalnych z szybkością przetwarzania informacji u dzieci z epilepsją - badanie neurookresowe

PubMed➕ 28.09.2026Epilepsy Behav

Thalamic and functional correlates of processing speed in pediatric epilepsy syndromes: an exploratory neuroimaging study

W skrócie

Badanie dotyczyło dzieci z dwoma typami epilepsji, które zwykle dobrze reagują na leczenie, ale mogą mieć problemy z szybkością myślenia i skupieniem się w szkole. Naukowcy zbadali, czy rozmiar pewnych struktur mózgu i sposób komunikacji między jego częściami wpływają na szybkość reakcji dzieci. Wyniki pokazały, że większe wzgórza mózgu (struktura głęboko w mózgu) wiążą się z szybszą reakcją u dzieci z epilepsją, choć potrzebne są dalsze badania na większej grupie.

Oryginalny abstract (angielski)

PURPOSE: Children with self-limited epilepsy with centrotemporal spikes (SeLECTS) and childhood absence epilepsy (CAE) often have favorable seizure outcomes, but cognitive inefficiencies may persist and affect school functioning. Whether choice reaction time (CRT) is related to somatomotor connectivity and thalamic or hippocampal volumes in these syndromes remains unclear. METHODS: We performed an exploratory secondary analysis of public pediatric epilepsy neuroimaging data. After excluding one participant with SeLECTS because of FreeSurfer segmentation failure, the final structural and functional samples included 25 children with SeLECTS and 10 with CAE. CRT was the primary behavioral outcome. We tested whether SomMot connectivity-CRT coupling differed between syndromes and whether thalamic or hippocampal volumes were associated with CRT within the combined epilepsy sample. RESULTS: The SomMot connectivity × syndrome interaction was nominally significant in the linear-age model (p = 0.039), yet was attenuated after quadratic age adjustment (p = 0.065). In the linear-age structural models, larger bilateral thalamic volumes were associated with shorter CRT within combined epilepsy sample, even after false discovery rate (FDR) correction. The estimates remained directionally consistent after quadratic age adjustment, yet no longer survived FDR correction. CONCLUSION: Bilateral thalamic volumes were associated with CRT across combined epilepsy sample, while SomMot connectivity exhibited a candidate syndrome-dependent coupling pattern, suggesting complementary structural and functional correlates of reaction speed in pediatric epilepsy. Their sensitivity to age model specification warrants further validation in larger, age-balanced cohorts.

Metadane publikacji

Journal
Epilepsy Behav
Data publikacji
27.09.2026
PMID
42801844
DOI
10.1016/j.yebeh.2026.111301
Autorzy
Zhang W, Jian Y, Li C, Wang X, Niu W
Słowa kluczowe
Hippocampus, Pediatric epilepsy, Processing speed, Resting-state fMRI, Structure–behavior association, Thalamus
Źródło
PubMed