Enlarged perivascular spaces in the basal ganglia across epilepsy subtypes

癫痫 基底神经节 血管周围间隙 病理 医学 神经科学 中枢神经系统疾病 解剖 临床神经学 生物 基础(医学) 中枢神经系统 退行性疾病 神经系统疾病 机制(生物学)
作者
Benjamin Sinclair,Clarissa Lin Yasuda,John‐Paul Nicolo,Gernot Hlauschek,Thais Maria Santos Bezerra,Zhibin Chen,Lucy Vivash,Brunno Machado de Campos,Rafael Batista João,Ricardo Brioschi,Lucas Scárdua Silva,Mateus Henrique Nogueira,Marina K. M. Alvim,Patrick Kwan,Fernando Cendes,Terence J. O’Brien,Meng Law
出处
期刊:Epilepsia [Wiley]
卷期号:67 (2): 815-829 被引量:3
标识
DOI:10.1111/epi.18694
摘要

OBJECTIVE: The glymphatic system is thought to be the brain's primary waste clearance system, responsible for eliminating soluble metabolites and proteins from the central nervous system. It consists of the cerebrospinal fluid, the interstitial fluid, and a conduit between the two, perivascular spaces (PVS). PVS and glymphatics may impact the pathophysiology of epilepsy and its associated neuropsychiatric comorbidities, potentially via reduced clearance of excitotoxic substances. This study investigates enlarged PVS burden in a large patient group with various types of epilepsy. METHODS: A total of 467 people with various types of epilepsy were recruited from the Hospital das Clínicas, University of Campinas, Brazil; 267 had temporal lobe epilepsy with hippocampal sclerosis (TLE-HS), 71 had TLE with no magnetic resonance imaging (MRI)-visible lesions, 65 had focal extratemporal epilepsy, and 64 had idiopathic generalized epilepsy. They were matched for age and sex with 473 healthy volunteers as controls. All participants were scanned with T1-weighted MRI, and a deep-learning algorithm, PINGU (Perivascular-Space Identification Nnunet for Generalized Usage), was applied to segment PVS. The volumes of PVS in the white matter (WM) and basal ganglia (BG) were calculated, and PVS volume fraction (PVS-VF) was used as a dependent variables in a general linear model, with the diagnostic group as the independent variable of interest. RESULTS: ). There was no difference in PVS-VF in the WM between the epilepsy groups and healthy controls, or between different epilepsy subtypes. Only the TLE-HS group had a PVS-VF asymmetry in the WM, with more PVS on the contralateral side, particularly in the temporal lobes. There was no association between PVS-VF and duration of illness. SIGNIFICANCE: There is an increase in PVS volume in the BG across broad subtypes of epilepsy, suggesting either a common mechanism of seizure generation or a common consequence of seizures.
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