全身性癫痫的周期性时空模式紊乱及其基本状态的动态重组。

IF 3.8
Junxia Chen, Sisi Jiang, Guofeng Ye, Zhihuan Yang, Changyue Hou, Hechun Li, Haonan Pei, Roberto Rodriguez-Labrada, Jianfu Li, Dezhong Yao, Cheng Luo
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引用次数: 0

摘要

目的:默认模式网络(DMN)与任务正性网络(TPN)之间的反相关性是正常脑活动的一个稳定特征。然而,在特发性全身性癫痫(IGE)中,这种反相关性经常被破坏,并与癫痫发作密切相关。本研究旨在利用周期性时空模式(PSTP)分析来阐明DMN-TPN抗相关性与癫痫活动之间的关系,为IGE的神经机制提供新的见解。方法:静息状态功能磁共振成像分析健康对照(HC)和IGE患者的PSTP。一种模式查找算法最初用于识别重复的时空模式,然后是一种新的psp查找算法,通过分析DMN-TPN反相关的波动来揭示动态周期模式。希尔伯特变换被用于捕捉这些周期模式的潜在基本状态。此外,还探讨了周期长度与内在神经时间尺度(INT)之间的关系。主要结果:IGE患者表现出DMN-TPN抗相关性降低,特别是在tpn显性状态下。此外,IGE患者在基本状态表现出更大的动态不稳定性,在过渡状态之间的转换更频繁。此外,在IGE患者的认知区,观察到周期长度与INT之间的相关性较低。意义:这些发现表明IGE中DMN和TPN之间的动态转换较弱且不平衡,周期性节律中断与认知障碍有关。提出的PSTP框架从时空角度为IGE的异常节律提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disrupted periodic spatiotemporal pattern and dynamic reorganization of its basic states in generalized epilepsy.

Objective.The anti-correlation between the default mode network (DMN) and task-positive network (TPN) is a stable characteristic of normal brain activity. However, in idiopathic generalized epilepsy (IGE), this anti-correlation is often disrupted and strongly associated with epileptic seizures. This study aims to use periodic spatiotemporal patterns (PSTP) analysis to elucidate the relationship between the DMN-TPN anti-correlation and epileptic activity, providing new insights into the neural mechanisms underlying IGE.Approach.Resting-state functional magnetic resonance imaging was used to analyze PSTP in both healthy controls and IGE patients. A pattern-finding algorithm was initially applied to identify repeated spatiotemporal patterns, followed by a novel PSTP-finding algorithm to uncover dynamic periodic patterns through analysis of fluctuations in the DMN-TPN anti-correlation. The Hilbert transform was applied to capture the underlying basic states of these periodic patterns. Additionally, the relationship between period length and intrinsic neural timescales (INT) was explored.Main results.IGE patients exhibited a reduced DMN-TPN anti-correlation, particularly during TPN-dominant states. Additionally, IGE patients exhibited greater dynamic instability in basic states, marked by more frequent transitions between transitional states. Furthermore, lower correlations between period length and INT were observed in cognitive regions of IGE patients.Significance. These findings suggest that dynamic switching between the DMN and TPN in IGE is weaker and less balanced, with disruptions in periodic rhythms linked to cognitive impairments. The proposed PSTP framework provides new insights into the abnormal rhythms of IGE from a spatiotemporal perspective.

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