在基因大鼠缺失癫痫模型中,体感觉皮层和丘脑中央区的频谱和耦合特征区分了5-9 Hz振荡前和间期。

IF 5.1 2区 医学 Q1 NEUROSCIENCES Neurobiology of Disease Pub Date : 2025-02-01 Epub Date: 2024-12-24 DOI:10.1016/j.nbd.2024.106777
Eleni Nikalexi, Vladimir Maksimenko, Thomas Seidenbecher, Thomas Budde, Hans-Christian Pape, Annika Lüttjohann
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引用次数: 0

摘要

尖波放电(SWD)是失神性癫痫的电生理标志。SWD在丘脑-皮质网络中产生,并且在体感觉皮层中确定了癫痫发作区(S1)。我们之前已经证明,在GAERS大鼠中,丘脑中央核(CM)的抑制导致选择性抑制spike成分,而有节奏的皮层5-9 Hz振荡仍然存在。这种振荡通常出现在失痫性遗传大鼠模型的SWD活动之前,但也出现在无癫痫发作期。本研究的特点是5-9 赫兹振荡的丘脑-皮层回路在间隔状态和间隔状态。我们记录了S1、CM和GAERS的次级运动皮层的局部场电位。采用时频分析评估频谱功率,采用非线性关联分析确定脑区之间的耦合强度和方向性。阶段特异性电刺激用于比较皮质兴奋性和评估癫痫后放电的风险。与峰前5-9 Hz振荡相比,峰间振荡的耦合强度和频谱功率更高。然而,峰前振荡期间的耦合强度高于被动清醒期间。与被动清醒期间的刺激相比,5-9 Hz振荡期间的双脉冲刺激更容易诱发癫痫后放电。虽然没有发现皮层兴奋性的总体差异,但在振荡期间发现了兴奋性的阶段性差异。我们的研究结果表明,S1和CM之间的中间耦合有利于SWD的产生,从而增加了之前的观点,即5-9 Hz振荡代表癫痫发作的高风险时期。一般来说,颅前振荡在GAERS中显示出独特的电生理特征,这可能为作为SWD发生和癫痫发作预测的生物标志物铺平道路。
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Spectral and coupling characteristics of somatosensory cortex and centromedian thalamus differentiate between pre- and inter-ictal 5-9 Hz oscillations in a genetic rat model of absence epilepsy.

Spike-wave-discharges (SWD) are the electrophysiological hallmark of absence epilepsy. SWD are generated in the thalamo-cortical network and a seizure onset zone was identified in the somatosensory cortex (S1). We have shown before that inhibition of the centromedian thalamic nucleus (CM) in GAERS rats resulted in a selective suppression of the spike component while rhythmic cortical 5-9 Hz oscillations remained present. Such oscillations are often seen to precede SWD activity in this well-validated genetic rat model of absence epilepsy, but are also seen in seizure-free periods. The present study characterizes the profile of 5-9 Hz oscillations in thalamo-cortical circuits during pre- and inter-ictal states. Here we recorded local-field-potentials in S1, CM and the secondary motor cortex of GAERS. Time-frequency analysis was used to assess spectral power and non-linear-association analysis was used to determine coupling strength and directionality between brain areas. Phase-specific electrical stimulation was used to compare cortical excitability and to assess the risk for epileptic afterdischarges. Coupling strength and spectral power were higher for the inter-ictal compared to the pre-ictal 5-9 Hz oscillations. However, coupling strength during pre-ictal oscillations was higher than during passive wakefulness. Double pulse stimulation during 5-9 Hz oscillations was more likely to induce epileptic afterdischarges compared to stimulation during passive wakefulness. While no overall differences in cortical excitability were revealed, phase-specific differences in excitability were noticed during the oscillation. Our findings indicate that intermediate coupling between S1 and CM favors SWD generation, thereby adding to the previous notion that 5-9 Hz oscillations represent high-risk periods for seizure generation. In general, pre-ictal oscillations display a unique electrophysiological profile in GAERS that might pave the way for qualification as biomarker for SWD generation and seizure prediction.

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来源期刊
Neurobiology of Disease
Neurobiology of Disease 医学-神经科学
CiteScore
11.20
自引率
3.30%
发文量
270
审稿时长
76 days
期刊介绍: Neurobiology of Disease is a major international journal at the interface between basic and clinical neuroscience. The journal provides a forum for the publication of top quality research papers on: molecular and cellular definitions of disease mechanisms, the neural systems and underpinning behavioral disorders, the genetics of inherited neurological and psychiatric diseases, nervous system aging, and findings relevant to the development of new therapies.
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