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发育过程中生理高频震荡与慢波的相位-幅度耦合图谱

Developmental atlas of phase-amplitude coupling between physiologic high-frequency oscillations and slow waves.

机构信息

Department of Pediatrics, Children's Hospital of Michigan, Detroit Medical Center, Wayne State University, Detroit, MI, 48201, USA.

Department of Neurosurgery, Rush University Medical Center, Chicago, IL, 60612, USA.

出版信息

Nat Commun. 2023 Oct 13;14(1):6435. doi: 10.1038/s41467-023-42091-y.

Abstract

We investigated the developmental changes in high-frequency oscillation (HFO) and Modulation Index (MI) - the coupling measure between HFO and slow-wave phase. We generated normative brain atlases, using subdural EEG signals from 8251 nonepileptic electrode sites in 114 patients (ages 1.0-41.5 years) who achieved seizure control following resective epilepsy surgery. We observed a higher MI in the occipital lobe across all ages, and occipital MI increased notably during early childhood. The cortical areas exhibiting MI co-growth were connected via the vertical occipital fasciculi and posterior callosal fibers. While occipital HFO rate showed no significant age-association, the temporal, frontal, and parietal lobes exhibited an age-inversed HFO rate. Assessment of 1006 seizure onset sites revealed that z-score normalized MI and HFO rate were higher at seizure onset versus nonepileptic electrode sites. We have publicly shared our intracranial EEG data to enable investigators to validate MI and HFO-centric presurgical evaluations to identify the epileptogenic zone.

摘要

我们研究了高频振荡(HFO)和调制指数(MI)的发育变化,MI 是 HFO 与慢波相位之间的耦合度量。我们使用来自 114 名接受癫痫手术后达到癫痫控制的患者(年龄 1.0-41.5 岁)的硬膜下 EEG 信号生成了规范性脑图谱。我们观察到在所有年龄段,枕叶的 MI 更高,并且在幼儿期 MI 显著增加。表现出 MI 共同增长的皮质区域通过垂直枕叶束和后连合纤维连接。虽然枕叶 HFO 率与年龄没有显著关联,但颞叶、额叶和顶叶的 HFO 率呈逆龄变化。对 1006 个癫痫发作起始部位的评估表明,与非癫痫性电极部位相比,癫痫发作起始部位的 MI 和 HFO 率的 Z 分数归一化更高。我们已经公开共享了我们的颅内 EEG 数据,以便研究人员能够验证基于 MI 和 HFO 的术前评估,以识别致痫区。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2686/10575956/5694e5c16753/41467_2023_42091_Fig1_HTML.jpg

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