Chronobiological Spatial Clusters of Cortical Regions in the Human Brain.

IF 2.3 4区 医学 Q3 CLINICAL NEUROLOGY Journal of Clinical Neurophysiology Pub Date : 2024-10-02 DOI:10.1097/WNP.0000000000001119
Ravindra Arya, Gabrielle T Petito, Jeremy Housekeeper, Jason Buroker, Craig Scholle, Brian Ervin, Clayton Frink, Paul S Horn, Wei Liu, Marc Ruben, David F Smith, Jesse Skoch, Francesco T Mangano, Hansel M Greiner, Katherine D Holland
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Abstract

Purpose: We demonstrate that different regions of the cerebral cortex have different diurnal rhythms of spontaneously occurring high-frequency oscillations (HFOs).

Methods: High-frequency oscillations were assessed with standard-of-care stereotactic electroencephalography in patients with drug-resistant epilepsy. To ensure generalizability of our findings beyond patients with drug-resistant epilepsy, we excluded stereotactic electroencephalography electrode contacts lying within seizure-onset zones, epileptogenic lesions, having frequent epileptiform activity, and excessive artifact. For each patient, we evaluated twenty-four 5-minute stereotactic electroencephalography epochs, sampled hourly throughout the day, and obtained the HFO rate (number of HFOs/minute) in every stereotactic electroencephalography channel. We analyzed diurnal rhythms of the HFO rates with the cosinor model and clustered neuroanatomic parcels in a standard brain space based on similarity of their cosinor parameters. Finally, we compared overlap among resting-state networks, described in the neuroimaging literature, and chronobiological spatial clusters discovered by us.

Results: We found five clusters that localized predominantly or exclusively to the left perisylvian, left perirolandic and left temporal, right perisylvian and right parietal, right frontal, and right insular-opercular cortices, respectively. These clusters were characterized by similarity of the HFO rates according to the time of the day. Also, these chronobiological spatial clusters preferentially overlapped with specific resting-state networks, particularly default mode network (clusters 1 and 3), frontoparietal network (cluster 1), visual network (cluster 1), and mesial temporal network (cluster 2).

Conclusions: This is probably the first human study to report clusters of cortical regions with similar diurnal rhythms of electrographic activity. Overlap with resting-state networks attests to their functional significance and has implications for understanding cognitive functions and epilepsy-related mortality.

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人脑皮质区域的时间生物学空间群。
目的:我们证明了大脑皮层的不同区域具有不同的自发高频振荡(HFOs)昼夜节律。方法:在耐药性癫痫患者中使用标准护理立体定向脑电图评估高频振荡。为了确保我们的研究结果不局限于耐药性癫痫患者,我们排除了癫痫发作区内的立体定向脑电图电极接触点、致痫性病变、频繁的癫痫样活动和过度伪像。我们对每位患者进行了 24 个 5 分钟的立体定向脑电图纪元评估,全天每小时采样一次,并获得了每个立体定向脑电图通道的 HFO 率(HFOs/分钟数)。我们用cosinor模型分析了HFO率的昼夜节律,并根据其cosinor参数的相似性在标准脑空间中对神经解剖区块进行了聚类。最后,我们比较了神经影像文献中描述的静息态网络与我们发现的时间生物学空间集群之间的重叠情况:结果:我们发现了五个集群,它们分别主要或完全位于左侧颞叶周围皮层、左侧岛叶周围皮层和左侧颞叶皮层、右侧颞叶周围皮层和右侧顶叶皮层、右侧额叶皮层和右侧岛叶-小脑皮层。这些集群的特点是一天中不同时间的 HFO 率相似。此外,这些时间生物学空间集群优先与特定的静息态网络重叠,尤其是默认模式网络(集群1和3)、额顶叶网络(集群1)、视觉网络(集群1)和中颞网络(集群2):这可能是第一项人类研究报告了具有相似昼夜节律电图活动的皮层区域群。与静息态网络的重叠证明了它们的功能意义,并对了解认知功能和癫痫相关死亡率具有重要意义。
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来源期刊
Journal of Clinical Neurophysiology
Journal of Clinical Neurophysiology 医学-临床神经学
CiteScore
4.60
自引率
4.20%
发文量
198
审稿时长
6-12 weeks
期刊介绍: ​The Journal of Clinical Neurophysiology features both topical reviews and original research in both central and peripheral neurophysiology, as related to patient evaluation and treatment. Official Journal of the American Clinical Neurophysiology Society.
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