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主动和反应性阿尔法及高伽马活动的动态皮质和纤维束图谱。

Dynamic cortical and tractography atlases of proactive and reactive alpha and high-gamma activities.

作者信息

Ono Hiroya, Sonoda Masaki, Sakakura Kazuki, Kitazawa Yu, Mitsuhashi Takumi, Firestone Ethan, Jeong Jeong-Won, Luat Aimee F, Marupudi Neena I, Sood Sandeep, Asano Eishi

机构信息

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

Department of Pediatric Neurology, National Center of Neurology and Psychiatry, Joint Graduate School of Tohoku University, Tokyo 1878551, Japan.

出版信息

Brain Commun. 2023 Apr 4;5(2):fcad111. doi: 10.1093/braincomms/fcad111. eCollection 2023.

Abstract

Alpha waves-posterior dominant rhythms at 8-12 Hz reactive to eye opening and closure-are among the most fundamental EEG findings in clinical practice and research since Hans Berger first documented them in the early 20th century. Yet, the exact network dynamics of alpha waves in regard to eye movements remains unknown. High-gamma activity at 70-110 Hz is also reactive to eye movements and a summary measure of local cortical activation supporting sensorimotor or cognitive function. We aimed to build the first-ever brain atlases directly visualizing the network dynamics of eye movement-related alpha and high-gamma modulations, at cortical and white matter levels. We studied 28 patients (age: 5-20 years) who underwent intracranial EEG and electro-oculography recordings. We measured alpha and high-gamma modulations at 2167 electrode sites outside the seizure onset zone, interictal spike-generating areas and MRI-visible structural lesions. Dynamic tractography animated white matter streamlines modulated significantly and simultaneously beyond chance, on a millisecond scale. , significant alpha augmentation occurred at the occipital and frontal cortices. , alpha-based functional connectivity was strengthened, while high gamma-based connectivity was weakened extensively in both intra-hemispheric and inter-hemispheric pathways involving the central visual areas. The inferior fronto-occipital fasciculus supported the strengthened alpha co-augmentation-based functional connectivity between occipital and frontal lobe regions, whereas the posterior corpus callosum supported the inter-hemispheric functional connectivity between the occipital lobes. , significant high-gamma augmentation and alpha attenuation occurred at occipital, fusiform and inferior parietal cortices. High gamma co-augmentation-based functional connectivity was strengthened, whereas alpha-based connectivity was weakened in the posterior inter-hemispheric and intra-hemispheric white matter pathways involving central and peripheral visual areas. Our results do not support the notion that eye closure-related alpha augmentation uniformly reflects feedforward or feedback rhythms propagating from lower to higher order visual cortex, or vice versa. Rather, and alpha waves involve extensive, distinct white matter networks that include the frontal lobe cortices, along with low- and high-order visual areas. High-gamma co-attenuation coupled to alpha co-augmentation in shared brain circuitry after eye closure supports the notion of an idling role for alpha waves during eye closure. These normative dynamic tractography atlases may improve understanding of the significance of EEG alpha waves in assessing the functional integrity of brain networks in clinical practice; they also may help elucidate the effects of eye movements on task-related brain network measures observed in cognitive neuroscience research.

摘要

阿尔法波是8-12赫兹的后头部优势节律,对睁眼和闭眼有反应,自20世纪初汉斯·伯格首次记录以来,一直是临床实践和研究中最基本的脑电图发现之一。然而,关于眼球运动的阿尔法波的确切网络动态仍不清楚。70-110赫兹的高伽马活动也对眼球运动有反应,是支持感觉运动或认知功能的局部皮质激活的汇总指标。我们旨在构建首个直接可视化与眼球运动相关的阿尔法和高伽马调制在皮质和白质水平的网络动态的脑图谱。我们研究了28例(年龄:5-20岁)接受颅内脑电图和眼电图记录的患者。我们在癫痫发作起始区、发作间期棘波产生区和MRI可见的结构性病变之外的2167个电极部位测量了阿尔法和高伽马调制。动态纤维束成像以动画形式展示了白质纤维束在毫秒尺度上显著且同时超出偶然水平的调制。在枕叶和额叶皮质出现了显著的阿尔法增强。基于阿尔法的功能连接得到加强,而在涉及中央视觉区域的半球内和半球间通路中,基于高伽马的连接广泛减弱。额枕下束支持枕叶和额叶区域之间基于阿尔法共同增强的功能连接增强,而后胼胝体支持枕叶之间的半球间功能连接。在枕叶、梭状回和顶下小叶皮质出现了显著的高伽马增强和阿尔法减弱。在涉及中央和周边视觉区域的半球后间和半球内白质通路中,基于高伽马共同增强的功能连接得到加强,而基于阿尔法的连接减弱。我们的结果不支持闭眼相关的阿尔法增强统一反映从低级到高级视觉皮质传播的前馈或反馈节律,反之亦然的观点。相反,阿尔法波涉及广泛、独特的白质网络,包括额叶皮质以及低级和高级视觉区域。闭眼后在共享脑回路中与阿尔法共同增强耦合的高伽马共同减弱支持了阿尔法波在闭眼期间起闲置作用的观点。这些标准化的动态纤维束成像脑图谱可能会增进对脑电图阿尔法波在临床实践中评估脑网络功能完整性的意义的理解;它们也可能有助于阐明眼球运动对认知神经科学研究中观察到的与任务相关的脑网络测量指标的影响。

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