跨频耦合作为脑卒中早期恢复的生物标记物

Neurorehabilitation and neural repair Pub Date : 2024-07-01 Epub Date: 2024-06-06 DOI:10.1177/15459683241257523
Jasper I Mark, Justin Riddle, Rachana Gangwani, Benjamin Huang, Flavio Fröhlich, Jessica M Cassidy
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引用次数: 0

摘要

背景:基于神经影像学的生物标志物在脑卒中中的应用丰富了我们对脑卒中后恢复机制的理解,包括基于不同皮质区域同步振荡活动的功能连接的改变。相位-振幅耦合是跨频率耦合的一种类型,可提供更多的机理启示:目的:确定前额叶皮层δ(1-3 Hz)振荡活动的相位如何介导卒中后早期运动皮层β(13-20 Hz)振荡的振幅:方法:住院康复机构的参与者在入院和出院时完成静息和任务型脑电图记录、运动评估以及结构神经影像学检查。未受损的对照组在一次就诊中完成了脑电图程序。混合效应线性模型用于评估δ-贝塔前额运动耦合的组内和组间差异。同时还确定了耦合与运动状态和损伤之间的关联:结果:30 名中风患者和 17 名无运动障碍的对照组参加了研究。所有参与者在任务和休息条件下的耦合度都更高。虽然住院期间患肢任务执行时的耦合度下降,但出院时与对照组相比,耦合度仍然较高。较高的基线耦合度与入院和出院时较好的运动状态相关,并与运动恢复呈正相关。耦合度分别与涉及病变体积测量的损伤和丘脑前部辐射的重叠损伤呈正相关和负相关:这项研究强调了前额运动交叉频率耦合作为脑卒中潜在运动状态和恢复生物标志物的实用性。结论:这项研究强调了前额运动跨频耦合作为中风患者潜在运动状态和恢复生物标志物的实用性。这项研究中的频率和区域特异性神经回路也可能促进中风的新型治疗策略。
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Cross-Frequency Coupling as a Biomarker for Early Stroke Recovery.

Background: The application of neuroimaging-based biomarkers in stroke has enriched our understanding of post-stroke recovery mechanisms, including alterations in functional connectivity based on synchronous oscillatory activity across various cortical regions. Phase-amplitude coupling, a type of cross-frequency coupling, may provide additional mechanistic insight.

Objective: To determine how the phase of prefrontal cortex delta (1-3 Hz) oscillatory activity mediates the amplitude of motor cortex beta (13-20 Hz) oscillations in individual's early post-stroke.

Methods: Participants admitted to an inpatient rehabilitation facility completed resting and task-based EEG recordings and motor assessments around the time of admission and discharge along with structural neuroimaging. Unimpaired controls completed EEG procedures during a single visit. Mixed-effects linear models were performed to assess within- and between-group differences in delta-beta prefrontomotor coupling. Associations between coupling and motor status and injury were also determined.

Results: Thirty individuals with stroke and 17 unimpaired controls participated. Coupling was greater during task versus rest conditions for all participants. Though coupling during affected extremity task performance decreased during hospitalization, coupling remained elevated at discharge compared to controls. Greater baseline coupling was associated with better motor status at admission and discharge and positively related to motor recovery. Coupling demonstrated both positive and negative associations with injury involving measures of lesion volume and overlap injury to anterior thalamic radiation, respectively.

Conclusions: This work highlights the utility of prefrontomotor cross-frequency coupling as a potential motor status and recovery biomarker in stroke. The frequency- and region-specific neurocircuitry featured in this work may also facilitate novel treatment strategies in stroke.

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