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认知活动期间大脑中动脉血流速度与脑电图之间的相关性。

Correlation between blood flow velocity in the middle cerebral artery and EEG during cognitive effort.

作者信息

Szirmai Imre, Amrein Ilona, Pálvölgyi László, Debreczeni Róbert, Kamondi Anita

机构信息

Department of Neurology, Semmelweis University Budapest, 1083 Budapest, Balassa u. 6. Hungary.

出版信息

Brain Res Cogn Brain Res. 2005 Jun;24(1):33-40. doi: 10.1016/j.cogbrainres.2004.12.011.

Abstract

Cognitive effort modifies blood flow velocity (BFV) in the middle cerebral artery (MCA) which can be recorded by transcranial Doppler sonography (TCD). EEG parameters can be used as indicators of cortical activation. To find temporal and spatial relation between circulatory and bioelectric phenomena, we used combined EEG and TCD measurements during cognitive experiments. Bilateral BFV in the MCAs and 16-channel scalp EEG were recorded during mental arithmetic (MA) and verbal fluency (VF) tests in 12 healthy volunteers. Temporal profile of BFV, heart rate (HR), EEG central frequency (CF), relative alpha power (ralphap), and laterality index (Li) for BFV and CF were statistically analysed. During mental effort, BFV changes showed a reproducible pattern, which was different in MA and VF tests. The Li(BFV) correlated with handedness in 9/12 subjects (75%) in the VF, and in 6/12 subjects (50%) in the MA test. Significant correlation was found between Li(BFV) and Li(CF) during VF (r(2) = 0.69). Li was more indicative for the hemispheric dominance in the VF than in the MA test. During VF test, correlation between HR and BFV was significant in 7/12 subjects. CF and ralphap provide real time assessment of the functional state of the brain tissue during cognition. The correlation between CF and BFV during mental activity suggests a short latency neurogenic and a long latency, supposedly chemical regulation of regional blood flow. Parallel analysis of EEG and flow parameters increases the confidence of determining hemispheric dominance and provides an alternative to study physiological consequences of cognitive processes.

摘要

认知努力会改变大脑中动脉(MCA)的血流速度(BFV),这可以通过经颅多普勒超声(TCD)记录下来。脑电图(EEG)参数可作为皮质激活的指标。为了找出循环和生物电现象之间的时间和空间关系,我们在认知实验中使用了EEG和TCD联合测量。在12名健康志愿者进行心算(MA)和语言流畅性(VF)测试期间,记录了MCA的双侧BFV和16通道头皮EEG。对BFV、心率(HR)、EEG中心频率(CF)、相对阿尔法功率(ralphap)以及BFV和CF的偏侧性指数(Li)的时间特征进行了统计分析。在脑力活动期间,BFV变化呈现出可重复的模式,在MA和VF测试中有所不同。在VF测试中,9/12名受试者(75%)的Li(BFV)与利手相关,在MA测试中,6/12名受试者(50%)的Li(BFV)与利手相关。在VF期间,Li(BFV)和Li(CF)之间存在显著相关性(r(2) = 0.69)。与MA测试相比,Li在VF中更能指示半球优势。在VF测试期间,7/12名受试者的HR和BFV之间存在显著相关性。CF和ralphap可实时评估认知过程中脑组织的功能状态。脑力活动期间CF和BFV之间的相关性表明存在短潜伏期的神经源性调节以及长潜伏期的、推测为化学性的局部血流调节。对EEG和血流参数的平行分析增加了确定半球优势的可信度,并为研究认知过程的生理后果提供了一种替代方法。

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