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首页> 外文期刊>Journal of medical systems >EEG-NIRS Based Assessment of Neurovascular Coupling During Anodal Transcranial Direct Current Stimulation - a Stroke Case Series
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EEG-NIRS Based Assessment of Neurovascular Coupling During Anodal Transcranial Direct Current Stimulation - a Stroke Case Series

机译:基于EEG-NIRS的阳极经颅直流电刺激过程中神经血管耦合的评估-中风病例系列

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A method for electroencephalography (EEG) - near-infrared spectroscopy (NIRS) based assessment of neurovascular coupling (NVC) during anodal transcranial direct current stimulation (tDCS). Anodal tDCS modulates cortical neural activity leading to a hemodynamic response, which was used to identify impaired NVC functionality. In this study, the hemodynamic response was estimated with NIRS. NIRS recorded changes in oxy-hemoglobin (HbO2) and deoxy-hemoglobin (Hb) concentrations during anodal tDCS-induced activation of the cortical region located under the electrode and in-between the light sources and detectors. Anodal tDCS-induced alterations in the underlying neuronal current generators were also captured with EEG. Then, a method for the assessment of NVC underlying the site of anodal tDCS was proposed that leverages the Hilbert-Huang Transform. The case series including four chronic (>6 months) ischemic stroke survivors (3 males, 1 female from age 31 to 76) showed non-stationary effects of anodal tDCS on EEG that correlated with the HbO2 response. Here, the initial dip in HbO2 at the beginning of anodal tDCS corresponded with an increase in the log-transformed mean-power of EEG within 0.5Hz-11.25Hz frequency band. The cross-correlation coefficient changed signs but was comparable across subjects during and after anodal tDCS. The log-transformed mean-power of EEG lagged HbO2 response during tDCS but then led post-tDCS. This case series demonstrated changes in the degree of neurovascular coupling to a 0.526 A/m(2) square-pulse (0-30 s) of anodal tDCS. The initial dip in HbO2 needs to be carefully investigated in a larger cohort, for example in patients with small vessel disease.
机译:一种基于脑电图(EEG)-基于近红外光谱(NIRS)的阳极经颅直流电刺激(tDCS)期间神经血管耦合(NVC)评估的方法。阳极tDCS调节皮层神经活动,导致血液动力学反应,该反应被用于识别受损的NVC功能。在这项研究中,使用NIRS估算了血液动力学反应。 NIRS记录了在阳极tDCS诱导的位于电极下方以及光源和检测器之间的皮层区域激活期间,氧合血红蛋白(HbO2)和脱氧血红蛋白(Hb)浓度的变化。脑电图还捕获了潜在的神经元电流发生器中的阳极tDCS诱导的改变。然后,提出了一种利用Hilbert-Huang变换评估在肛门tDCS部位下面的NVC的方法。该病例系列包括四个慢性(> 6个月)缺血性中风幸存者(3例男性,1例31至76岁的女性),显示阳极tDCS对EEG的非平稳作用与HbO2反应相关。在此,在阳极tDCS的开始处HbO2的初始下降对应于在0.5Hz-11.25Hz频带内EEG对数变换后的平均功率的增加。互相关系数改变了征兆,但在阳极tDCS期间和之后在受试者之间具有可比性。对数变换后的脑电图平均功率在tDCS期间滞后于HbO2反应,但随后在tDCS之后。该案例系列证明了神经血管耦合程度的变化,该变化为阳极tDCS的0.526 A / m(2)方脉冲(0-30 s)。 HbO2的最初下降需要在较大的队列中进行仔细研究,例如在小血管疾病患者中。

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