Computational Pipeline for NIRS-EEG Joint Imaging of tDCS-Evoked Cerebral Responses An Application in Ischemic Stroke

被引:35
作者
Guhathakurta, Debarpan [1 ]
Dutta, Anirban [2 ]
机构
[1] Univ Bristol, Sch Clin Sci, Bristol, Avon, England
[2] IfADo Leibniz Res Ctr Working Environm & Human Fa, Dept Psychol & Neurosci, Dortmund, Germany
关键词
transcranial direct current stimulation; near-infrared spectroscopy; electroencephalography; neurovascular coupling; computational modeling; ischemic stroke; DIRECT-CURRENT STIMULATION; NEAR-INFRARED SPECTROSCOPY; POTASSIUM CHANNELS; BLOOD-FLOW; ENERGY-METABOLISM; MOTOR CORTEX; BRAIN; CALCIUM; PLASTICITY; ELECTROENCEPHALOGRAM;
D O I
10.3389/fnins.2016.00261
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Transcranial direct current stimulation (tDCS) modulates cortical neural activity and hemodynamics. Electrophysiological methods (electroencephalography-EEG) measure neural activity while optical methods (near-infrared spectroscopy-NIRS) measure hemodynamics coupled through neurovascular coupling (NVC). Assessment of NVC requires development of NIRS-EEG joint-imaging sensor montages that are sensitive to the tDCS affected brain areas. In this methods paper, we present a software pipeline incorporating freely available software tools that can be used to target vascular territories with tDCS and develop a NIRS-EEG probe for joint imaging of tDCS-evoked responses. We apply this software pipeline to target primarily the outer convexity of the brain territory (superficial divisions) of the middle cerebral artery (MCA). We then present a computational method based on Empirical Mode Decomposition of NIRS and EEG time series into a set of intrinsic mode functions (IMFs), and then perform a cross-correlation analysis on those IMFs from NIRS and EEG signals to model NVC at the lesional and contralesional hemispheres of an ischemic stroke patient. For the contralesional hemisphere, a strong positive correlation between IMFs of regional cerebral hemoglobin oxygen saturation and the log-transformed mean-power time-series of IMFs for EEG with a lag of about -15 s was found after a cumulative 550 s stimulation of anodal tDCS. It is postulated that system identification, for example using a continuous-time autoregressive model, of this coupling relation under tDCS perturbation may provide spatiotemporal discriminatory features for the identification of ischemia. Furthermore, portable NIRS-EEG joint imaging can be incorporated into brain computer interfaces to monitor tDCS-facilitated neurointervention as well as cortical reorganization.
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页数:12
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