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首页> 外文期刊>Clinical neurophysiology >Assessing cortical functional connectivity by linear inverse estimation and directed transfer function: simulations and application to real data.
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Assessing cortical functional connectivity by linear inverse estimation and directed transfer function: simulations and application to real data.

机译:通过线性逆估计和有向传递函数评估皮质功能连接性:模拟和对实际数据的应用。

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OBJECTIVE: To test a technique called Directed Transfer Function (DTF) for the estimation of human cortical connectivity, by means of simulation study and human study, using high resolution EEG recordings related to finger movements. METHODS: The method of the Directed Transfer Function (DTF) is a frequency-domain approach, based on a multivariate autoregressive modeling of time series and on the concept of Granger causality. Since the spreading of the potential from the cortex to the sensors makes it difficult to infer the relation between the spatial patterns on the sensor space and those on the cortical sites, we propose the use of the DTF method on cortical signals estimated from high resolution EEG recordings, which exhibit a higher spatial resolution than conventional cerebral electromagnetic measures. The simulation study was followed by an analysis of variance (ANOVA) of the results obtained for different levels of Signal to Noise Ratio (SNR) and temporal length, as they have been systematically imposed on simulated signals. The whole methodology was then applied to high resolution EEG data recorded during a visually paced finger movement. RESULTS: The statistical analysis performed returns that during simulations, DTF is able to estimate correctly the imposed connectivity patterns under reasonable operative conditions, i.e. when data exhibit a SNR of at least 3 and a length of at least 75 s of non-consecutive recordings at 64 Hz of sampling rate, equivalent, more generally, to 4800 data samples. CONCLUSIONS: Functional connectivity patterns of cortical activity can be effectively estimated under general conditions met in any practical EEG recordings, by combining high resolution EEG techniques, linear inverse estimation and the DTF method. SIGNIFICANCE: The estimation of cortical connectivity can be performed not only with hemodynamic measurements, by using functional MRI recordings, but also with modern EEG recordings treated with advanced computational techniques.
机译:目的:通过模拟研究和人体研究,使用与手指运动有关的高分辨率脑电图记录,测试一种称为定向传递函数(DTF)的技术,以评估人类皮层连通性。方法:定向传递函数(DTF)的方法是频域方法,基于时间序列的多元自回归建模并基于格兰杰因果关系的概念。由于从皮层到传感器的电位分布难以推断传感器空间和皮质部位的空间模式之间的关系,因此我们建议对高分辨率EEG估计的皮质信号使用DTF方法记录,其显示的空间分辨率高于常规的大脑电磁测量。在模拟研究之后,分析了针对不同级别的信噪比(SNR)和时间长度而获得的结果的方差分析(ANOVA),因为这些结果已系统地应用于模拟信号。然后将整个方法应用于在视觉上按节奏的手指运动期间记录的高分辨率EEG数据。结果:进行的统计分析表明,在模拟过程中,DTF能够在合理的操作条件下正确估计施加的连接模式,即,当数据在SNR处显示至少3的SNR和至少75 s的非连续记录时, 64 Hz的采样率,更普遍地相当于4800个数据采样。结论:通过结合高分辨率脑电图技术,线性逆估计和DTF方法,可以在任何实际的脑电图记录满足的一般条件下有效地估计皮质活动的功能连接模式。意义:不仅可以通过使用功能性MRI记录进行血流动力学测量,而且可以使用经过先进计算技术处理的现代EEG记录进行皮质连通性的估计。

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