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Increasing fMRI Sampling Rate Improves Granger Causality Estimates

机译:增加fMRI采样率可改善Granger因果关系估计

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摘要

Estimation of causal interactions between brain areas is necessary for elucidating large-scale functional brain networks underlying behavior and cognition. Granger causality analysis of time series data can quantitatively estimate directional information flow between brain regions. Here, we show that such estimates are significantly improved when the temporal sampling rate of functional magnetic resonance imaging (fMRI) is increased 20-fold. Specifically, healthy volunteers performed a simple visuomotor task during blood oxygenation level dependent (BOLD) contrast based whole-head inverse imaging (InI). Granger causality analysis based on raw InI BOLD data sampled at 100-ms resolution detected the expected causal relations, whereas when the data were downsampled to the temporal resolution of 2 s typically used in echo-planar fMRI, the causality could not be detected. An additional control analysis, in which we SINC interpolated additional data points to the downsampled time series at 0.1-s intervals, confirmed that the improvements achieved with the real InI data were not explainable by the increased time-series length alone. We therefore conclude that the high-temporal resolution of InI improves the Granger causality connectivity analysis of the human brain.
机译:估算大脑区域之间的因果相互作用对于阐明行为和认知基础的大规模功能性大脑网络是必要的。时间序列数据的格兰杰因果关系分析可以定量地估计大脑区域之间的定向信息流。在这里,我们显示,当功能磁共振成像(fMRI)的时间采样率增加20倍时,此类估计会显着提高。具体来说,健康志愿者在基于血氧水平依赖性(BOLD)对比的全头逆像成像(InI)期间执行了简单的视觉运动任务。基于以100毫秒分辨率采样的原始InI BOLD数据进行的格兰杰因果关系分析检测到了预期的因果关系,而当将数据降采样到回波平面fMRI通常使用的2 s的时间分辨率时,则无法检测到因果关系。另一项控制分析(SINC以0.1秒的间隔将其他数据点插值到下采样的时间序列)证实,仅通过增加时间序列长度无法解释使用实际InI数据实现的改进。因此,我们得出结论,InI的高时间分辨率可以改善人脑的Granger因果关系分析。

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