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Experimental Validation of Dynamic Granger Causality for Inferring Stimulus-evoked Sub-100ms Timing Differences from fMRI

机译:从功能磁共振成像推断刺激诱发的100ms以下时间差异的动态格兰杰因果关系的实验验证

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摘要

Decoding the sequential flow of events in the human brain non-invasively is critical for gaining a mechanistic understanding of brain function. In this study, we propose a method based on dynamic Granger causality analysis to measure timing differences in brain responses from fMRI. We experimentally validate this method by detecting sub-100ms timing differences in fMRI responses obtained from bilateral visual cortex using fast sampling, ultra-high field and an event-related visual hemifield paradigm with known timing difference between the hemifields. Classical Granger causality was previously shown to be able to detect sub-100 ms timing differences in the visual cortex. Since classical Granger causality does not differentiate between spontaneous and stimulus-evoked responses, dynamic Granger causality has been proposed as an alternative, thereby necessitating its experimental validation. In addition to detecting timing differences as low as 28 ms during dynamic Granger causality, the significance of the inference from our method increased with increasing delay both in simulations and experimental data. Therefore, it provides a methodology for understanding mental chronometry from fMRI in a data-driven way.
机译:非侵入性地解码人脑中事件的顺序流对于获得对脑功能的机械理解至关重要。在这项研究中,我们提出了一种基于动态Granger因果分析的方法来测量功能磁共振成像对大脑反应的时间差异。我们通过使用快速采样,超高场和事件相关的视觉半视野范式(从已知的半视野之间的时差)检测从双边视觉皮层获得的功能磁共振成像响应中的100ms以下时间差异,从而实验性地验证了该方法。先前已证明,经典的格兰杰因果关系能够检测视觉皮层中100 ms以下的时间差异。由于经典的格兰杰因果关系无法区分自发响应和刺激诱发的响应,因此已提出动态格兰杰因果关系作为替代方案,因此有必要进行实验验证。除了在动态Granger因果关系中检测到低至28 ms的时序差异外,在仿真和实验数据中,随着延迟的增加,我们方法的推论也越来越重要。因此,它提供了一种以数据驱动方式从fMRI理解心理测年法的方法。

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