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fMRI and its interpretations: an illustration on directional selectivity in area V5/MT.

机译:fMRI及其解释:V5 / MT区域中方向选择性的图示。

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摘要

fMRI is a tool to study brain function noninvasively that can reliably identify sites of neural involvement for a given task. However, to what extent can fMRI signals be related to measures obtained in electrophysiology? Can the blood-oxygen-level-dependent signal be interpreted as spatially pooled spiking activity? Here we combine knowledge from neurovascular coupling, functional imaging and neurophysiology to discuss whether fMRI has succeeded in demonstrating one of the most established functional properties in the visual brain, namely directional selectivity in the motion-processing region V5/MT+. We also discuss differences of fMRI and electrophysiology in their sensitivity to distinct physiological processes. We conclude that fMRI constitutes a complement, not a poor-resolution substitute, to invasive techniques, and that it deserves interpretations that acknowledge its stand as a separate signal.
机译:功能磁共振成像是一种非侵入性研究脑功能的工具,可以可靠地确定给定任务的神经受累部位。但是,fMRI信号在多大程度上与电生理学中的测量结果有关?血氧水平依赖性信号能否解释为空间聚集的尖峰活动?在这里,我们结合了来自神经血管耦合,功能成像和神经生理学的知识,来讨论功能磁共振成像是否已成功证明了视觉脑中最成熟的功能特性之一,即运动处理区域V5 / MT +中的方向选择性。我们还讨论了功能磁共振成像和电生理学对不同生理过程的敏感性的差异。我们得出的结论是,功能磁共振成像是对侵入技术的补充,而不是分辨率较差的替代品,并且它值得进行解释,以承认其立场是一个独立的信号。

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