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使用潜伏期分辨功能磁共振成像的心理时间测量法。

Mental chronometry using latency-resolved functional MRI.

作者信息

Menon R S, Luknowsky D C, Gati J S

机构信息

Laboratory for Functional Magnetic Resonance Research, The John P. Robarts Research Institute, P.O. Box 5015, 100 Perth Drive, London, Ontario, N6A 5K8, Canada.

出版信息

Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10902-7. doi: 10.1073/pnas.95.18.10902.

Abstract

Vascular responses to neural activity are exploited as the basis of a number of brain imaging techniques. The vascular response is thought to be too slow to resolve the temporal sequence of events involved in cognitive tasks, and hence, imaging studies of mental chronometry have relied on techniques such as the evoked potential. Using rapid functional MRI (fMRI) of single trials of two simple behavioral tasks, we demonstrate that while the microvascular response to the onset of neural activity is delayed consistently by several seconds, the relative timing between the onset of the fMRI responses in different brain areas appears preserved. We examined a number of parameters that characterize the fMRI response and determined that its onset time is best defined by the inflection point from the resting baseline. We have found that fMRI onset latencies determined in this manner correlate well with independently measurable parameters of the tasks such as reaction time or stimulus presentation time and can be used to determine the origin of processing delays during cognitive or perceptual tasks with a temporal accuracy of tens of milliseconds and spatial resolution of millimeters.

摘要

血管对神经活动的反应被用作多种脑成像技术的基础。血管反应被认为过于缓慢,无法解析认知任务中所涉及事件的时间序列,因此,心理计时的成像研究依赖于诸如诱发电位等技术。通过对两个简单行为任务的单次试验进行快速功能磁共振成像(fMRI),我们证明,虽然微血管对神经活动开始的反应始终会延迟几秒,但不同脑区fMRI反应开始之间的相对时间似乎得以保留。我们检查了许多表征fMRI反应的参数,并确定其开始时间最好由静息基线的拐点来定义。我们发现,以这种方式确定的fMRI起始潜伏期与任务的独立可测量参数(如反应时间或刺激呈现时间)密切相关,并且可用于以数十毫秒的时间精度和毫米级的空间分辨率来确定认知或感知任务期间处理延迟的起源。

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