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Different activation dynamics in multiple neural systems during simulated driving

机译:模拟驾驶过程中多神经系统中不同的激活动力学

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摘要

Driving is a complex behavior that recruits multiple cognitive elements. We report on an imaging study of simulated driving that reveals multiple neural systems, each of which have different activation dynamics. The neural correlates of driving behavior are identified with fMRI and their modulation with speed is investigated. We decompose the activation into interpretable pieces using a novel, generally applicable approach, based upon independent component analysis. Some regions turn on or off, others exhibit a gradual decay, and yet others turn on transiently when starting or stopping driving. Signal in the anterior cingulate cortex, an area often associated with error monitoring and inhibition, decreases exponentially with a rate proportional to driving speed, whereas decreases in frontoparietal regions, implicated in vigilance, correlate with speed. Increases in cerebellar and occipital areas, presumably related to complex visuomotor integration, are activated during driving but not associated with driving speed. Hum. Brain Mapping 16:158–167, 2002. © 2002 Wiley‐Liss, Inc.
机译:驾驶是一种复杂的行为,需要多种认知元素。我们报告了对模拟驾驶的影像研究,该影像揭示了多个神经系统,每个神经系统具有不同的激活动力学。通过fMRI识别驾驶行为的神经相关性,并研究其与速度的关系。我们基于独立的成分分析,使用一种新颖的,普遍适用的方法将激活分解为可解释的片段。一些区域会打开或关闭,其他区域会逐渐衰减,而其他一些在开始或停止驾驶时会暂时打开。前扣带回皮层中的信号,通常与错误监测和抑制相关的区域,以与驱动速度成比例的速率呈指数下降,而在警惕中牵涉的额顶区域中的信号与速度相关。小脑和枕骨区域的增加,可能与复杂的视觉运动整合有关,在驾驶过程中被激活,但与驾驶速度无关。哼。 Brain Mapping 16:158–167,2002.©2002 Wiley-Liss,Inc.

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