Shmuel Amir, Augath Mark, Oeltermann Axel, Logothetis Nikos K
Max Planck Institute for Biological Cybernetics, Spemannstr. 38, 72076 Tuebingen, Germany.
Nat Neurosci. 2006 Apr;9(4):569-77. doi: 10.1038/nn1675. Epub 2006 Mar 19.
Most functional brain imaging studies use task-induced hemodynamic responses to infer underlying changes in neuronal activity. In addition to increases in cerebral blood flow and blood oxygenation level-dependent (BOLD) signals, sustained negative responses are pervasive in functional imaging. The origin of negative responses and their relationship to neural activity remain poorly understood. Through simultaneous functional magnetic resonance imaging and electrophysiological recording, we demonstrate a negative BOLD response (NBR) beyond the stimulated regions of visual cortex, associated with local decreases in neuronal activity below spontaneous activity, detected 7.15 +/- 3.14 mm away from the closest positively responding region in V1. Trial-by-trial amplitude fluctuations revealed tight coupling between the NBR and neuronal activity decreases. The NBR was associated with comparable decreases in local field potentials and multiunit activity. Our findings indicate that a significant component of the NBR originates in neuronal activity decreases.
大多数功能性脑成像研究利用任务诱发的血液动力学反应来推断神经元活动的潜在变化。除了脑血流量增加和血氧水平依赖(BOLD)信号外,持续性负反应在功能成像中普遍存在。负反应的起源及其与神经活动的关系仍知之甚少。通过同步功能磁共振成像和电生理记录,我们证明了在视觉皮层受刺激区域之外存在负BOLD反应(NBR),这与神经元活动低于自发活动的局部下降有关,在距V1中最接近的正反应区域7.15±3.14毫米处检测到。逐次试验的幅度波动揭示了NBR与神经元活动下降之间的紧密耦合。NBR与局部场电位和多单位活动的相应下降有关。我们的研究结果表明,NBR的一个重要组成部分源于神经元活动的下降。