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空间注意力调节人类初级视觉皮层中的初始传入活动。

Spatial attention modulates initial afferent activity in human primary visual cortex.

作者信息

Kelly Simon P, Gomez-Ramirez Manuel, Foxe John J

机构信息

The Cognitive Neurophysiology Laboratory, Nathan S. Kline Institute for Psychiatric Research, Program in Cognitive Neuroscience and Schizophrenia, 140 Old Orangeburg Road, Orangeburg, NY 10962, USA.

出版信息

Cereb Cortex. 2008 Nov;18(11):2629-36. doi: 10.1093/cercor/bhn022. Epub 2008 Mar 4.

Abstract

It is well established that spatially directed attention enhances visual perceptual processing. However, the earliest level at which processing can be affected remains unknown. To date, there has been no report of modulation of the earliest visual event-related potential component "C1" in humans, which indexes initial afference in primary visual cortex (V1). Thus it has been suggested that initial V1 activity is impenetrable, and that the earliest modulations occur in extrastriate cortex. However, the C1 is highly variable across individuals, to the extent that uniform measurement across a group may poorly reflect the dynamics of V1 activity. In the present study we employed an individualized mapping procedure to control for such variability. Parameters for optimal C1 measurement were determined in an independent, preliminary "probe" session and later applied in a follow-up session involving a spatial cueing task. In the spatial task, subjects were cued on each trial to direct attention toward 1 of 2 locations in anticipation of an imperative Gabor stimulus and were required to detect a region of lower luminance appearing within the Gabor pattern 30% of the time at the cued location only. Our data show robust spatial attentional enhancement of the C1, beginning as early as its point of onset (57 ms). Source analysis of the attentional modulations points to generation in striate cortex. This finding demonstrates that at the very moment that visual information first arrives in cortex, it is already being shaped by the brain's attentional biases.

摘要

空间定向注意增强视觉感知加工,这一点已得到充分证实。然而,加工过程可能受到影响的最早阶段仍不清楚。迄今为止,尚无关于人类最早的视觉事件相关电位成分“C1”受到调制的报道,C1可作为初级视皮层(V1)初始传入的指标。因此,有人提出V1的初始活动是不可穿透的,最早的调制发生在纹外皮层。然而,C1在个体间差异很大,以至于对一组个体进行统一测量可能无法很好地反映V1活动的动态变化。在本研究中,我们采用了个性化映射程序来控制这种变异性。在一个独立的初步“探测”环节中确定了最佳C1测量参数,随后在一个涉及空间线索任务的后续环节中应用这些参数。在空间任务中,每次试验都会向受试者发出线索,提示他们将注意力指向两个位置中的一个,以期待一个强制性的Gabor刺激,并要求他们仅在30%的时间内检测出在提示位置的Gabor图案中出现的较低亮度区域。我们的数据显示,早在C1开始出现时(57毫秒),就有强大的空间注意增强效应。对注意调制的源分析表明其产生于纹状皮层。这一发现表明,在视觉信息首次到达皮层的那一刻,它就已经受到大脑注意偏向的塑造。

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