Kim Y H, Gitelman D R, Nobre A C, Parrish T B, LaBar K S, Mesulam M M
Department of Neurology, Northwestern University Medical School, Chicago, Illinois, USA.
Neuroimage. 1999 Mar;9(3):269-77. doi: 10.1006/nimg.1999.0408.
Functional magnetic resonance imaging (fMRI) was used to determine the brain regions activated by two types of covert visuospatial attentional shifts: one based on exogenous spatial priming and the other on foveally presented cues which endogenously regulated the direction of spatial expectancy. Activations were seen in the cortical and subcortical components of a previously characterized attentional network, namely, the frontal eye fields, posterior parietal cortex, the cingulate gyrus, the putamen, and the thalamus. Additional activations occurred in the anterior insula, dorsolateral prefrontal cortex, temporo-occipital cortex in the middle and inferior temporal gyri, the supplementary motor area, and the cerebellum. Direct comparisons showed a nearly complete overlap in the location of activations resulting from the two tasks. However, the spatial priming task displayed a more pronounced rightward asymmetry of parietal activation, and a conjunction analysis showed that the area of posterior parietal cortex jointly activated by both tasks was more extensive in the right hemisphere. Furthermore, the posterior parietal and temporo-occipital activations were more pronounced in the task of endogenous attentional shifts. The results show that both exogenous (based on spatial priming) and endogenous (based on expectancy cueing) shifts of attention are subserved by a common network of cortical and subcortical regions. However, the differences between the two tasks, especially in the degree of rightward asymmetry, suggests that the pattern of activation within this network may show variations that reflect the specific attributes of the attentional task.
功能磁共振成像(fMRI)被用于确定由两种类型的隐蔽视觉空间注意转移所激活的脑区:一种基于外源性空间启动,另一种基于中央凹呈现的线索,这些线索内源性地调节空间预期的方向。在先前已被描述的注意网络的皮质和皮质下成分中观察到激活,即额眼区、顶叶后皮质、扣带回、壳核和丘脑。额外的激活出现在前岛叶、背外侧前额叶皮质、颞中回和颞下回的颞枕叶皮质、辅助运动区和小脑。直接比较显示,两项任务所导致的激活位置几乎完全重叠。然而,空间启动任务在顶叶激活上表现出更明显的右侧不对称,并且一项联合分析表明,两项任务共同激活的顶叶后皮质区域在右半球更广泛。此外,在内源性注意转移任务中,顶叶后皮质和颞枕叶的激活更明显。结果表明,外源性(基于空间启动)和内源性(基于预期提示)的注意转移均由一个共同的皮质和皮质下区域网络支持。然而,两项任务之间的差异,尤其是在右侧不对称程度上的差异,表明该网络内的激活模式可能会表现出反映注意任务特定属性的变化。