Hopf Jens-Max, Luck Steven J, Boelmans Kai, Schoenfeld Mircea A, Boehler Carsten N, Rieger Jochem, Heinze Hans-Jochen
Department of Neurology II, Otto-von-Guericke University, D-39120 Magdeburg, Germany.
J Neurosci. 2006 Mar 29;26(13):3532-40. doi: 10.1523/JNEUROSCI.4510-05.2006.
What is the neural locus of visual attention? Here we show that the locus is not fixed but instead changes rapidly to match the spatial scale of task-relevant information in the current scene. To accomplish this, we obtained electrical, magnetic, and hemodynamic measures of attention from human subjects while they detected large-scale or small-scale targets within multiscale stimulus patterns. Subjects did not know the scale of the target before stimulus onset, and yet the neural locus of attention-related activity between 250 and 300 ms varied according to the scale of the target. Specifically, maximal attention-related activity spread from a high-level, relatively anterior visual area (the lateral occipital complex) for large-scale targets to include a lower-level, more posterior area (visual area V4) for small-scale targets. This rapid change indicates that the neural locus of attention in visual cortex is not static but is instead determined rapidly and dynamically by means of an interaction between top-down task information and local information about the current visual input.
视觉注意力的神经定位在哪里?我们在此表明,该定位并非固定不变,而是会迅速变化以匹配当前场景中与任务相关信息的空间尺度。为实现这一点,我们在人类受试者检测多尺度刺激模式中的大尺度或小尺度目标时,获取了他们注意力的电、磁和血液动力学测量数据。受试者在刺激开始前并不知道目标的尺度,但在250至300毫秒之间,与注意力相关的神经活动定位会根据目标的尺度而变化。具体而言,与注意力相关的最大活动从针对大尺度目标的高级、相对靠前的视觉区域(外侧枕叶复合体)扩展到针对小尺度目标的低级、更靠后的区域(视觉区域V4)。这种快速变化表明,视觉皮层中注意力的神经定位并非静态的,而是通过自上而下的任务信息与当前视觉输入的局部信息之间的相互作用迅速且动态地确定的。