Bidet-Caulet Aurélie, Bottemanne Laure, Fonteneau Clara, Giard Marie-Hélène, Bertrand Olivier
Brain Dynamics and Cognition Team, Lyon Neuroscience Research Center; CRNL, INSERM U1028, CNRS UMR5292, University of Lyon 1, Lyon, France,
Brain Topogr. 2015 May;28(3):423-36. doi: 10.1007/s10548-014-0354-x. Epub 2014 Feb 15.
Attention improves the processing of specific information while other stimuli are disregarded. A good balance between bottom-up (attentional capture by unexpected salient stimuli) and top-down (selection of relevant information) mechanisms is crucial to be both task-efficient and aware of our environment. Only few studies have explored how an isolated unexpected task-irrelevant stimulus outside the attention focus can disturb the top-down attention mechanisms necessary to the good performance of the ongoing task, and how these top-down mechanisms can modulate the bottom-up mechanisms of attentional capture triggered by an unexpected event. We recorded scalp electroencephalography in 18 young adults performing a new paradigm measuring distractibility and assessing both bottom-up and top-down attention mechanisms, at the same time. Increasing task load in top-down attention was found to reduce early processing of the distracting sound, but not bottom-up attentional capture mechanisms nor the behavioral distraction cost in reaction time. Moreover, the impact of bottom-up attentional capture by distracting sounds on target processing was revealed as a delayed latency of the N100 sensory response to target sounds mirroring increased reaction times. These results provide crucial information into how bottom-up and top-down mechanisms dynamically interact and compete in the human brain, i.e. on the precarious balance between voluntary attention and distraction.
注意力能改善特定信息的处理,同时忽略其他刺激。自下而上(由意外的显著刺激引起的注意力捕获)和自上而下(相关信息的选择)机制之间的良好平衡对于任务高效执行和感知周围环境至关重要。只有少数研究探讨了注意力焦点之外孤立的意外任务无关刺激如何干扰正在进行的任务良好表现所必需的自上而下的注意力机制,以及这些自上而下的机制如何调节由意外事件触发的自下而上的注意力捕获机制。我们记录了18名年轻成年人的头皮脑电图,他们执行一种新的范式,该范式同时测量分心程度并评估自下而上和自上而下的注意力机制。研究发现,增加自上而下注意力的任务负荷会减少对干扰声音的早期处理,但不会减少自下而上的注意力捕获机制,也不会减少反应时间上的行为分心成本。此外,干扰声音引起的自下而上的注意力捕获对目标处理的影响表现为对目标声音的N100感觉反应潜伏期延迟,这反映了反应时间增加。这些结果为自下而上和自上而下的机制如何在人脑中动态相互作用和竞争提供了关键信息,即关于自愿注意力和分心之间不稳定的平衡。