首页> 美国卫生研究院文献>The Journal of Neuroscience >Where and When to Pay Attention: The Neural Systems for Directing Attention to Spatial Locations and to Time Intervals as Revealed by Both PET and fMRI
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Where and When to Pay Attention: The Neural Systems for Directing Attention to Spatial Locations and to Time Intervals as Revealed by Both PET and fMRI

机译:何时何地需要注意:PET和fMRI都揭示了将注意力引导到空间位置和时间间隔的神经系统

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摘要

Although attention is distributed across time as well as space, the temporal allocation of attention has been less well researched than its spatial counterpart. A temporal analog of the covert spatial orientation task [Posner MI, Snyder CRR, Davidson BJ (1980) Attention and the detection of signals. J Exp Psychol Gen 109:160–174] was developed to compare the neural systems involved in directing attention to spatial locations versus time intervals. We asked whether there exists a general system for allocating attentional resources, independent of stimulus dimension, or whether functionally specialized brain regions are recruited for directing attention toward spatial versus temporal aspects of the environment. We measured brain activity in seven healthy volunteers by using positron emission tomography (PET) and in eight healthy volunteers by using functional magnetic resonance imaging (fMRI). The task manipulated cued attention to spatial locations (S) and temporal intervals (T) in a factorial design. Symbolic central cues oriented subjects toward S only (left or right), toward T only (300 msec or 1500 msec), toward both S and T simultaneously, or provided no information regarding S or T. Subjects also were scanned during a resting baseline condition. Behavioral data showed benefits and costs for performance during temporal attention similar to those established for spatial attention. Brain-imaging data revealed a partial overlap between neural systems involved in the performance of spatial versus temporal orientation of attention tasks. Additionally, hemispheric asymmetries revealed preferential right and left parietal activation for spatial and temporal attention, respectively. Parietal cortex was activated bilaterally by attending to both dimensions simultaneously. This is the first direct comparison of the neural correlates of attending to spatial versus temporal cues.
机译:尽管注意力分布在时间和空间上,但是注意力的时间分配与其空间对应关系相比研究得还不够深入。隐性空间定向任务的时间模拟[Posner MI,Snyder CRR,Davidson BJ(1980)注意和信号检测。 J Exp Psychol Gen 109:160–174]的开发目的是比较将注意力转移到空间位置与时间间隔有关的神经系统。我们询问是否存在一个通用的系统来分配注意力资源,而与刺激维度无关,还是是否招募了功能专门的大脑区域来将注意力引向环境的时空方面。我们使用正电子发射断层扫描(PET)测量了七名健康志愿者的大脑活动,并使用功能磁共振成像(fMRI)测量了八名健康志愿者的大脑活动。该任务在析因设计中吸引了对空间位置(S)和时间间隔(T)的注意。符号中心提示将对象定向为仅朝向S(左侧或右侧),朝向T(仅300 msec或1500毫秒),同时朝向S和T,或未提供有关S或T的信息。在静止的基线条件下也对受试者进行了扫描。行为数据显示,在时间关注过程中,与在空间关注过程中建立的绩效相关的收益和成本。脑成像数据显示,参与注意力任务的空间定向与时间定向执行的神经系统之间存在部分重叠。此外,半球不对称性分别揭示了空间和时间注意的优先左右壁激活。通过同时注意这两个方面,双侧激活顶叶皮层。这是对涉及时空线索与时空线索的神经相关性的首次直接比较。

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