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The Spatial Attention Network Interacts with Limbic and Monoaminergic Systems to Modulate Motivation-Induced Attention Shifts

机译:空间注意网络与边缘和单胺能系统相互作用,以调节动机引起的注意转移。

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摘要

How does the human brain integrate information from multiple domains to guide spatial attention according to motivational needs? To address this question, we measured hemodynamic responses to central cues predicting locations of peripheral attentional targets (food or tool images) in a novel covert spatial attention paradigm. The motivational relevance of food-related attentional targets was experimentally manipulated via hunger and satiety. Amygdala, posterior cingulate, locus coeruleus, and substantia nigra showed selective sensitivity to food-related cues when hungry but not when satiated, an effect that did not generalize to tools. Posterior parietal cortex (PPC), including intraparietal sulcus, posterior cingulate, and the orbitofrontal cortex displayed correlations with the speed of attentional shifts that were sensitive not just to motivational state but also to the motivational value of the target. Stronger functional coupling between PPC and posterior cingulate occurred during attentional biasing toward motivationally relevant food targets. These results reveal conjoint limbic and monoaminergic encoding of motivational salience in spatial attention. They emphasize the interactive role of posterior parietal and cingulate cortices in integrating motivational information with spatial attention, a process that is critical for selective allocation of attentional resources in an environment where target position and relevance can change rapidly.
机译:人脑如何根据动机需求整合来自多个域的信息以引导空间注意力?为了解决这个问题,我们测量了对中心线索的血液动力学响应,以预测新型隐蔽空间注意范式中外围注意目标(食物或工具图像)的位置。与食物有关的注意目标的动机相关性是通过饥饿和饱腹感进行实验性操纵的。杏仁核,扣带后部,蓝斑轨迹和黑质在饥饿时表现出对食物相关线索的选择性敏感性,但在饱腹时却表现出选择性的敏感性,这种作用并未推广到工具上。顶叶后皮质(PPC),包括顶内沟,后扣带回和眶额皮质显示出与注意力转移速度的相关性,注意力转移速度不仅对目标的动机状态敏感,而且对目标的动机价值敏感。 PPC和后扣带回之间的功能耦合更强,这是在注意力偏向与动机相关的食物目标的过程中发生的。这些结果揭示了空间注意力中动机显着性的联合边缘和单胺能编码。他们强调后顶叶和扣带回皮质在整合动机信息和空间注意力方面的互动作用,这一过程对于在目标位置和相关性可以快速变化的环境中选择性分配注意力资源至关重要。

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