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Attentional reorientation along the meridians of the visual field: Are there different neural mechanisms at play?

机译:沿着视野的经络的注意力重新定位:在游戏中是否有不同的神经机制?

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摘要

Hemispatial neglect, after unilateral lesions to parietal brain areas, is characterized by an inability to respond to unexpected stimuli in contralesional space. As the visual field's horizontal meridian is most severely affected, the brain networks controlling visuospatial processes might be tuned explicitly to this axis. We investigated such a potential directional tuning in the dorsal and ventral frontoparietal attention networks, with a particular focus on attentional reorientation. We used an orientation‐discrimination task where a spatial precue indicated the target position with 80% validity. Healthy participants ( = 29) performed this task in two runs and were required to (re‐)orient attention either only along the horizontal or the vertical meridian, while fMRI and behavioral measures were recorded. By using a general linear model for behavioral and fMRI data, dynamic causal modeling for effective connectivity, and other predictive approaches, we found strong statistical evidence for a reorientation effect for horizontal and vertical runs. However, neither neural nor behavioral measures differed between vertical and horizontal reorienting. Moreover, models from one run successfully predicted the cueing condition in the respective other run. Our results suggest that activations in the dorsal and ventral attention networks represent higher‐order cognitive processes related to spatial attentional (re‐)orientating that are independent of directional tuning and that unilateral attention deficits after brain damage are based on disrupted interactions between higher‐level attention networks and sensory areas.
机译:在对位脑区的单侧病变之后,半缺失疏忽,其特点是无法应对违反空间的意外刺激。随着Visual Field的水平经络受到最严重的影响,控制屏蔽过程的大脑网络可能会明确地调整到该轴。我们调查了背部和腹侧前部注意网络中的这种潜在的定向调整,特别关注注意力重新定位。我们使用了一个方向辨别任务,其中空间的PREPUES指示了80%有效性的目标位置。健康的参与者(= 29)在两次运行中进行了这项任务,并且只沿水平或垂直子午线或垂直经络所需的注意力,而FMRI和行为措施被记录。通过使用用于行为和FMRI数据的一般线性模型,有效连接的动态因果模型以及其他预测方法,我们发现了对水平和垂直运行的重新定向效果的强大统计证据。然而,垂直和水平重新定向之间的神经性和行为措施都没有不同。此外,从一个运行的模型成功地预测了各个其他运行中的提示条件。我们的研究结果表明,背部和腹侧关注网络的激活代表了与空间注意力(RE-)定向有关的高阶认知过程,这些过程与定向调谐无关,并且在脑损伤后的单侧注意缺陷是基于更高层次的中断的相互作用注意网络和感官区域。

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