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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >EEG Correlates of Preparatory Orienting, Contextual Updating, and Inhibition of Sensory Processing in Left Spatial Neglect
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EEG Correlates of Preparatory Orienting, Contextual Updating, and Inhibition of Sensory Processing in Left Spatial Neglect

机译:eeg相关的准备定向,上下文更新和对左空间疏忽中感觉加工的抑制

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Studies with event-related potentials have highlighted deficits in the early phases of orienting to left visual targets in right-brain-damaged patients with left spatial neglect (N+). However, brain responses associated with preparatory orienting of attention, with target noveltyandwith the detection of a match/mismatch between expected and actual targets (contextual updating), have not been explored in N+. Here in a study in healthy humans and brain-damaged patients of both sexes we demonstrate that frontal activity that reflects supramodal mechanisms of attentional orienting (Anterior Directing Attention Negativity, ADAN) is entirely spared in N+. In contrast, posterior responses that mark the early phases of cued orienting (Early Directing Attention Negativity, EDAN) and the setting up of sensory facilitation over the visual cortex (Late Directing Attention Positivity, LDAP) are suppressed in N+. This uncoupling is associated with damage of parietal-frontal white matter. N+ also exhibit exaggerated novelty reaction to targets in the right side of space and reduced novelty reaction for those in the left side (P3a) together with impaired contextual updating (P3b) in the left space. Finally, we highlight a drop in the amplitude and latency of the P1 that over the left hemisphere signals the early blocking of sensory processing in the right space when targets occur in the left one: this identifies a new electrophysiological marker of the rightward attentional bias in N+. The heterogeneous effects and spatial biases produced by localized brain damage on the different phases of attentional processing indicate relevant functional independence among their underlying neural mechanisms and improve the understanding of the spatial neglect syndrome.
机译:与事件相关潜力的研究突出了在右脑损坏患者左侧空间疏忽(N +)中的左视觉靶标的早期阶段的缺陷。然而,随着目标Novelyand的预期和实际目标之间的匹配/错配(上下文更新)检测到目标Novelyand,尚未在N +中检测脑响应。在这里,在健康的人类和脑损伤的两性患者的研究中,我们证明反映了注意力取向的寄生术机制(前导注意力,Adan)的正面活动完全避免了N +。相反,在N +中抑制了标志着提高定向的早期阶段的后响应(早期引导注意力,伊丹)和设置感觉促进的感觉促进,在N +中被抑制。这种解耦与榫胞骨前白质的损坏有关。 N +也表现出夸张的新奇反应对空间右侧的靶标,并对左侧空间中的左侧(P3A)的那些降低的新颖性反应,左侧空间的损害障碍物更新(P3B)。最后,我们突出了P1的幅度和等待时间的下降,在左半球上,当左上的目标发生时,在右侧空间中的早期阻塞感觉处理:这识别出直接注意偏差的新电生理标记n +。通过局部脑损伤产生的异质效应和空间偏差,不同阶段的注意力加工阶段表明其潜在的神经机制之间的相关功能独立性,提高了对空间忽视综合征的理解。

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