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Peripheral Attentional Targets under Covert Attention Lead to Paradoxically Enhanced Alpha Desynchronization in Neurofibromatosis Type 1

机译:隐蔽注意下的周围注意目标导致神经纤维瘤病1型矛盾地增强了α失步。

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摘要

The limited capacity of the human brain to process the full extent of visual information reaching the visual cortex requires the recruitment of mechanisms of information selection through attention. Neurofibromatosis type-1 (NF1) is a neurodevelopmental disease often exhibiting attentional deficits and learning disabilities, and is considered to model similar impairments common in other neurodevelopmental disorders such as autism. In a previous study, we found that patients with NF1 are more prone to miss targets under overt attention conditions. This finding was interpreted as a result of increased occipito-parietal alpha oscillations. In the present study, we used electroencephalography (EEG) to study alpha power modulations and the performance of patients with NF1 in a covert attention task. Covert attention was required in order to perceive changes (target offset) of a peripherally presented stimulus. Interestingly, alpha oscillations were found to undergo greater desynchronization under this task in the NF1 group compared with control subjects. A similar pattern of desynchronization was found for beta frequencies while no changes in gamma oscillations could be identified. These results are consistent with the notion that different attentional states and task demands generate different patterns of abnormal modulation of alpha oscillatory processes in NF1. Under covert attention conditions and while target offset was reported with relatively high accuracy (over 90% correct responses), excessive desynchronization was found. These findings suggest an abnormal modulation of oscillatory activity and attentional processes in NF1. Given the known role of alpha in modulating attention, we suggest that alpha patterns can show both abnormal increases and decreases that are task and performance dependent, in a way that enhanced alpha desynchronization may reflect a compensatory mechanism to keep performance at normal levels. These results suggest that dysregulation of alpha oscillations may occur in NF1 both in terms of excessive or diminished activation patterns.
机译:人脑处理到达视觉皮层的全部视觉信息的能力有限,需要通过注意力募集信息选择机制。 1型神经纤维瘤病(NF1)是一种经常表现出注意力缺陷和学习障碍的神经发育疾病,被认为可以模拟其他神经发育障碍(例如自闭症)中常见的类似障碍。在先前的研究中,我们发现NF1患者在公开的注意条件下更容易错过目标。这项发现被解释为枕顶顶α振动增加的结果。在本研究中,我们使用脑电图(EEG)来研究阿尔法功率调制和NF1患者在秘密注意任务中的表现。为了感知周围呈现的刺激的变化(目标偏移),需要秘密注意。有趣的是,在此任务下,与对照组相比,在NF1组中,α振荡经历了更大的失步。对于β频率发现了类似的失步模式,但无法确定伽马振荡的变化。这些结果与以下概念一致:不同的注意力状态和任务需求会在NF1中产生不同的α振荡过程异常调制模式。在秘密注意的情况下,虽然报告目标偏移的准确性较高(正确响应超过90%),但发现过度失步。这些发现表明NF1的振荡活动和注意过程的异常调节。考虑到阿尔法在调节注意力方面的已知作用,我们建议阿尔法模式可以显示出任务和性能相关的异常增加和减少,以增强阿尔法去同步的方式可以反映出一种将性能保持在正常水平的补偿机制。这些结果表明,就过度或减少激活模式而言,NF1均可能发生α振荡失调。

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