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Neurofunctional model of large-scale correlates of selective attention governed by stimulus-novelty

机译:新型刺激控制选择性注意的大规模关联的神经功能模型

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Multiple studies demonstrate the influence of the limbic system on the processing of sensory events and attentional guidance. But the mechanisms involved therein are yet not entirely clear. The close connection of handling incoming sensory information and memory retrieval, like in the case of habituation towards insignificant stimuli, suggests a crucial impact of the hippocampus on the direction of attention. In this paper we thus present a neurofunctional forward model of a hippocampal comparator function based on the theory of theta-regulated attention. Subsequently we integrated this comparator model into a multiscale framework for the simulation of evoked responses. The results of our simulations were compared to experimental data on electroencephalographic (EEG) correlates of habituation towards familiar stimuli using time-scale analysis. In consequence we are able to present additional evidence for limbic influences on the direction of attention driven by stimulus novelty and a systems neuroscience framework for the statements given in the theta-regulated attention hypothesis.
机译:多项研究表明,边缘系统对感觉事件和注意指导的处理有影响。但是其中涉及的机制尚不完全清楚。处理传入的感官信息和记忆检索的紧密联系,例如在习惯于对微不足道的刺激的情况下,表明海马对注意方向的关键影响。因此,在本文中,我们基于theta调节的注意力理论提出了海马比较器功能的神经功能正向模型。随后,我们将该比较器模型集成到了多尺度框架中,以模拟诱发的反应。我们的模拟结果与时标分析对习惯性朝向熟悉刺激的脑电图(EEG)相关性的实验数据进行了比较。因此,我们能够为刺激新颖性驱动的注意力方向的边缘影响提供额外的证据,并为theta调节注意力假设中的陈述提供系统神经科学框架。

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