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Nonlinear Dynamics of Emotion-Cognition Interaction: When Emotion Does not Destroy Cognition?

机译:情绪-认知互动的非线性动力学:何时情绪不会破坏认知?

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Emotion (i.e., spontaneous motivation and subsequent implementation of a behavior) and cognition (i.e., problem solving by information processing) are essential to how we, as humans, respond to changes in our environment. Recent studies in cognitive science suggest that emotion and cognition are subserved by different, although heavily integrated, neural systems. Understanding the time-varying relationship of emotion and cognition is a challenging goal with important implications for neuroscience. We formulate here the dynamical model of emotion-cognition interaction that is based on the following principles: (1) the temporal evolution of cognitive and emotion modes are captured by the incoming stimuli and competition within and among themselves (competition principle); (2) metastable states exist in the unified emotion-cognition phase space; and (3) the brain processes information with robust and reproducible transients through the sequence of metastable states. Such a model can take advantage of the often ignored temporal structure of the emotion-cognition interaction to provide a robust and generalizable method for understanding the relationship between brain activation and complex human behavior. The mathematical image of the robust and reproducible transient dynamics is a Stable Heteroclinic Sequence (SHS), and the Stable Heteroclinic Channels (SHCs). These have been hypothesized to be possible mechanisms that lead to the sequential transient behavior observed in networks. We investigate the modularity of SHCs, i.e., given a SHS and a SHC that is supported in one part of a network, we study conditions under which the SHC pertaining to the cognition will continue to function in the presence of interfering activity with other parts of the network, i.e., emotion.
机译:情感(即,自发动机和随后的行为实现)和认知(即,通过信息处理解决问题)对于我们作为人类如何应对环境变化至关重要。认知科学方面的最新研究表明,情绪和认知可以通过虽然高度集成的不同神经系统来维护。了解情绪和认知的时变关系是一个具有挑战性的目标,对神经科学具有重要意义。在这里,我们基于以下原则建立了情绪-认知互动的动力学模型:(1)认知和情绪模式的时间演变是由内部和相互之间的传入刺激和竞争所捕获的(竞争原理); (2)在统一的情绪认知相空间中存在亚稳态; (3)大脑通过亚稳态状态序列以健壮且可再现的瞬态来处理信息。这样的模型可以利用情感-认知互动中经常被忽略的时间结构,为理解大脑激活与复杂人类行为之间的关系提供一种鲁棒且可推广的方法。鲁棒且可复制的瞬态​​动力学的数学图像是稳定的杂斜序列(SHS)和稳定的杂斜通道(SHC)。假设这些是导致网络中观察到的顺序瞬态行为的可能机制。我们研究了SHC的模块性,即,假设一个SHS和一个网络的一部分中支持的SHC,我们研究与认知有关的SHC在与其他部分的干扰活动存在的情况下将继续起作用的条件网络,即情感。

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