Glazebrook James F, Wallace Rodrick
Department of Mathematics and Computer Science, Eastern Illinois University, 600 Lincoln Avenue, Charleston, IL, 61920-3099, USA,
Cogn Process. 2015 Feb;16(1):1-16. doi: 10.1007/s10339-014-0636-y. Epub 2014 Oct 18.
We study the background to problems of functional connectivity in autism spectrum disorders within the neurocognitive framework of the global workspace model. This we proceed to do by observing network irregularities detracting from that of a well-formed small world network architecture. This is discussed in terms of pathologies in functional connectivity and lack of central coherence disrupting inter-network communication thus impairing effective cognitive action. A typical coherence-connectivity measure as a by-product of various neuroimaging results is considered. This is related to a model of feedback control in which a coherence function in the frequency domain is modified by an environmentally determined interaction parameter. With respect to the latter, we discuss the stability question that in theory may counterbalance inessential metabolic costs and incoherence of processing. We suggest that factors such as local overconnectivity and global underconnectivity, along with acute over-expenditure of metabolic costs give rise to instability within the connective core of the workspace.
我们在全局工作空间模型的神经认知框架内研究自闭症谱系障碍中功能连接问题的背景。我们通过观察偏离结构良好的小世界网络架构的网络不规则性来进行此项研究。这是从功能连接的病理学以及缺乏破坏网络间通信从而损害有效认知行动的中心连贯性方面来讨论的。我们考虑了作为各种神经成像结果副产品的典型连贯性 - 连接性度量。这与一种反馈控制模型相关,在该模型中,频域中的连贯性函数由环境确定的相互作用参数修改。关于后者,我们讨论了理论上可能抵消不必要的代谢成本和处理不连贯性的稳定性问题。我们认为,诸如局部过度连接和全局连接不足等因素,以及代谢成本的急剧过度消耗,会导致工作空间连接核心内的不稳定性。