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  1. No Evidence That Sleep Deprivation Effects and the Vigilance Decrement Are Functionally Equivalent: Comment on Veksler and Gunzelmann.Erik M. Altmann - 2018 - Cognitive Science 42 (2):708-711.
    Veksler and Gunzelmann make an extraordinary claim, which is that sleep deprivation effects and the vigilance decrement are functionally equivalent. Extraordinary claims require extraordinary evidence, which is missing from Veksler and Gunzelmann's study. Their behavioral data offer only weak theoretical constraint, and to the extent their modeling exercise supports any position, it is that these two performance impairments involve functionally distinct underlying mechanisms.
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  • The Low-Frequency Fluctuation of Trial-by-Trial Frontal Theta Activity and Its Correlation With Reaction-Time Variability in Sustained Attention.Yao-Yao Wang, Li Sun, Yi-Wei Liu, Jia-Hui Pan, Yu-Ming Zheng, Yu-Feng Wang, Yu-Feng Zang & Hang Zhang - 2020 - Frontiers in Psychology 11.
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  • Mechanisms for Robust Cognition.Matthew M. Walsh & Kevin A. Gluck - 2015 - Cognitive Science 39 (6):1131-1171.
    To function well in an unpredictable environment using unreliable components, a system must have a high degree of robustness. Robustness is fundamental to biological systems and is an objective in the design of engineered systems such as airplane engines and buildings. Cognitive systems, like biological and engineered systems, exist within variable environments. This raises the question, how do cognitive systems achieve similarly high degrees of robustness? The aim of this study was to identify a set of mechanisms that enhance robustness (...)
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  • Functional Equivalence of Sleep Loss and Time on Task Effects in Sustained Attention.Bella Z. Veksler & Glenn Gunzelmann - 2018 - Cognitive Science 42 (2):600-632.
    Research on sleep loss and vigilance both focus on declines in cognitive performance, but theoretical accounts have developed largely in parallel in these two areas. In addition, computational instantiations of theoretical accounts are rare. The current work uses computational modeling to explore whether the same mechanisms can account for the effects of both sleep loss and time on task on performance. A classic task used in the sleep deprivation literature, the Psychomotor Vigilance Test, was extended from the typical 10-min duration (...)
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  • On theory integration: Toward developing affective components within cognitive architectures.Justin M. Olds & Julian N. Marewski - 2015 - Behavioral and Brain Sciences 38.
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  • An opportunity cost model of subjective effort and task performance.Robert Kurzban, Angela Duckworth, Joseph W. Kable & Justus Myers - 2013 - Behavioral and Brain Sciences 36 (6):661-679.
    Why does performing certain tasks cause the aversive experience of mental effort and concomitant deterioration in task performance? One explanation posits a physical resource that is depleted over time. We propose an alternative explanation that centers on mental representations of the costs and benefits associated with task performance. Specifically, certain computational mechanisms, especially those associated with executive function, can be deployed for only a limited number of simultaneous tasks at any given moment. Consequently, the deployment of these computational mechanisms carries (...)
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  • Further Evidence That Sleep Deprivation Effects and the Vigilance Decrement Are Functionally Equivalent: Comment on Altmann.Glenn Gunzelmann & Bella Veksler - 2018 - Cognitive Science 42 (2):712-717.
    Veksler and Gunzelmann argue that the vigilance decrement and the deleterious effects of sleep loss reflect functionally equivalent degradations in cognitive processing and performance. Our account is implemented in a cognitive architecture, where these factors produce breakdowns in goal-directed cognitive processing that we refer to as microlapses. Altmann raises a number of challenges to microlapses as a unified account of these deficits. Under scrutiny, however, the challenges do little to discredit the theory or conclusions in the original paper. In our (...)
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  • The Effects of Guanfacine and Phenylephrine on a Spiking Neuron Model of Working Memory.Peter Duggins, Terrence C. Stewart, Xuan Choo & Chris Eliasmith - 2017 - Topics in Cognitive Science 9 (1):117-134.
    Duggins et al. use a spiking neural network model of working memory to predict the reaction to two drugs known to affect working memory (guanfacine and phenylephrine). The model can explain data from moneys at the biophysical, neural, and behavioral levels.
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