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  1. The expression of the emotions in man and animal.Charles Darwin - 1898 - Mineola, New York: Dover Publications.
    One of science's greatest intellects examines how people and animals display fear, anger, and pleasure. Darwin based this 1872 study on his personal observations, which anticipated later findings in neuroscience. Abounding in anecdotes and literary quotations, the book is illustrated with 21 figures and seven photographic plates. Its direct approach, accessible to professionals and amateurs alike, continues to inspire and inform modern research in psychology.
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  • Action, arousal, and subjective time.Kielan Yarrow, Patrick Haggard & John C. Rothwell - 2004 - Consciousness and Cognition 13 (2):373-390.
    Saccadic chronostasis refers to the subjective temporal lengthening of the first visual stimulus perceived after an eye movement. It has been quantified using a duration discrimination task. Most models of human duration discrimination hypothesise an internal clock. These models could explain chronostasis as a transient increase in internal clock speed due to arousal following a saccade, leading to temporal overestimation. Two experiments are described which addressed this hypothesis by parametrically varying the duration of the stimuli that are being judged. Changes (...)
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  • Prior-entry: A review.Charles Spence & Cesare Parise - 2010 - Consciousness and Cognition 19 (1):364-379.
    The law of prior entry was one of E.B. Titchener’s seven fundamental laws of attention. According to Titchener : “the object of attention comes to consciousness more quickly than the objects which we are not attending to.” Although researchers have been studying prior entry for more than a century now, progress in understanding the effect has been hindered by the many methodological confounds present in early research. As a consequence, it is unclear whether the behavioral effects reported in the majority (...)
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  • Multisensory prior entry.Charles Spence, David I. Shore & Raymond M. Klein - 2001 - Journal of Experimental Psychology: General 130 (4):799.
  • Bayesian optimization of time perception.Zhuanghua Shi, Russell M. Church & Warren H. Meck - 2013 - Trends in Cognitive Sciences 17 (11):556-564.
  • A perspective on disgust.Paul Rozin & April E. Fallon - 1987 - Psychological Review 94 (1):23-41.
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  • The effect of visual threat on spatial attention to touch.Ellen Poliakoff, Eleanor Miles, Xinying Li & Isabelle Blanchette - 2007 - Cognition 102 (3):405-414.
  • Awareness of action: Inference and prediction.James Moore - 2008 - Consciousness and Cognition 17 (1):136-144.
    This study investigates whether the conscious awareness of action is based on predictive motor control processes, or on inferential “sense-making” process that occur after the action itself. We investigated whether the temporal binding between perceptual estimates of operant actions and their effects depends on the occurrence of the effect (inferential processes) or on the prediction that the effect will occur (predictive processes). By varying the probability with which a simple manual action produced an auditory effect, we showed that both the (...)
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  • Dedicated and intrinsic models of time perception.Richard B. Ivry & John E. Schlerf - 2008 - Trends in Cognitive Sciences 12 (7):273-280.
  • Emotion drives attention: detecting the snake in the grass.Arne Öhman, Anders Flykt & Francisco Esteves - 2001 - Journal of Experimental Psychology: General 130 (3):466.
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  • Fears, phobias and preparedness: Toward an evolved module of fear and fear learning.Arne Öhman & Susan Mineka - 2001 - Psychological Review 108 (3):483-522.
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  • Mapping discrete and dimensional emotions onto the brain: controversies and consensus.Stephan Hamann - 2012 - Trends in Cognitive Sciences 16 (9):458-466.
  • Intentional action: Conscious experience and neural prediction.Patrick Haggard & Sam Clark - 2003 - Consciousness and Cognition 12 (4):695-707.
    Intentional action involves both a series of neural events in the motor areas of the brain, and also a distinctive conscious experience that ''I'' am the author of the action. This paper investigates some possible ways in which these neural and phenomenal events may be related. Recent models of motor prediction are relevant to the conscious experience of action as well as to its neural control. Such models depend critically on matching the actual consequences of a movement against its internally (...)
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  • Where’s the action? The pragmatic turn in cognitive science.Andreas K. Engel, Alexander Maye, Martin Kurthen & Peter König - 2013 - Trends in Cognitive Sciences 17 (5):202-209.
  • An argument for basic emotions.Paul Ekman - 1992 - Cognition and Emotion 6 (3):169-200.
    Emotions are viewed as having evolved through their adaptive value in dealing with fundamental life-tasks. Each emotion has unique features: signal, physiology, and antecedent events. Each emotion also has characteristics in common with other emotions: rapid onset, short duration, unbidden occurrence, automatic appraisal, and coherence among responses. These shared and unique characteristics are the product of our evolution, and distinguish emotions from other affective phenomena.
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  • How emotions colour our perception of time.Sylvie Droit-Volet & Warren H. Meck - 2007 - Trends in Cognitive Sciences 11 (12):504-513.
    Our sense of time is altered by our emotions to such an extent that time seems to fly when we are having fun and drags when we are bored. Recent studies using standardized emotional material provide a unique opportunity for understanding the neurocognitive mechanisms that underlie the effects of emotion on timing and time perception in the milliseconds-to-hours range. We outline how these new findings can be explained within the framework of internal-clock models and describe how emotional arousal and valence (...)
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  • An embodied cognitive science?Andy Clark - 1999 - Trends in Cognitive Sciences 3 (9):345-351.
    The last ten years have seen an increasing interest, within cognitive science, in issues concerning the physical body, the local environment, and the complex interplay between neural systems and the wider world in which they function. --œPhysically embodied, environmentally embedded--� approaches thus loom large on the contemporary cognitive scientific scene. Yet many unanswered questions remain, and the shape of a genuinely embodied, embedded science of the mind is still unclear. I begin by sketching a few examples of the approach, and (...)
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  • The River of Time.Igor D. Novikov - 2001 - Cambridge University Press.
    Can we change the past? The surprising answer to this question can be found in the final chapters of this book. Examining the history of the study of time and presenting in detail the modern state of physical research on the subject, this book is a superb overview of a fascinating subject. The figures who have helped to shape our views on time are presented as real people, in the context of their own times and struggles: from Socrates' troubles in (...)
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  • The Embodied Mind: Cognitive Science and Human Experience.Francisco J. Varela, Evan Thompson & Eleanor Rosch - 1991 - MIT Press.
    The Embodied Mind provides a unique, sophisticated treatment of the spontaneous and reflective dimension of human experience.
  • Descartes' Error: Emotion, Reason, and the Human Brain.Antonio R. Damasio - 1994 - Putnam.
    Linking the process of rational decision making to emotions, an award-winning scientist who has done extensive research with brain-damaged patients notes the dependence of thought processes on feelings and the body's survival-oriented regulators. 50,000 first printing.
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  • Neural mechanisms of selective visual attention.R. Desimone & J. Duncan - 1995 - Annual Review of Neuroscience 18 (1):193-222.
  • Processing emotional facial expressions: The role of anxiety and awareness.Elaine Fox - 2002 - Cognitive, Affective and Behavioral Neuroscience 2 (1):52-63.
  • Voluntary action and conscious awareness.Patrick Haggard, Sam Clark & Jeri Kalogeras - 2002 - Nature Neuroscience 5 (4):382-385.