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  1. Neurophenomenology.Antoine Lutz & Evan Thompson - 2003 - Journal of Consciousness Studies 10 (9-10):31-52.
    _sciousness called ‘neurophenomenology’ (Varela 1996) and illustrates it with a_ _recent pilot study (Lutz et al., 2002). At a theoretical level, neurophenomenology_ _pursues an embodied and large-scale dynamical approach to the_ _neurophysiology of consciousness (Varela 1995; Thompson and Varela 2001;_ _Varela and Thompson 2003). At a methodological level, the neurophenomeno-_ _logical strategy is to make rigorous and extensive use of first-person data about_ _subjective experience as a heuristic to describe and quantify the large-scale_ _neurodynamics of consciousness (Lutz 2002). The paper (...)
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  • The philosophy of zen.Daisetz Teitaro Suzuki - 1951 - Philosophy East and West 1 (2):3-15.
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  • The nature of awe: Elicitors, appraisals, and effects on self-concept.Michelle N. Shiota, Dacher Keltner & Amanda Mossman - 2007 - Cognition and Emotion 21 (5):944-963.
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  • Describing one’s subjective experience in the second person: An interview method for the science of consciousness. [REVIEW]Claire Petitmengin - 2006 - Phenomenology and the Cognitive Sciences 5 (3-4):229-269.
    This article presents an interview method which enables us to bring a person, who may not even have been trained, to become aware of his or her subjective experience, and describe it with great precision. It is focused on the difficulties of becoming aware of one’s subjective experience and describing it, and on the processes used by this interview technique to overcome each of these difficulties. The article ends with a discussion of the criteria governing the validity of the descriptions (...)
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  • Neurobiology of Spirituality.E. Mohandas - 2008 - Mens Sana Monographs 6 (1):63.
    _Spiritual practices have been proposed to have many beneficial effects as far as mental health is concerned. The exact neural basis of these effects is slowly coming to light and different imaging techniques have elucidated the neural basis of meditative practices. The evidence though preliminary and based on studies replete with methodological constraints, points toward the involvement of the prefrontal and parietal cortices. The available data on meditation focus on activated frontal attentional network. Neuroimaging studies have shown that meditation results (...)
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  • Neuronal dynamics and conscious experience: An example of reciprocal causation before epileptic seizures. [REVIEW]Michel Le Van Quyen & Claire Petitmengin - 2002 - Phenomenology and the Cognitive Sciences 1 (2):169-180.
    Neurophenomenology (Varela 1996) is not only philosophical but also empirical and experimental. Our purpose in this article is to illustrate concretely the efficiency of this approach in the field of neuroscience and, more precisely here, in epileptology. A number of recent observations have indicated that epileptic seizures do not arise suddenly simply as the effect of random fluctuations of brain activity, but require a process of pre-seizure changes that start long before. This has been reported at two different levels of (...)
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  • Approaching awe, a moral, spiritual, and aesthetic emotion.Dacher Keltner & Jonathan Haidt - 2003 - Cognition and Emotion 17 (2):297-314.
    In this paper we present a prototype approach to awe. We suggest that two appraisals are central and are present in all clear cases of awe: perceived vastness, and a need for accommodation, defined as an inability to assimilate an experience into current mental structures. Five additional appraisals account for variation in the hedonic tone of awe experiences: threat, beauty, exceptional ability, virtue, and the supernatural. We derive this perspective from a review of what has been written about awe in (...)
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  • Experimenting with phenomenology.Shaun Gallagher & Jesper Brøsted Sørensen - 2006 - Consciousness and Cognition 15 (1):119-134.
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  • Experimenting with phenomenology.Shaun Gallagher & Jesper B. Sorensen - 2006 - Consciousness and Cognition 15 (1):119-134.
    We review the use of introspective and phenomenological methods in experimental settings. We distinguish different senses of introspection, and further distinguish phenomenological method from introspectionist approaches. Two ways of using phenomenology in experimental procedures are identified: first, the neurophenomenological method, proposed by Varela, involves the training of experimental subjects. This approach has been directly and productively incorporated into the protocol of experiments on perception. A second approach may have wider application and does not involve training experimental subjects in phenomenological method. (...)
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  • The role of the extrapersonal brain systems in religious activity.Fred H. Previc - 2006 - Consciousness and Cognition 15 (3):500-539.
    The neuropsychology of religious activity in normal and selected clinical populations is reviewed. Religious activity includes beliefs, experiences, and practice. Neuropsychological and functional imaging findings, many of which have derived from studies of experienced meditators, point to a ventral cortical axis for religious behavior, involving primarily the ventromedial temporal and frontal regions. Neuropharmacological studies generally point to dopaminergic activation as the leading neurochemical feature associated with religious activity. The ventral dopaminergic pathways involved in religious behavior most closely align with the (...)
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  • 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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  • The varieties of religious experience. A Study in human Nature.William James - 1902 - Revue Philosophique de la France Et de l'Etranger 54:516-527.
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  • Guiding the study of brain dynamics by using first- person data: Synchrony patterns correlate with ongoing conscious states during a simple visual task.Antoine Lutz, Jacques Martinerie, Jean-Philippe Lachaux & Francisco J. Varela - 2002 - Proceedings of the National Academy of Sciences of the Usa 99 (3):1586-1591.
    Laboratoire de Neurosciences Cognitives et Imagerie Ce´re´brale (LENA), Hoˆpital de La Salpeˆtrie`re, Centre National de la Recherche Scientifique (CNRS).
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  • Phenomenology In Consciousness Research.Francisco Varela - 1996 - Journal of Consciousness Studies 3 (4):330-349.
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