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The value of spontaneous EEG oscillations in distinguishing patients in vegetative and minimally conscious states

In Eror Basar & et all (eds.), Application of Brain Oscillations in Neuropsychiatric Diseases. Supplements to Clinical Neurophysiology. Elsevier. pp. 81-99 (2013)

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  1. Does the FOUR score correctly diagnose the vegetative and minimally conscious states?Caroline Schnakers, Joseph Giacino, Kathleen Kalmar, Sonia Piret, Eduardo Lopez, Mélanie Boly, Richard Malone & Steven Laureys - 2006 - Annals of Neurology 60 (6):744-745.
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  • Frequency-amplitude characteristics of the EEG at different levels of consciousness.M. N. Rusalova - 2006 - Neuroscience and Behavioral Physiology 36 (4):351-358.
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  • Cortical midline structures and the self.Georg Northoff & Felix Bermpohl - 2004 - Trends in Cognitive Sciences 8 (3):102-107.
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  • A twitch of consciousness: defining the boundaries of vegetative and minimally conscious states.Quentin Noirhomme & Caroline Schnakers - unknown
    Some patients awaken from their coma but only show reflex motor activity. This condition of wakeful (eyes open) unawareness is called the vegetative state. In 2002, a new clinical entity coined ‘‘minimally conscious state’’ defined patients who show more than reflex responsiveness but remain unable to communicate their thoughts and feelings. Emergence from the minimally conscious state is defined by functional recovery of verbal or nonverbal communication.1 Our empirical medical definitions aim to propose clearcut borders separating disorders of consciousness such (...)
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  • Neural correlates of the first-person perspective.Kai Vogeley & Gereon R. Fink - 2003 - Trends in Cognitive Sciences 7 (1):38-42.
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  • Bispectral index monitoring to prevent awareness during anaesthesia: The b-aware randomised controlled trial.P. S. Myles, K. Leslie, J. McNeil, A. Forbes & M. T. V. Chan - 2004 - Lancet 363 (9423).
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  • EEG oscillatory states as neuro-phenomenology of consciousness as revealed from patients in vegetative and minimally conscious states.Alexander A. Fingelkurts, Andrew A. Fingelkurts, Sergio Bagnato, Cristina Boccagni & Giuseppe Galardi - 2012 - Consciousness and Cognition 21 (1):149-169.
    The value of resting electroencephalogram (EEG) in revealing neural constitutes of consciousness (NCC) was examined. We quantified the dynamic repertoire, duration and oscillatory type of EEG microstates in eyes-closed rest in relation to the degree of expression of clinical self-consciousness. For NCC a model was suggested that contrasted normal, severely disturbed state of consciousness and state without consciousness. Patients with disorders of consciousness were used. Results suggested that the repertoire, duration and oscillatory type of EEG microstates in resting condition quantitatively (...)
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  • Does the four score correctly diagnose the vegetative and minimally conscious states?Richard Malone, Caroline Schnakers & Kathleen Kalmar - unknown
    Wijdicks and colleagues1 recently presented the Full Outline of UnResponsiveness (FOUR) scale as an alternative to the Glasgow Coma Scale (GCS)2 in the evaluation of consciousness in severely brain-damaged patients. They studied 120 patients in an intensive care setting (mainly neuro-intensive care) and claimed that “the FOUR score detects a locked-in syndrome, as well as the presence of a vegetative state.”1 We fully agree that the FOUR is advantageous in identifying locked-in patients given that it specifically tests for eye movements (...)
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  • Incidence and prevalence of the vegetative and minimally conscious states.J. Graham Beaumont & Pamela M. Kenealy - 2005 - Neuropsychological Rehabilitation 15 (3):184-189.
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  • Visuo-spatial consciousness and parieto-occipital areas: A high-resolution EEG study.Claudio Babiloni, Fabrizio Vecchio, Maurizio Miriello, Gian Luca Romani & Paolo Maria Rossini - 2006 - Cerebral Cortex 16 (1):37-46.
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  • Posterior cingulate, precuneal and retrosplenial cortices: Cytology and components of the neural network correlates of consciousness.B. A. Vogt & Steven Laureys - 2005 - In Steven Laureys (ed.), The Boundaries of Consciousness: Neurobiology and Neuropathology. Elsevier.
    Neuronal aggregates involved in conscious awareness are not evenly distributed throughout the CNS but comprise key components referred to as the neural network correlates of consciousness (NNCC). A critical node in this network is the posterior cingulate, precuneal, and retrosplenial cortices. The cytological and neurochemical composition of this region is reviewed in relation to the Brodmann map. This region has the highest level of cortical glucose metabolism and cytochrome c oxidase activity. Monkey studies suggest that the anterior thalamic projection likely (...)
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