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Titlebook: Dynamic Structure of NREM Sleep; Peter Halasz,Robert Bodizs Book 2013 Springer-Verlag London 2013 Neurology.Neuroscience.Sleep

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Development of the Concept of Sleep-Wake-Promoting Systems in the Brainstem and Hypothalamus,obust dynamical changes take place, about which the flip-flop model has nothing to say about. NREM sleep cannot be taken as a “stable” state. Growing evidences about the “microstructure” of NREM sleep present sleep as an ever-changing fluctuating state intermingled with microarousals, strongly ­cont
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Dynamic NREM Sleep Regulation Models,y mechanism shaping the dynamism of sleep. Behn et al. (J Neurophysiol 97(6):3828–3840, 2007) created a model of sleep-wake network composed of coupled relaxation oscillation equations. This model could be considered as a crucial one in trying to explain the dual nature of sleep-regulation: gross sl
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The Cyclic Structure of Sleep: Relationship Between the Macrostructural Slopes of Cycles and Microspes and their responsivity increases, while sleep-like responses are prevalent during the “D” slopes and their elicitability decreases. Lastly, we point out the double nature of the forces behind tonic and phasic regulation: There are alternating chemical influences behind the tonic one and faster r
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Sozialstaatliche Wertbestimmungeny mechanism shaping the dynamism of sleep. Behn et al. (J Neurophysiol 97(6):3828–3840, 2007) created a model of sleep-wake network composed of coupled relaxation oscillation equations. This model could be considered as a crucial one in trying to explain the dual nature of sleep-regulation: gross sl
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Heinz Herwig,Andreas Moschallskipes and their responsivity increases, while sleep-like responses are prevalent during the “D” slopes and their elicitability decreases. Lastly, we point out the double nature of the forces behind tonic and phasic regulation: There are alternating chemical influences behind the tonic one and faster r
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Heinz Herwig,Andreas Moschallskiodeling studies on sleep slow waves by new neuroimaging tools have confirmed that the cortical areas are differentially involved in slow wave production and showed that sleep slow waves can be locally – mainly frontally – regulated. They are traveling along an anterior-posterior axis largely mediate
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