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020 _a9783030565381 (
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_qelectronic bk.)
020 _a3030565386 (
_q) (
_qelectronic bk.)
020 _z3030565378
020 _z9783030565374
024 7 _a10.1007/978-3-030-56538-1
_2doi
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_b000068176392
040 _aEBLCP
_beng
_cEBLCP
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072 7 _aMED045000
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072 7 _aMJ
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082 0 4 _a612.8
_223
245 0 0 _aNeurophysiology of the migraine brain
_cGianluca Coppola, Wei-Ta Chen, editors
250 _a1st ed. 2021
260 _aCham
_bSpringer
_c2021
300 _a1 online resource (236 p.)
336 _atext
_btxt [
_2rdacontent]
337 _acomputer
_bc [
_2rdamedia]
338 _aonline resource
_bcr [
_2rdacarrier]
490 1 _aHeadache
505 0 _aElectroencephalography -- 2 Magnetoelectroencephalography -- 3 Evoked potentials -- 4 Cognitive potentials -- 5 Sleep and migraine -- 6 Brain oscillations and migraine -- 7 Brainstem reflexes -- 8 Spinal reflexes in migraine -- 9 Sensorimotor integration in migraine -- 10 Pain-related evoked potentials -- 11 Pain perception and migraine -- 12 The genetic basis of the neurophysiological findings -- 13 Neuromodulation for evaluating the pathophysiology of migraine -- 14 Neurophysiology of migraine aura -- 15 Neurophysiology in children and elders with migraine -- 16 Neuroimaging correlates of neurophysiological findings -- 17 Neurophysiological model of migraine pathophysiology: bringing the past into to the future
520 _aRoughly one in every five patients referred to a neurologist suffers from headaches; the majority have migraines. Although headache specialists understand migraine on a clinical basis, the pathophysiological changes that provoke and accompany the development of a migraine attack continue to elude us. Several decades have passed since the pioneering electroencephalographic study by Golla and Winter (1959), which underscored the role of abnormal rhythmic activities in migraine. Since then, there have been substantial advances in the field; a wealth of neurophysiological studies has enriched our understanding of the pathophysiological facets of the migraine pathology. Virtually every known technique of clinical electrophysiology has since been used to study the migraine brain and, more recently, new neurophysiological tools have been added to the arsenal. Nevertheless, applying the principles of peripheral and central neuromodulation offers a promising way to transfer the principles of synaptic plasticity to the patient's bedside. This book belongs to the Headache Series endorsed by the European Headache Federation. Written by internationally recognized experts in their respective fields, it covers all aspects of clinical neurophysiological methods that represent significant advances in our understanding of the pathophysiology of migraine. It will offer a valuable toolkit for beginners, and a reference guide for experts
650 0 _aNeurophysiology
650 0 _aMigraine
650 0 _aBrain-
_xPhysiology
650 7 _aBiomedical engineering.
650 7 _aBiotechnology.
650 7 _aHuman physiology.
650 7 _aInternal medicine.
650 7 _aNeurosciences.
655 4 _aElectronic books
700 1 _aCoppola, Gianluca
700 1 _aChen, Wei-Ta
776 0 8 _iPrint version
_aCoppola, Gianluca
_tNeurophysiology of the Migraine Brain
_dCham : Springer International Publishing AG,c2020
_z9783030565374
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-3-030-56538-1
_zAcceso a este recurso digital (usuarios Universidad Europea de Valencia)
942 _2lcc
_cLE
998 _db