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Foreword | ||
Preface | ||
Pt. 1 | Intracranial Physiology | 1 |
Ch. 1 | The anatomy and physiology of intracranial fluids | 3 |
Ch. 2 | Hydromechanics of the intracranial and labyrinthine fluids - experimental study in cats | 16 |
Ch. 3 | Dynamics of inner ear pressure change caused by cerebrospinal fluid pressure manipulation in guinea pigs | 29 |
Ch. 4 | CSF and posture effects on transient evoked otoacoustic emissions - pilot study | 35 |
Pt. 2 | Intracranial Pathophysiology | 45 |
Ch. 5 | Pathophysiology of the cerebrospinal and cerebrovascular circulations | 47 |
Ch. 6 | Intraoperative neurophysiologic monitoring in skull base operations | 53 |
Ch. 7 | Neurotologic manifestations of intracranial hypertension | 61 |
Ch. 8 | Idiopathic normal pressure hydrocephalus: primary disorder of CSF absorption or parenchymal cerebral disease? The relevance of vascular risk factors and cerebral white matter lesions | 67 |
Ch. 9 | Influence on the auditory system of cerebrospinal fluid loss: clinical and experimental results | 79 |
Ch. 10 | OAE and TMD recordings in ICP changes | 85 |
Ch. 11 | A review of the management and current methods of investigating intracranial pressure in shunted hydrocephalics and an introduction to the tympanic membrane displacement test | 90 |
Ch. 12 | The application of the tympanic membrane displacement (TMD) test as part of the clinical service for hydrocephalus patients | 108 |
Ch. 13 | Quantitative assessment of intracranial pressure by the tympanic membrane displacement test in patients with shunted hydrocephalus | 118 |
Pt. 3 | Inner Ear Physiology | 133 |
Ch. 14 | Physical processes underlying homeostasis of cochlear endolymph | 135 |
Ch. 15 | Cellular mechanisms of volume control in the labyrinth | 144 |
Ch. 16 | Non-invasive perilymphatic pressure measurements using the MMS-10 Tympanic Displacement Analyser in patients with Meniere's disease | 157 |
Ch. 17 | Modelling labyrinthine fluid dynamics | 165 |
Ch. 18 | The effect of changes in cochlear fluid pressure on audiological measurements | 178 |
Ch. 19 | Ionic transports in the endolymphatic sac of the guinea pig | 188 |
Ch. 20 | Beta-trace protein in human perilymph | 193 |
Ch. 21 | Characteristics of infrasonic otoacoustic emissions generated by the cardiovascular system | 197 |
Ch. 22 | Morphological effects of low extracellular calcium on stereociliary bundles in the guinea pig cochlea | 207 |
Ch. 23 | Dynamics of inner-ear pressure release measured with a double-barrelled micropipette in the guinea pig | 211 |
Pt. 4 | Inner-Ear Pathophysiology | 219 |
Ch. 24 | Treatment of otolith disease concepts and new development of laser microsurgery | 221 |
Ch. 25 | Posturographic correlates of peripheral and central vestibular disorders, as assessed by electronystagmography (ENG) and the Tetrax Interactive Balance System | 231 |
Ch. 26 | Vertigo and progressive sensori-neural hearing loss - peripheral cause or vascular compression of CN VIII? | 237 |
Ch. 27 | Acetazolamide therapy of endolymphatic hydrops audiologically monitored by low-frequency masking - a case report | 243 |
Ch. 28 | Effects of middle ear pressure changes on the inner ear function in Meniere's disease: a review | 249 |
Ch. 29 | Tullio phenomenon: disturbed inner ear homeostasis? | 263 |
Ch. 30 | Traumatic sudden sensorineural hearing loss in children | 274 |
Ch. 31 | Fleeting hearing loss: reversible dysfunction of the cochlea during acute bacterial meningitis | 281 |
Ch. 32 | Recurrent perilymphatic fistula in patients with possible patent cochlear aqueduct: a role for cochlear aqueduct blockade - report of five cases | 293 |
Ch. 33 | Effects of the atrial natriuretic peptide (ANP) on hearing and tinnitus in patients suffering from Meniere's disease | 305 |
Index | 309 |
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Add Intracranial and Inner Ear Physiology, This book discusses the following topics: intracranial and inner fluid interactions the endolymph/perilymph/cerebrospinal fluid and associated disorders; non-invasive measurement of intracranial and inner fluid pressures; clinical aspects with particular , Intracranial and Inner Ear Physiology to the inventory that you are selling on WonderClubX
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Add Intracranial and Inner Ear Physiology, This book discusses the following topics: intracranial and inner fluid interactions the endolymph/perilymph/cerebrospinal fluid and associated disorders; non-invasive measurement of intracranial and inner fluid pressures; clinical aspects with particular , Intracranial and Inner Ear Physiology to your collection on WonderClub |