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Endolymphatic deafness: a particular variety of cochlear disorder.

Experimental and clinical data made us consider some types of perceptive hearing loss secondary to an alteration of the secretory structures of the cochlea including stria vascularis, spiral ligament and supporting cells. These structures are responsible for the secretion of endolymph, a fluid characterized by a high potassium concentration (150-180 mM), a low sodium concentration (<1 mM) and a positive potential (80-100 mV). This intracellular-like fluid fills the endolymphatic compartment and is essential in the transduction process which takes place in the organ of Corti. Experimental studies have shown that drugs such as loop diuretics induced marked histological lesions in the stria vascularis and profound alterations in the electrochemical features of endolymph. Histopathological data have demonstrated that several entities such as prebyacusis, sudden deafness, and congenital or acquired progressive hearing loss could be related to strial abnormalities. Recent genetic studies have shown that a mutation of genes encoding connexins, a gap junction protein present in the secretory structures, was involved in some dominant or recessive forms of congenital deafness. Finally, the evaluation of labyrinthine fluids in humans has evidenced a decreased endocochlear potential in two cases of progressive flat hearing loss. All these arguments suggest that among the various types of so-called 'sensorineural' deafness, several entities including strial presbyacusis, diuretic-induced ototoxic deafness, some forms of congenital hearing loss and sudden deafness should be classified as endolymphatic deafness. Such an identification seems necessary since these entities result from different pathogenetic mechanisms, do not have the same evolution nor will they probably benefit from the same therapeutic management.

Cochlea↗

Gastric proton pump is expressed in the inner ear and choroid plexus of the rat.

Inner ear fluids and cerebrospinal fluid show remarkably stable ionic concentrations, particularly that of K(+) and H(+), but the mechanisms which control the homeostasis of these media are not well understood. We investigated a possible role of the gastric H, K-ATPase (gH,K-ATPase) pump in this control since this pump is known to be expressed in other tissues than gastric parietal cells. Here, we show by reverse transcription-polymerase chain reaction that the rat gH,K-ATPase alpha- and beta-subunits are expressed in the inner ear (lateral wall, organ of Corti and spiral ganglion cells), while only the alpha-subunit is expressed in the choroid plexus (CP). The presence of the alpha-subunit in the inner ear and CP was confirmed by immunoblotting. Immunohistochemistry localized this protein in the intermediate cells of the stria vascularis, in the spiral ligament and the spiral ganglion. gH,K-ATPase could be involved in the maintenance of H(+) and K(+) equilibria in cerebrospinal and labyrinthine fluids.

Animals↗

Influence of static head position on the horizontal nystagmus evoked by caloric, rotational and optokinetic stimulation in the squirrel monkey.

We studied the influence of static head position on the horizontal nystagmus produced by caloric, rotational and optokinetic stimulation in alert squirrel monkeys. Caloric nystagmus is stronger for nose up (NU) than for nose down (ND) pitches; so, for example, slow-phase eye velocity is four times larger in supine than in prone positions. A similarly directed asymmetry occurs in the horizontal vestibulo-ocular (HVOR) responses to long-duration, constant angular-head accelerations, but not to midband (0.1 Hz) sinusoidal head rotations. Consistent with a first-order model of the HVOR, the low-frequency or acceleration gain of the reflex (GA) is equal to the product of the midband velocity gain (GV) and a time constant (TVOR). GV is proportional to the cosine of the angle between the horizontal-canal plane and the plane of rotation, from which it is concluded that signals from the horizontal, but not from the vertical canals contribute to the HVOR. TVOR can be as much as twice as large in NU than in ND positions. GA is proportional to TVOR and it, too, shows a NU-ND asymmetry. The time constant of optokinetic after nystagmus (TOKAN) was also studied. Since TVOR and TOKAN are modified in similar ways by static tilts, it is concluded that head position affects the time constants by way of velocity-storage mechanisms. Evidence is presented that the position-dependent modification of velocity storage is otolith-mediated. The results are used to analyze the mechanisms of caloric nystagmus. The caloric response consists of a convective component (CC), as originally envisioned by Bárány (1906), and a nonconvective component (NC). CC accounts for 75% of the caloric response in the conventional supine testing position. Both components can be affected by the position-dependent modification of TVOR or, equivalently, of GA. It has been suggested that two mechanisms might contribute to NC: 1) a direct thermal effect on hair cells or afferents; or 2) a thermal expansion of labyrinthine fluids that results in a cupular displacement. Both theoretical and experimental evidence indicates that only the first of these mechanisms could result in the steady-state caloric response that is observed in the absence of convection (e.g., in spaceflight and after canal plugging) and that contributes to the prone-supine asymmetry seen in caloric testing.

Animals↗

A relationship between autoimmune thyroiditis and benign paroxysmal positional vertigo?

Benign paroxysmal positional vertigo (BPPV) is a labyrinthine disorder with a typical behavior: intense crises of rotational vertigo induced by postural changes of the head, with short duration and usually good responsiveness to rehabilitative maneuvers. This phenomenon is thought to be subsequent to the movement of floating particles in the labyrinthine fluids, which can provoke gravitational stimulations. In order to conduct a metabolic and autoimmune examination, 70 patients affected by BPPV were examined. In 34 cases (48.5%) autoimmune alterations were found: in 19 cases (27.1%) the level of anti-thyroid antibodies far exceeded the normal values with a significant incidence in comparison with a control group (P<0.01). No other 'risk factors' were present. It can be hypothesized that the diffusion of immune-complexes in the inner ear could change the composition of the endolymphatic fluid exerting a mechanical stimulation of the receptors and provoking the typical vertigo.

Humans↗

Contribution of cell culture to the study of the physiology of the stria vascularis and Reissner's membrane.

Cell culture is a well-established tool in cell biology which may overcome the limitations of the experimental methods currently used to investigate the physiology of labyrinthine fluids. Using explant and dissociated cell culture technique, sheets of oriented cells derived from the stria vascularis and Reissner's membrane may be obtained, which allows new experimental approaches such as the patch-clamp technique. Other experimental approaches are considered which might improve our understanding of inner ear physiology.

Animals↗

Early aspects of human cochlea development and tectorial membrane histogenesis.

Several human embryos and foetuses cochlea from the first half of pregnancy were studied by light, transmission and scanning electron microscopy. Cochlea development in man is the result of three coexisting processes: First, coiling and maturation of the cartilaginous otic capsule. Second, resorption of the periodic mesenchymal reticulum with the appearance of the labyrinthine fluids. Third, differentiation of the sensory epithelium. Tectorial membrane morphogenesis is closely related to the apocrine secretory activity of the greater and lesser epithelial ridges in the 50 mm c.r.l. specimen. In the 70, 110 and 120 mm c.r.l. specimens the secretory activity rests on the interdental cells of the spiral limbus, the undifferentiated cells of Corti's primordium and in the most external cells of the lesser epithelial ridge.

Cochlea↗

Modelling the action of caloric stimulation of vestibule. III. Caloric nystagmus induced by osmotic pressure variation.

The properties of the membranous wall of the semi-circular canal and of the labyrinthine fluids give as a result the inflating pressure of this inflatable structure. The difference of osmotic pressure between perilymph and endolymph, which is involved in this problem, depends on temperature. Therefore, a caloric stimulation leads to a change in the inflating pressure. A numerical model, similar to the model used to study the effects of relative volume variations, gives a quantitative estimation of the transcupular pressure arising in a horizontal semi-circular canal (i.e. without gravity dependent effects) during a caloric stimulation, according to the inflating pressure change. As a consequence, it appears that rotational and caloric stimulations are not quite similar. The caloric stimulation leads not only to a transcupular pressure difference but also to a change in inflating pressure. As a result of the change in inflating pressure, the stiffness of the cupula varies. This modifies the gain and the dynamics of the vestibulo-ocular reflex, and may explain the asymmetry between hot and cold stimulations.

Caloric Tests↗

Inner ear pressure in Menière's disease and fluctuating hearing loss determined by tympanic membrane displacement analysis.

Menière's disease and fluctuating hearing loss are related to labyrinthine fluid pressure variations. The development of a new indirect method of analysis of the tympanic membrane displacement during the stapedial reflex, using the Marchbanks Measurements System (MMS 10), allows us to study inner ear fluid pressure during these pathological conditions. In this study, measurements with this method were made in four groups of patients: a control group with normal hearing (n=7), stable sensorineural hearing loss (n=9), fluctuating hearing loss (n=8), and Menière's disease (n=25). Results show, first, a good relationship between the recording of negative curves, suggesting a high pressure, and the acute episodes of fluctuating hearing loss; and, secondly, in the case of Menière's disease two types of situation: positive and negative curves suggesting normal and high pressures, respectively.

Adult↗

The effect of posture on three objective audiological measures.

This study examines the effect of posture on click evoked otoacoustic emissions, tympanic membrane displacement, and travelling wave velocity obtained using the auditory brainstem response. Statistically significant changes with posture were observed for each technique. The changes in evoked emission and tympanic membrane displacement measurements were comparable with those reported by previous experiments. Travelling wave velocity measurements were shown to be sensitive to inferred posturally-induced changes in labyrinthine fluid pressure of around 150 mm saline. There was no statistically significant correlation between posturally-induced changes measured by the three techniques. It is suggested that different mechanisms are responsible for the posturally-induced changes observed for the three techniques.

Adult↗

[Middle ear physiology].

The middle ear forms part of the sound transformer mechanism, together with the outer ear and the conducting system of the inner ear. An intermediate sensory organ, sensitive to acoustic vibration, and linked to the inner ear, the middle ear made its appearance during the period of adaptation of marine creatures to a terrestrial habitat; its presence is therefore a phylogenetic requirement. It is classical to ascribe three functions to the middle ear: the transmission of acoustic vibrations from the tympanic membrane to the cochlea, impedance matching between the air in the external auditary meatus and the labyrinthine fluids, and protection of the inner ear by means of the acoustic reflex. If the classical mechanical explanation has been able to explain its function, the conceptualization of its physiology in terms of energy allows an even better understanding, as well as providing and explanation for the paradoxes which arise in clinical practice when the classical model is used.

Ear, Middle↗

[Imaging of post-traumatic tinnitus, vertigo and deafness].

Tinnitus, hearing loss, and more rarely disequilibrium are common sequela of temporal bone trauma. Hemotympanum may cause a transient and immediate conductive hearing loss. HRCT depicts ossicular dislocation (most frequently incus), producing a long-term conductive hearing loss. Labyrinthine trauma causing neurosensory hearing loss or/and acute vertigo may be depicted by MRI, showing an abnormal non-enhancing high signal T1 of the membranous labyrinthine fluid. MRI also may show low signal T1 and T2 fibrotic areas of the membranous labyrinth, especially of interest if cochlear implant surgery is planned. Perilymphatic fistulas are to be searched in case of fluctuant hearing loss. Both HRCT and MRI may show window damage: filling of the tympanic recess, rupture of the window membrane, intra-vestibular luxation of the stapes, or occasionally pneumolabyrinth.

Ear Ossicles↗

[Oxygen therapy in the long term treatment of Meniere's disease].

Endolymphatic hydrops is the hystopathological substrate characteristic of Ménière's disease. Besides the classical treatment with diuretics and/or osmotic drugs for some time, now treatment in a "pressure chamber" (OTI) has also been applied. The oxygen administered in the hyperbaric chamber can reduce the hydrops both by increasing the hydrostatic pressure and by mechanically stimulating the flow of endolymph toward the duct and endolymphatic sac. In addition, an increase is seen in the amount of O2 dissolved in the labyrinthine fluids and this contributes to recovering cell metabolism and restoring normal cochlear electrophysiological functions. Between 1992 and 1996 40 patients with monolateral Ménière's disease were studied: 15 underwent oxygen therapy at a constant pressure (2.2 ATA) (HOT), 25 with a continuous variation in pressure (from 1.7 to 2.2 ATA) (Alternobaric therapy, AOT). During the acute phase the patients underwent daily OTI treatment for 15 days in a row. The maintenance treatment called for one treatment cycle (one session a day for 5 days in a row) a month for 1 year, followed by for one treatment cycle (one session a day for 5 days in a row) every three months during the 2nd, 3rd and 4th years. The controls consisted of a group of 18 patients treated with 10% glycerol i.v. (during the acute phase) and betahystine (8 mg x 3/die) between episodes. A comparison was made of the average hearing threshold for the frequencies 500-3000 Hz (PTA), how frequently episodes of dizziness arose and extent of hearing loss in the three groups after the initial 15 days of treatment and at the end of the 4-year follow-up, in compliance with the criteria laid down by the Committee on Hearing and Equilibrium in 1995. At the end of the first 15 days of treatment, there were no statistically significant differences between the three groups. At the end of the follow-up, on the other hand, hyperbaric treatment, and in particular alternobaric therapy, enabled a significant reduction in the episodes of dizziness as compared to the control group. PTA and deafness also improved significantly in the patients who had undergone hyperbaric treatment. The results of the present work show that HOT, and in particular AOT, offer a valid alternative to drugs in the treatment of Ménière's disease.

Acute Disease↗

[Scanning electron microscopy of the vestibular surface of the stapes in otospongiosis].

The authors, going on with their investigations of the otospongiotic micro-foci by means of scanning electron microscopy method, state their discoveries concerning the micro-foci of the footplates vestibular side, left aside too often up to now. On this vestibular side of the footplate, they have managed to find much more numerous pathological alterations than usually admitted. There are three types of lesions: 1. Strongly cellular micro-foci, most of them composed of histiocytes. 2. Fibrous micro-foci, containing numerous fibroblasts and looking like otospongiotic micro-foci of osteoid lamellae overhanging the tympanic side of the footplate and grasping it in the way of a lobster-claw. 3. A small number of scattered microlesions, having no relation with the two previous types, and seeming due to numerous initial otospongiotic micro-foci originated from one or several cells with altered metabolism on the footplate' side itself. The localization of these micro-foci of the footplate's vestibular side is extremely interesting for the knowledge of the otospongiotic disease, because they are in direct contact with the vestibule. They can thus spread their hydrolytic enzymes into the labyrinthine fluids as well as the otospongiotic micro-foci of the lateral wall which have been described by the authors in numerous papers.

Ear Ossicles↗

Survival and evolution of vein grafts in otosclerosis surgery: structural and ultrastructural evidence.

The annular ligament of the stapes footplate measures 0.2 mm2 and contains elastic fibers that restrict perilymphatic movement to a molecular level. This resistance of the annular ligament prevents excessive movement of labyrinthine fluids that are potentially hazardous to the membranous and cellular structures of the inner ear. However, if the resistance of the annular ligament is overcome, then inner ear damage can occur. The vein graft, as used in our technique for otosclerosis surgery, occupies a space of 0.2 mm2 between the edge of the stapedotomy hole and the piston and has nearly the same compliance and resistance as the annular ligament of the stapes footplate. The vein graft becomes integrated with the middle-ear mucosa. It develops a rich and active blood supply and the smooth muscle cells and elastic fibers remain, although the latter show some modification of ultrastructural pattern. The graft becomes overlaid by the middle-ear epithelium. Even samples of vein graft that have been present for many years retain surviving elastic fibers, including those that have become fibrotic. In time, the number of elastic fibers increases as a result of the activity of fibroblasts, which build a poorly colored collagen.

Adult↗

The round window membrane under normal and pathological conditions.

Current research and an overall review of round window membrane studies is presented and the concepts that have evolved from these studies are described. Ultrastructural studies of the round window membrane of rodents, felines, and primates disclosed three basic layers: an outer epithelium lining the middle ear, a middle core of connective tissue, and an inner epithelium bordering the inner ear. Morphological evidence suggests that the membrane participates in: (a) the release of mechanical energy supplied by the ossicular chain to the labyrinthine fluids; (b) an alternative route for sound energy to enter the cochlea; (c) secretion into and absorption from perilymph; and (d) the defense system of the middle and inner ears. Permeability of the round window is considered an accident and not a function of the membrane. The complications of permeability (potential ototoxicity) and its potential usefulness (drug delivery) are discussed.

Animals↗

[Pathogenetic aspects of cochleovestibular disorders in shock-wave and mechanical impacts on brain structures].

The review concerns basic pathogenetic factors of shock-wave and mechanical effects on the structures of the brain (closed craniocerebral trauma, mine-explosion, baro-, acoustic trauma). When the brain and the labyrinth structures are exposed to traumatic mechanical or shock wave factors, the arising anatomic and functional defects damaging acoustic and vestibular analysers at different levels are similar. Concussion of the labyrinth provokes pathological alterations including circulatory disturbances, impaired production and composition of labyrinthine fluid and problems with its outflow leading finally to hydrops of the labyrinth.

Barotrauma↗

[Gherini-Causse endo otoprobe and HGM argon laser. Value in the surgery of ear abnormalities].

Performing a stapedectomy in a slightly fixed otosclerotic footplate may induce an excessive motion of the labyrinthine fluids, damaging inner ear membranes and Corti hair cells fragilized by proteolytic enzymes. The fluid motion in the cochlear canal is quantic size only. The replacement of a slightly fixed footplate by an ideal compliance and impedance transmitting device, may allow the surgeon to get a tremendous improvement of hearing (as a Meniere disease). The Gherini-Causse multi-use endo-otoprobe combined with a HGM Argon Laser, if associated with a Skeeter Oto-tool drill, looks to be an efficient and safe solution to this otologic surgical challenge.

Argon↗