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[Changes of audio-vestibular parameters in experimental endolymphatic hydrops].

Endolymphatic hydrops were produced in twenty guinea pigs by obliteration of the endolymphatic sac. Auditory and vestibular functions were investigated before and after the obliteration. Our experimental data showed that: 1) the SPVN (sinusoidal pendular vestibular nystagmus) frequency decreased after the obliteration of the lymphatic sac; 2) the CAP response threshold to filtered clicks and the CAP response threshold to clicks were both elevated after obliteration of the endolymphatic sac; and 3) 2f1-f2 DPO (distortion product otoacoustic emissions) amplitudes, as induced by primary tones of adequate frequency and level rations, decreased as endolymphatic hydrops occurred.

Animals

Review: morphological changes associated with endolymphatic hydrops.

Endolymphatic hydrops of the inner ear is identified as a swelling of the endolymphatic spaces. This morphopathology in man can only be confirmed at post-mortem examination although it is believed to underlie the auditory dysfunction and vestibular disturbances associated with Menière's disease. This is an illusive inner ear disorder characterized typically by the fluctuant hearing loss, tinnitus and episodes of vertigo. Menière's disease remains a major problem in otorhinolaryngology since the cause of the disease is not known and various treatments are recommended, often with unsatisfactory results. Experimentally induced endolymphatic hydrops in the animal model has been developed in order to understand better the consequences of this morphopathology on inner ear structure and function. Further investigations on the model might, in the future, lead to a more efficient management of the disorder.

Animals

Pathophysiology of endolymphatic hydrops.

Endolymphatic hydrops of the nonprogressive type occurs in response to a single traumatic or toxic insult of limited duration and although it may result in permanent deficits in sensorineural function, there is total subsidence of vestibular symptoms. Endolymphatic hydrops of the progressive type, on the other hand, appears to be the result of permanent impairment of endolymph resorption and is caused principally by disorders of the endolymphatic sac. It occurs in Menière's disease, syphilitic labyrinthitis and the delayed hydrops syndrome. In addition to deafness of varying extent, it is characterized by episodic vertigo and sometimes by Hennebert's sign. Histological studies suggest that the acute vertiginous episodes are caused by potassium intoxication following ruptures of the membranous labyrinth and that Hennerbert's sign is caused by vestibular fibrosis.

Aged

Vestibular function in experimental endolymphatic hydrops.

Endolymphatic sac ablation in the guinea pig can result in a dilated membranous labyrinth and low-frequency hearing loss similar to patients with Meniere's disease. However, this animal model fails to develop analogous symptoms of a Meniere's crisis such as sudden hearing loss and marked vestibular imbalance. Possibly, factors in addition to endolymphatic hydrops must be present to result in a crisis episode. By placing animals in an inverted posture, their intralabyrinthine pressure was elevated, causing additional stress on the inner ears. Standard electronystagmographic techniques were used to monitor vestibular imbalance, which appeared as spontaneous nystagmus in the dark. Nineteen of 23 animals with unilateral endolymphatic hydrops showed spontaneous nystagmus in an inverted posture. Physiologic mechanisms explaining these results are described.

Animals

Animal models of endolymphatic hydrops.

Endolymphatic hydrops in the animal can be produced by various methods. The most promising is obliteration of the endolymphatic duct in the guinea pig. The extent of hydrops is similar to that of Ménière's disease specimens, but the animals are asymptomatic. A better model, utilizing a less invasive method and having the ability to elicit episodic vestibular symptoms, is needed. There is a reasonable doubt that one of the causes for Ménière's disease lies in the abnormal endolymphatic duct and sac. A wide ablation of such pathologic tissue may provide additional pathogenetic information.

Animals

[Delayed endolymphatic hydrops].

Delayed Endolymphatic Hydrops (DEH) is a disease entity that must be distinguished from idiopathic endolymphatic hydrops (Ménière's disease). Idiopathic hydrops is characterized by the following symptoms: 1) vertigo often accompanied by nausea and vomiting; 2) tinnitus; 3) hearing loss, usually fluctuating; and 4) sensation of pressure or fullness in the affected ear. Idiopathic hydrops most commonly occurs in middle-aged patients, usually between 30 and 50 years. It may involve one or both ears and usually exibits fluctuating hearing loss and episodic vertigo, although one symptom may precede the other by months or years. It is rare for Ménière's disease to present with a severe sensorineural hearing loss. Delayed Endolymphatic Hydrops was first described, under the name of "unilateral deafness with subsequent vertigo", by Wolfson and Lieberman and Nadol et al.; this was later confirmed by other authors. The disease is characterized by a profound sensorineural hearing loss in one ear, found to have been present in most cases from early childhood, due to an unknown cause, trauma or viral infections. After a prolonged period (usually many years) patients with DEH experience the onset of episodic vertigo from the deaf ear (Ipsilateral Delayed Endolymphatic Hydrops) or develop a fluctuating hearing loss and/or episodic vertigo in the opposite ear, previously with normal hearing (Controlateral Delayed Endolymphatic Hydrops). Vestibular symptoms are identical to those of Ménière's disease: in fact there is evidence that endolymphatic hydrops in the previously damaged ear or in the previously normal ear represents at least part of the labyrinthine pathology. Histopathology studies recently conducted on temporal bones of subjects affected with controlateral DEH show pathologic changes in the deaf ears similar to those found in viral labyrinthitis, whereas pathologic changes in the hearing ears resemble those known to occur in Ménière's disease. Medical treatment has not been found to be effective in patients with DEH, but it must be the first choice of treatment especially in controlateral forms of the disease. So far, surgical intervention has been demonstrated to give the best results; either conservative or more radical, depending on the type of DEH. Pharmacological labyrinthectomy with ototoxic drugs could be the therapy of choice in the future. In this paper we review the literature in order to summarize the clinical features and criteria for diagnosing DEH, we also report histopathologic findings and pathogenetic hypotheses formulated for this syndrome. Moreover, we discuss the best therapeutic approach for the ipsilateral and controlateral variants of DEH.

Endolymphatic Hydrops

Traumatic endolymphatic hydrops.

Traumatic endolymphatic hydrops is an accumulation of endolymph in the cochlear duct caused by traumatic insult. The causative mechanisms are: (1) fistulization of the bony labyrinth, which causes a disturbance in the normal perilymph-endolymph pressure relationship; (2) direct injury to the membranous labyrinth, which may be just a collection of fluid in the cochlear duct from irritation, resulting in endolymphatic hydrops that may not be progressive and may subside in a short period of time after injury and hearing loss may occur; and (3) injury to the endolymphatic fluid drainage system, including a temporal bone fracture in which the fissure happens to extend through the vestibular aqueduct, causing fibro-osseous blockage of the endolymphatic duct and surgical injury to the saccule with obstruction of the longitudinal flow of endolymph, resulting in endolymphatic hydrops that may be delayed in onset and is usually persistent. The diagnosis of traumatic endolymphatic hydrops is made by a history of trauma, such as barotrauma, a blow to the head, or perhaps a previous ear operation, such as stapedectomy; the presence of typical symptoms of endolymphatic hydrops, including fullness, tinnitus, fluctuant hearing loss, and episodic vertigo; and an elevated negative summating potential and an increased summating potential:action potential ratio by electrocochleography. Three patients are presented to demonstrate this clinical entity.

Adult

Transport of HRP through Reissner's membrane in experimental endolymphatic hydrops.

Unilateral endolymphatic hydrops was produced in guinea pigs by cauterization of the endolymphatic sac. Measurements of compound action potential (CAP), cochlear microphonics (CM) and negative summating potential (-SP) confirmed endolymphatic hydrops three months after surgery. In both control and hydropic ears, reaction product of HRP was observed only on the perilymphatic surface of the epithelial cells of Reissner's membrane after 10 min perfusion, while it was observed on both the endolymphatic and perilymphatic surfaces after 30 min perfusion. Epithelial tight junctions were not stained and labelled pinocytotic vesicles were observed in the epithelial cells. These findings suggest that the transport of HRP through Reissner's membrane is unchanged in endolymphatic hydrops and that the epithelial junctions are tight regardless of the distension of Reissner's membrane.

Animals

Delayed endolymphatic hydrops.

Delayed endolymphatic hydrops is a disease entity that can be differentiated from Ménière's disease. Typically it occurs in patients who have sustained a profound hearing loss in one ear, usually from infection or trauma, and then after a prolonged period of time develop either episodic vertigo from the same ear (ipsilateral delayed endolymphatic hydrops) or fluctuating hearing loss, also sometimes with episodic vertigo, in the opposite ear (contralateral delayed endolymphatic hydrops). The ipsilateral form of the disease may be treated by labyrinthectomy but no satisfactory therapy is available for the contralateral form of the disease.

Adolescent

[Development of acute endolymphatic hydrops following secondary endolymphatic sac immune response. I: Short-term observation].

The development of endolymphatic hydrops (e. hydrops) following secondary e. sac immune response was investigated in Hartley guinea pigs, for a period of 5 weeks. E. hydrops immediately developed to a maximum from day 2 to day 7 and then gradually reduced in the next 4 weeks. In the e. sac, numerous inflammatory cellular infiltrates, mainly polymorphonuclear cells and macrophages, were seen from day 1 to day 2. Lymphocytes and plasma cells appeared from day 3 and increased to a maximum by day 7 and then gradually decreased in the next 4 weeks. Neither primary e. sac KLH challenge nor e. sac PBS inoculation could derive e. hydrops. Development of e. hydrops was considerably parallel to the grade of immune reaction within the e. sac, suggesting that immuno-pathological reaction of the e. sac has an important effect on regulation of the endolymph volume.

Acute Disease

Laboratory experience with experimental endolymphatic hydrops.

Experimental endolymphatic hydrops refers to the creation of hydrops in the experimental animal and represents a histologic correlate for Meniere's disease. Details of the surgical means to create this condition in guinea pigs are provided. Alterations in endolymph fluid composition and relative endolymph pressure occur with hydrops. Deterioration in auditory and vestibular function secondary to hydrops can develop.

Animals

Changes in EP and inner ear ionic concentrations in experimental endolymphatic hydrops.

Unilateral endolymphatic hydrops was created in guinea pigs by endolymphatic duct obstruction. Using microelectrodes, studies of endocochlear potential (EP) and inner ear ionic concentrations were performed. EP was significantly decreased whereas Na+, K+, and Cl- concentrations in both scala media and scala tympani were not significantly altered. The presence of a decreased EP after endolymphatic duct obstruction appears to be a reliable indicator for the presence of hydrops. This decrease in EP without ionic concentration changes suggests that it is the electrogenic portion of EP which is altered in hydrops.

Animals

Electrocochleographic study of experimentally induced endolymphatic hydrops.

An endolymphatic hydrops was induced in the left ear of each of 32 guinea pigs by obliteration of the endolymphatic sac. Both the hydropic ear and the control ear were examined by electrocochleography 1, 2, 4 or 8 months after obliteration of the sac using electrodes on the apex and near the round window. One month after obliteration, the threshold of the compound action potential (AP) and the increase of the AP amplitude with sound pressure level (SPL) were the same as the results recorded from the control ears despite the presence of a histologically confirmed hydrops. In the 2-month group, small AP threshold differences (10-20 dB) were recorded, increasing up to 10-40 dB in the 4- and 8-month groups. In the latter animals we also found a more rapid increase of the AP amplitude with SPL, a finding suggestive of recruitment. In the 1-month group we recorded an enhanced negative SP for 2- and 4 kHz stimuli when the electrode was placed near the apex. The same was recorded for 4-kHz stimuli in the 2-month group. In the 4- and 8-month groups there was a tendency towards a decrease in the negative SP. The SP-AP ratio recorded from the apical position showed the same pattern as the SP amplitude, an increase after 1 month and a tendency to decrease in the following months. Near the round window there was no significant effect of hydrops on the SP amplitude or on the SP-AP ratio. A deviation in the AP-SP wave form was recorded in 69% (22/32) of the guinea pigs.(ABSTRACT TRUNCATED AT 250 WORDS)

Acoustic Stimulation

[Immunohistochemical study of the endolymphatic hydrops due to secondary endolymphatic sac immune reaction].

Secondary endolymphatic sac (ES) immune response against keyhole limpet hemocyanin (KLH) were immunohistochemically investigated in guinea pigs by analysing the distribution of IgG and C3 complement in the inner ear over a 4-week period. After systemic sensitization with KLH and Freund's adjuvant, KLH was inoculated into the right ES by trans-cranial approach. KLH was found in the ES immediately after KLH challenge and then disappeared on the 7th day. On the 2nd and 3rd day moderate endolymphatic hydrops and a massive cell infiltrations within the ES were observed, and they gradually decreased their severity with time. Diffuse stainings with IgG and C3 were found in the ES, the epithelial and subepithelial regions of the vestibule. Similar findings were obtained in the spiral ligament and the hair cells after antigen challenge. IgG bearing cells were detected within the endolymphatic sac alone. Our results suggested that endolymphatic hydrops may be produced by the imbalance of in-out flow of the endolymph and the immunologically mediated inflammation through IgG-complement system.

Animals

Electrophysiological measures of cochlear function in guinea pigs with long-term endolymphatic hydrops.

Experimental endolymphatic hydrops was induced in guinea pigs by obliteration of the endolymphatic sac and duct. From 3 to 24 months after this operation, cochlear action potential (AP) audiograms and AP tuning curves were measured. The purpose of this study was to establish parallels, if any, between this supposed animal model of Menière's disease and the auditory symptoms of the disease in man. In some animals, low and middle frequency AP threshold elevations were observed whilst higher frequency regions maintained normal sensitivity. Other animals developed flat or very gradually sloping AP audiograms. These patterns are qualitatively similar to those found clinically in Menière's disease. AP tuning curves measured in frequency regions of threshold elevation indicated a deterioration of cochlear frequency selectivity; psychophysical and electrocochleographic studies demonstrate related changes in Menière's patients. One animal exhibited modifications in AP thresholds and tuning as a result of glycerol administration. These observations improve our confidence in the validity of this animal model for further studies of the pathophysiology of Menière's disease.

Action Potentials

Pathology of endolymphatic hydrops.

The term 'endolymphatic hydrops' is not a definitive diagnosis since the condition occurs in a variety of otological disorders. Endolymphatic hydrops was found in 57 ears (9 per cent) of the 703 temporal bones in the collection of the Ear Research Institute, Los Angeles. These 57 ears included normal ears of two newborns, post-stapedectomy ears, and ears with the primary diagnosis of Menière's disease. Paget's disease, congenital syphilis, and chronic otitis media. The typical clinical picture of fluctuant hearing loss, pressure, tinnitus, and episodic vertigo occurred in about one-third of the cases with histologically documented hydrops. This symptom complex was common in cases with diffuse, bilateral, cochleo-saccular, or progressive hydrops. A reliable clinical test to determine the presence of endolymphatic hydrops is needed. Complete neurotologic evaluation is indicated in every case suspected of having hydrops to determine specific causes.

Adolescent

The development of endolymphatic hydrops following CMV inoculation of the endolymphatic sac.

The effect of inoculation of cytomegalovirus (CMV) into the endolymphatic sac was examined in CMV-seronegative and seropositive animals. Seronegative animals developed hearing loss, infection in the epithelial cells of the endolymphatic sac and perisaccular connective tissue, and endolymphatic hydrops. Control animals inoculated with inactivated CMV showed no hearing loss, viral infection, or endolymphatic hydrops. Seropositive animals showed complete protection from hearing loss and viral infection, yet a monocytic infiltrate was seen surrounding the endolymphatic sac. Associated with this localized immune response was mild evidence of endolymphatic hydrops in 40% (2/5) of the animals. Control seropositive animals inoculated with inactivated CMV showed no hearing loss or morphological changes. CMV then, can infect cells of the endolymphatic sac resulting in hearing loss and endolymphatic hydrops. The immune response to CMV in seropositive animals is protective, but is associated with endolymphatic sac inflammation.

Animals