The existence of acquired cholesteatoma has been recognized for more than three centuries; however, the nature of the disorder has yet to be determined. Without timely detection and intervention, cholesteatomas can become dangerously large and invade intratemporal structures, resulting in numerous intra- and extracranial complications. Due to its aggressive growth, invasive nature, and the potentially fatal consequences of intracranial complications, acquired cholesteatoma remains a cause of morbidity and death for those who lack access to advanced medical care. Currently, no viable nonsurgical therapies are available. Developing an effective management strategy for this disorder will require a comprehensive understanding of past progress and recent advances. This paper presents a brief review of background issues related to acquired middle ear cholesteatoma and deals with practical considerations regarding the history and etymology of the disorder. We also consider issues related to the classification, epidemiology, histopathology, clinical presentation, and complications of acquired cholesteatoma and examine current diagnosis and management strategies in detail.
LVAS, a congenital disease, is characterized by fluctuating sensorineural HL. Most hearing at PTA remained stable at least in one ear chronologically. The standard deviation of hearing at 500 Hz was the only prognostic factor for the progression of PTA. An enlarged vestibular aqueduct affects fluctuations of hearing, but the pathogenesis of HL still remains unclear and deserves further investigations.
The aim of this study was to review recent advances in the management of acquired cholesteatoma. All papers referring to acquired cholesteatoma management were identified in Medline via OVID (1948 to December 2013), PubMed (to December 2013), and Cochrane Library (to December 2013). A total of 86 papers were included in the review. Cholesteatoma surgery can be approached using either a canal wall up (CWU) or canal wall down (CWD) mastoidectomy with or without reconstruction of the middle ear cleft. In recent decades, a variety of surgical modifications have been developed including various "synthesis" techniques that combine the merits of CWU and CWD. The application of transcanal endoscopy has also recently gained popularity; however, difficulties associated with this approach remain, such as the need for one-handed surgery, the inability to provide continuous irrigation/suction, and limitations regarding endoscopic accessibility to the mastoid cavity. Additionally, several recent studies have reported successes in the application of laser-assisted cholesteatoma surgery, which overcomes the conflicting goals of eradicating disease and the preservation of hearing. Nevertheless, the risk of residual disease remains a challenge. Each of the techniques examined in this study presents pros and cons regarding final outcomes, such that any pronouncements regarding the superiority of one technique over another cannot yet be made. Flexibility in the selection of surgical methods according to the context of individual cases is essential in optimizing the outcomes.
Acute diffuse otitis externa (swimmer's ear), otomycosis, exostoses, traumatic eardrum perforation, middle ear infection, and barotraumas of the inner ear are common problems in swimmers and people engaged in aqua activities. The most common ear problem in swimmers is acute diffuse otitis externa, with Pseudomonas aeruginosa being the most common pathogen. The symptoms are itching, otalgia, otorrhea, and conductive hearing loss. The treatment includes frequent cleansing of the ear canal, pain control, oral or topical medications, acidification of the ear canal, and control of predisposing factors. Swimming in polluted waters and ear-canal cleaning with cotton-tip applicators should be avoided. Exostoses are usually seen in people who swim in cold water and present with symptoms of accumulated debris, otorrhea and conductive hearing loss. The treatment for exostoses is transmeatal surgical removal of the tumors. Traumatic eardrum perforations may occur during water skiing or scuba diving and present with symptoms of hearing loss, otalgia, otorrhea, tinnitus and vertigo. Tympanoplasty might be needed if the perforations do not heal spontaneously. Patients with chronic otitis media with active drainage should avoid swimming, while patients who have undergone mastoidectomy and who have no cavity problems may swim. For children with ventilation tubes, surface swimming is safe in a clean, chlorinated swimming pool. Sudden sensorineural hearing loss and some degree of vertigo may occur after diving because of rupture of the round or oval window membrane.
Simple sinusectomy is an adequate surgical technique for preauricular sinuses with a mild inflammatory condition. For more severe cases, the figure 8 incision with extended fistulectomy can achieve adequate wound exposure for radical excision of the inflamed tissue and a satisfactory surgical outcome.
Objective: To analyze the long-term safety of mastoid obliteration with cartilage in children with suppurative cholesteatomatous ears. Methods: The medical records of children (≤18 years) with cholesteatomas after primary tympanomastoidectomies were performed with cartilage obliteration over a 30-year period (1982-2012) were analyzed. The recidivism rate was calculated using the Kaplan-Meier survival analysis. Potentially confounding factors of recidivism were entered into a Cox regression model as covariates for multivariate analysis. Results: Of the 150 cholesteatomatous ears in 146 children, there were 95 discharging ears (63%) in 94 children. Among the 95 discharging ears, tympanomastoidectomy was performed with cartilage obliteration (CO group) in 77 ears (81%) and without cartilage obliteration (WO group) in 18 ears (19%). The mean follow-up period was 12 years. Recidivism was observed in 16 ears in the CO group and 4 ears in the WO group. The 10-year cumulative recidivism rates were comparable between the CO and WO groups (19 vs. 25%, p = 0.762). Multivariate analysis confirmed that mastoid obliteration was not a negative predictor of recidivism (p = 0.760). Recidivism of cholesteatoma was detected within 6.5 years after surgery in the WO group and was found as late as 16.1 years after surgery in the CO group. Cartilage could be maintained in the cavity with limited resorption, preventing reretraction pockets and subsequent recidivism. Conclusion: This study provides evidence supporting the long-term safety, feasibility and effectiveness of mastoid cartilage obliteration for children with suppurative cholesteatomatous ears. Despite comparable recidivism rates between the groups, the potential for the delayed detection of recidivism with cavity obliteration may warrant long-term follow-up, with careful attention paid to the potential for recidivism during postoperative care in children. i 2014 S. Karger AG, Basel
The Kaplan-Meier survival analysis method should be used when discussing recidivism rates, because the number of censored cases inevitably increases with observation time. Due to the late occurrence of recidivism and because the recidivism rate increases as time goes on, children should be periodically followed up for as long as possible.
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