Search PubMedSearch

PubMed · 6542036

Tympanometry.

Abstract

The basic principles essential for interpreting two-component, multiple frequency tympanograms first are reviewed. These principles then are applied to an analysis of tympanometric shape (conductance, susceptance, and admittance tympanograms) as a function of probe frequency in subjects with normal middle ear transmission systems. The final section presents tympanometric data from patients with confirmed middle ear pathologies that produce an increase in resonant frequency (e.g., middle ear effusion, otosclerosis, ossicular adhesions, and tympanic membrane retraction) or a decrease in resonant frequency (e.g., otitis externa, serous otitis media, tympanic membrane pathology, and ossicular discontinuity). The advantages and disadvantages of a particular probe frequency and/or admittance component are illustrated with individual cases. The cases further demonstrate that the same tympanometric pattern can be recorded from ears with different pathologies (e.g., tympanic membrane perforation with cholesteatoma, tympanic membrane retraction, ossicular adhesions, and middle ear effusion), and conversely, that the same pathology can result in different tympanometric shapes (e.g., tympanic membrane perforation, middle ear effusion, and otosclerosis). Caution, therefore, must be exercised in ascribing a tympanometric abnormality to a specific middle ear lesion.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J E Shanks. Tympanometry.. https://doi.org/10.1097/00003446-198409000-00003

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Gas exchange across the middle ear mucosa in monkeys. Estimation of exchange rate.

OBJECTIVE: To estimate the rate of exchange of selected gases across the middle ear (ME) mucosa and define the exchange limitations. DESIGN: At separate sessions, the ME was inflated via the eustachian tube with a bolus of pure nitrogen, carbon dioxide, oxygen, or nitrous oxide, and ME pressures were recorded by tympanometry at selected intervals for up to 4 hours. The slope of the function relating pressure change to pressure was calculated by least squares regression and used as an estimate of the rate constant for exchange of that gas (experiment 1). Because of the slow rate of nitrogen exchange, a second experiment was performed in which the tensor veli palatini muscle was unilaterally paralyzed. The ME was inflated with nitrogen, and the slope of the rate-pressure function for measurements at 24-hour intervals was used to estimate the rate constant. SUBJECTS: Ten juvenile cynomolgus monkeys, six for experiment 1 and four for experiment 2. RESULTS: The relative, average rate constants for carbon dioxide, nitrous oxide, oxygen, and nitrogen were 1, 10.7, 18.6, and greater than 700, respectively. Comparisons of these rates with those predicted by theory show that oxygen and carbon dioxide exchange is diffusion limited, and nitrous oxide and nitrogen is perfusion limited. CONCLUSIONS: The perfusion limitation for nitrogen suggests that its exchange rate is notably increased by inflammation from increased mucosal blood flow. Targeting inflammation for therapy of persistent ME effusions may decrease the rate of nitrogen exchange and reestablish normal ME pressure regulation.

Acoustic Impedance Tests

Noninvasive assessment of the intralabyrinthine pressure. A new technique applied to patients with X-linked progressive mixed deafness syndrome with perilymphatic gusher during stapes surgery.

In this report, we describe the findings of a noninvasive assessment of the intralabyrinthine pressure in two patients from a family with X-linked progressive, mixed deafness syndrome in whom a perilymphatic gusher occurs during stapes surgery. The so-called tympanic membrane displacement measurement technique could be successfully applied in these two patients (from a total of five patients who were studied) because they still showed a stapedial reflex at 1 kHz, which is mandatory for application of the tympanic membrane displacement measurement technique. The findings were compared with those of age-related control subjects and indicated a significantly elevated intralabyrinthine pressure in the two patients who were observed. The results suggest that the tympanic membrane displacement measurement technique may serve as a screening test in audiological diagnostic studies of perilymphatic hypertension.

Acoustic Impedance Tests

Resolution of middle ear effusion in newborns.

OBJECTIVES: To determine the natural history of middle ear effusion (MEE) in newborns and compare the results of pneumatic otoscopy with tympanometry and acoustic reflex measurements in the evaluation of the middle ear of neonates. DESIGN: A descriptive natural history study with comparison of three evaluation methods for MEE. SETTING: County hospital nursery and pediatric clinic. PARTICIPANTS: Sixty-eight full-term, healthy neonates were studied on day 1 of life; 65 on day 2; and 24 on day 3. Thirty-eight infants returned at 2 weeks of age, and from this group, 23 returned at 2 months of age. INTERVENTIONS: Two independent observers performed otoscopy. An audiologist performed tympanometry and ipsilateral acoustic reflex measurements. Infants were evaluated daily from birth by all three methods for up to 3 days. MAIN OUTCOME MEASURE: The time to resolution of MEE as determined by three methods. RESULTS: In the first 3 hours of life, all babies examined had MEE diagnosed in both ears. By the third day, MEE apparently had resolved in 73% of ears by otoscopy, 88% by acoustic reflex measurements, and 92% by tympanometry. At 2 weeks, MEE was present by otoscopy in 13% (10/75 of ears). These were primarily newly acquired MEEs. Interobserver agreement by otoscopy as determined by kappa scores was moderate on days 1 and 3, poor on day 2, and excellent at 2 weeks and 2 months. CONCLUSIONS: Middle ear effusion diagnosed by otoscopy apparently resolves in 72 hours in most neonates. Interobserver agreement of otoscopists was excellent after babies were discharged from the nursery, suggesting that pneumatic otoscopy can be used to diagnose MEE in neonates this age. Most MEEs that are diagnosed 2 weeks and 2 months after birth are new and asymptomatic.

Acoustic Impedance Tests