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Frequency-specific hearing outcomes in pediatric type I tympanoplasty.

AbstractIMPORTANCE:
Middle ear disease is the primary cause of hearing loss in children and has a significant impact on language development and academic performance. Multiple prognostic factors have previously been examined, but there is little published data regarding frequency-specific hearing outcomes.
OBJECTIVE:
To examine the relationship between type I tympanoplasty in a pediatric population and frequency-specific hearing changes, as well as the relationship between several prognostic factors and graft retention.
DESIGN, SETTING, AND PARTICIPANTS:
Retrospective medical chart review (February 2006 to October 2011) of 492 consecutive pediatric otolaryngology patients undergoing type I tympanoplasty for tympanic membrane (TM) perforation of any etiology at a tertiary-care pediatric otolaryngology practice.
INTERVENTIONS: MAIN OUTCOMES AND MEASURES:
Preoperative and postoperative audiometric data were collected for patients undergoing successful TM repair. It was hypothesized before data collection that conductive hearing would improve at all frequencies with no significant change in sensorineural hearing. Data collected included air conduction at 250 to 8000 Hz, speech reception thresholds, bone conduction at 500 to 4000 Hz, and air-bone gap at 500 to 4000 Hz. Demographic data obtained included sex, age, size, mechanism, location of perforation, and operative repair technique.
RESULTS:
Of 492 patients, 320 were excluded; results were thus examined for 172 patients. Surgery was successful for 73.8% of patients. Perforation size was significantly associated with repair success (mean [SD] surgical success rate of 38.6% [15.3%] vs surgical failure rate of 31.4% [15.0%]; P < .01); however, mean (SD) age (9.02 [3.89] years [surgical success] vs 8.52 [3.43] years [surgical failure]; P > .05) and repair technique (medial [73.08%] vs lateral [76.47%] graft success; P > .99) were not. Air conduction significantly improved from 250 to 2000 Hz (P < .001), did not significantly improve at 4000 Hz (P = .08), and there was a nonsignificant decline at 8000 Hz (P = .12). Speech reception threshold significantly improved (20 vs 15 dB; P < .001).
CONCLUSIONS AND RELEVANCE:
This large review found an association of TM perforation size with surgical success and an improvement in speech reception threshold, air conduction at 250 to 2000 Hz, air-bone gap at 500 to 2000 Hz, and worsening bone conduction at 4000 Hz. Patients with high-frequency hearing loss due to TM perforation should not anticipate significant recovery from type I tympanoplasty. Hearing loss at higher frequencies may require postoperative hearing rehabilitation.
AuthorsDavid T Kent, Dennis J Kitsko, Todd Wine, David H Chi
JournalJAMA otolaryngology-- head & neck surgery (JAMA Otolaryngol Head Neck Surg) Vol. 140 Issue 2 Pg. 106-11 (Feb 2014) ISSN: 2168-619X [Electronic] United States
PMID24357104 (Publication Type: Journal Article)
Topics
  • Adolescent
  • Audiometry, Pure-Tone
  • Auditory Threshold (physiology)
  • Bone Conduction (physiology)
  • Child
  • Child, Preschool
  • Cohort Studies
  • Female
  • Follow-Up Studies
  • Hearing Loss, Sensorineural (etiology, prevention & control)
  • Hospitals, Pediatric
  • Humans
  • Male
  • Pitch Perception
  • Retrospective Studies
  • Speech Perception
  • Tertiary Care Centers
  • Treatment Outcome
  • Tympanic Membrane Perforation (diagnosis, surgery)
  • Tympanoplasty (methods)

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