Pulsed DPOAEs in serial measurements : Combined analysis paradigm of simultaneously occurring changes in hearing thresholds and DPOAEs.
HNO
; 2024 Jul 03.
Article
in En
| MEDLINE
| ID: mdl-38958758
ABSTRACT
BACKGROUND:
To date, there is no consensus on how to standardize the assessment of ototoxicity in serial measurements. For the diagnosis of damage to the cochlear amplifier, measurement methods are required that have the highest possible test-retest reliability and validity for detecting persistent damage. Estimated distortion-product thresholds (LEDPT) based on short-pulse distortion-product otoacoustic emission (DPOAE) level maps use individually optimal DPOAE stimulus levels and allow reliable quantitative estimation of cochlea-related hearing loss. MATERIALS ANDMETHODS:
Hearing thresholds were estimated objectively using LEDPT and subjectively using modified Békésy tracking audiometry (LTA). Recordings were performed seven times within three months at 14 frequencies (f2â¯= 1-14â¯kHz) in 20 ears (PTA4 (0.5-4â¯kHz) <â¯20â¯dB HL). Reconstruction of the DPOAE growth behavior as a function of the stimulus levels L1, L2 was performed on the basis of 21 DPOAE amplitudes. A numerical fit of a nonlinear mathematical function to the three-dimensional DPOAE growth function yielded LEDPT for each stimulus frequency. For the combined analysis, probability distributions of hearing thresholds (LTA, LEDPT), DPOAE levels (LDP), and combinations thereof were determined.RESULTS:
LTA and LEDPT each exhibited a test-retest reliability with a median of absolute differences (AD) of 3.2â¯dB and 3.3â¯dB, respectively. Combining LEDPT, LDP, and LTA into a single parameter yielded a significantly smaller median AD of 2.0â¯dB.CONCLUSION:
It is expected that an analysis paradigm based on a combination of LEDPT, suprathreshold LDP, and fine-structure-reduced LTA would achieve higher test performance (sensitivity and specificity), allowing reliable detection of pathological or regenerative changes in the outer hair cells.
Full text:
1
Collection:
01-internacional
Database:
MEDLINE
Language:
En
Journal:
HNO
Year:
2024
Document type:
Article
Affiliation country:
Country of publication: