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Biomedical subjects

A Hirschfelder

Publications and source records attributed to A Hirschfelder.

3 recordsLinked to original sources

[Diagnosis of endolymphatic hydrops using low frequency modulated distortion product otoacoustic emissions].

BACKGROUND: The low frequency modulation of distortion product otoacoustic emissions (DPOAEs) is an objective audiometric method that appears to be a useful tool for the diagnosis of endolymphatic hydrops (EH), e.g. in patients with Menière's disease, or in those who present only some of the symptoms of the disease. METHOD: Low-frequency modulated DPOAEs were registered in 20 patients with unilateral Menière's disease (13 women and 7 men, aged 40-66 years) and were compared to a control group matched in age and gender. As a diagnostic parameter, the 'modulation index' MI=1/2 MS/DM was used (MS or modulation span, being the difference between the maximal and the minimal DPOAE-amplitude, and DM, being the mean of the suppressed stationary DPOAE-amplitude). RESULTS: In the patients with unilateral Menière's disease, MI was lower than in the control group. This difference was highly significant. In 56% of the patients' contralateral ears MI was lower than the cut off-value and significantly lower than in the control group, but did not differ significantly from the patients' ipsilateral ears. CONCLUSION: The registration of low-frequency modulated DPOAEs is comparable to the generally applied transtympanic electrocochleography in its diagnostic validity. The method is fast and non-invasive and could be applied to monitor the course of the disease.

Acoustic Stimulation↗

[Aural fullness and endolymphatic hydrops].

BACKGROUND: Low-frequency modulated DPOAEs were registrated to investigate whether the subjective symptom of aural fullness can indicate an endolymphatic hydrops. METHOD: The cochlear partition is periodically moved towards scala vestibuli and scala tympani by a low-frequency suppressor tone. The level of simultaneously registrated DPOAEs is modulated depending on the phase of the suppressor. This modulation may be reduced when the displacement of the organ of Corti is inhibited by mechanical stiffening of the basilar membrane (e. g. in endolymphatic hydrops). SUBJECTS: Low-frequency modulated DPOAEs were registrated in 15 patients with Menière's disease, in 8 patients with aural fullness and tinnitus, but without vertigo, and in 21 normal hearing adults. RESULTS: In both patient groups the modulation depth is high significantly lower than in the control group. The results do not differ significantly in the patients with and without vertigo. CONCLUSION: The reduction of the modulation depth can be interpreted as a sign of an endolymphatic hydrops. In the group of patients with aural fullness a cochlear hydrops can be assumed. The measurement of low-frequency modulated DPOAEs is a new tool to diagnose and monitor the course of endolymphatic hydrops and to evaluate the effectiveness of therapeutic methods.

Audiometry, Pure-Tone↗

Low-frequency modulation of the 2f1-f2 distortion product otoacoustic emissions in the human ear.

Low-frequency masking is a recent clinical procedure for the differential diagnosis of sensory hearing loss. Currently this requires the recording of the phase-dependent masked subjective threshold, which is time consuming and not always accurate. As an objective method, the recording of modulated distortion product otoacoustic emissions (DPOAEs) can be performed continuously, and with better frequency specificity. Results of measurements of the low-frequency modulated two-tone DPOAE 2f1-f2 in the human ear, and its dependence on various acoustic parameters, are presented here for the first time. Similar to the masked hearing threshold, the pattern of the phase-dependent modulated DPOAEs displayed two minima, at the phases of maximal rarefaction and condensation, respectively, with a latency of about 4 ms (suppressor frequency 32.8 Hz). The smaller dip, at maximal condensation, appeared only for a high suppressor level, and for a low level of the primary tone f2. The modulating effect measured for the primary frequencies f1 = 2.5 kHz and f2 = 3 kHz, decreased for 4 and 4.8 kHz, and vanished for 5 and 6 kHz. The results are discussed using a cubic distortion model based on the Boltzmann function for mechano-electrical transduction of the hair cells. The saturation behavior of the increase of the DPOAE level at different phases is compared with the growth rates of the DPOAE level in normal hearing and in sensory hearing loss.

Acoustic Stimulation↗