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Biomedical subjects

Marzena Mielczarek

Publications and source records attributed to Marzena Mielczarek.

3 recordsLinked to original sources

[Hearing evaluation in patients with vertigo].

INTRODUCTION: Vertigo is one of the most frequent and disturbing sensations that the practicing otolaryngologist is called upon to treat. Vertigo is the illusory sensation of motion. True vertigo is caused by pathology in the peripheral end organ, the vestibular nerve, and the pathways that connect them in the brainstem and rarely, in the cortex. AIM: The aim of this study was to evaluate hearing in people with vertigo according to the etiology of balance disorders. The study comprised 127 patients treated in our clinic between 1999 and 2004, 88 women and 39 men (254 ears) aged 24-90 years. The average age was 56. METHODS: Hearing tests (pure tone audiometry, speech audiometry, impedance audiometry, auditory brainstem responses, OAE) as well as vestibular function tests (electronystagmography, rotational chair tests, caloric tests) were performed. In order to evaluate the nature of vertigo radiological diagnostics (head and cervical computer tomography, vascular diagnostics using Doppler sonography) was performed. RESULTS: Audiometric testing showed impaired hearing in 71 of 127 subjects. Among 73 patients with vertigo of vascular origin caused by vertebrae-basilar insufficiency, bilateral cochlear lesion was noticed in 33 cases and unilateral in 9. In 8 patients with cervical ankylosing spondylitis 3 had cochlear hearing loss (1--unilateral, 2--bilateral). CONCLUSIONS: In our group of patients with vertigo in the most of cases the hearing loss was on cochlear origin.

Adult↗

[Distortion product otoacoustic emissions before and after one year exposure to impulse noise].

INTRODUCTION: Firearms are a common source of impulse noise that may be very harmful to the auditory organ. Impulse noise from weapons and explosions continually produces hearing damage among military personnel. The discovery of otoacoustic emission (OAE) has given a new possibility of early diagnosis of noise induced hearing loss. The transiently evoked otoacoustic emission (TEOAE) and distortion product otoacoustic emission (DPOAE) are non-invasive, objective and frequency specific audiometric tests for evaluating outer hair cell function. The aim of the study was to asses the effects of exposure to impulse noise on DPOAE after one year of the obligatory military service. MATERIAL AND METHODS: The study comprised 92 (184 ears) soldiers, subjected to impulse noise during military service. The examine group was divided according total noise exposure. The control group consisted of secondary school students not exposed to noise. DPOAE was recorded before and after one year of military service. RESULTS: After military service significant deterioration of DPOAE level was observed at frequencies of 1, 3, and 4 kHz on the right ear and 2, 5 and 6 kHz left one. CONCLUSIONS: 1. Reduction of DPOAE amplitude connected all frequencies. 2. We did not notice significant differences between groups connected total noise exposure.

Adult↗

[Impulse noise influence on hearing].

UNLABELLED: Impulse noise from weapons and explosions produces hearing damage among military service. The discovery of otoacoustic emissions (OAE) has given a new possibility of early diagnosis of noise induced hearing loss. The aim of the study was to assess the effects of exposure to impulse noise on TEOAE, SNR and PTA. MATERIAL AND METHODS: the study comprised 92 (184 ears, aged 18.5-20 years) soldiers, subjected to impulse noise during one year of military service. The soldiers were divided in to three groups according exposure to noise. Group I the highest exposure 2222, 9 kPa2/s, group II--611, 8 kPa2/s and group III--103-109 kPa2/s. The control group consisted of 60 (120 ears) secondary school students. Hearing evaluation was performed before and after one year of military service, using extended pure tone audiometry, tympanometry, TEOAE and SNR. RESULTS: after military service significant deterioration of hearing was observed on average 1-2 dB for 0.125-3 kHz and 4-6 dB for 4-12 kHz for all examined soldiers without differences between groups. TEOAE reductions were registered predominantly at frequencies of 3 and 4 kHz, for both ears and SNR mean values reduction for the frequencies of 2, 3 and 4 kHz. CONCLUSIONS: TEOAE especially in cases where clinical audiometry is less sensitive can monitor small changes in the cochlea. There were no differences between groups and ears.

Acoustic Impedance Tests↗