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Abnormal Audiograms in Ear Pathology

    https://entpa.org/resources/Pictures/2016%20ENT%20for%20the%20PA-C/Presentations/Abnormal%20audiograms%20in%20ear%20pathology%20-%20Klingenberg.pdf
    Abnormal Audiograms ... Pattern can widen with continued exposure (Kramer, 2014) • Differential Diagnosis? – Sudden idiopathic SNHL (case hx and audiometric pattern will differ) – Presbycusis (Will not have recovery at 8 kHz as in NIHL) • Recommendations? – Proper ear protection ...

Hearing Disorders and Audiogram Interpretation

    https://compendiumapp.com/user_uploads/000/001/553_oJ5MHz_Hearing_Disorders_and_Audiogram_Interpretation.pdf
    This condition results in an audiogram that has the appearance of a conductive hearing loss (usually greatest loss in the higher frequencies, as they are the easiest to attenuate). This easily can be prevented, however, by using insert earphones. Figure 5–1 gives an example of an audiogram of a patient with col- lapsing ear canals.

Clinical audiometric patterns of hearing loss following ...

    https://pubmed.ncbi.nlm.nih.gov/32293926/
    Objective: To identify clinical audiometric patterns of hearing loss following blast-related injury (BRI) in US military personnel.Design: Retrospective cohort study.Study sample: A total of 1186 male Navy and Marine Corps service members with normal hearing thresholds on pre-injury audiograms who had post-injury audiograms in the Blast-Related Auditory Injury Database.

Understanding Your Audiogram | Hearing Test Results

    https://www.earq.com/hearing-health/articles/understanding-your-audiogram
    How to Read Your Audiogram There are two axes on the audiogram. The horizontal axis (x-axis) represents frequency (pitch) from lowest to highest. The lowest frequency tested is around 250 Hertz (Hz), and the highest is around 8000 Hz. Frequency changes from lower to higher based on the progression from left to right.

A Clinical Analysis of Sudden Sensorineural Hearing Loss …

    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4181056/
    3)thus, the pure-tone audiograms were classified as follows: rising (lower threshold values in the high-frequency range of 2000-4000 hz than in the low-frequency range of 250-500 hz), flat (similar threshold observed across the entire frequency range), and sloping (higher threshold values in the high-frequency range than in the low-frequency …

Audiometric pattern as a predictor of cardiovascular ...

    https://pubmed.ncbi.nlm.nih.gov/19235737/
    Audiogram pattern correlates strongly with cerebrovascular and peripheral arterial disease and may represent a screening test for those at risk. Patients with low-frequency hearing loss should be regarded as at risk for cardiovascular events, and appropriate referrals should be considered.

RAPID AUDIOGRAM INTERPRETATION: A CLINICIAN’S MANUAL

    https://www.pluralpublishing.com/application/files/2015/6055/1668/rai_SamplePages1.pdf
    The following audiogram grids are representative of these patterns. Some patterns represent specific disease states (Meniere’s disease, otosclerosis, etc.), and others may suggest causality to the hearing loss pattern seen (noise-induced SNHL, presbycu-sis, etc.). It is important to emphasize that forming comparisons has significant ...

How to read an audiogram - Healthy Hearing

    https://www.healthyhearing.com/report/52516-The-abc-s-of-audiograms
    They will also describe the pattern of your loss, generally as flat, sloping or rising. The space between the normal hearing area and your threshold symbols represents all of the sounds you’re missing because of your hearing loss. The bigger the space, the more sounds you’re not hearing.

Audiological Evaluation of the Patient with ... - Ento Key

    https://entokey.com/audiological-evaluation-of-the-patient-with-otosclerosis/
    The audiogram configuration now changes to a flat pattern from the upward-sloping pattern that it had in the early stages. In the absence of cochlear involvement, the pure conductive hearing loss produced by the complete stapes fixation is limited to 60 to 65 dB, with a maximum air-bone gap across the frequency range.

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