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How to Read an Audiogram Like an Expert - eMoyo

    https://blog.emoyo.tech/content/how-to-read-audiogram#:~:text=Pure-tone%20audiometry%20results%20yield%20quantitative%20information%20about%20the,high%20frequencies%20%28Hz%29%2C%20at%20different%20intensity%20levels%20%28dB%29.
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Pure Tone Audiogram and Interpretation - Epomedicine

    https://epomedicine.com/medical-students/pure-tone-audiogram-and-interpretation/
    1. Pure tone: A single frequency sound. 2. Audiometer: Equipment used to generate pure tones of varying frequency and loudness and control their presentation. 3. Air conduction (AC) threshold: lowest level dB HL (hearing threshold) at which the subject perceives 50% of pure tones introduced via earphones or speakers.

Pure-tone audiometry (audiogram) | MedLink Neurology

    https://www.medlink.com/articles/pure-tone-audiometry-audiogram
    The purpose of pure-tone audiometry is to assess auditory acuity for each ear as a function of sound frequency and as a function of whether sound is conducted by air or bone. Such information provides essential information on the underlying causes of hearing impairment and is important in selecting therapeutic interventions, including hearing aids or cochlear implants, …

How to Interpret an Audiogram From a Hearing Test

    https://www.verywellhealth.com/how-to-interpret-an-audiogram-from-a-hearing-test-1046353
    An audiogram is set up as a chart with the horizontal X-axis representing frequencies, or Hertz (Hz). 1  The X-axis is divided into two parts: On the left side of the "divide" are the low frequencies. On the right side of the "divide" are the high frequencies . The vertical Y-axis represents decibels. 1  Decibels represent the hearing level, or how loud it is.

How to Read an Audiogram | Iowa Head and Neck …

    https://medicine.uiowa.edu/iowaprotocols/how-read-audiogram
    An increase of 10 dB means a 10-fold increase in sound intensity. An increase of 20 dB means the sound is 100-fold more intense. Standard audiograms test between 0 and 110dB. For reference, normal conversation is around 60 dB. Common sounds and their intensity (dB) Near-total silence. 0 dB. Lawnmower. 90 dB.

Basic Audiogram Interpretation

    http://audprof.com/classroom/tutorials/audInterp/audioInterp/AudioInterpBasics.pdf
    Audiogram Interpretation Basic Audiology Series Audiogram Interpretation nPTA Samples 500 Hz = 15 dB 1000 Hz = 10 dB 2000 Hz = 25 dB 4000 Hz = 55 dB PTA = (15 + 10 + 25)/3 = 16.7 dB Category = Slight hearing loss HFPTA = (15 + 10 + 25 + 55)/4 = 26.25 dB Category = Mild hearing loss Audiogram Interpretation Basic Audiology Series Audiogram Interpretation

RAPID AUDIOGRAM INTERPRETATION: A CLINICIAN’S MANUAL

    https://www.pluralpublishing.com/application/files/2015/6055/1668/rai_SamplePages1.pdf
    At this point in the interpretation process, it is beneficial to globally review the pure-tone grid to see if its appearance matches any classic patterns. This can be especially helpful for those new to au-diogram interpretation. Audiogram data elicited …

Audiometry Screening and Interpretation - American …

    https://www.aafp.org/afp/2013/0101/p41.html
    Pure-tone audiometry may help physicians appropriately refer patients to an audiologist or otolaryngologist. Unilateral or asymmetrical hearing loss can be symptomatic of a central nervous system...

Perspectives on the Pure-Tone Audiogram

    https://pubmed.ncbi.nlm.nih.gov/28722648/
    Results: The pure-tone audiogram provides information as to hearing sensitivity across a selected frequency range. Normal or near-normal pure-tone thresholds sometimes are observed despite cochlear damage. There are a surprising number of patients with acoustic neuromas who have essentially normal pure-tone thresholds.

Understanding your audiogram - Australian Audiology - Gold ...

    https://australianaudiology.com.au/hearing-tests/understanding-an-audiogram/
    Understanding your audiogram An audiogram is the graphical representation of the results of pure-tone air conduction tests. Vertical lines represent the testing frequencies, arranged from low-pitched on the left to high-pitched on the right. Horizontal lines represent the loudness, from very soft at the top to very loud at the bottom.

Audiometry Screening and Interpretation

    https://www.aafp.org/afp/2013/0101/afp20130101p41.pdf
    Interpretation ENVIRONMENT Pure-tone audiometry requires a quiet testing environ-ment with low levels of background noise. Background noise can cause elevated thresholds, especially in low fre -

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