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Audiogram of the hooded Norway rat - PubMed

    https://pubmed.ncbi.nlm.nih.gov/8188553/
    The behavioral audiogram of the hooded Norway rat was determined for frequencies from 250 Hz to 70 kHz. The resulting audiogram is virtually identical to the albino rat audiogram obtained by Kelly and Masterton (1977), indicating that there is no detectable effect of albinism on the audiogram of the Norway rat.

Audiogram of the hooded Norway rat.

    https://www.ncbi.nlm.nih.gov/pubmed/8188553
    The behavioral audiogram of the hooded Norway rat was determined for frequencies from 250 Hz to 70 kHz. The resulting audiogram is virtually identical to the albino rat audiogram obtained by Kelly and Masterton (1977), indicating that there is no detectable effect of albinism on the audiogram of the Norway rat.

Audiogram of the hooded Norway rat - ScienceDirect

    https://www.sciencedirect.com/science/article/pii/0378595594902402
    The hooded rats were able to re- spond to frequencies from 250 Hz to 70 kHz, but could not hear lower frequencies (4, 8, 16, 32, 63, and 125 Hz) even at 100 dB SPL. Comparison of the audiograms for the hooded and albino rats reveals that they are virtually identical. Between 500 Hz and 64 kHz, the two audiograms vary on average by less than 3 dB.

Audiogram of the hooded Norway rat - ScienceDirect

    https://www.sciencedirect.com/science/article/abs/pii/0378595594902402
    The behavioral audiogram of the hooded Norway rat was determined for frequencies from 250 Hz to 70 kHz. The resulting audiogram is virtually identical to the albino rat audiogram obtained by Kelly and Masterton (1977), indicating that there is no detectable effect of albinism on the audiogram of the Norway rat.

The Preyer reflex audiogram of several rodents, and its ...

    https://www.ncbi.nlm.nih.gov/pubmed/553926
    In 3 of the rats, conditioned (lever-pressing) audiograms were collected. These exhibited relatively greater sensitivity below 20 kc/s than has previously been reported, declining from 20 to 4 kc/s at only about 3 db/octave. From maximum at 20 kc/s to 40 kc/s sensitivity declined at about 12 db/octave, and from 40-60 kc/s at about 46 db/octave.

Audiograms from human, gerbil, rat and mouse | …

    https://www.researchgate.net/figure/Audiograms-from-human-gerbil-rat-and-mouse_fig1_224829208
    Figure 5.4 shows behavioral audiograms for naked mole-rats and gerbils: gerbils are considered to have good hearing at both low (1-4 kHz) and high …

How to Read an Audiogram | Iowa Head and Neck …

    https://medicine.uiowa.edu/iowaprotocols/how-read-audiogram
    GENERAL: Audiograms are used to diagnose and monitor hearing loss. Audiograms are created by plotting the thresholds at which a patient can hear various frequencies. Hearing loss can be divided into two categories: conductive or sensorineural. The results of an audiogram can help direct medical and surgical interventions to improve and/or …

Detailed Explanation: How to Read an Audiogram – Incus ...

    https://hkincus.com/blogs/blogs/how-to-read-an-audiogram
    Why the Audiogram is Upside-Down. Usually, the values on a graph are increasing as you go up along the vertical direction. On audiograms, however, values are increasing in the downward direction instead. The reasoning behind this convention comes from the basics of what the values on an audiogram represent. An audiogram is a plot of hearing ...

How to Read an Audiogram and Determine Degrees of Hearing Loss

    https://www.nationalhearingtest.org/wordpress/?p=786
    Profound loss: 90 dB or more. The graph to the left represents a blank audiogram illustrates the degrees of hearing loss listed above. Frequency is plotted at the top of the graph, ranging from low frequencies (250 Hz) on the left to high frequencies (8000 Hz) on the right. Sound level, in dB, is plotted on the left side of the graph and ranges ...

How to Read an Audiogram: 15 Steps (with Pictures) - …

    https://www.wikihow.com/Read-an-Audiogram
    An audiogram looks like a graph with plotted points. Each plot on your chart will tell you the lowest intensity level at which you can hear each frequency. With a little practice, you’ll be able to read an audiogram.

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