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Looking at the audiogram graph, you will see two axes: The horizontal axis (x-axis) represents frequency (pitch) from lowest to highest. The lowest frequency tested is usually 250 Hertz (Hz), and the highest is usually 8000 Hz.
The hearing test results are plotted on a graph with the y-axis representing hearing threshold and the x-axis representing frequency. The right ear is generally plotted with a O and the left ear with a X. Bone conduction is also plotted (to allow for differentiation of conductive and SNHL).
Audiogram symbols and their meaning O or a triangle (possibly in red) is the result from your right ear measured with headphones (air conduction) X or a square (possibly in blue) is the result from your left ear measured with headphones (air conduction) S means the information is not ear-specific.
A typical audiogram measures thresholds at frequencies within a range slightly broader than that of human speech, including 250, 500, 1000, 2000, 3000, 4000, 6000, and 8000 Hz. The primary speech frequencies fall between 500 and 4000 Hz, although normal human hearing ranges from ~20 Hz to ~20,000 Hz.
Each horizontal line represents a different intensity level. The softest sounds are at the top of the chart and the loudest sounds at the bottom. Each mark on your audiogram shows the softest sounds you can hear. The softest intensity tested is typically 0 dB and the loudest is 120 dB.
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Audiograms of CONDUCTIVE hearing loss The half red squares on the right show what the person could hear if the sound was being conducted properly through to the inner ear. This audiogram suggests that there is a problem with either the ear canal, ear drum.
An audiogram is a graph that shows the softest sounds a person can hear at different pitches or frequencies. The closer the marks are to the top of the graph, the softer the sounds that person can hear.
Webers test is performed by softly striking a 512-Hz tuning fork and placing it midline on the patients scalp, or on the forehead, nasal bones, or teeth. If the hearing loss is conductive, the sound will be heard best in the affected ear. If the loss is sensorineural, the sound will be heard best in the normal ear.

audiometry graph template