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How to perform the Sinusoidal Harmonic Acceleration (SHA) test

How to perform the Sinusoidal Harmonic Acceleration (SHA) test

Learn how to perform the sinusoidal harmonic acceleration (SHA) test with videonystagmography (VNG) equipment.
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Normal SHA test results, displaying gain, phase, symmetry, eye position and eye velocity.

What is the Sinusoidal Harmonic Acceleration (SHA) test?

The Sinusoidal Harmonic Acceleration (SHA) test measures the patient’s Vestibulo-Ocular Reflex (VOR) by rotating the patient in a pendular pattern at various frequencies ranging from 0.01 Hz up to 0.64 Hz with vision denied. This test is considered the “gold standard” test for identifying a bilateral vestibular weakness. The SHA test can also be used to aid in the diagnosis of a unilateral vestibular loss and can be used to monitor vestibular compensation over time.

“You will feel yourself rocking back and forth slowly in the chair. During the rotation, I will be asking you several questions to keep you alert. Please keep your eyes open during the entire test.”
A patient with normal SHA results will produce an eye position tracing that shows nystagmus changing from right-beating to left-beating as the chair changes directions. The plotted points in the eye velocity graph will appear to be approximately 180 degrees out of phase from the yellow chair signal trace. The resulting data points for each frequency tested will appear in the Gain, Phase, and Symmetry graphs on the summary screen.
These data points will appear in the white region when results are normal and will appear in the shaded region when they are outside of threshold limits. The larger data point denotes which test frequency eye position and eye velocity graphs are currently being displayed. The first half- cycle of each frequency tested is excluded from analysis for improved reliability.
SHA test showing normal responses from 0.01 to 0.32 Hz
Abnormal SHA test results may present in several different ways.
Reduced VOR gain over a range of test frequencies may indicate that there is a bilaterally weak peripheral vestibular system, provided that technical issues have been accounted for. Please note that phase and symmetry values are of little diagnostic value in the case significantly reduced gains.
A higher than expected phase lead may provide evidence of a disorder affecting the peripheral vestibular system and/or vestibular nerve, or central pathology in rare cases. A decreased phase lead is more often related to central pathology but may also be observed in the presence of vestibular migraines or motion intolerance.

Asymmetric SHA response. Reduced VOR gain for all frequencies, visible with dots in a grey shaded area.

Borderline reduced phase, visible with dots right at the edge of the grey shaded, abnormal, area.

SHA results screen, with a red arrow showing where to find the spectral purity calculation. The spectral purity is 47%.

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