Related Experiment Video
Updated: Jan 23, 2026

Assessment of Knee Hyperalgesia in Mice using Pressure Application Measurement
Published on: June 13, 2025
Measuring dynamic Eustachian tube function using tympanometry in a pressure chamber: the effect of nasal betahistine
B K-H G Franz1, R Patuzzi2, C J Wraight3
1Department of Anatomy and Neuroscience, University of Melbourne, Australia.
Objective:
To assess the effect of topical betahistine on Eustachian tube function in subjectively abnormal subjects in a hyperbaric chamber.
Method:
Active and passive Eustachian tube function was examined using tympanometry in a pressure chamber.
Results:
Active Eustachian tube function was tested against the negative middle ear pressure induced by increasing the chamber pressure to +3 kPa. One voluntary swallow decreased middle-ear pressure by a mean of 1.36 kPa. Passive Eustachian tube function was tested by measuring spontaneous Eustachian tube openings as the chamber pressure dropped from +10 kPa to ambient. Four distinct patterns of Eustachian tube behaviour were seen, three of which indicated Eustachian tube dysfunction. Betahistine had no positive effect on Eustachian tube opening, although previous animal studies had suggested a beneficial effect.
Conclusion:
Topical betahistine had no effect on Eustachian tube function. Combining a hyperbaric chamber with tympanometry proved ideal for evaluating Eustachian tube function.
Related Concept Videos
Definition and Measurement of Pressure: Atmospheric Pressure, Barometer, and Manometer
Measurement of Fluid Pressure
A basic form of manometer is the piezometer, a vertical tube open at the top and filled with the same...
Static, Stagnation, Dynamic and Total Pressure
Measurement of Blood Pressure
Dynamics Of Circular Motion: Applications
Vapor Pressure

