Investigation of balloon dilation devices for treatment of Eustachian tube dysfunction
Julia Schubert, T Wilfling, Gerrit Paasche, Thomas Lenarz, K Schümann, Niels Grabow, W. J. Schmidt, Klaus‐Peter Schmitz
Abstract
Julia Schubert, T Wilfling, Gerrit Paasche, Thomas Lenarz, K Schümann, Niels Grabow, W. J. Schmidt, Klaus‐Peter Schmitz
Abstract
Abstract The presented three different balloon dilation devices for treating Eustachian tube dysfunction were compared regarding their geometries and designs. The balloon dilation behaviour was investigated by an in vitro test setup consisting of a test chamber with 37 °C water, a 2-axis laser scanner and a pressure controller. All balloons could be properly dilated up to the given nominal pressure (NP) or to rated burst pressure (RBP). The balloons reached their expected balloon diameter and length. The compliance data were 1.07 %/atm (TubaVent short), 1.16 %/atm (Acclarent Aera) and 1.28 %/atm (XprESS LoProfile). The measured profile and compliance data can be used for development of new devices for balloon dilation Eustachian tuboplasty.
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Abstract The presented three different balloon dilation devices for treating Eustachian tube dysfunction were compared regarding their geometries and designs. The balloon dilation behaviour was investigated by an in vitro test setup consisting of a test chamber with 37 °C water, a 2-axis laser scanner and a pressure controller. All balloons could be properly dilated up to the given nominal pressure (NP) or to rated burst pressure (RBP). The balloons reached their expected balloon diameter and length. The compliance data were 1.07 %/atm (TubaVent short), 1.16 %/atm (Acclarent Aera) and 1.28 %/atm (XprESS LoProfile). The measured profile and compliance data can be used for development of new devices for balloon dilation Eustachian tuboplasty.
Key concepts: Balloon dilation, Balloon, Eustachian tube, Dilation (metric space), Medicine, Biomedical engineering, Constriction, Surgery