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Effect of gravity on the caloric stimulation of the inner ear.

作者信息

Kassemi Mohammad, Deserranno Dimitri, Oas John G

机构信息

National Center for Microgravity Research, NASA Glenn Research Center, 21000 Brookpark Road, MS110-3, Cleveland, OH 44135, USA.

出版信息

Ann N Y Acad Sci. 2004 Nov;1027:360-70. doi: 10.1196/annals.1324.030.

Abstract

Robert Barany won the 1914 Nobel Prize in medicine for his convection hypothesis for caloric stimulation. Microgravity caloric tests aboard the 1983 SpaceLab 1 mission produced nystagmus results that contradicted the basic premise of Barany's convection theory. In this paper, we present a fluid structural analysis of the caloric stimulation of the lateral semicircular canal. Direct numerical simulations indicate that on earth, natural convection is the dominant mechanism for endolymphatic flow. However, in the microgravity environment of orbiting spacecraft, where buoyancy effects are mitigated, an expansive convection becomes the sole mechanism for producing endolymph motion and cupular displacement. Transient 1 g and microgravity case studies are presented to delineate the different dynamic behaviors of the 1 g and microgravity endolymphatic flows. The associated fluid-structural interactions are also analyzed based on the time evolution of cupular displacements.

摘要

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