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Am J Physiol Regul Integr Comp Physiol 282: R689-R694, 2002. First published November 23, 2001; doi:10.1152/ajpregu.00568.2001
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Vol. 282, Issue 3, R689-R694, March 2002

Influence of vestibular activation on respiration in humans

Kevin D. Monahan, Melissa K. Sharpe, Daniel Drury, Andrew C. Ertl, and Chester A. Ray

Departments of Medicine (Cardiology) and Cellular and Molecular Physiology, Pennsylvania State University College of Medicine, The Milton S. Hershey Medical Center, Hershey, Pennsylvania 17033

The purpose of this study was to determine the effects of the semicircular canals and otolith organs on respiration in humans. On the basis of animal studies, we hypothesized that vestibular activation would elicit a vestibulorespiratory reflex. To test this hypothesis, respiratory measures, arterial blood pressure, and heart rate were measured during engagement of semicircular canals and/or otolith organs. Dynamic upright pitch and roll (15 cycles/min), which activate the otolith organs and semicircular canals, increased respiratory rate (Delta 2 ± 1 and Delta 3 ± 1 breaths/min, respectively; P < 0.05). Dynamic yaw and lateral pitch (15 cycles/min), which activate the semicircular canals, increased respiration similarly (Delta 3 ± 1 and Delta 2 ± 1, respectively; P < 0.05). Dynamic chair rotation (15 cycles/min), which mimics dynamic yaw but eliminates neck muscle afferent, increased respiration (Delta 3 ± 1; P < 0.05) comparable to dynamic yaw (15 cycles/min). Increases in respiratory rate were graded as greater responses occurred during upright (Delta 5 ± 2 breaths/min) and lateral pitch (Delta 4 ± 1) and roll (Delta 5 ± 1) performed at 30 cycles/min. Increases in breathing frequency resulted in increases in minute ventilation during most interventions. Static head-down rotation, which activates otolith organs, did not alter respiratory rate (Delta 1 ± 1 breaths/min). Collectively, these data indicate that semicircular canals, but not otolith organs or neck muscle afferents, mediate increased ventilation in humans and support the concept that vestibular activation alters respiration in humans.

respiratory; ventilation; otolith organs; semicircular canals; neck afferents


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