A phylogenetic hypothesis for the origin of hiccough
- 21 January 2003
- Vol. 25 (2) , 182-188
- https://doi.org/10.1002/bies.10224
Abstract
The occurrence of hiccoughs (hiccups) is very widespread and yet their neuronal origin and physiological significance are still unresolved. Several hypotheses have been proposed. Here we consider a phylogenetic perspective, starting from the concept that the ventilatory central pattern generator of lower vertebrates provides the base upon which central pattern generators of higher vertebrates develop. Hiccoughs are characterized by glottal closure during inspiration and by early development in relation to lung ventilation. They are inhibited when the concentration of inhaled CO2 is increased and they can be abolished by the drug baclofen (an agonist of the GABAB receptor). These properties are shared by ventilatory motor patterns of lower vertebrates, leading to the hypothesis that hiccough is the expression of archaic motor patterns and particularly the motor pattern of gill ventilation in bimodal breathers such as most frogs. A circuit that can generate hiccoughs may persist in mammals because it has permitted the development of pattern generators for other useful functions of the pharynx and chest wall muscles, such as suckling or eupneic breathing. BioEssays 25:182–188, 2003.Keywords
This publication has 60 references indexed in Scilit:
- Baclofen for chronic hiccupsPediatric Neurology, 1996
- Hiccups as a dynamical diseaseChaos: An Interdisciplinary Journal of Nonlinear Science, 1995
- Baclofen therapy for chronic hiccupEuropean Respiratory Journal, 1995
- Generation of hiccup by electrical stimulation in medulla of catsNeuroscience Letters, 1994
- Specializations of the human upper respiratory and upper digestive systems as seen through comparative and developmental anatomyDysphagia, 1993
- The role of inhibitory amino acids in control of respiratory motor output in an arterially perfused ratRespiration Physiology, 1992
- Ontogeny of regulation of gill and lung ventilation in the bullfrog, Rana catesbeianaRespiration Physiology, 1986
- Changing respiratory importance of gills, lungs and skin during metamorphosis in the bullfrog rana catesbeianaRespiration Physiology, 1982
- FETAL HICCUPSThe Lancet, 1977
- AN EXPERIMENTAL STUDY OF HICCUPBrain, 1970