PubMed Health⌕ Search

PubMed · 15679566

The human diving response, its function, and its control.

Abstract

The purpose of this review is to outline the physiological responses associated with the diving response, its functional significance, and its cardiorespiratory control. This review is separated into four major sections. Section one outlines the diving response and its physiology. Section two provides support for the hypothesis that the primary role of the diving response is the conservation of oxygen. The third section describes how the diving response is controlled and provides a model that illustrates the cardiorespiratory interaction. Finally, the fourth section illustrates potential adaptations that result after regular exposure to an asphyxic environment. The cardiovascular and endocrine responses associated with the diving response and apnea are bradycardia, vasoconstriction, and an increase in secretion of suprarenal catecholamines. These responses require the integration of both the cardiovascular system and the respiratory system. The primary role of the diving response is likely to conserve oxygen for sensitive brain and heart tissue and to lengthen the time before the onset of serious hypoxic damage. We suggest that future research should be focused towards understanding the role of altered ventilatory responses in human breath-hold athletes as well as in patients suffering from sleep-disordered breathing.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

G E Foster, A W Sheel. 2005. The human diving response, its function, and its control.. https://doi.org/10.1111/j.1600-0838.2005.00440.x

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Bradydysrhythmias and atrioventricular conduction blocks.

Bradydysrhythimas include sinus bradycardia, junctional brady-cardia, and idioventricular rhythm, which can be distinguished by examining the tracing for the presence or absence of P waves,noting the morphology of these P waves, and determining the width of the QRS complex. Sinoatrial blocks may occur in either first, second, or third degree varieties. Only second degree sinoatrial block can be detected on the 12-lead ECG. Sinus pause and sinus arrest may mimic second degree sinoatrial block, but their periodicity is irregular. The cyclic variability of sinus arrhythmia is unique; as with the other bradydysrhythmias, it may be innocent or pathologic depending upon clinical circumstances. Atrioventricular blocks may occur, and, similar to sinoatrial blocks, they are also categorized as first-, second-, or third degree. These are of greater clinical relevance than their sinoatrial counterparts.

Bradycardia↗