PubMed Health⌕ Search

PubMed · 11279768

Lifestyle modification for obstructive sleep apnoea.

Abstract

BACKGROUND: Obstructive sleep apnoeas are due to transient closure of the upper airway during sleep and merge into hypopnoeas in which the airway narrows, but some airflow continues. They are due to the forces compressing the airway overcoming those which stabilise its patency. The commonest association is obesity in which fatty tissue is deposited around the airway. Exercise has been recommended as a method of losing weight, but other techniques which achieve this are also thought to improve symptoms due to sleep apnoeas. Sleep hygiene may alter the sleep structure and the control of the upper airway during sleep and thus promote its patency. OBJECTIVES: The objectives of this review are to determine whether weight loss, sleep hygiene and exercise are effective in the treatment of obstructive sleep apnoeas. SEARCH STRATEGY: The Cochrane Airways Group Trials Register, MEDLINE, EMBASE, CINAHL and reference lists of review articles have been searched. SELECTION CRITERIA: Randomised, single or double blind placebo controlled, either parallel group or crossover design studies of any of these interventions were to have been included. DATA COLLECTION AND ANALYSIS: No completed trials have been identified. MAIN RESULTS: No randomised trial data were available for analysis. REVIEWER'S CONCLUSIONS: There is a need for randomised controlled trials of these commonly used treatments in obstructive sleep apnoeas. These should identify which sub groups of patients with sleep apnoeas benefit most from each type of treatment and they should have clear and standardised outcome measures.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J Shneerson, J Wright. 2001. Lifestyle modification for obstructive sleep apnoea.. https://doi.org/10.1002/14651858.cd002875

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

KEEP EXPLORING

Related citations

Creating a robust public health infrastructure for physical activity promotion.

The essential role of physical activity both as an independent protective factor against numerous common chronic diseases and as a means to maintain a healthy weight is gaining increasing scientific recognition. Although the science of physical activity promotion is advancing rapidly, the practice of promoting physical activity at a population level is in its infancy. The virtual absence of a public health practice infrastructure for the promotion of physical activity at the local level presents a critical challenge to control policy for chronic disease, and particularly obesity. To translate the increasing evidence of the value of physical activity into practice will require systemic, multilevel, and multisectoral intervention approaches that build individual capability and organizational capacity for behavior change, create new social norms, and promote policy and environmental changes that support higher levels of energy expenditure across the population. This paper highlights societal changes contributing to inactivity; describes the evolution and current status of population-based public health physical activity promotion efforts in research and practice settings; suggests strategies for engaging decision makers, stakeholders, and the general public in building the necessary infrastructure to effectively promote physical activity; and identifies specific recommendations to spur the creation of a robust public health infrastructure for physical activity.

Exercise↗

Physical activity, cardiorespiratory fitness and insulin resistance: a short update.

PURPOSE OF REVIEW: High levels of cardiorespiratory fitness and/or habitual physical activity are associated with reduced risk of cardiovascular disease. The responsible mechanisms are multifarious, but effects on insulin sensitivity are likely to play an important role. The purpose of this review is to highlight some recent evidence on the interrelationships between physical activity, fitness, obesity, genotype and insulin resistance. RECENT FINDINGS: Effects on cardiorespiratory fitness and abdominal obesity are both likely to contribute to the insulin-sensitizing effects of regular physical activity. Recent data suggest that at least in older adults, the intensity of an exercise intervention may influence the magnitude of changes in insulin sensitivity, and emerging data suggest that individual changes in insulin sensitivity following an exercise programme may, in part, be influenced by genotype. SUMMARY: Increasing physical activity reduces insulin resistance. As both intensity of exercise and genetic factors may modulate the magnitude of this effect, current physical activity for health guidelines that emphasize engagement in moderate-intensity physical activity in a 'one-size-fits-all' approach may need revision in the future to optimize the potential benefits accrued from individuals becoming more active.

Exercise↗