Airway smooth muscle (ASM) is continuously strained during breathing at tidal volume. Whether this tidal strain influences the magnitude of the bronchodilator response to a deep inspiration (DI) is not clearly defined. The present in vitro study examines the effect of tidal strain on the bronchodilator effect of DIs. ASM strips from sheep tracheas were mounted in organ baths and then subjected to stretches (30% strain), simulating DIs at varying time intervals. In between simulated DIs, the strips were either held at a fixed length (isometric) or oscillated continuously by 6% (length oscillations) to simulate tidal strain. The contractile state of the strips was also controlled by adding either methacholine or isoproterenol to activate or r...
The current study aims to investigate the combined effects of oscillations and bronchodilators on th...
Superimposition of length fluctuations on contracted ASM have shown to reduce active force and stiff...
Background and objective: In adults, respiratory movements, such as tidal and deep breaths, reduce a...
Airway smooth muscle (ASM) is continuously strained during breathing at tidal volume. Whether this t...
Bronchodilatory response to deep inspiration in bronchial segments: the effects of stress vs. strain...
The airway smooth muscle undergoes an elastic transition during a sustained contraction, characteriz...
The shortening of airway smooth muscle (ASM) is greatly affected by time. This is because stimuli af...
AbstractThe role of breathing and deep inspirations (DI) in modulating airway hyperresponsiveness re...
Deep inspirations (DIs) have a dilatory effect on airway smooth muscle (ASM) that helps to prevent o...
Deep inspirations (DIs) have a dilatory effect on airway smooth muscle (ASM) that helps to prevent o...
© 2017 the American Physiological Society. Force adaptation, a process whereby sustained spasmogenic...
The airway response to deep inspirations (DIs) in asthmatics has been shown to be ineffective in pro...
Airway smooth muscle (ASM) is cyclically stretched during breathing, even in the active state, yet t...
In isolated airway smooth muscle (ASM) strips, an increase or decrease in ASM length away from its c...
The effects of a deep inspiration (DI) in individuals with asthma differ from those observed in heal...
The current study aims to investigate the combined effects of oscillations and bronchodilators on th...
Superimposition of length fluctuations on contracted ASM have shown to reduce active force and stiff...
Background and objective: In adults, respiratory movements, such as tidal and deep breaths, reduce a...
Airway smooth muscle (ASM) is continuously strained during breathing at tidal volume. Whether this t...
Bronchodilatory response to deep inspiration in bronchial segments: the effects of stress vs. strain...
The airway smooth muscle undergoes an elastic transition during a sustained contraction, characteriz...
The shortening of airway smooth muscle (ASM) is greatly affected by time. This is because stimuli af...
AbstractThe role of breathing and deep inspirations (DI) in modulating airway hyperresponsiveness re...
Deep inspirations (DIs) have a dilatory effect on airway smooth muscle (ASM) that helps to prevent o...
Deep inspirations (DIs) have a dilatory effect on airway smooth muscle (ASM) that helps to prevent o...
© 2017 the American Physiological Society. Force adaptation, a process whereby sustained spasmogenic...
The airway response to deep inspirations (DIs) in asthmatics has been shown to be ineffective in pro...
Airway smooth muscle (ASM) is cyclically stretched during breathing, even in the active state, yet t...
In isolated airway smooth muscle (ASM) strips, an increase or decrease in ASM length away from its c...
The effects of a deep inspiration (DI) in individuals with asthma differ from those observed in heal...
The current study aims to investigate the combined effects of oscillations and bronchodilators on th...
Superimposition of length fluctuations on contracted ASM have shown to reduce active force and stiff...
Background and objective: In adults, respiratory movements, such as tidal and deep breaths, reduce a...