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Biomedical subjects

F Cauchefer

Publications and source records attributed to F Cauchefer.

2 recordsLinked to original sources

Voluntary decrease in breathing frequency in exercising asthmatic subjects.

Exercise rehabilitation programmes are increasingly recommended in young asthmatics, but it is unclear whether or not training should incorporate instructions on breathing pattern. In this study, we examined the effects of voluntarily decreasing breathing frequency on their ventilatory equivalents for oxygen and carbon dioxide (minute ventilation (V'E)/oxygen consumption (V'O2) and V'E/CO2 production (V'CO2), respectively), noninvasively determined physiological dead space/tidal volume (VD/VT) and dyspnoea. Fifteen young asthmatic subjects were assigned to two groups: low frequency breathing (LFB) and controls. They first underwent an exercise test at a cardiac frequency of 150 beats x min(-1). They were trained at this level for nine sessions. LFB subjects were instructed to decrease respiratory frequency by 40% during exercise. Control subjects received no instructions. A second test was then performed in the same conditions. LFB subjects decreased V'E/V'O2, V'E/V'CO2 and VD/VT by 22, 19 and 12%, respectively. Arterial oxygen saturation (Sa,O2) fell to 89+/-4% and end-tidal carbon dioxide tension (PET,CO2) rose to 6.5+/-0.7 kPa (49+/-5 mmHg). In controls, these variables were identical in the two tests. Dyspnoea was lower in the second test in all subjects. In conclusion, breathing pattern may be profoundly altered during exercise without concomitant increase in dyspnoea. However, directing breathing patterns for exercise rehabilitation requires an individual assessment of the desired pattern in order to prevent hypercapnia or hypoxia.

Adaptation, Physiological

Do voluntary changes in inspiratory-expiratory ratio prevent exercise-induced asthma?

It is often admitted that heat exchange in the airways is a major cause of exercise-induced asthma. Because a decrease in the inspiratory time/expiratory time ratio (TI/TE) decreases these exchanges, we postulated that it might decrease bronchoconstriction as well. Twenty-four asthmatic children, divided into three groups, underwent two exercise provocation tests, 24 hours apart (outdoor running for 6 min). The first test was identical for all the subjects. In the second test, the first group did not receive any instruction concerning breathing pattern. The second group was instructed to adopt equal inspiratory and expiratory times (TI/TE = 1). The third group had to adopt an expiratory time three times longer than inspiratory time (TI/TE = 1/3). The three groups displayed similar pulmonary function tests (FEV1 and FVC), cardiac frequency, and running performances. However, FEV1 significantly improved in the second session. This suggested that familiarization with the task and related psychological factors may influence asthma more than voluntary changes in TI/TE.

Adolescent