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Biomedical subjects

Sheila A McKenzie

Publications and source records attributed to Sheila A McKenzie.

4 recordsLinked to original sources

Pressure oscillation amplitude after interruption of tidal breathing as an index of change in airway mechanics in preschool children.

Bronchodilator reversibility testing using change in airway resistance during interruption (Rint) is feasible in preschool children. Analysis of postocclusion oscillations of the mouth pressure-time transient (Pmo(t)), recorded during airflow interruption, may offer an alternative index of change in airway mechanics. We analyzed Pmo(t) oscillation amplitude in three different ways: 1) difference between the first relative maximum and minimum (AMxMn); 2) detection of the dominant frequency using Fourier analysis (AFS); and 3) curve-fitting based on a mathematical model (ACurv). In 25 asymptomatic asthmatic children, aged 2.5-5.6 years, who had undertaken reversibility testing, the correlation coefficients between baseline Rint and amplitude were: AMxMn r = -0.84, AFS r = -0.82, ACurv r = -0.84. The coefficient of variation (CoV) of readings contributing to baseline Rint measurement, as median (range), was 12% (5-24%), which was not significantly different from AFS or ACurv (P > 0.05). All parameters were significantly different postbronchodilator (P < 0.001). Using the sensitivity index, i.e., the change after intervention divided by the baseline standard deviation, ACurv was the most sensitive and Rint the least sensitive, with median (range) at 2.72 (-0.84 to 12.10) and 1.91 (-1.17 to 9.50), respectively (P = 0.005). Our results suggest that oscillation amplitude analysis may provide a sensitive index of change in airway mechanics in preschool children undertaking bronchodilator reversibility testing.

Airway Resistance↗

Randomized controlled trial of fluticasone in preschool children with intermittent wheeze.

Preschool children with intermittent wheeze are often prescribed inhaled corticosteroids, although there is no proven benefit. Measurement of airway resistance by the interrupter technique can be used to objectively assess response to treatment. If lung function improves, treatment may be justified. Children with intermittent wheeze aged 2 to <or= 5 years of age completed a 6-week randomized controlled crossover trial of fluticasone propionate (100 micro g, twice daily), followed by a 10-week parallel extension. The relationships between changes in resistance, serum immunoglobulin E and sensitization measured by skin prick testing were investigated. Sixty-one children completed the crossover trial and 44 (72%) completed the extension. After 6 weeks, geometric mean change in resistance was -16.0% (95% confidence interval, -7.0 to -25.0%, p = 0.003) in sensitized children and -3.5% (95% confidence interval, +0.7 to -7.6%, p = 0.1) in nonsensitized children. Changes in resistance were unrelated to immunoglobulin E. Sixteen weeks after stopping fluticasone, resistance returned to baseline. This is the first study of preschool children with intermittent wheeze that has related changes in lung function on treatment to aeroallergen sensitization. Lung function improved in sensitized children and deteriorated after stopping treatment. Treatment with inhaled steroids may be justified in sensitized children.

Administration, Topical↗

Environmental factors relevant to difficult asthma.

Symptom persistence in difficult asthmatics may be related to their home environment. If sensitised asthmatics are to benefit from indoor allergen avoidance measures, these must be rigorous and drug adherence satisfactory. This is difficult for many families. The relationship between traffic pollution, asthma diagnosis and symptom severity is persuasive but requires objective validation. Overall, it seems that house dust mite control and tobacco smoke avoidance are important for asthmatics and advice about how to avoid these adverse factors must be given. Whether these measures are effective in difficult asthmatics and whether moving house makes any difference is unknown.

Air Pollution, Indoor↗