The short term influence of chest physiotherapy on lung function parameters in pediatric bronchiectasis

Author(s):  
Mieke Boon ◽  
Django De Beuckeleer ◽  
Bjarne Vandervoort ◽  
Elke Huenaerts ◽  
Marianne Schulte ◽  
...  
2021 ◽  
Vol 21 (1) ◽  
Author(s):  
Kevin J. O’Sullivan ◽  
Valerie Power ◽  
Barry Linnane ◽  
Deirdre McGrath ◽  
Magdalena Mulligan ◽  
...  

Abstract Background Oscillating Positive Expiratory Pressure (OPEP) devices are important adjuncts to airway clearance therapy in patients with cystic fibrosis (CF). Current devices are typically reusable and require daily, or often more frequent, cleaning to prevent risk of infection by acting as reservoirs of potentially pathogenic organisms. In response, a daily disposable OPEP device, the UL-OPEP, was developed to mitigate the risk of contamination and eliminate the burdensome need for cleaning devices. Methods A convenience sample of 36 participants, all current OPEP device users, was recruited from a paediatric CF service. For one month, participants replaced their current OPEP device with a novel daily disposable device. Assessment included pre- and post-intervention lung function by spirometry, as well as Lung Clearance Index. Quality of life was assessed using the Cystic Fibrosis Questionnaire – Revised, while user experience was evaluated with a post-study survey. Results 31 participants completed the study: 18 males; median age 10 years, range 4–16 years. Lung function (mean difference ± SD, %FEV1 = 1.69 ± 11.93; %FVC = 0.58 ± 10.04; FEV1: FVC = 0.01 ± 0.09), LCI (mean difference ± SD, 0.08 ± 1.13), six-minute walk test, and CFQ-R were unchanged post-intervention. Participant-reported experiences of the device were predominantly positive. Conclusions The disposable OPEP device maintained patients’ lung function during short term use (≤ 1 month), and was the subject of positive feedback regarding functionality while reducing the risk of airway contamination associated with ineffective cleaning. Registration The study was approved as a Clinical Investigation by the Irish Health Products Regulatory Authority (CRN-2209025-CI0085).


1996 ◽  
Vol 154 (4) ◽  
pp. 945-951 ◽  
Author(s):  
A F Gelb ◽  
N Zamel ◽  
R J McKenna ◽  
M Brenner
Keyword(s):  

2001 ◽  
Vol 163 (2) ◽  
pp. 356-361 ◽  
Author(s):  
CHRISTIAN SCHINDLER ◽  
NINO KÜNZLI ◽  
JEAN-PIERRE BONGARD ◽  
PHILIPPE LEUENBERGER ◽  
WERNER KARRER ◽  
...  

Thorax ◽  
2021 ◽  
pp. thoraxjnl-2020-215515
Author(s):  
Hélène Amazouz ◽  
Nicolas Bougas ◽  
Michel Thibaudon ◽  
Guillaume Lezmi ◽  
Nicole Beydon ◽  
...  

BackgroundDaily levels of ambient air pollution and pollen may affect lung function but have rarely been studied together. We investigated short-term exposure to pollen and air pollution in relation to lung function in school-age children from a French population-based birth cohort.MethodsThis study included 1063 children from the PARIS (Pollution and Asthma Risk: an Infant Study) cohort whose lung function and FeNO measurements were performed at age 8 years old. Exposure data were collected up to 4 days before testing. We estimated daily total pollen concentration, daily allergenic risk indices for nine pollen taxa, as well as daily concentrations of three air pollutants (particulate matter less than 10 µm (PM10), nitrogen dioxide (NO2), ozone (O3)). Children with similar pollen and air pollution exposure were grouped using multidimensional longitudinal cluster analysis. Associations between clusters of pollen and air pollution exposure and respiratory indices (FEV1, FVC, FeNO) were studied using multivariable linear and logistic regression models adjusted for potential confounders.ResultsFour clusters of exposure were identified: no pollen and low air pollution (Cluster 1), grass pollen (Cluster 2), PM10 (Cluster 3) and birch/plane-tree pollen with high total pollen count (Cluster 4). Compared with children in Cluster 1, children in Cluster 2 had significantly lower FEV1 and FVC levels, and children from Cluster 3 had higher FeNO levels. For FEV1 and FVC, the associations appeared stronger in children with current asthma. Additional analysis suggested a joint effect of grass pollen and air pollution on lung function.ConclusionDaily ambient chemical and biological air quality could adversely influence lung function in children.


2009 ◽  
Vol 179 (11) ◽  
pp. 1029-1033 ◽  
Author(s):  
Andreas D. Flouris ◽  
Giorgos S. Metsios ◽  
Andres E. Carrillo ◽  
Athanasios Z. Jamurtas ◽  
Konstantinos Gourgoulianis ◽  
...  

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