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Showing results for "early lung health"

Key paediatric messages from the 2018 European Respiratory Society International Congress

Group Chairs and early career members highlight some of the most interesting findings in the field of paediatrics presented at the 2018 international ERS Congress

Preterm respiratory researchers share what World Prematurity Day means to them

Preterm researchers Dr Shannon Simpson (left) and Professor Jane Pillow (right) with Tony Sparks WA chairperson Amber Bates.

Cystic Fibrosis

Cystic fibrosis (CF) is the most common chronic, life-shortening genetic condition affecting young Australians. There is no cure but researchers are working to prevent the onset of lung disease.

Collecting exhaled breath condensate from non-ventilated preterm-born infants: a modified method

Exhaled breath condensate (EBC) collection is a non-invasive, safe method for measurement of biomarkers in patients with lung disease. Other methods of obtaining samples from the lungs, such as bronchoalveolar lavage, are invasive and require anaesthesia/sedation in neonates and infants. EBC is particularly appealing for assessing biomarkers in preterm-born infants, a population at risk of ongoing lung disease.

Objective measures of bronchial hyper-responsiveness for asthma diagnosis in young children: Mannitol and exercise challenge testing

Graham Shannon Hall Simpson BAppSci PhD CRFS FANZSRS FThorSoc FERS BMedSci (hons), PhD Honorary Research Associate Head, Strong Beginnings Research,

Pre-Post Intervention to Strengthen and Sustain the Paediatric ESCALATION System (The SPECS): Study Protocol

Promptly recognising changes in an acutely unwell child’s condition is fundamental to prevent tragic outcomes. Western Australian (WA) healthcare facilities used inconsistent and varied paediatric early warning systems. To improve care consistency, a standardised ESCALATION system, inclusive of family involvement and sepsis recognition, was developed.

CF Awareness Month

Information about cystic fibrosis awareness month and CF research at The Kids

Long-term exposure of mice to 890 ppm atmospheric CO2 alters growth trajectories and elicits hyperactive behaviours in young adulthood

Atmospheric carbon dioxide (CO2) levels are currently at 418 parts per million (ppm), and by 2100 may exceed 900 ppm. The biological effects of lifetime exposure to CO2 at these levels is unknown. Previously we have shown that mouse lung function is altered by long-term exposure to 890 ppm CO2. Here, we assess the broader systemic physiological responses to this exposure.

Is acamprosate safe to use in pregnancy, and can it mitigate the effects of alcohol consumption in pregnant mice?

Alexander Larcombe BScEnv (Hons) PhD Honorary Research Fellow Honorary Research Fellow Associate Professor Alexander Larcombe began work at The Kids