Changes in respiratory system reactance (Xrs) during the first lung volume recruitment in preterm lambs on high frequency oscillatory ventilation (HFOV)

E. Zannin, M. Natile, D. Tingay, P. Dargaville, M.L. Ventura, E. Perkins, R. Bhatia, P. Tagliabue, R. Dellacà (Milan, Monza, Italy; Melbourne, Hobart, Australia)

Source: Annual Congress 2012 - Issues in neonatal and paediatric intensive care
Session: Issues in neonatal and paediatric intensive care
Session type: Thematic Poster Session
Number: 4143
Disease area: Paediatric lung diseases, Respiratory critical care

Congress or journal article abstract

Rating: 0
You must login to grade this presentation.

Share or cite this content

Citations should be made in the following way:
E. Zannin, M. Natile, D. Tingay, P. Dargaville, M.L. Ventura, E. Perkins, R. Bhatia, P. Tagliabue, R. Dellacà (Milan, Monza, Italy; Melbourne, Hobart, Australia). Changes in respiratory system reactance (Xrs) during the first lung volume recruitment in preterm lambs on high frequency oscillatory ventilation (HFOV). Eur Respir J 2012; 40: Suppl. 56, 4143

You must login to share this Presentation/Article on Twitter, Facebook, LinkedIn or by email.

Member's Comments

No comment yet.
You must Login to comment this presentation.


Related content which might interest you:
Non-invasive monitoring of respiratory mechanics during high frequency oscillatory ventilation (HFOV) in infant RDS
Source: Eur Respir J 2005; 26: Suppl. 49, 668s
Year: 2005

Resonance frequency of the respiratory system in premature infants receiving high frequency oscillatory ventilation (HFOV)
Source: International Congress 2015 – Neonatal and paediatric intensive care
Year: 2015


The effect of airway pressure and oscillation amplitude on ventilation in pre-term infants
Source: Eur Respir J 2012; 40: 479-484
Year: 2012



Open lung positive end-expiratory pressure (PEEP) titration by respiratory system input reactance (Xrs)
Source: Annual Congress 2008 - Pathophysiology of acute lung injury
Year: 2008

Regional distribution of chest wall displacements in infants during high frequency oscillatory ventilation (HFOV)
Source: International Congress 2015 – Neonatal and paediatric intensive care
Year: 2015


Increased pressure amplitude in mechanical ventilation leads to an increase in the breath condensate volume (BCV) to ventilation (Ve) ratio
Source: Eur Respir J 2001; 18: Suppl. 33, 481s
Year: 2001

Pattern of breathing (frequency and tidal volume) influences level and interpretation of exercise ventilation in childhood
Source: Eur Respir J 2007; 30: Suppl. 51, 324s
Year: 2007

Peak inspiratory pressure as a function of respiratory mechanics, tidal volume and breathing frequency during mechanical ventilation
Source: Eur Respir J 2002; 20: Suppl. 38, 602s
Year: 2002

No reduction of alveolar deadspace (VDalv) by dexamethasone (Dx) in ventilated preterm infants with BPD: no early improvement of lung inhomogeneity
Source: Eur Respir J 2001; 18: Suppl. 33, 359s
Year: 2001

Effect of upper airways during non-invasive high frequency oscillatory ventilation (nHFOV)
Source: Virtual Congress 2021 – Respiratory disorders in neonatal and paediatric intensive care
Year: 2021



High frequency oscillatory ventilation for respiratory failure due to gastroschisis
Source: Annual Congress 2009 - Respiratory disorders of the newborn
Year: 2009


Respiratory reactance (Xrs) by Forced Oscillation Technique (FOT) during the first 24h of life in non-intubated preterm infants.
Source: International Congress 2019 – Neonatal and paediatric intensive care
Year: 2019

The effect of changing ventilator settings on ventilation inhomogeneity indices in ventilated small lungs
Source: Annual Congress 2006 - New developments in infant and intensive care lung function
Year: 2006


Biphasic (BiLevel) versus assist-control ventilation in preterm lambs
Source: Eur Respir J 2007; 30: Suppl. 51, 394s
Year: 2007

Noninvasive detection of expiratory flow limitation in COPD patients during nasal CPAP
Source: Eur Respir J 2006; 27: 983-991
Year: 2006



Predicting failure of non invasive ventilation (NIV) and High flow nasal cannula (HFNC) in patients with acute hypoxemic hypocapnic respiratory failure (AHHRF): the usefulness of the standardised PaO2/FiO2 ratio (P/F-st).
Source: Virtual Congress 2020 – Non-invasive ventilation and nasal high flow: technical aspects and predictive scores
Year: 2020

Effects of a nasal high-flow system (nHF) on tidal volume, breathing rate, minute volume and I/E-ratio in healthy volunteers and patients with COPD
Source: Annual Congress 2011 - New evidence in home mechanical ventilation
Year: 2011

Respiratory system impedance and end-expiratory pressure in ARDS under conventional frequencies of mechanical ventilation
Source: Eur Respir J 2002; 20: Suppl. 38, 601s
Year: 2002

Relationship between peak inspiratory pressure and tidal volume during mechanical ventilation in ARDS
Source: Eur Respir J 2002; 20: Suppl. 38, 85s
Year: 2002

Humidified high flow nasal cannula (HFFNC) and continuous positive airways pressure (CPAP) in infants with evolving bronchopulmonary dysplasia (BPD)
Source: International Congress 2015 – Neonatal and paediatric intensive care
Year: 2015