peer reviewedAbstract Background Patient-specific lung mechanics during mechanical ventilation (MV) can be identified from measured waveforms of fully ventilated, sedated patients. However, asynchrony due to spontaneous breathing (SB) effort can be common, altering these waveforms and reducing the accuracy of identified, model-based, and patient-specific lung mechanics. Methods Changes in patient-specific lung elastance over a pressure–volume (PV) loop, identified using hysteresis loop analysis (HLA), are used to detect the occurrence of asynchrony and identify its type and pattern. The identified HLA parameters are then combined with a nonlinear mechanics h...
Mechanical ventilation (MV) is used in the intensive care unit (ICU) to treat patients with respirat...
Mechanical ventilation is an important life-saving intervention on the ICU. Lung-protective ventilat...
open5noThe mechanisms leading to patient/ventilator asynchrony has never been systematically assesse...
Background: Patient-specific lung mechanics during mechanical ventilation (MV) can be identified fro...
Mechanical ventilation (MV) is core intensive care unit (ICU) therapy during the Covid-19 pandemic...
Background and Objective: Respiratory mechanics estimation can be used to guide mechanical ventilati...
peer reviewedModel-based methods estimating patient-specific respiratory mechanics may help intensiv...
Background: Mechanical ventilation (MV) is a core intensive care unit (ICU) therapy. Significant int...
Respiratory system modelling can assist clinicians in making clinical decisions during mechanical ve...
Model-based methods estimating patient-specific respiratory mechanics may help intensive care clinic...
Asynchronous patient-ventilator interaction risks inadequate oxygenation that can cause prolonged me...
Mechanical ventilation (MV) is one of the most difficult, costly and variably delivered therapies fo...
BACKGROUND: Respiratory system modelling can aid clinical decision making during mechanical ventilat...
Background and objective: Mechanical ventilation therapy of respiratory failure patients can be guid...
Monitoring patient-specific respiratory mechanics can be used to guide mechanical ventilation (MV) ...
Mechanical ventilation (MV) is used in the intensive care unit (ICU) to treat patients with respirat...
Mechanical ventilation is an important life-saving intervention on the ICU. Lung-protective ventilat...
open5noThe mechanisms leading to patient/ventilator asynchrony has never been systematically assesse...
Background: Patient-specific lung mechanics during mechanical ventilation (MV) can be identified fro...
Mechanical ventilation (MV) is core intensive care unit (ICU) therapy during the Covid-19 pandemic...
Background and Objective: Respiratory mechanics estimation can be used to guide mechanical ventilati...
peer reviewedModel-based methods estimating patient-specific respiratory mechanics may help intensiv...
Background: Mechanical ventilation (MV) is a core intensive care unit (ICU) therapy. Significant int...
Respiratory system modelling can assist clinicians in making clinical decisions during mechanical ve...
Model-based methods estimating patient-specific respiratory mechanics may help intensive care clinic...
Asynchronous patient-ventilator interaction risks inadequate oxygenation that can cause prolonged me...
Mechanical ventilation (MV) is one of the most difficult, costly and variably delivered therapies fo...
BACKGROUND: Respiratory system modelling can aid clinical decision making during mechanical ventilat...
Background and objective: Mechanical ventilation therapy of respiratory failure patients can be guid...
Monitoring patient-specific respiratory mechanics can be used to guide mechanical ventilation (MV) ...
Mechanical ventilation (MV) is used in the intensive care unit (ICU) to treat patients with respirat...
Mechanical ventilation is an important life-saving intervention on the ICU. Lung-protective ventilat...
open5noThe mechanisms leading to patient/ventilator asynchrony has never been systematically assesse...