BACKGROUND: Respiratory system modelling can aid clinical decision making during mechanical ventilation (MV) in intensive care. However, spontaneous breathing (SB) efforts can produce entrained "M-wave" airway pressure waveforms that inhibit identification of accurate values for respiratory system elastance and airway resistance. A pressure wave reconstruction method is proposed to accurately identify respiratory mechanics, assess the level of SB effort, and quantify the incidence of SB effort without uncommon measuring devices or interruption to care. METHODS: Data from 275 breaths aggregated from all mechanically ventilated patients at Christchurch Hospital were used in this study. The breath specific respiratory elastance is calculated u...
Work of breathing (WOB) offers information that may be relevant to determine the patient’s status un...
Work of breathing (WOB) offers information that may be relevant to determine the patient’s sta...
Background Respiratory mechanics models can aid in optimising patient-specific mechanical ventilatio...
Introduction: Estimating respiratory mechanics of mechanically ventilated (MV) patients is unreliab...
Patients with Acute Respiratory Distress Syndrome (ARDS) required mechanical ventilation (MV) for br...
Monitoring patient-specific respiratory mechanics can be used to guide mechanical ventilation (MV) ...
Patients with Acute Respiratory Distress Syndrome (ARDS) required mechanical ventilation (MV) for br...
peer reviewedModel-based methods estimating patient-specific respiratory mechanics may help intensiv...
Models of respiratory mechanics can be used to titrate patient-specific mechanical ventilation (MV) ...
Background and objective: Mechanical ventilation (MV) provides breathing support for acute respirato...
Background and objective: Respiratory mechanics estimation can be used to guide mechanical ventilati...
BACKGROUND: Respiratory mechanics models can aid in optimising patient-specific mechanical ventilati...
Model-based methods estimating patient-specific respiratory mechanics may help intensive care clinic...
peer reviewedBackground and objective: Model-based lung mechanics monitoring can provide clinically ...
<div><p>Background</p><p>Respiratory mechanics models can aid in optimising patient-specific mechani...
Work of breathing (WOB) offers information that may be relevant to determine the patient’s status un...
Work of breathing (WOB) offers information that may be relevant to determine the patient’s sta...
Background Respiratory mechanics models can aid in optimising patient-specific mechanical ventilatio...
Introduction: Estimating respiratory mechanics of mechanically ventilated (MV) patients is unreliab...
Patients with Acute Respiratory Distress Syndrome (ARDS) required mechanical ventilation (MV) for br...
Monitoring patient-specific respiratory mechanics can be used to guide mechanical ventilation (MV) ...
Patients with Acute Respiratory Distress Syndrome (ARDS) required mechanical ventilation (MV) for br...
peer reviewedModel-based methods estimating patient-specific respiratory mechanics may help intensiv...
Models of respiratory mechanics can be used to titrate patient-specific mechanical ventilation (MV) ...
Background and objective: Mechanical ventilation (MV) provides breathing support for acute respirato...
Background and objective: Respiratory mechanics estimation can be used to guide mechanical ventilati...
BACKGROUND: Respiratory mechanics models can aid in optimising patient-specific mechanical ventilati...
Model-based methods estimating patient-specific respiratory mechanics may help intensive care clinic...
peer reviewedBackground and objective: Model-based lung mechanics monitoring can provide clinically ...
<div><p>Background</p><p>Respiratory mechanics models can aid in optimising patient-specific mechani...
Work of breathing (WOB) offers information that may be relevant to determine the patient’s status un...
Work of breathing (WOB) offers information that may be relevant to determine the patient’s sta...
Background Respiratory mechanics models can aid in optimising patient-specific mechanical ventilatio...