Patient breathing efforts occurring during controlled ventilation causes perturbations in pressure data, which cause erroneous parameter estimation in conventional models of respiratory mechanics. A polynomial model of patient effort can be used to capture breath-specific effort and underlying lung condition. An iterative multiple linear regression is used to identify the model in clinical volume controlled data. The polynomial model has lower fitting error and more stable estimates of respiratory elastance and resistance in the presence of patient effort than the conventional single compartment model. However, the polynomial model can converge to poor parameter estimation when patient efforts occur very early in the breath, or ...
Introduction: Estimating respiratory mechanics of mechanically ventilated (MV) patients is unreliab...
Background. Respiratory mechanics models have the potential to guide mechanical ventilation. Airway ...
Mechanical ventilation is a widely used breathing support for patients in intensive care. Its effect...
Background and objective: Mechanical ventilation therapy of respiratory failure patients can be guid...
Monitoring of respiratory mechanics is required for guiding patient-specific mechanical ventilation ...
Background and objective: Mechanical ventilation (MV) provides breathing support for acute respirato...
Respiratory system modelling can enable patient-specific mechanical ventilator settings to be found,...
Objective. In this paper, a new algorithm is proposed to compute the spontaneously generated respira...
Real-time noninvasive estimation of respiratory mechanics in spontaneously breathing patients is sti...
Mechanical ventilation is the live-saving therapy in intensive care medicine by all means. Neverthel...
Estimation of relevant lung parameters and the breathing effort of a ventilated patient is essential...
A majority of patients admitted to the Intensive Care Unit (ICU) require some form of respiratory su...
Models of respiratory mechanics can be used to titrate patient-specific mechanical ventilation (MV) ...
Quasi-static, pulmonary pressure-volume (P-V) curves were combined with a respiratory system model t...
Physiological models of respiratory mechanics can be used to optimise mechanical ventilator settings...
Introduction: Estimating respiratory mechanics of mechanically ventilated (MV) patients is unreliab...
Background. Respiratory mechanics models have the potential to guide mechanical ventilation. Airway ...
Mechanical ventilation is a widely used breathing support for patients in intensive care. Its effect...
Background and objective: Mechanical ventilation therapy of respiratory failure patients can be guid...
Monitoring of respiratory mechanics is required for guiding patient-specific mechanical ventilation ...
Background and objective: Mechanical ventilation (MV) provides breathing support for acute respirato...
Respiratory system modelling can enable patient-specific mechanical ventilator settings to be found,...
Objective. In this paper, a new algorithm is proposed to compute the spontaneously generated respira...
Real-time noninvasive estimation of respiratory mechanics in spontaneously breathing patients is sti...
Mechanical ventilation is the live-saving therapy in intensive care medicine by all means. Neverthel...
Estimation of relevant lung parameters and the breathing effort of a ventilated patient is essential...
A majority of patients admitted to the Intensive Care Unit (ICU) require some form of respiratory su...
Models of respiratory mechanics can be used to titrate patient-specific mechanical ventilation (MV) ...
Quasi-static, pulmonary pressure-volume (P-V) curves were combined with a respiratory system model t...
Physiological models of respiratory mechanics can be used to optimise mechanical ventilator settings...
Introduction: Estimating respiratory mechanics of mechanically ventilated (MV) patients is unreliab...
Background. Respiratory mechanics models have the potential to guide mechanical ventilation. Airway ...
Mechanical ventilation is a widely used breathing support for patients in intensive care. Its effect...