Respiratory modules are medical devices used to assist patients to breathe. The aim of this article is to develop a control method that achieves exact tracking of a time-varying target pressure, for unknown patient-hose-leak parameters and in the presence of patient breathing effort. This is achieved by an online estimation of the hose characteristics that enables compensation for the pressure drop over the hose. Stability of the closed-loop system is proven, and the performance improvement compared to the existing control strategies is demonstrated by simulation and experimental case studies
Model-based methods estimating patient-specific respiratory mechanics may help intensive care clinic...
Closed-loop control of mechanical ventilators could have a positive impact on pre-hospital patient c...
Mechanical ventilation (MV) is used in the intensive care unit (ICU) to treat patients with respirat...
Respiratory modules are medical devices used to assist patients to breathe. The aim of this article ...
Tracking of a desired pressure profile is key in mechanical ventilation to sufficiently support a pa...
Mechanical ventilators sustain life of patients that are unable to breathe (sufficiently) on their o...
\u3cp\u3eRespiratory modules are used to assist patients who are unable to breathe sufficiently on t...
PURPOSE: There is growing interest in the use of both variable and pressure-controlled ventilation (...
In this study a physiological closed-loop system for arterial CO2 partial pressure control was desig...
Repetitive control (RC) has shown to achieve superior rejection of periodic disturbances. Many nonli...
Estimation of relevant lung parameters and the breathing effort of a ventilated patient is essential...
Asymptotic rejection of a periodic disturbance can be achieved using repetitive control (RC). The ai...
Hypercapnia and/or hypoxia normally cause hyperventilation, The sensitivity to hypercapnia and hypox...
Model-based methods estimating patient-specific respiratory mechanics may help intensive care clinic...
Closed-loop control of mechanical ventilators could have a positive impact on pre-hospital patient c...
Mechanical ventilation (MV) is used in the intensive care unit (ICU) to treat patients with respirat...
Respiratory modules are medical devices used to assist patients to breathe. The aim of this article ...
Tracking of a desired pressure profile is key in mechanical ventilation to sufficiently support a pa...
Mechanical ventilators sustain life of patients that are unable to breathe (sufficiently) on their o...
\u3cp\u3eRespiratory modules are used to assist patients who are unable to breathe sufficiently on t...
PURPOSE: There is growing interest in the use of both variable and pressure-controlled ventilation (...
In this study a physiological closed-loop system for arterial CO2 partial pressure control was desig...
Repetitive control (RC) has shown to achieve superior rejection of periodic disturbances. Many nonli...
Estimation of relevant lung parameters and the breathing effort of a ventilated patient is essential...
Asymptotic rejection of a periodic disturbance can be achieved using repetitive control (RC). The ai...
Hypercapnia and/or hypoxia normally cause hyperventilation, The sensitivity to hypercapnia and hypox...
Model-based methods estimating patient-specific respiratory mechanics may help intensive care clinic...
Closed-loop control of mechanical ventilators could have a positive impact on pre-hospital patient c...
Mechanical ventilation (MV) is used in the intensive care unit (ICU) to treat patients with respirat...