Aim of mechanical ventilation is to improve gas exchange and to unload the respiratory muscles delivering a form of mechanical support to the ventilation. At the same time, it is essential that the support is individually-tailored to avoid the development of muscular atrophy, a process called "ventilatory-induced diaphragm dysfunction" Aim of the present study is that the continuous ultrasonographic assesment of diaphragm function, as obtained by the device under investigation (DiaMon, Respinor AS, Oslo, Norway) is related to the degree of effort of inspiratory muscles, as measured by gold-standard indices such as esophageal and gastric pressure measurement. A secondary aim is that the data assessed by the device are related to a standard ultrasonographic examination performed by expert operators. In particular, we will enroll a population of critically ill patients undergoing mechanical ventilation in assisted mode, and we will perform a decremental pressure support trial, with the following aims: 1. to evaluate the performance of a continuous and automated device for the monitoring of diaphragm contractile activity, as compared to standard mechanical indices of respiratory effort such as the pressure-time product (PTP) 2. to evaluate the performance of a continuous and automated device for the monitoring of diaphragm contractile activity, as compared to the ultrasonographic assesment of muscle function performed by an expert operator.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
25
Diaphragm function will be assessed by standard mechanical parameters as assessed by esophageal and gastric pressure measurement, as well as by an ultrasonographic examination performed by an expert operator and by the continuous ultrasonographic assessment provided by the device under investigation
Ospedale San Paolo - Polo Universitario, ASST Santi Paolo e Carlo
Milan, MI, Italy
RECRUITINGDiaprhagm excursion
Excursion (in mm) between expiration and inspiration
Time frame: Study 1 day
Esophageal pressure swing
Difference (in cmH2O) in esophageal pressure between expiration and inspiration
Time frame: Study 1 day
Pressure-time product
Integral of the area under the esophageal pressure over time (in cmH2O\*sec)
Time frame: Study 1 day
Pressure-time product
Integral of the area under the trasndiaphragmatic pressure over time (in cmH2O\*sec)
Time frame: Study 1 day
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.