DYNAMICS UNDERLYING PATIENT-VENTILATOR INTERACTIONS DURING NOCTURNAL NONINVASIVE VENTILATION

Author:

NAECK R.12,BOUNOIARE D.12,FREITAS U. S.2,RABARIMANANTSOA H.2,PORTMANN A.1,PORTIER F.1,CUVELIER A.1,MUIR J.-F.1,LETELLIER C.2

Affiliation:

1. Pulmonary and Intensive Care Department, Rouen University Hospital & UPRES EA 3830 (IFR MP23), Institute for BioMedical Research, Rouen, France

2. CORIA UMR 6614, University of Rouen, France

Abstract

Noninvasive ventilation is a common procedure for managing patients having chronic respiratory failure. The success of this ventilatory assistance is often linked with patient's tolerance that is known to be related to the quality of the synchronization between patient's spontaneous breathing cycles and ventilatory cycles delivered by the ventilator. Thirty-four sleep sessions (more than 5000 ventilatory cycles each) were automatically investigated using a specific algorithm processing airflow and pressure time series. Four groups of patients were defined according to the interplay between asynchrony events and leaks. Different mechanisms that depend on sleep stages were thus evidenced. A Shannon entropy was also proposed as a new sleep fragmentation quantification methodology.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Modeling and Simulation,Engineering (miscellaneous)

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