EP2374491A2

Auto-titration pressure support system and method of using same

Abstract

An auto-titration pressure support system (30) comprising a pressure generating system (32) adapted to generate a flow of breathing gas at a selectable pressure level; a patient circuit (36) having a first end adapted to be coupled to the pressure generating system and a second end adapted to be coupled to an airway of a patient; a monitoring system (44) associated with the patient circuit or the pressure generating system and adapted to measure a parameter indicative of a flow of gas in such a patient's airway and to output a flow signal indicative thereof; and a controller (50) coupled to the monitoring system and the pressure generating system, for controlling the pressure generating system based on the output of the monitoring system, wherein the controller determines a breathing parameter from the flow signal, and wherein the controller analyzes a variability of the breathing parameter and controls the pressure generating system based on a result of the variability analysis.

EP2374491A2, drawing sheet 1
Sheet 1 of 35

Term

Term ended

Projected expiry passed 11 October 2022, 4 years ago.

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4 claims: 1 independent, 3 dependent

  1. 1
    An auto-titration pressure support system (30) comprising:a pressure generating system (32) adapted to generate a flow of breathing gas at a selectable pressure level;a patient circuit (36) having a first end adapted to be coupled to the pressure generating system and a second end adapted to be coupled to an airway of a patient;a monitoring system (44) associated with the patient circuit or the pressure generating system and adapted to measure a parameter indicative of a flow of gas in such a patient's airway and to output a flow signal indicative thereof;and a controller (50) coupled to the monitoring system and the pressure generating system, for controlling the pressure generating system based on the output of the monitoring system, wherein the controller determines a breathing parameter from the flow signal, and wherein the controller analyzes a variability of the breathing parameter and controls the pressure generating system based on a result of the variability analysis.