EP1921990A2

Auto-titration bi-level pressure support system

Abstract

This record has no abstract on file.

EP1921990A2, drawing sheet 1
Sheet 1 of 25

Term

Term ended

Projected expiry passed 30 August 2026, 0.1 years ago.

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31 claims: 8 independent, 23 dependent

  1. 1
    Claims of equivalent WO 2007027888 A2 What is Claimed is:1. A bi-level auto-titration pressure support system comprising: (a) a pressure generating system (32) adapted to generate a flow of breathing gas at an inspiratory positive airway pressure (IPAP) during inspiration and at an expiratory positive airway pressure (EPAP) during expiration;(b) 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;(c) a monitoring system (44) associated with the patient circuit or the pressure generating system and adapted to measure a parameter indicative of a pressure at a patient's airway, a flow of gas in such a patient's airway, or both and to output a pressure signal, a flow signal indicative thereof, respectively, or both;and (d) 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 is programmed to monitor at least one of the following conditions: (1) snoring, (2) apneas, (3) hypopneas, or (4) a big leak in the pressure support system, wherein the big leak is a system leak that is substantially greater than any intentional system leaks, and wherein the controller adjusts the IPAP and the EPAP independently based on the occurrence of any one of conditions (1), (2), (3), or (4).
  2. 4
    The system of claim I 5 wherein the controller causes the pressure generating system to decrease the IPAP without changing the EPAP, responsive to a detection of the big leak.
  3. 6
    The system of claim I 5 wherein the controller:(a) controls one of the IPAP or the EPAP as a primary pressure control variable, (b) compares a current pressure support (PS) level to a maximum pressure support (PS max ) level, a minimum pressure support level (PS nUn ), or both, and (c) causes the pressure generating system to adjust a remaining other of the IPAP or the EPAP so that the current PS level does not exceed the PS max or does not fall below PSmi n .
  4. 7
    The system of claim I 5 wherein the controller causes the pressure generating system to provide the IPAP, the EPAP, or both at substantially constant levels during an inspiratory phase and an expiratory phase, respectively, of a patient's respiratory cycle.
  5. 8
    The system of claim I 5 wherein the controller:(a) causes the pressure generating system to reduce or modify the EPAP during at least a portion of the expiratory phase by some amount to provide a degree of pressure relief during the at least a portion of the expiratory phase;(b) causes the pressure generating system to reduce or modify the PAP during at least a portion of the inspiratory phase by some amount to provide a degree of pressure relief during the at least a portion of the inpiratory phase;or (c) causes the pressure generating system to reduce or modify the EPAP during at least a portion of the expiratory phase by some amount to provide a degree of pressure relief during the at least a portion of the expiratory phase, and causes the pressure generating system to reduce or modify the PAP during at least a portion of the inspiratory phase by some amount to provide a degree of pressure relief during the at least a portion of the inpiratory phase.
  6. 11
    A method of providing a bi-level auto-titration pressure support therapy to a patient, comprising:(a) generating a flow of gas at an inspiratory positive airway pressure (PAP) during inspiration and at an expiratory positive airway pressure (EPAP) during expirations;(b) coupling a first of a patient circuit to the pressure generating system and coupling a second end of the patient circuit an airway of a patient;(c) monitor at least one of the following conditions: (1) snoring, (2) apneas, (3) hypopneas, or (4) a big leak in the pressure support system, based on a pressure of a rate of the flow of gas, wherein the big leak is a leak that is substantially greater than any intentional system leaks;and (d) adjusting the IPAP and the EPAP independently based on the occurrence of any one of conditions (1), (2), (3), or (4).
  7. 21
    A bi-level auto-titration pressure support system comprising:a pressure generating system (32) adapted to generate a flow of breathing gas at an inspiratory positive airway pressure (IPAP) during inspiration and at an expiratory positive airway pressure (EPAP) during expiration;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 pressure at a patient's airway, a flow of gas in such a patient's airway, or both and to output a pressure signal indicative thereof, a flow signal indicative thereof, respectively, or both;and a controller (50) coupled to the monitoring system and the pressure generating system, and adapted to control the IPAP and the EPAP independently based on the output of the monitoring system, wherein the controller is programmed to operate according to one control layer in a set of prioritized control layers, wherein each control layer in the set of prioritized control layers competes for control of the pressure generating system with the other control layers, and wherein each control layer implements a unique pressure control process for controlling the PAP, the EPAP, or both.
  8. 28
    A method of providing pressure support to a patient, comprising:generate a flow of breathing gas at an inspiratory positive airway pressure (PAP) during inspiration and at an expiratory positive airway pressure (EPAP) during expiration;monitoring a pressure, a flow, or both of the flow of breathing gas and outputting a pressure signal, a flow signal indicative thereof, respectively, or both;selecting a control layer from a set of prioritized control layers based on the pressure signal, the flow signal, or both;and controlling the IPAP, the EPAP, or both according to a pressure control technique unique to the selected pressure control layer.