Nova Patents
EP1586344A2

Ventilator monitor system

Abstract

Embodiments of the present invention include a system and method for monitoring the ventilation support provided by a ventilator (20) that is supplying a breathing gas to a patient (p) via a breathing circuit (22) that is in fluid communication with the lungs of the patient (p). The ventilator (20) has a plurality of selectable ventilator setting controls (30) governing the supply of ventilation from the ventilator (20), each setting control (30) selectable to a level setting. The ventilator support monitor system (10) preferably receives at least one ventilator setting parameter signal (42), each ventilator setting parameter signal (42) indicative of the level settings of one ventilator setting control (30), monitors a plurality of sensors (52-58), each sensor (52-58) producing an output signal (51) indicative of a measured ventilation support parameter, to determine the sufficiency of the ventilation support received by the patient (p), and determines the desired level settings of the ventilator setting controls (30) in response to the received ventilator setting parameter signal (42) and the output signals (51). The ventilator support monitor system (10) preferably utilizes a trainable neural network (82) to determine the desired level settings of the ventilator setting controls (30).

EP1586344A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 30 June 2020, 6.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

16 claims: 11 independent, 5 dependent

  1. 1
    A ventilator support monitoring system for a ventilator adapted to supply a breathing gas to a patient via a breathing circuit in fluid communication with at least one lung of a patient, the ventilator having at least one ventilator setting control for governing supply of the breathing gas from the ventilator to the patient, each setting control selectable to a level setting, the system comprising:at least one sensor for measuring at least one ventilation support parameter, each sensor being operatively connected to a select one of the patient or the breathing circuit, wherein each sensor generates an output signal based on the measured ventilation support parameter;anda processing subsystem adapted to receive the output signal(s) from the at least one sensor, the processing subsystem having a processor and a memory, the processor adapted to run under control of a program stored in the memory, wherein the processing subsystem is adapted to determine a level setting or an adjustment of a level setting of the at least one ventilator setting control(s) in response to the output signals.
  2. 3
    The system of claims 1 or 2, wherein the processing subsystem further comprises a feature extraction subsystem.
  3. 4
    The system of any of claims 1 through 3, wherein the processing subsystem further comprises an intelligence subsystem.
  4. 6
    The system of claims 4 or 5, wherein the intelligence subsystem comprises at least one neural network.
  5. 7
    The system of any of claims 1 through 6, wherein the determined level setting of the at least one ventilator setting control(s) optimizes patient ventilation, oxygenation, and/or breathing effort.
  6. 8
    The system of any of claims 1 through 7, wherein each ventilator setting control generates a ventilator setting parameter signal indicative of the current level setting of the ventilator setting control, and the system further comprises an input adapted to receive at least one ventilator setting parameter signal, wherein the processing subsystem is adapted to also receive the ventilator setting parameter signal from the input, and wherein the processing subsystem is adapted to determine the level setting of the at least one ventilator setting control(s) in response to both the ventilator setting parameter signal and the output signals.
  7. 9
    The system of any of claims 1 through 8, wherein said at least one ventilation support parameter is selected from the group comprising:the flow rate (V) of the exhaled gas inspired/expired by patient within the breathing circuit;the exhaled carbon dioxide (ExCO2) level of the exhaled gas expired by the patient within the breathing circuit;the hemoglobin oxygen saturation (SpO2) level of the patient;the pressure (P) of the breathing gas within the breathing circuit;the blood pressure (BP) of the patient;and the core body temperature (T) of the patient.
  8. 12
    The system of any of claims 1 through 9, further comprising a display, wherein the processing subsystem provides the determined level settings of the at least one ventilator setting control(s).
  9. 14
    The system of claims 2 or 13, further comprising an alarm for notifying an operator of the ventilator that the level settings of the ventilator setting controls differs from the determined level settings of the at least one ventilator setting control(s).
  10. 15
    The system of any of claims 1 through 11, wherein the determined level setting of the at least one ventilator setting control(s) of the ventilator comprises at least one of:a minute ventilation (VE) signal indicative of the VE level set on the ventilator;a ventilator breathing frequency (f) signal indicative of the f level set on the ventilator;a tidal volume (VT) signal indicative of the VT level set on the ventilator;a breathing gas flow rate (V) signal indicative of the V level set on the ventilator;a pressure limit signal indicative of the pressure limit set on the ventilator;a work of breathing (WOB) signal indicative of the WOB level set on the ventilator;a pressure support ventilation (PSV) signal indicative of the PSV level set on the ventilator;a positive end expiratory pressure (PEEP) signal indicative of the PEEP level set on the ventilator;a continuous positive airway pressure (CPAP) signal indicative of the CPAP level set on the ventilator;and a fractional inhaled oxygen concentration (FIO2) signal indicative of the FIO2 level set on the ventilator.
  11. 16
    The system of any of claims 1 through 15, wherein the processing subsystem can select and adjust the level setting of said at least one ventilator setting control;and wherein the level setting of said at least one ventilator setting control is adjusted by the processing subsystem based on the determined level setting.