IP Library Granted Patent US 11,540,783
Granted Patent B2
US 11,540,783 · App. 16/609,152 · Granted Jan 3, 2023

Alarm system for intravenous pump or catheter based upon fuzzy logic

Inventor: Elena M. Bosque (Pacifica, CA)
Assignee: University of Washington
A61B5/746A61B5/0002A61B5/02141A61B5/02152A61B5/1455A61B5/14539A61B5/6852A61B5/7264G06N7/023A61B2503/045A61B2562/0247
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Quick Facts
Patent No.
US 11,540,783
App. No.
16/609,152
Granted
Jan 3, 2023
Kind
B2
Abstract

In some embodiments, a self-monitoring intravenous catheter system is provided. An alarm controller is provided that receives signals representing a pH value, an oxygen saturation value, and a pressure value in proximity to the distal end of the catheter. By performing a fuzzy logic analysis of the values, the alarm controller is able to detect that the catheter is about to fail or has failed, and can cause alerts to be presented. In some embodiments, an intravenous catheter is provided that has a pH sensor and an oximeter disposed at a distal end of the catheter to obtain the pH value and oxygen saturation values analyzed by the alarm controller. Embodiments of the catheter and self-monitoring intravenous catheter system may be particularly useful in treating neonates, who are sensitive to catheter failure and are not capable of detecting the signs of failure themselves.

Claims (122)

1. A method of automatically monitoring a status of an intravenous catheter, the method comprising:

receiving, by a processor of an alarm controller, a set of signals from at least one of a pH sensor and an oximeter located at a distal end of the intravenous catheter;

performing, by the processor, a fuzzy logic analysis based on the signals to determine a catheter status value, wherein the fuzzy logic analysis comprises:

assigning fuzzy linguistic values to values indicated by the set of signals; and

determining the catheter status value based on the fuzzy linguistic values; and

in response to determining that the catheter status value indicates failure of the intravenous catheter, causing, by the processor, an alert to be presented;

wherein the set of signals includes a signal from a pressure sensor;

wherein the values indicated by the set of signals include a pH value, and wherein the fuzzy linguistic values include at least one of a pH high linguistic value, a pH medium linguistic value, and a pH low linguistic value;

wherein the values indicated by the set of signals include an oxygen saturation percentage (SO2) value, and wherein the fuzzy linguistic values include at least one of an SO2 high linguistic value, an SO2 medium linguistic value, and an SO2 low linguistic value;

wherein the values indicated by the set of signals include a pressure value, and wherein the fuzzy linguistic values include at least one of a pressure high linguistic value, a pressure medium linguistic value, and a pressure low linguistic value;

wherein assigning fuzzy linguistic values to values indicated by the set of signals includes at least one of assigning a fuzzy linguistic value to the pH value, assigning a fuzzy linguistic value to the SO2 value, or assigning a fuzzy linguistic value to the pressure value;

wherein assigning the fuzzy linguistic value to the pH value includes:

assigning the pH high linguistic value in response to determining that the pH value is greater than or equal to 6.15;

assigning the pH medium linguistic value in response to determining that the pH value is between 5.89 and 6.15; and

assigning the pH low linguistic value in response to determining that the pH value is less than or equal to 5.89;

wherein assigning the fuzzy linguistic value to the SO2 value includes:

assigning the SO2 high linguistic value in response to determining that the SO2 value is greater than or equal to 85%;

assigning the SO2 medium linguistic value in response to determining that the SO2 value is between 60% and 85%; and

assigning the SO2 low linguistic value in response to determining that the SO2 value is less than or equal to 60%; and

wherein assigning the fuzzy linguistic value to the pressure value includes:

assigning the pressure high linguistic value in response to determining that the pressure value is greater than or equal to 0.8 psi;

assigning the pressure medium linguistic value in response to determining that the pressure value is between 0.12 psi and 0.8 psi; and

assigning the pressure low linguistic value in response to determining that the pressure value is less than or equal to 0.12 psi.

2. The method of claim 1 , wherein the fuzzy logic analysis further comprises:

determining a rate of change of at least one of the values indicated by the set of signals; and

assigning a fuzzy linguistic value to the rate of change.

3. The method of claim 1 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

determining that the catheter status value is a catheter OK value when the fuzzy linguistic values include a pressure low linguistic value, a pressure medium linguistic value, or a combination of a pH high linguistic value and an SO2 high linguistic value.

4. The method of claim 1 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

determining that the catheter status value is a catheter warning value when the fuzzy linguistic values include all of a pressure high linguistic value, a pH medium linguistic value, and an SO2 medium linguistic value.

5. The method of claim 1 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

determining that the catheter status value is a catheter failure value when the fuzzy linguistic values include all of a pressure high linguistic value, a pH low linguistic value, and an SA02 low linguistic value.

6. The method of claim 1 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

in response to determining that the fuzzy linguistic values include a pressure high linguistic value:

determining an amount of time for which the pressure high linguistic value has been present; and

determining that the catheter status value is a catheter warning value when the pressure high linguistic value has been present for longer than a threshold amount of time.

7. The method of claim 1 , further comprising:

storing a set of values for the set of signals as an old set of values;

assigning fuzzy linguistic values to the old set of values;

receiving a new set of values for the set of signals;

assigning fuzzy linguistic values to the new set of values; and

determining the catheter status value based on the fuzzy linguistic values of the old set of values and the fuzzy linguistic values of the new set of values.

8. A method of automatically monitoring a status of an intravenous catheter, the method comprising:

receiving, by a processor of an alarm controller, a set of signals from at least one of a pH sensor and an oximeter located at a distal end of the intravenous catheter;

performing, by the processor, a fuzzy logic analysis based on the signals to determine a catheter status value, wherein the fuzzy logic analysis comprises:

assigning fuzzy linguistic values to values indicated by the set of signals; and

determining the catheter status value based on the fuzzy linguistic values; and

in response to determining that the catheter status value indicates failure of the intravenous catheter, causing, by the processor, an alert to be presented;

wherein the set of signals includes a signal from a pressure sensor;

wherein the values indicated by the set of signals include a pH value, and wherein the fuzzy linguistic values include at least one of a pH high linguistic value, a pH medium linguistic value, and a pH low linguistic value;

wherein the values indicated by the set of signals include an oxygen saturation percentage (SO2) value, and wherein the fuzzy linguistic values include at least one of an SO2 high linguistic value, an SO2 medium linguistic value, and an SO2 low linguistic value;

wherein the values indicated by the set of signals include a pressure value, and wherein the fuzzy linguistic values include at least one of a pressure high linguistic value, a pressure medium linguistic value, and a pressure low linguistic value; and

wherein determining the catheter status value based on the fuzzy linguistic values includes at least one of:

determining that the catheter status value is a catheter OK value when the fuzzy linguistic values include a pressure low linguistic value, a pressure medium linguistic value, or a combination of a pH high linguistic value and an SO2 high linguistic value;

determining that the catheter status value is a catheter warning value when the fuzzy linguistic values include all of a pressure high linguistic value, a pH medium linguistic value, and an SO2 medium linguistic value; or

determining that the catheter status value is a catheter failure value when the fuzzy linguistic values include all of a pressure high linguistic value, a pH low linguistic value, and an SA02 low linguistic value.

9. The method of claim 8 , wherein assigning fuzzy linguistic values to values indicated by the set of signals includes:

assigning a pH high linguistic value to a pH value greater than or equal to 6.15;

assigning a pH medium linguistic value to a pH value between 5.89 and 6.15; and

assigning a pH low linguistic value to a pH value less than or equal to 5.89.

10. The method of claim 8 , wherein assigning fuzzy linguistic values to values indicated by the set of signals includes:

assigning an SO2 high linguistic value to an SO2 value greater than or equal to 85%;

assigning an SO2 medium linguistic value to an SO2 value between 60% and 85%; and

assigning an SO2 low linguistic value to an SO2 value less than or equal to 60%.

11. The method of claim 8 , wherein assigning fuzzy linguistic values to values indicated by the set of signals includes:

assigning a pressure high linguistic value to a pressure value greater than or equal to 0.8 psi;

assigning a pressure medium linguistic value to a pressure value between 0.12 psi and 0.8 psi; and

assigning a pressure low linguistic value to a pressure value less than or equal to 0.12 psi.

12. The method of claim 8 , wherein the fuzzy logic analysis further comprises:

determining a rate of change of at least one of the values indicated by the set of signals; and

assigning a fuzzy linguistic value to the rate of change.

13. The method of claim 8 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

in response to determining that the fuzzy linguistic values include a pressure high linguistic value:

determining an amount of time for which the pressure high linguistic value has been present; and

determining that the catheter status value is a catheter warning value when the pressure high linguistic value has been present for longer than a threshold amount of time.

14. The method of claim 8 , further comprising:

storing a set of values for the set of signals as an old set of values;

assigning fuzzy linguistic values to the old set of values;

receiving a new set of values for the set of signals;

assigning fuzzy linguistic values to the new set of values; and

determining the catheter status value based on the fuzzy linguistic values of the old set of values and the fuzzy linguistic values of the new set of values.

15. A method of automatically monitoring a status of an intravenous catheter, the method comprising:

receiving, by a processor of an alarm controller, a set of signals from at least one of a pH sensor and an oximeter located at a distal end of the intravenous catheter;

performing, by the processor, a fuzzy logic analysis based on the signals to determine a catheter status value, wherein the fuzzy logic analysis comprises:

assigning fuzzy linguistic values to values indicated by the set of signals; and

determining the catheter status value based on the fuzzy linguistic values; and

in response to determining that the catheter status value indicates failure of the intravenous catheter, causing, by the processor, an alert to be presented;

wherein the set of signals includes a signal from a pressure sensor;

wherein the values indicated by the set of signals include a pH value, and wherein the fuzzy linguistic values include at least one of a pH high linguistic value, a pH medium linguistic value, and a pH low linguistic value;

wherein the values indicated by the set of signals include an oxygen saturation percentage (SO2) value, and wherein the fuzzy linguistic values include at least one of an SO2 high linguistic value, an SO2 medium linguistic value, and an SO2 low linguistic value;

wherein the values indicated by the set of signals include a pressure value, and wherein the fuzzy linguistic values include at least one of a pressure high linguistic value, a pressure medium linguistic value, and a pressure low linguistic value; and

wherein determining the catheter status value based on the fuzzy linguistic values includes:

in response to determining that the fuzzy linguistic values include a pressure high linguistic value:

determining an amount of time for which the pressure high linguistic value has been present; and

determining that the catheter status value is a catheter warning value when the pressure high linguistic value has been present for longer than a threshold amount of time.

16. The method of claim 15 , wherein assigning fuzzy linguistic values to values indicated by the set of signals includes:

assigning a pH high linguistic value to a pH value greater than or equal to 6.15;

assigning a pH medium linguistic value to a pH value between 5.89 and 6.15; and

assigning a pH low linguistic value to a pH value less than or equal to 5.89.

17. The method of claim 15 , wherein assigning fuzzy linguistic values to values indicated by the set of signals includes:

assigning an SO2 high linguistic value to an SO2 value greater than or equal to 85%;

assigning an SO2 medium linguistic value to an SO2 value between 60% and 85%; and

assigning an SO2 low linguistic value to an SO2 value less than or equal to 60%.

18. The method of claim 15 , wherein assigning fuzzy linguistic values to values indicated by the set of signals includes:

assigning a pressure high linguistic value to a pressure value greater than or equal to 0.8 psi;

assigning a pressure medium linguistic value to a pressure value between 0.12 psi and 0.8 psi; and

assigning a pressure low linguistic value to a pressure value less than or equal to 0.12 psi.

19. The method of claim 15 , wherein the fuzzy logic analysis further comprises:

determining a rate of change of at least one of the values indicated by the set of signals; and

assigning a fuzzy linguistic value to the rate of change.

20. The method of claim 15 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

determining that the catheter status value is a catheter OK value when the fuzzy linguistic values include a pressure low linguistic value, a pressure medium linguistic value, or a combination of a pH high linguistic value and an SO2 high linguistic value.

21. The method of claim 15 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

determining that the catheter status value is a catheter warning value when the fuzzy linguistic values include all of a pressure high linguistic value, a pH medium linguistic value, and an SO2 medium linguistic value.

22. The method of claim 15 , wherein determining the catheter status value based on the fuzzy linguistic values includes:

determining that the catheter status value is a catheter failure value when the fuzzy linguistic values include all of a pressure high linguistic value, a pH low linguistic value, and an SA02 low linguistic value.

23. The method of claim 15 , further comprising:

storing a set of values for the set of signals as an old set of values;

assigning fuzzy linguistic values to the old set of values;

receiving a new set of values for the set of signals;

assigning fuzzy linguistic values to the new set of values; and

determining the catheter status value based on the fuzzy linguistic values of the old set of values and the fuzzy linguistic values of the new set of values.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2020
From: BOSQUE, ELENA M.
To: UNIVERSITY OF WASHINGTON
Reel/Frame 053033/0590 →
Continuity (2)
Provisional Application 62491865 · Apr 28, 2017
Related Publication 20200187870A1 · Jun 18, 2020
Cited By (1)
US 12,364,442