IP Library Granted Patent US 11,684,738
Granted Patent B2
US 11,684,738 · App. 16/917,747 · Granted Jun 27, 2023

Systems for automatically removing fluid from multiple regions of a respiratory tract

Inventors: Jagdish Chaturvedi (Bangalore, IN); Nitesh Kumar Jangir (Sikar, IN); Nachiket Deval (Pune, IN); Ramakrishna Pappu (New Dehli, IN); Raghuveer Rao (Bangalore, IN); Mohammed Sajid Ali (Mysore, IN); Vimal Kishore Kakani (Hyderabad, IN); Sujay Suresh Kumar Shetty (Bangalore, IN)
Assignee: InnAccell Technologies Private Limited
A61M16/0463A61M16/0445A61M16/0465A61M16/0479A61M16/0484A61M16/0486A61M16/0858A61M1/0058A61M16/0057A61M16/0497A61M2205/3334A61M2205/3344A61M2205/3584A61M2205/3592A61M2205/505A61M2205/75
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Quick Facts
Patent No.
US 11,684,738
App. No.
16/917,747
Granted
Jun 27, 2023
Kind
B2
Abstract

Systems and devices for monitoring, detecting, and removing fluid build-up found at various regions along a tracheal tube of an intubated patient. The fluid management system includes pressure and flow sensors for detecting whether there is fluid at the various regions along the tracheal tube, and a means for drawing out the fluid into collection jars. The system also includes lavage features that is able to rinse different the various regions along a tracheal tube. Also disclosed are respiration insertion devices that either couple to existing tracheal tubes or incorporate tracheal tubing, where the respiration insertion body has channels and ports that contact various regions along the tracheal tube. The combination of the fluid management system and the respiration insertion devices effectively monitor and remove fluid at various locations along a tracheal tube of an intubated patient.

Claims (18)

1. A system for automatically removing fluid from multiple regions of a respiratory tract and lavaging an oral cavity portion of the respiratory tract, the system comprising:

a controller comprising:

controller circuitry,

a first pressure sensor,

a second pressure sensor,

a third pressure sensor,

a first port in communication with the first pressure sensor and configured to connect to a first fluid line,

a second port in communication with the second pressure sensor and configured to connect to a second fluid line,

a third port in communication with the third pressure sensor configured to connect to a third fluid line, and

one or more valves configured to couple to a source of air pressure;

a first optical flow sensor configured to couple to an outside of a first fluid line to detect flow within the first fluid line;

a second optical flow sensor configured to couple to a second fluid line to detect flow within the second fluid line;

a third optical flow sensor configured to couple to a third fluid line to detect flow within the third fluid line; wherein the first second and third optical sensors are housed separately from the controller; further wherein the controller circuitry is configured to detect when fluid lines are connected to each of the first, second and third ports, and to periodically apply negative pressure to each of the first, second and third ports when fluid lines are detected, and to stop applying negative pressure on the first port when the first optical flow sensor indicates there is no more flow, to stop applying negative pressure on the second port when the second optical flow sensor indicates there is no more flow, and to stop applying negative pressure on the third port when the third optical flow sensor indicates there is no more flow;

further wherein the controller circuitry is configured to detect a blockage in the first fluid line based on the first pressure sensor and the first optical flow sensor, to detect a blockage in the second fluid line based on the second pressure sensor and the second optical flow sensor, and to detect a blockage in the third fluid line based on the third pressure sensor and the third optical flow sensor, and to clear a detected blockage.

2. The system of claim 1 , wherein the controller is housed in a control housing enclosing the controller circuitry, the first, second and third pressure sensors, and the one or more valves.

3. The system of claim 1 , wherein the first, second and third optical flow sensors are housed in a flow sensor housing configured to be applied around the first, second and third fluid lines near a patient's head.

4. The system of claim 1 , wherein the controller is configured to apply positive pressure to deliver a lavage fluid out of the first port and to apply negative pressure to the first, second and third port to remove the lavage fluid when fluid lines are detected.

5. The system of claim 1 , wherein the one or more valves comprises a first, second and third suction valves.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2020
From: CHATURVEDI, JAGDISH; JANGIR, NITESH KUMAR; DEVAL, NACHIKET; PAPPU, RAMAKRISHNA; RAO, RAGHUVEER; ALI, MOHAMMED SAJID; KAKANI, VIMAL KISHORE; SHETTY, SUJAY SURESH KUMAR
To: COEO LABS PRIVATE LIMITED
Reel/Frame 054699/0590 →
MERGER Recorded Dec 18, 2020
From: COEO LABS PRIVATE LIMITED
To: INNACCEL TECHNOLOGIES PRIVATE LIMITED
Reel/Frame 054806/0603 →
Priority Claims (1)
IN 3988/CHE/2014 · Aug 14, 2014 · national
Continuity (3)
Continuation 15696146 · Sep 5, 2017
Continuation In Part 14826114 · Aug 13, 2015
Related Publication 20200398009A1 · Dec 24, 2020