IP Library Granted Patent US 10,124,126
Granted Patent B2
US 10,124,126 · App. 14/256,488 · Granted Nov 13, 2018

System and methods for ventilation through a body cavity

Inventors: Mark A. Borden (Boulder, CO); Benjamin S. Terry (Lincoln, NE)
Assignees: THE REGENTS OF THE UNIVERSITY OF COLORADO, A BODY CORPORATE; BOARD OF REGENTS OF THE UNIVERSITY OF NEBRASKA
A61M13/003A61M1/28A61M1/32A61M16/04A61M2202/0208A61M2205/3344A61M2205/3653A61M2205/502A61M2230/202A61M2230/205A61M2230/50
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Quick Facts
Patent No.
US 10,124,126
App. No.
14/256,488
Granted
Nov 13, 2018
Kind
B2
Abstract

A system and methods for the delivery of oxygen through a body cavity of a subject using oxygen microbubbles. Through circulation of oxygen microbubbles through the body cavity, oxygen and carbon dioxide exchange may occur. Overall improvement in extending survival rate time during emergency situations caused by pulmonary or similar oxygen-intake restricting injury and/or failure may be achieved through use of the invented system and methods.

Claims (19)

1. A method for administering oxygen to a subject, comprising the steps of:

providing a supply device containing a reaction chamber;

mixing in the reaction chamber a lipid solution received from a first inlet of a supply device and an oxygen gas received from a second inlet of the supply device to form a mixture;

cooling the mixture using a cooling material passing through the supply device from a third inlet to an outlet, said cooling step creating in the reaction chamber a mix of a plurality of oxygen microbubbles and a foam;

transporting the mix to a collection container;

adding a saline solution to the collection container to separate the plurality of oxygen microbubbles and the foam;

venting from the collection container a gas formed during said adding step;

collecting the plurality of microbubbles into a syringe;

delivering by a pump device from the syringe one or more oxygen microbubbles to a body cavity of the subject;

monitoring by a monitoring device including one or more sensors data resultant from delivery of the one or more oxygen microbubbles to the body cavity;

receiving by a computer device the data; and

processing the data by the computer device to measure effectiveness of extrapulmonary respiration.

2. The method for administering oxygen to a subject according to claim 1 further comprising the step of receiving by a waste receptacle waste from the subject.

3. The method for administering oxygen to a subject according to claim 1 , wherein the data includes one or more of the following: intra-abdominal pressure, blood gas levels of oxygen, blood gas levels of carbon dioxide, heart pulse, blood pressure, and heart ejection faction.

4. The method for administering oxygen to a subject according to claim 1 further comprising the step of using by the computer device the processed data to adjust the delivery of the one or more oxygen microbubbles to the subject.

5. The method for administering oxygen to a subject according to claim 1 , wherein the one or more oxygen microbubbles comprise a shell composed of a phospholipid monolayer.

6. The method for administering oxygen to a subject according to claim 1 , wherein each microbubble is 10-25 micrometers (μm) in diameter.

7. The method for administering oxygen to a subject according to claim 1 , wherein each microbubble is 1-8 micrometers (μm) in diameter.

8. The method for administering oxygen to a subject according to claim 1 , wherein the body cavity of the subject of the delivery step includes one or more of the following cavities: intraperitoneal, gastrointestinal, pleural, cranial, vertebral, and pericardial.

Assignments (2)
CONFIRMATORY LICENSE Recorded Apr 24, 2015
From: UNIVERSITY OF COLORADO
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 035488/0838 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2014
From: BORDEN, MARK A.; TERRY, BENJAMIN S.
To: THE REGENTS OF THE UNIVERSITY OF COLORADO, A BODY CORPORATE
Reel/Frame 034550/0328 →
Continuity (2)
Provisional Application 61813626 · Apr 18, 2013
Related Publication 20140316331A1 · Oct 23, 2014