IP Library Granted Patent US 9,662,435
Granted Patent B2
US 9,662,435 · App. 14/497,691 · Granted May 30, 2017

System and method for the effective, reliable and foolproof delivery of controlled amounts of a medical fluid

Inventors: Frank Levy (Fort Meyers, FL); Kimberley Levy (Fort Meyers, FL)
A61M5/007A61B5/00A61B90/39A61M16/0057A61M16/12A61M25/1018F17C13/00A61M2025/102
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Quick Facts
Patent No.
US 9,662,435
App. No.
14/497,691
Granted
May 30, 2017
Kind
B2
Abstract

A method for using CO 2 as a contrast material in medical imaging procedures is disclosed. The method includes providing a source of pressurized CO 2 . The step of providing includes connecting the source of pressurized CO2 to a compressed gas unit for controlling delivery of the CO 2 . The method also includes regulating pressure of the CO 2 delivered by the compressed gas unit, transmitting the pressurized CO 2 from the compressed gas unit to a control valve assembly for delivery to a patient in controlled dosages, and sequentially processing the CO 2 with the control valve assembly and delivering the CO 2 to the patient as a contrast media.

Claims (7)

1. A method for using CO 2 as a contrast material in medical imaging procedures, comprising:

providing a source of pressurized CO 2 :

connecting the source of pressurized CO 2 to a compressed gas unit for controlling delivery of the CO 2 ;

regulating pressure of the CO 2 delivered by the compressed gas unit;

transmitting the pressurized CO 2 from the compressed gas unit to a control valve assembly for delivery to a patient in controlled dosages;

sequentially processing the CO 2 with the control valve assembly and delivering the CO 2 to the patient as a contrast media, wherein the step of sequentially processing includes providing inlet and outlet conduits connected respectively to the compressed gas unit and the patient, and providing first and second syringes and the control valve assembly, which are interconnected between the inlet and outlet conduits, the control valve assembly includes a valve body having aligned inlet and outlet ports that are respectively communicably connectable to the inlet conduit and the outlet conduits, the valve body further including a first intermediate port to which the first syringe is selectively connected and a second intermediate port to which the second syringe is selectively connected, the control valve assembly further including a stopcock element mounted rotatably within the body and including a channel consisting essentially of a first channel segment and a second channel segment, the first channel segment and the second channel segment being selectively alignable with the inlet port and the first intermediate port to allow for communication between the inlet conduit and the first syringe, the first intermediate port and the second intermediate port to allow for communication between the first syringe and the second syringe, and the second intermediate port and the outlet port to allow for communication between the second syringe and the outlet conduit.

2. The method according to claim 1 , wherein the step of sequentially processing includes operating the control valve assembly to communicably join the compressed gas unit and the first syringe and transmitting CO 2 from the compressed gas unit to only the first syringe; adjusting the control valve assembly to communicably join the first and second syringes while isolating the first syringe from the compressed gas unit; operating the first syringe to transmit CO 2 from the first syringe to only the second syringe through the control valve assembly; adjusting the control valve assembly to, communicably join the second syringe to the outlet conduit and to isolate the first syringe and the compressed gas unit from the second syringe; and operating the second syringe to transmit CO 2 from the second syringe to only the patient through the outlet conduit.

Continuity (10)
Continuation In Part 13857448 · Apr 5, 2013
Continuation In Part 13068680 · May 17, 2011
Continuation In Part 12652845 · Jan 6, 2010
Continuation In Part 12210368 · Sep 15, 2008
Continuation In Part 11945674 · Nov 27, 2007
Continuation In Part 14497691 · Sep 26, 2014
Continuation In Part 13065621 · Mar 25, 2011
Provisional Application 60867323 · Nov 27, 2006
Provisional Application 61395892 · May 19, 2010
Related Publication 20150011879A1 · Jan 8, 2015