IP Library Granted Patent US 7,309,333
Granted Patent B2
US 7,309,333 · App. 10/933,619 · Granted Dec 18, 2007

Medication delivery system having selective automated or manual discharge

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Quick Facts
Patent No.
US 7,309,333
App. No.
10/933,619
Granted
Dec 18, 2007
Kind
B2
Abstract

A portable medication delivery system enables a patient to elect slow continuous auto-administration or rapid bolus self-administration of a fluid medication. The medication delivery system has an infusion pump, which includes a fluid storage chamber and a spring-driven piston positioned in the fluid storage chamber. The fluid storage chamber is initially charged with the medication and the infusion pump automatically delivers a continuous dosage of the medication at a first flow rate over a long time from the fluid storage chamber to a treatment site in the patient. A bolus injector is positioned in series or in parallel with the infusion pump and is charged with a bolus dosage of the treatment fluid from the fluid storage chamber for alternate manual self-injection of the medication into the treatment site at a higher second flow rate for a short time. The infusion pump flowpath includes a drip chamber having an in-line flow restriction, which converts a continuous flow stream from the fluid storage chamber to a drip stream. A sight window in the drip chamber permits the user to visually confirm the flow of medication through the infusion pump.

Claims (40)

1. A method for delivering a fluid medication to a treatment site of a patient comprising:

displacing a liquid fluid medication in an initial continuous stream from a fluid storage chamber to a pump flowpath by transitioning an elastic member from a more stressed position to a less stressed position, said pump flowpath including a flow restriction, a drip chamber, and an outlet tube, wherein said drip chamber has a drip chamber sidewall, an upper portion, and a lower portion, said flow restriction exiting into said drip chamber and said outlet tube positioned beneath said flow restriction in said lower portion separated from said flow restriction by a drip gap, wherein said outlet tube has an extension segment with an inlet opening and a smaller cross section than said drip chamber, said extension segment extending into said drip chamber through said lower portion toward said upper portion to define an annular fluid accumulation space between said outlet tube and said drip chamber sidewall in said lower portion, thereby segmenting said drip chamber into said fluid accumulation space and a remainder space;

converting said initial continuous stream of said fluid medication to a drip stream in said flow restriction;

accumulating at least some of said fluid medication exiting said flow restriction in said fluid accumulation space, while maintaining an air pocket in said remainder space to define an air-liquid interface between said fluid accumulation space and said remainder space;

spilling said fluid medication in said fluid accumulation space in an essentially continuous steady-state manner over an edge of said inlet opening of said extension segment extending into said drip chamber and fixed at said air-liquid interface, thereby reverting said drip stream to a reverted continuous stream in said outlet tube; and

conveying said reverted continuous stream of said fluid medication from said outlet tube to a downstream treatment site of a patient.

2. The method of claim 1 , wherein said a flow restriction is sized to convert said initial continuous stream of fluid medication to said drip stream.

3. The method of claim 1 , wherein said pump flowpath includes a sight window oriented to enable visual contact with said drip chamber.

4. The method of claim 1 further comprising conveying said fluid medication from said fluid storage chamber to a bolus chamber and discharging said fluid medication in an instantaneous mode from said bolus chamber to said downstream treatment site.

5. The method of claim 1 further comprising conveying said fluid medication from said fluid storage chamber to a bolus chamber and discharging said fluid medication in an essentially steady-state mode from said bolus chamber to said downstream treatment site.

6. A method for delivering a fluid medication to a treatment site of a patient comprising:

displacing a liquid fluid medication in an initial continuous stream from a fluid storage chamber to a pump flowpath by transitioning an elastic member from a more stressed position to a less stressed position, said pump flowpath including a flow restriction, a drip chamber, and an outlet tube, wherein said drip chamber has a drip chamber sidewall, an upper portion, and a lower portion, said flow restriction exiting into said drip chamber and said outlet tube positioned beneath said flow restriction in said lower portion separated from said flow restriction by a drip gap, wherein said outlet tube has an extension segment with an inlet opening and a smaller cross section than said drip chamber, said extension segment extending into said drip chamber through said lower portion toward said upper portion to define an annular fluid accumulation space between said outlet tube and said drip chamber sidewall in said lower portion, thereby segmenting said drip chamber into said fluid accumulation space and a remainder space;

converting said initial continuous stream of said fluid medication to a drip stream in said flow restriction;

accumulating at least some of said fluid medication exiting said flow restriction in said fluid accumulation space, while maintaining an air rocket in said remainder space to define an air-liquid interface between said fluid accumulation space and said remainder space;

spilling said fluid medication in said fluid accumulation space in an essentially continuous steady-state manner over an edge of said inlet opening of said extension segment extending into said drip chamber and fixed at said air-liquid interface, thereby reverting said drip stream to a reverted continuous stream in said outlet tube;

conveying said reverted continuous stream of said fluid medication from said outlet tube through a pump outlet to a bolus chamber; and

discharging said reverted continuous stream of said fluid medication in an essentially steady-state mode or an instantaneous mode from said bolus chamber to a downstream treatment site of a patient.

7. The method of claim 6 , wherein said flow restriction is sized to convert said initial continuous stream of fluid medication to said drip stream.

8. The method of claim 6 , wherein said pump flowpath includes a sight window oriented to enable visual contact with said drip chamber.

9. A method for delivering a fluid medication to a treatment site of a patient comprising:

displacing a liquid fluid medication from a fluid storage chamber to a pump flowpath by transitioning an elastic member from a more stressed position to a less stressed position, said pump flowpath including a flow restriction, a drip chamber, and an outlet tube, wherein said drip chamber has a drip chamber sidewall, an upper portion, and a lower portion, said flow restriction exiting into said drip chamber and said outlet tube positioned beneath said flow restriction in said lower portion separated from said flow restriction by a drip gap, wherein said outlet tube has an extension segment with an inlet opening and a smaller cross section than said drip chamber, said extension segment extending into said drip chamber through said lower portion toward said upper portion to define an annular fluid accumulation space between said outlet tube and said drip chamber sidewall in said lower portion, thereby segmenting said drip chamber into said fluid accumulation space and a remainder space;

conveying said fluid medication through said drip chamber to a downstream treatment site of a patient by accumulating at least some of said fluid medication exiting said flow restriction in said fluid accumulation space while maintaining an air pocket in said remainder space to define an air-liquid interface between said fluid accumulation space and said remainder space and spilling said fluid medication in said fluid accumulation space in an essentially continuous steady-state manner over an edge of said inlet opening of said extension segment extending into said drip chamber and fixed at said air-liquid interface; and

maintaining an essentially constant ratio of liquid to air in said drip chamber independent of the orientation of said drip chamber relative to the orientation of said fluid storage chamber.

10. The method of claim 9 further comprising converting said fluid medication from an initial continuous stream displaced from said fluid storage chamber to a drip stream in said flow restriction, wherein said fluid medication is conveyed through said drip chamber as said drip stream;

thereafter reverting said drip stream to a reverted continuous stream in said outlet tube; and

conveying said fluid medication from said outlet tube to said downstream treatment site of a patient as said reverted continuous stream.

11. The method of claim 10 , wherein said flow restriction is sized to convert said initial continuous stream of fluid medication to said drip stream.

12. The method of claim 9 , wherein said fluid accumulation space determines said ratio of liquid to air in said drip chamber.

13. The method of claim 12 , wherein air in said air pocket displaces said accumulated fluid medication from said fluid accumulation space when said drip chamber is inverted.

14. The method of claim 9 further comprising conveying said fluid medication from said fluid storage chamber to a bolus chamber and discharging said fluid medication in an instantaneous mode from said bolus chamber to said downstream treatment site.

15. The method of claim 9 further comprising conveying said fluid medication from said fluid storage chamber to a bolus chamber and discharging said fluid medication in an essentially steady-state mode from said bolus chamber to said downstream treatment site.

16. A method for delivering a fluid medication to a treatment site of a patient comprising:

displacing a first portion of a liquid fluid medication from a fluid storage chamber to a pump flowpath by transitioning an elastic member from a more stressed position to a less stressed position, said pump flowpath including a flow restriction, a drip chamber, and an outlet tube, wherein said drip chamber has a drip chamber sidewall, an upper portion, and a lower portion, said flow restriction exiting into said drip chamber and said outlet tube positioned beneath said flow restriction in said lower portion separated from said flow restriction by a drip gap, wherein said outlet tube has an extension segment with an inlet opening and a smaller cross section than said drip chamber, said extension segment extending into said drip chamber through said lower portion toward said upper portion to define an annular fluid accumulation space between said outlet tube and said drip chamber sidewall in said lower portion, thereby segmenting said drip chamber into said fluid accumulation space and a remainder space;

conveying said first portion of said fluid medication through said drip chamber while accumulating at least some of said first portion of said fluid medication exiting said flow restriction in said fluid accumulation space and maintaining an air pocket in said remainder space to define an air-liquid interface between said fluid accumulation space and said remainder space;

spilling said first portion of said fluid medication in said fluid accumulation space in an essentially continuous steady-state manner over an edge of said inlet opening of said extension segment extending into said drip chamber and fixed at said air-liquid interface, thereby discharging said first portion of said fluid medication from said drip chamber;

conveying a second portion of said fluid medication through a pump outlet to a bolus chamber;

discharging said second portion of said fluid medication from said bolus chamber to a downstream treatment site of a patient; and

maintaining an essentially constant ratio of liquid to air in said drip chamber independent of the orientation of said drip chamber relative to the orientation of said fluid storage chamber.

17. The method of claim 16 , wherein said fluid accumulation space determines said ratio of liquid to air in said drip chamber.

18. The method of claim 17 , wherein air in said air pocket displaces said accumulated first portion of said fluid medication from said fluid accumulation space when said drip chamber is inverted.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2008
From: BREG, INC.
To: LMA NORTH AMERICA, INC.
Reel/Frame 021243/0352 →
TERMINATION OF SECURITY INTEREST IN PATENTS Recorded Mar 20, 2008
From: WACHOVIA BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: BREG, INC.
Reel/Frame 020679/0626 →
NOTICE OF GRANT OF SECURITY INTEREST Recorded Oct 9, 2006
From: BREG INC.
To: WACHOVIA BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 018362/0602 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2004
From: MASON, JEFFREY T.
To: BREG, INC.
Reel/Frame 015792/0754 →