IP Library Granted Patent US 10,039,483
Granted Patent B2
US 10,039,483 · App. 15/832,091 · Granted Aug 7, 2018

Fluid diversion mechanism for bodily-fluid sampling

Inventors: Gregory J. Bullington (Seattle, WA); Richard G. Patton (Seattle, WA); Jay M. Miazga (Langley, WA); Shan E. Gaw (Seattle, WA)
Assignee: Magnolia Medical Technologies, Inc.
A61B5/150221A61B5/15003A61B5/155A61B5/150099A61B5/150206A61B5/150213A61B5/150236A61B5/150251A61B5/150267A61B5/150351A61B5/150389A61B5/150946A61B5/150992A61B10/007A61B10/0045A61B10/0048A61B10/0051A61B5/150259A61B2010/0061A61B2010/0077
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Quick Facts
Patent No.
US 10,039,483
App. No.
15/832,091
Granted
Aug 7, 2018
Kind
B2
Abstract

An apparatus includes a housing, a flow control mechanism, and an actuator. At least a portion of the flow control mechanism is movably disposed within the housing. The apparatus further includes an inlet port and an outlet port, and defines a fluid reservoir. The outlet port is fluidically coupled to a second fluid reservoir and is fluidically isolated from the first fluid reservoir. The actuator is configured to move the flow control mechanism between a first configuration, in which the inlet port is placed in fluid communication with the fluid reservoir such that the fluid reservoir receives a first flow of bodily-fluid, and a second configuration, in which the inlet port is placed in fluid communication with the outlet port.

Claims (48)

1. A blood sequestration device, comprising:

a housing having an inlet port configured to be fluidically coupled to a patient and an outlet port configured to be fluidically coupled to a sample reservoir;

a fluid reservoir disposed in the housing and at least partially defined by a seal member, the fluid reservoir configured to receive an initial volume of blood withdrawn from the patient; and

a vent disposed in the housing and configured to allow air to exit the housing as blood enters the fluid reservoir,

the blood sequestration device configured to allow the initial volume of blood to flow from the inlet port to the fluid reservoir,

the blood sequestration device further configured to allow a subsequent volume of blood to flow from the inlet port toward the outlet port via a sampling flow path, thereby bypassing the fluid reservoir and the initial volume of blood sequestered therein.

2. The blood sequestration device of claim 1 , wherein the initial volume of blood is less than approximately 5 ml.

3. The blood sequestration device of claim 1 , wherein the initial volume of blood is less than approximately 0.5 ml.

4. The blood sequestration device of claim 1 , wherein the initial volume of blood is approximately 0.1 ml to approximately 0.5 ml.

5. The blood sequestration device of claim 1 , wherein the outlet port is fluidically isolated from the fluid reservoir.

6. The blood sequestration device of claim 1 , wherein the seal member is configured to prevent the flow of air through the vent into the fluid reservoir.

7. The blood sequestration device of claim 1 , wherein the initial volume of blood is fluidically isolated in the fluid reservoir.

8. The blood sequestration device of claim 1 , wherein the blood sequestration device is configured to automatically transition from a first operating mode in which the initial volume of blood is allowed to flow from the inlet port to the fluid reservoir, to a second operating mode in which the subsequent volume of blood is allowed to flow from the inlet port toward the outlet port via the sampling flow path.

9. A blood sequestration device, comprising:

a housing having an inlet port configured to be fluidically coupled to a patient and an outlet port configured to be fluidically coupled to a sample reservoir;

a first fluid flow path disposed in the housing and configured to allow an initial volume of blood to flow from the inlet port to a fluid reservoir defined at least partially by the housing;

a vent disposed in the housing and configured to allow air to exit the housing as blood enters the fluid reservoir; and

a second fluid flow path disposed in the housing and configured to allow a subsequent volume of blood to flow from the inlet port toward the outlet port;

the blood sequestration device configured to transition from a first operating mode in which the initial volume of blood is allowed to flow from the inlet port to the fluid reservoir via the first fluid flow path, to a second operating mode in which the subsequent volume of blood is allowed to flow from the inlet port toward the outlet port via the second fluid flow path, thereby bypassing the fluid reservoir and the initial volume of blood sequestered therein.

10. The blood sequestration device of claim 9 , wherein the initial volume of blood is less than approximately 5 ml.

11. The blood sequestration device of claim 9 , wherein the initial volume of blood is less than approximately 0.5 ml.

12. The blood sequestration device of claim 9 , wherein the initial volume of blood is approximately 0.1 ml to approximately 0.5 ml.

13. The blood sequestration device of claim 9 , wherein the outlet port is fluidically isolated from the fluid reservoir.

14. The blood sequestration device of claim 9 , wherein the initial volume of blood is fluidically isolated in the fluid reservoir.

15. The blood sequestration device of claim 9 , wherein the fluid reservoir is at least partially defined by a seal member disposed in the housing.

16. The blood sequestration device of claim 15 , wherein the seal member is configured to prevent the flow of air through the vent into the fluid reservoir.

17. The blood sequestration device of claim 9 , wherein the blood sequestration device is configured to transition from the first operating mode to the second operating mode without manual intervention.

18. A blood sequestration device, comprising:

a lumen-containing device configured to be fluidically coupled to a patient;

a housing having an inlet port configured to be fluidically coupled to the lumen-containing device, and an outlet port configured to be fluidically coupled to a sample reservoir;

a reservoir at least partially defined by the housing, the reservoir configured to receive an initial volume of blood withdrawn from the patient; and

a vent disposed in the housing and configured to allow air to exit the housing as blood enters the reservoir,

the reservoir configured to transition from a first state such that the initial volume of blood flows from the inlet port toward a seal defining a portion of the reservoir, to a second state such that a subsequent volume of blood can flow from the inlet port toward the outlet port, thereby bypassing the reservoir and the initial volume of blood sequestered therein.

19. The blood sequestration device of claim 18 , wherein the initial volume of blood is less than approximately 5 ml.

20. The blood sequestration device of claim 18 , wherein the initial volume of blood is less than approximately 0.5 ml.

21. The blood sequestration device of claim 18 , wherein the initial volume of blood is approximately 0.1 ml to approximately 0.5 ml.

22. The blood sequestration device of claim 18 , wherein the seal is configured to prevent the flow of air through the vent into the reservoir.

23. The blood sequestration device of claim 18 , wherein the initial volume of blood is fluidically isolated in the reservoir.

24. A blood sequestration device, comprising:

a lumen-containing device configured to be fluidically coupled to a patient; and

a housing having an inlet port configured to be fluidically coupled to the lumen-containing device, and an outlet port configured to be fluidically coupled to a sample reservoir,

the housing defining a first fluid flow path and a second fluid flow path, the housing configured to transition from a first operating mode in which an initial volume of blood is allowed to flow from the inlet port toward a seal via the first fluid flow path, to a second operating mode in which a subsequent volume of blood is allowed to flow from the inlet port toward the outlet port via the second fluid flow path,

the housing including a vent configured to allow air to exit the housing as blood enters the first fluid flow path,

the seal configured to transition from a first state to a second state to place the housing in the second operating mode such that the subsequent volume of blood can flow toward the outlet port via the second fluid flow path and bypass the initial volume of blood sequestered in the first fluid flow path.

25. The blood sequestration device of claim 24 , wherein the initial volume of blood is less than approximately 5 ml.

26. The blood sequestration device of claim 24 , wherein the initial volume of blood is less than approximately 0.5 ml.

27. The blood sequestration device of claim 24 , wherein the initial volume of blood is approximately 0.1 ml to approximately 0.5 ml.

28. The blood sequestration device of claim 24 , wherein the initial volume of blood is fluidically isolated in the first fluid flow path.

Assignments (4)
PATENT SECURITY AGREEMENT Recorded Jan 2, 2024
From: MAGNOLIA MEDICAL TECHNOLOGIES, INC.
To: SYMBIOTIC CAPITAL AGENCY LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 066178/0969 →
RELEASE OF SECURITY INTEREST Recorded Jan 31, 2022
From: FISH & RICHARDSON PC
To: MAGNOLIA MEDICAL TECHNOLOGIES, INC
Reel/Frame 058825/0707 →
LIEN Recorded Mar 30, 2021
From: MAGNOLIA MEDICAL TECHNOLOGIES, INC.
To: FISH & RICHARDSON P.C.
Reel/Frame 057204/0676 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2018
From: BULLINGTON, GREGORY J.; PATTON, RICHARD G., MD; GAW, SHAN E.; MIAZGA, JAY M.
To: MAGNOLIA MEDICAL TECHNOLOGIES, INC.
Reel/Frame 045764/0929 →
Continuity (6)
Continuation 14712431 · May 14, 2015
Continuation 14455263 · Aug 8, 2014
Continuation 13954528 · Jul 30, 2013
Division 13650554 · Oct 12, 2012
Provisional Application 61546954 · Oct 13, 2011
Related Publication 20180092584A1 · Apr 5, 2018
Cited By (13)
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