IP Library Granted Patent US 11,395,611
Granted Patent B2
US 11,395,611 · App. 17/525,682 · Granted Jul 26, 2022

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.
A61B5/150221A61B5/153A61B5/15003A61B5/155A61B5/150236A61B5/150244A61B5/150251A61B5/150389A61B5/150503A61B5/150992A61B10/007A61B10/0048A61B10/0051A61B2010/008A61B2010/0061A61B2010/0077
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Quick Facts
Patent No.
US 11,395,611
App. No.
17/525,682
Granted
Jul 26, 2022
Kind
B2
Abstract

An apparatus includes a housing, a fluid reservoir, a flow control mechanism, and an actuator. The housing defines an inner volume and has an inlet port that can be fluidically coupled to a patient and an outlet port. The fluid reservoir is disposed in the inner volume to receive and isolate a first volume of a bodily-fluid. The flow control mechanism is rotatable in the housing from a first configuration, in which a first lumen places the inlet port is in fluid communication with the fluid reservoir, and a second configuration, in which a second lumen places the inlet port in fluid communication with the outlet port. The actuator is configured to create a negative pressure in the fluid reservoir and is configured to rotate the flow control mechanism from the first configuration to the second configuration after the first volume of bodily-fluid is received in the fluid reservoir.

Claims (36)

1. A blood transfer system, comprising:

a first lumen-containing device configured to be fluidically coupleable to a patient;

a transfer device having an inlet port in fluid communication with the first lumen-containing device, the transfer device defining a first fluid flow path and a second fluid flow path, the transfer device having a seal member disposed at an end portion of the first fluid flow path, a first volume of blood allowed to flow through the first fluid flow path toward the seal member when the transfer device is in a first state, the transfer device retaining the first volume of blood and allowing a second volume of blood to flow through the second fluid flow path while bypassing at least a portion of the first fluid flow path when the transfer device is in a second state; and

a second lumen-containing device fluidically coupleable to a sample reservoir external to the transfer device, the second lumen-containing device configured to allow the second volume of blood to flow from the second fluid flow path into the sample reservoir when the transfer device is in the second state.

2. The blood transfer system of claim 1 , wherein the inlet port defines a lumen, the lumen defining a first portion of the first fluid flow path when the transfer device is in the first state and a first portion of the second fluid flow path when the transfer device is in the second state.

3. The blood transfer system of claim 2 , wherein the second volume of blood flows past at least a second portion of the first fluid flow path when the transfer device is in the second state.

4. The blood transfer system of claim 1 , wherein the first lumen-containing device is a needle configured to be at least partially insertable into the patient, the first volume of blood is at least equal to a volume of a lumen of the needle.

5. The blood transfer system of claim 1 , wherein the transfer device transitions from the first state to the second state without manual intervention.

6. The blood transfer system of claim 1 , wherein the transfer device automatically transitions from the first state to the second state in response to the first volume of blood substantially filling an inner volume at least partially defined by the seal member.

7. The blood transfer system of claim 6 , wherein the transfer device retains the first volume of blood in the inner volume and allows the second volume of blood to flow through the second fluid flow path while bypassing at least a portion of the inner volume when the transfer device is in the second state.

8. The blood transfer system of claim 1 , wherein the transfer device automatically changes blood flow from flowing through the first flow path to flowing through the second flow path when the first volume of blood substantially fills an inner volume in fluid communication with the seal member.

9. The blood transfer system of claim 8 , wherein the transfer device retains the first volume of blood in the inner volume and allows the second volume of blood to flow through the second fluid flow path while bypassing at least a portion of the inner volume when the transfer device is in the second state.

10. The blood transfer system of claim 1 , wherein the seal member forms a fluidic seal with at least one surface of the transfer device to define a portion of an inner volume configured to receive the first volume of blood therein.

11. The blood transfer system of claim 10 , wherein the transfer device retains the first volume of blood in the inner volume and allows the second volume of blood to flow through the second fluid flow path while bypassing at least a portion of the inner volume when the transfer device is in the second state.

12. The blood transfer system of claim 1 , wherein the seal member transitions the transfer device from the first state to the second state, the transfer device allowing a pressure differential as the seal member transitions the transfer device between the first state and the second state.

13. The blood transfer system of claim 12 , wherein the transfer device is in the second state when the pressure differential equalizes.

14. The blood transfer system of claim 1 , wherein the transfer device has an outlet port disposed at an end portion of the second fluid flow path, the second volume of blood flows from the second fluid flow path into the second lumen-containing device when the transfer device is in the second state and the second lumen-containing device is fluidically coupled to the outlet port of the transfer device.

15. The blood transfer system of claim 1 , wherein the first lumen-containing device is a catheter configured to be at least partially insertable into the patient, the first volume of blood is less than 5 ml.

16. A blood transfer system, comprising:

a first lumen-containing device configured to be fluidically coupleable to a patient;

a transfer device having an inlet port in fluid communication with the first lumen-containing device and an outlet port, the transfer device defining a first fluid flow path, the transfer device having a seal member disposed at an end portion of the first fluid flow path, a first volume of blood allowed to flow through the first fluid flow path toward the seal member when the transfer device is in a first state, the transfer device defining a second fluid flow path configured to receive a second volume of blood such that the second volume of blood flows from the inlet port via the second fluid flow path toward the outlet port while bypassing at least a portion of the first fluid flow path when the transfer device is in a second state; and

a second lumen-containing device fluidically coupleable to a sample reservoir external to the transfer device, the second lumen-containing device configured to allow the second volume of blood to flow from the outlet port to the sample reservoir when the transfer device is in the second state.

17. The blood transfer system of claim 16 , wherein the inlet port defines a lumen, the lumen defining a first portion of the first fluid flow path when the transfer device is in the first state and a first portion of the second fluid flow path when the transfer device is in the second state.

18. The blood transfer system of claim 17 , wherein the second volume of blood flows past at least a second portion of the first fluid flow path when the transfer device is in the second state.

19. The blood transfer system of claim 16 , wherein the first lumen-containing device is a needle configured to be at least partially insertable into the patient, the first volume of blood is at least equal to a volume of a lumen of the needle.

20. The blood transfer system of claim 16 , wherein the transfer device transitions from the first state to the second state without manual intervention.

21. The blood transfer device of claim 16 , wherein the transfer device automatically transitions from the first state to the second state when the first volume of blood substantially fills an inner volume at least partially defined by the seal member.

22. The blood transfer device of claim 21 , wherein the transfer device retains the first volume of blood in the inner volume and allows the second volume of blood to flow through the second fluid flow path while bypassing at least a portion of the inner volume when the transfer device is in the second state.

23. The blood transfer system of claim 16 , wherein the transfer device automatically changes blood flow from flowing through the first flow path to flowing through the second flow path when the first volume of blood substantially fills an inner volume at least partially defined by the seal member.

24. The blood transfer device of claim 23 , wherein the transfer device retains the first volume of blood in the inner volume and allows the second volume of blood to flow through the second fluid flow path while bypassing at least a portion of the inner volume when the transfer device is in the second state.

25. The blood transfer system of claim 16 , wherein the seal member forms a fluidic seal with at least one surface of the transfer device to define a portion of an inner volume such that the first volume of blood is retained therein.

26. The blood transfer device of claim 25 , wherein the transfer device retains the first volume of blood in the inner volume and allows the second volume of blood to flow through the second fluid flow path while bypassing at least a portion of the inner volume when the transfer device is in the second state.

27. The blood transfer system of claim 16 , wherein the seal member transitions the transfer device from the first state to the second state, the transfer device allowing a pressure differential as the seal member transitions the transfer device between the first state and the second state.

28. The blood transfer system of claim 27 , wherein the transfer device is in the second state when the pressure differential equalizes.

29. The blood transfer system of claim 16 , wherein the outlet port is disposed at an end portion of the second fluid flow path, the second volume of blood flows from the second fluid flow path into the second lumen-containing device when the transfer device is in the second state and the second lumen-containing device is fluidically coupled to the outlet port of the transfer device.

30. The blood transfer system of claim 16 , wherein the first lumen-containing device is a catheter configured to be at least partially insertable into the patient, the first volume of blood is less than 5 ml.

Assignments (3)
PATENT SECURITY AGREEMENT Recorded Jan 2, 2024
From: MAGNOLIA MEDICAL TECHNOLOGIES, INC.
To: SYMBIOTIC CAPITAL AGENCY LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 066178/0969 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2022
From: BULLINGTON, GREGORY J.; PATTON, RICHARD G.; MIAZGA, JAY M.; GAW, SHAN E.
To: MAGNOLIA MEDICAL TECHNOLOGIES, INC.
Reel/Frame 061770/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2022
From: BULLINGTON, GREGORY J.; PATTON, RICHARD G.; MIAZGA, JAY M.; GAW, SHAN E.
To: MAGNOLIA MEDICAL TECHNOLOGIES, INC.
Reel/Frame 060235/0700 →
Continuity (8)
Continuation 16376745 · Apr 5, 2019
Continuation 14662676 · Mar 19, 2015
Continuation 14494208 · Sep 23, 2014
Continuation 14493796 · Sep 23, 2014
Continuation PCTUS2013043289 · May 30, 2013
Continuation In Part 13904691 · May 29, 2013
Provisional Application 61652887 · May 30, 2012
Related Publication 20220071533A1 · Mar 10, 2022
Cited By (13)
US 12,186,080 US 12,193,816 US 12,290,363 US 12,471,815 US 12,471,816 US 12,478,300 US 12,478,301 US 12,502,109 US 12,551,150 US 12,564,341 US 12,575,772 US 12,576,204 US 12,638,445