IP Library Patent Application 13552868
Patent Application
App. No. 13/552,868

AUTOMATED BLOOD SAMPLING SYSTEM AND METHOD

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Quick Facts
Patent No.
US None
App. No.
13/552,868
Abstract

Automated blood sampling systems and methods of use are disclosed which are configured to withdraw and test the blood of a mammal without clotting of the withdrawn blood in a main flow path of the automated blood sampling system. The automated blood sampling systems and methods do not require the use of an anti-blood-clotting solution or drug such as Heparin to avoid clotting of the blood in the main flow path of the automated blood sampling system.

Claims (56)

1 . A blood sampling system comprising:

a storage device for containing fluid;

a main flow path for flowing blood into from a mammal;

a testing flow path connected to the main flow path;

a testing device disposed in the testing flow path for testing the blood;

at least one valve configured to toggle between a first setting in which the main flow path is open and the testing flow path is closed and a second setting in which the main flow path is closed and the testing flow path is open; and

at least one pump configured to: pump the blood along the main flow path when the at least one valve is in the first setting and the blood is not disposed in the testing flow path; pump the blood from the main flow path into and along the testing flow path when the at least one valve is in the second setting; and pump the fluid along a reverse of the main flow path, to flush the blood out of the main flow path, when the at least one valve is in the first setting and the blood is disposed in the testing flow path;

wherein the at least one valve is configured to toggle between the first setting and the second setting to prevent the blood from clotting along the main flow path.

2 . The blood sampling system of claim 1 further comprising a waste container connected to the testing flow path, wherein the at least one pump is configured to pump the blood, after the blood has been tested by the testing device, out of the testing flow path into the waste container while the at least one valve is in the second setting.

3 . The blood sampling system of claim 1 wherein the at least one valve is configured to toggle between the first setting and the second setting so that the blood only remains stagnant along the main flow path for a range of 1 to 60 seconds.

4 . The blood sampling system of claim 1 wherein the at least one valve is configured to toggle between the first setting and the second setting so that only a range of 0.1 to 1 ml of the blood flows from the main flow path into the testing flow path.

5 . The blood sampling system of claim 1 wherein the testing flow path is in a range of 1 to 36 inches long and the main flow path is in the range of 1 to 18 inches long.

6 . The blood sampling system of claim 1 wherein the testing device is configured to test the blood disposed along the testing flow path while the at least one valve is in the first setting and the at least one pump is pumping the fluid along the reverse of the main flow path flushing the blood out of the main flow path.

7 . The blood sampling system of claim 1 wherein the at least one valve is configured to toggle between the first setting and the second setting to prevent the blood from clotting along the main flow path without the use of a solution for reducing blood clotting.

8 . The blood sampling system of claim 1 wherein the main flow path and the testing flow path do not form a continuous loop.

9 . The blood sampling system of claim 1 wherein the at least one valve comprises one double pinch valve with one portion of the double pinch valve connected to the main flow path and another portion of the double pinch valve connected to the testing flow path.

10 . The blood sampling system of claim 1 further comprising a flushing flow path connected to the testing flow path, a second valve, a second pump, and a second storage device for containing a second fluid, wherein after the blood in the testing flow path is tested by the testing device the second valve is configured to open, and the second pump is configured to pump the second fluid from the second storage device, along the flushing flow path, through the second valve, along the testing flow path, and over the testing device.

11 . A method of sampling blood without clotting comprising:

providing a blood sampling system comprising at least one pump, at least one valve, a main flow path, a testing flow path connected to the main flow path, a testing device, and a storage device;

pumping, using the at least one pump, blood from a mammal into and along the main flow path while the at least one valve is disposed in a first setting, in which the main flow path is open and the testing flow path is closed, and while the blood is not disposed in the testing flow path;

toggling the at least one valve to a second setting, in which the main flow path is closed and the testing flow path is open, and pumping, using the at least one pump, the blood from the main flow path into and along the testing flow path to the testing device;

toggling the at least one valve to the first setting while the blood is disposed in the testing flow path and pumping, using the at least one pump, fluid from the storage device along a reverse of the main flow path to flush the blood out of the main flow path before the blood in the main flow path has time to clot along the main flow path; and

testing the blood in the testing flow path using the testing device.

12 . The method of claim 11 further comprising toggling the at least one valve to the first setting and pumping, using the at least one pump, the blood out of the testing flow path into a waste container after the blood has been tested by the testing device.

13 . The method of claim 11 wherein during the toggling steps the at least one valve toggles between the first setting and the second setting so that the blood only remains stagnant along the main flow path for a range of 1 to 60 seconds.

14 . The method of claim 11 wherein during the toggling steps the at least one valve toggles between the first setting and the second setting so that only a range of 0.1 to 1 ml of the blood flows from the main flow path into the testing flow path.

15 . The method of claim 11 wherein the testing the blood step occurs while the at least one valve is in the first setting and while the at least one pump is pumping the fluid from the storage device along the reverse of the main flow path to flush the blood out of the main flow path before the blood in the main flow path has the time to clot along the main flow path.

16 . The method of claim 11 wherein the method prevents the blood from clotting along the main flow path without the use of a solution for reducing blood clotting.

17 . The method of claim 11 further comprising after the blood in the testing flow path is tested by the testing device a second valve opening and a second pump pumping a second fluid from a second storage device, along a flushing flow path, through the second valve, along the testing flow path, and over the testing device.

18 . A blood sampling system comprising:

a storage device for containing fluid;

a main flow path for flowing blood into from a mammal;

a testing flow path connected to the main flow path;

a testing device disposed in the testing flow path for testing the blood;

at least one valve configured to toggle between a first setting in which the main flow path is closed and the testing flow path is open and a second setting in which the main flow path is open and the testing flow path is closed; and

at least one pump configured to: pump the blood to be tested from the mammal into the main flow path, and then into and along the testing flow path to the testing device when the at least one valve is in the first setting; pump the fluid along a reverse of the main flow path, to flush the blood out of the main flow path, when the at least one valve is in the second setting and the blood is disposed at the testing device along the testing flow path; and pump the blood out of the testing flow path through the reverse of the testing flow path and through a portion of the reverse of the main flow path when the at least one valve is in the first setting after the blood in the testing flow path has been tested by the testing device;

wherein the at least one valve is configured to toggle between the first setting and the second setting to prevent the blood from clotting along the main flow path.

19 . The blood sampling system of claim 18 wherein the main flow path and the testing flow path form a continuous loop, the testing device is biocompatible, and the pump is configured to pump the blood out of the testing flow path and back into the mammal through the reverse of the testing flow path and through the portion of the reverse of the main flow path when the at least one valve is in the first setting after the blood in the testing flow path has been tested by the testing device.

20 . The blood sampling system of claim 18 wherein the at least one valve is configured to toggle between the first setting and the second setting so that the blood only remains stagnant along the main flow path for a range of 0.1 to 5 seconds.

21 . The blood sampling system of claim 18 wherein the at least one valve is configured to toggle between the first setting and the second setting so that only a range of 0.1 to 5 ml of the blood flows from the main flow path into the testing flow path.

22 . The blood sampling system of claim 18 wherein the testing flow path is in a range of 2 to 12 inches long and the main flow path is in the range of 2 to 12 inches long.

23 . The blood sampling system of claim 18 wherein the testing device is configured to test the blood disposed at the testing device along the testing flow path while the at least one valve is in the second setting and the at least one pump is pumping the fluid along the reverse of the main flow path.

24 . The blood sampling system of claim 18 wherein the at least one valve is configured to toggle between the first setting and the second setting to prevent the blood from clotting along the main flow path without the use of a solution for reducing blood clotting.

25 . The blood sampling system of claim 18 wherein the at least one valve comprises a plurality of valves which are disposed along opposite sides of the main flow path and the testing flow path.

26 . The blood sampling system of claim 18 wherein the at least one valve comprises two double pinch valves connected to both the main flow path and the testing flow path or four single pinch valves each connected to either the main flow path or the testing flow path.

27 . A method of sampling blood without clotting comprising:

providing a blood sampling system comprising at least one pump, at least one valve, a main flow path, a testing flow path connected to the main flow path, a testing device, and a storage device;

pumping, using the at least one pump, blood from a mammal into the main flow path and into, and then along the testing flow path to the testing device while the at least one valve is disposed in a first setting in which the main flow path is closed and the testing flow path is open;

toggling the at least one valve to a second setting, in which the main flow path is open and the testing flow path is closed, while the blood is disposed at the testing device in the testing flow path and pumping, using the at least one pump, fluid from the storage device along a reverse of the main flow path to flush the blood out of the main flow path before the blood in the main flow path has time to clot along the main flow path;

testing the blood in the testing flow path using the testing device; and

toggling the at least one valve to the first setting and pumping, using the at least one pump, the tested blood out of the testing flow path through a reverse of the testing flow path and through a portion of the reverse of the main flow path.

28 . The method of claim 27 wherein the main flow path and the testing flow path form a continuous loop, the testing device is biocompatible, and further comprising toggling the at least one valve to the first setting and pumping the tested blood out of the testing flow path and back into the mammal through the reverse of the testing flow path and through the portion of the reverse of the main flow path.

29 . The method of claim 27 wherein during the toggling steps the at least one valve toggles between the first setting and the second setting so that the blood only remains stagnant along the main flow path for a range of 0.1 to 5 seconds.

30 . The method of claim 27 wherein during the toggling steps the at least one valve toggles between the first setting and the second setting so that only a range of 0.1 to 5 ml of the blood flows from the main flow path into the testing flow path.

31 . The method of claim 27 wherein the testing the blood step occurs while the at least one valve is in the second setting and while the at least one pump is pumping the fluid from the storage device along the reverse of the main flow path to flush the blood out of the main flow path before the blood in the main flow path has the time to clot along the main flow path.

32 . The method of claim 27 wherein the method prevents the blood from clotting along the main flow path without the use of a solution for reducing blood clotting.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2017
From: HOSPIRA, INC.
To: ICU MEDICAL, INC.
Reel/Frame 041672/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION SERIAL NUMBER, TITLE AND FILING DATE PREVIOUSLY RECORDED ON REEL 028595 FRAME 0678. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ALL RIGHT, TITLE AND INTEREST PER THE CORRECTED ASSIGNMENT SUBMITTED HEREWITH.. Recorded Jul 27, 2012
From: MARKEY, BRIAN G.; LOWERY, MICHAEL G.
To: HOSPIRA, INC.
Reel/Frame 028653/0504 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2012
From: MARKEY, BRIAN G.; LOWERY, MICHAEL G.
To: HOSPIRA, INC.
Reel/Frame 028595/0678 →