IP Library Granted Patent US 9,682,185
Granted Patent B2
US 9,682,185 · App. 13/898,743 · Granted Jun 20, 2017

Apheresis bowl with improved vibration characteristics

Inventors: Bruce Brunner (Bridgewater, MA); Christopher J. Caputo (Dighton, MA)
Assignee: Haemonetics Corporation
A61M1/3693B04B5/0442B04B7/08A61M2205/42B04B2005/0464
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Quick Facts
Patent No.
US 9,682,185
App. No.
13/898,743
Granted
Jun 20, 2017
Kind
B2
Abstract

A centrifuge bowl for separating whole blood into blood components includes a rotatable body, and inlet, and a plurality of vibration reduction members. The rotatable body has a body portion and a neck portion. The body portion defines an interior for receiving whole blood, and the body is rotatable to separate the whole blood into a plurality of blood components. The inlet is in fluid communication with the interior of the rotatable body, and is configured to introduce the whole blood into the rotatable body. The plurality of vibration reduction members are spaced about the neck portion, and are configured to reduce vibration of the centrifuge bowl as the bowl is rotated.

Claims (26)

1. A centrifuge bowl for separating whole blood into blood components comprising:

a rotatable body having a body portion, a neck portion, and a shoulder portion extending between the neck portion and the body portion, the body portion defining an interior for receiving whole blood, the body being rotatable about an axis of rotation to separate the whole blood into a plurality of blood components;

an inlet in fluid communication with the interior of the rotatable body, the inlet configured to introduce the whole blood into the rotatable body; and

three or more identical vibration reduction members, the vibration reduction members including ribs extending radially outward from and equally spaced about the neck portion, each of the ribs extending from the neck portion to the shoulder portion, reducing in height with increasing distance from the axis of rotation, and having a longitudinal axis that is perpendicular to and intersects the axis of rotation of the rotatable body, the vibration reduction members configured to strengthen the rigidity of the neck portion, and to increase the natural vibration frequency of the neck portion without increasing the natural vibration frequency of the body portion, thereby reducing the vibration of the centrifuge bowl as the bowl is rotated.

2. A centrifuge bowl according to claim 1 , wherein the rib members are curved.

3. A centrifuge bowl according to claim 1 , wherein the rib members are straight.

4. A centrifuge bowl according to claim 1 further comprising an outlet, the outlet in fluid communication with the interior of the bowl and configured to remove one or more of the blood components from the centrifuge bowl.

5. A centrifuge bowl according to claim 1 further comprising a rotary seal attached to the rotatable body, the rotary seal fluidly coupling the inlet to the body portion.

6. A centrifuge bowl according to claim 1 further comprising a core, the core being coaxial with the interior and creating a whole blood separation region between an outer wall of the core and an inner wall of the rotatable body.

7. A centrifuge bowl according to claim 1 , wherein the rotatable body is frustoconical.

8. A blood processing system for separating whole blood into blood components comprising:

a venous access device for drawing whole blood from a subject;

a blood component separation device for separating whole blood into a plurality of components, the blood component separation device including a centrifuge bowl having a body portion, a neck portion, and a shoulder portion extending between the neck portion and the body portion, the body portion defining an interior for receiving the whole blood, the body being rotatable about an axis of rotation to separate the whole blood into the plurality of blood component, the neck portion having three or more identical vibration reduction members, the vibration reduction members including ribs extending radially outward from and equally spaced about the neck portion each of the ribs extending from the neck portion to the shoulder portion, reducing in height with increasing distance from the axis of rotation, and having a longitudinal axis that is perpendicular to and intersects the axis of rotation of the body portion, the vibration reduction members configured to strengthen the rigidity of the neck portion, and increase the natural vibration frequency of the neck portion without increasing the natural vibration frequency of the body portion, thereby reducing the vibration of the centrifuge bowl as the bowl is rotated, the centrifuge bowl having an inlet in fluid communication with the interior;

means for extracting at least one blood component from the separation device;

at least one storage container for storing the at least one blood component extracted from the blood component separation device; and

means for returning remaining blood components to the subject.

9. A blood processing system according to claim 8 , wherein the rib members are curved.

10. A blood processing system according to claim 8 , wherein the rib members are straight.

11. A blood processing system according to claim 8 , wherein the blood component separation device further includes an outlet, the outlet in fluid communication with the interior of the bowl and configured to remove one or more of the blood components from the centrifuge bowl.

12. A blood processing system according to claim 8 wherein the blood component separation device further includes a rotary seal attached to the rotatable body, the rotary seal fluidly coupling the inlet to the body portion.

13. A blood processing system according to claim 8 wherein the blood component separation device further includes a core, the core being coaxial with the interior and creating a whole blood separation region between an outer wall of the core and an inner wall of the rotatable body.

14. A blood processing system according to claim 8 , wherein the centrifuge bowl is frustoconical.

15. A centrifuge bowl according to claim 8 , wherein the three or more vibration reduction members are configured to reduce vibration of the centrifuge bowl by preventing and/or reducing the generation of vibrations.

16. A centrifuge bowl according to claim 8 , wherein the three or more vibration reduction members are integrally formed with the centrifuge bowl.

17. A centrifuge bowl according to claim 1 , wherein the vibration reduction members are configured to reduce vibration of the centrifuge bowl by preventing and/or reducing the generation of vibrations.

18. A centrifuge bowl according to claim 1 , wherein the three or more vibration reduction members are integrally formed with the centrifuge bowl.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2017
From: BRUNNER, BRUCE
To: HAEMONETICS CORPORATION
Reel/Frame 043006/0861 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2017
From: CAPUTO, CHRISTOPHER J.
To: HAEMONETICS CORPORATION
Reel/Frame 042355/0580 →
Continuity (2)
Continuation PCTUS2010057820 · Nov 23, 2010
Related Publication 20130331252A1 · Dec 12, 2013