IP Library › Granted Patent US 11,547,793
Granted Patent B2
US 11,547,793 · App. 16/341,285 · Granted Jan 10, 2023

Fluid injector with syringe engagement mechanism

Inventors: Kevin Cowan (Allison Park, PA); Michael Spohn (Fenelton, PA); Barry Tucker (Verona, PA); James Dedig (Pittsburgh, PA); Gregory Johnston (Trafford, PA); Michael McDermott (Pittsburgh, PA); David Berry (Kittanning, PA); Adam Steege (Durham, NC); Keith Lipford (Baltimore, MD); Chet Larrow (Baltimore, MD); Mariano Mumpower (Baltimore, MD); Danica Gordon (Baltimore, MD)
Assignee: BAYER HEALTHCARE LLC
A61M5/14546A61M5/007A61M5/1454A61M5/14216A61M5/14586A61M5/2425A61M2005/14506A61M2005/14553
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,547,793
App. No.
16/341,285
Granted
Jan 10, 2023
Kind
B2
Abstract

An engagement mechanism associated with a reciprocally movable piston of a fluid injector is configured for releasably engaging an engagement portion at a proximal end of a rolling diaphragm syringe having a flexible sidewall configured for rolling upon itself when acted upon by the piston. The engagement mechanism has a plurality of engagement elements reversibly and pivotally movable about a pivot pin relative to the engagement portion of the syringe between a first position, where the plurality of engagement elements are disengaged from the engagement portion of the syringe, and a second position, where the plurality of engagement elements are pivotally movable about the pivot pin in a radially inward direction to engage with the engagement portion of the syringe. The engagement mechanism further has a drive mechanism for moving the plurality of engagement elements between the first position and the second position.

Claims (37)

1. An engagement mechanism associated with a reciprocally movable piston of a fluid injector and configured for releasably engaging an engagement portion at a proximal end of a rolling diaphragm syringe, wherein the rolling diaphragm syringe comprises a flexible sidewall configured for rolling upon itself when acted upon by the reciprocally movable piston, the engagement mechanism comprising:

a plurality of engagement elements, wherein each engagement element is reversibly and pivotally movable about a respective pivot pin relative to the engagement portion of the syringe between a first position, where the plurality of engagement elements are disengaged from the engagement portion of the syringe, and a second position, where the plurality of engagement elements are pivotally moved in a radially inward direction to engage with the engagement portion of the syringe, and wherein at least one of the plurality of engagement elements has a pointed distal end configured for at least partially embedding into the engagement portion of the syringe when the plurality of engagement elements are in the second position; and

a drive mechanism for moving the plurality of engagement elements between the first position and the second position.

2. The engagement mechanism of claim 1 , wherein the plurality of engagement elements are progressively movable from the first position to the second position with movement of the reciprocally movable piston in a proximal direction to continuously increase a gripping force on the engagement portion of the syringe.

3. The engagement mechanism of claim 1 , wherein the drive mechanism is operatively connected to the reciprocally movable piston such that the plurality of engagement elements are movable from the first position to the second position with movement of the reciprocally movable piston in a proximal direction.

4. The engagement mechanism of claim 3 , wherein the plurality of engagement elements are movable from the second position to the first position with movement of the reciprocally movable piston in a distal direction.

5. The engagement mechanism of claim 1 , wherein the drive mechanism moves the plurality of engagement elements between the first position and the second position independently of movement of the reciprocally movable piston in a proximal direction or a distal direction.

6. The engagement mechanism of claim 1 , wherein the drive mechanism comprises at least one of a linear electric motor or actuator, a rotary electric motor or actuator, a solenoid, a pneumatic mechanism, a hydraulic mechanism, an electromagnetic mechanism, an electroactive polymer mechanism, a nitinol wire-based mechanism, and any combination thereof.

7. The engagement mechanism of claim 1 , wherein the drive mechanism comprises a rod linearly or rotatably movable by a motor, and wherein linear or rotary movement of the rod reversibly moves the plurality of engagement elements between the first position and the second position.

8. The engagement mechanism of claim 1 , wherein the plurality of engagement elements are biased to one of the first position or the second position by a biasing mechanism.

9. The engagement mechanism of claim 8 , wherein the biasing mechanism is a spring.

10. An engagement mechanism associated with a reciprocally movable piston of a fluid injector and configured for releasably engaging an engagement portion at a proximal end of a rolling diaphragm syringe, wherein the rolling diaphragm syringe comprises a flexible sidewall configured for rolling upon itself when acted upon by the reciprocally movable piston, the engagement mechanism comprising:

a plurality of engagement elements, wherein each engagement element is reversibly and pivotally movable about a respective pivot pin relative to the engagement portion of the syringe between a first position, where the plurality of engagement elements are disengaged from the engagement portion of the syringe, and a second position, where the plurality of engagement elements are pivotally moved in a radially inward direction to engage with the engagement portion of the syringe, and wherein at least one of the plurality of engagement elements has a pointed distal end configured for at least partially embedding into the engagement portion of the syringe when the plurality of engagement elements are in the second position; and

a drive mechanism for moving the plurality of engagement elements between the first position and the second position, the drive mechanism comprising:

an outer piston sleeve fixed relative to the reciprocally movable piston of the fluid injector;

an abutment section movably received within the outer piston sleeve at a distal end of the outer piston sleeve, wherein the abutment section is operatively engaged with the plurality of engagement elements; and

an inner piston sleeve movably received within the outer piston sleeve and connected with the abutment section such that movement of the inner piston sleeve causes movement of the abutment section, wherein the inner piston sleeve is movable by a piston rod movably coupled to the reciprocally movable piston,

wherein movement of the reciprocally movable piston in a proximal direction moves the outer piston sleeve proximally relative to the abutment section, and

wherein proximal movement of the outer piston sleeve relative to the abutment section moves the plurality of engagement elements from the first position to the second position.

11. The engagement mechanism of claim 10 , wherein the abutment section has an outer engagement surface configured for contacting a closed end wall of the syringe and a central opening on the outer engagement surface configured for receiving the engagement portion of the syringe.

12. The engagement mechanism of claim 10 , wherein the plurality of engagement elements are progressively movable from the first position to the second position with movement of the reciprocally movable piston in the proximal direction to continuously increase a gripping force on the engagement portion of the syringe.

13. The engagement mechanism of claim 10 , wherein the plurality of engagement elements are movable from the second position to the first position with movement of the reciprocally movable piston in the distal direction.

14. The engagement mechanism of claim 10 , wherein the plurality of engagement elements are biased to one of the first position or the second position by a biasing mechanism.

15. The engagement mechanism of claim 14 , wherein the biasing mechanism is a spring.

16. A fluid injector comprising:

at least one injector head comprising at least one reciprocally movable piston;

an engagement mechanism associated with the at least one reciprocally movable piston and configured for releasably engaging an engagement portion at a proximal end of a rolling diaphragm syringe, wherein the rolling diaphragm syringe comprises a flexible sidewall configured for rolling upon itself when acted upon by the at least one reciprocally movable piston, the engagement mechanism comprising:

a plurality of engagement elements, wherein each engagement element is reversibly and pivotally movable about a respective pivot pin relative to the engagement portion of the syringe between a first position, where the plurality of engagement elements are disengaged from the engagement portion of the syringe, and a second position, where the plurality of engagement elements are pivotally moved in a radially inward direction to engage with the engagement portion of the syringe, and wherein at least one of the plurality of engagement elements has a pointed distal end configured for at least partially embedding into the engagement portion of the syringe when the plurality of engagement elements are in the second position; and

a drive mechanism for moving the plurality of engagement elements between the first position and the second position.

17. The fluid injector of claim 16 , wherein the drive mechanism comprises at least one of a linear electric motor or actuator, a rotary electric motor or actuator, a solenoid, a pneumatic mechanism, a hydraulic mechanism, an electromagnetic mechanism, an electroactive polymer mechanism, a nitinol wire-based mechanism, and any combination thereof.

18. The fluid injector of claim 16 , wherein the drive mechanism comprises a rod linearly or rotatably movable by a motor, and wherein linear or rotary movement of the rod reversibly moves the plurality of engagement elements between the first position and the second position.

19. The fluid injector of claim 16 , wherein the drive mechanism comprises:

an outer piston sleeve fixed relative to the at least one reciprocally movable piston of the fluid injector;

an abutment section movably received within the outer piston sleeve at a distal end of the outer piston sleeve, wherein the abutment section is operatively engaged with the plurality of engagement elements; and

an inner piston sleeve movably received within the outer piston sleeve and connected with the abutment section such that movement of the inner piston sleeve causes movement of the abutment section, wherein the inner piston sleeve is movable by a piston rod movably coupled to the at least one reciprocally movable piston,

wherein movement of the at least one reciprocally movable piston in a proximal direction moves the outer piston sleeve proximally relative to the abutment section, and

wherein proximal movement of the outer piston sleeve relative to the abutment section moves the plurality of engagement elements from the first position to the second position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2019
From: COWAN, KEVIN; SPOHN, MICHAEL; TUCKER, BARRY; DEDIG, JAMES; MCDERMOTT, MICHAEL; BERRY, DAVID; LIPFORD, KEITH; LARROW, CHET; MUMPOWER, MARIANO; GORDON, DANICA; JOHNSTON, GREGORY; STEEGE, ADAM
To: BAYER HEALTHCARE LLC
Reel/Frame 051058/0542 →
Continuity (3)
Provisional Application 62545693 · Aug 15, 2017
Provisional Application 62409044 · Oct 17, 2016
Related Publication 20200046894A1 · Feb 13, 2020
Cited By (4)
US 12,239,818 US 12,427,247 US 12,521,483 US 12,746,330