IP Library Granted Patent US 9,375,557
Granted Patent B2
US 9,375,557 · App. 13/369,407 · Granted Jun 28, 2016

Hydraulic remote for a medical fluid injector

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Quick Facts
Patent No.
US 9,375,557
App. No.
13/369,407
Granted
Jun 28, 2016
Kind
B2
Abstract

A hand-held remote for a medical fluid injector includes a syringe and a conduit which may be coupled to a pressure transducer on a control circuit of the injector. Movement of a plunger within a syringe body on the syringe creates a pressure which is sensed by the pressure transducer and the control circuit responds to the sensed pressure by causing fluid to be ejected from, or drawn into, a syringe mounted to the injector. The pressure developed by the remote provides tactile feedback to an operator for improved control over injections.

Claims (42)

1. A method of controlling a medical fluid injector using a hydraulic remote coupled to the injector, the method comprising:

moving a plunger of the hydraulic remote to generate a pressure in a fluid medium, wherein the moving a plunger comprises a user manually engaging and manipulating the plunger;

sensing the pressure generated by the hydraulic remote in the fluid medium, wherein the sensing comprises:

generating a first signal associated with the sensed pressure, the first signal being generated by a first pressure transducer; and

generating a second signal associated with a preset threshold, the second signal being generated by a second pressure transducer; and

operating a motor of the injector to move a plunger drive ram of the injector, wherein the operating comprises using an output of a control circuit and where this output is based on the sensed pressure, wherein movement of the plunger drive ram from the operating comprises controlling movement of the plunger drive ram based on the first and second signals.

2. The method of claim 1 , wherein movement of the plunger drive ram from the operating, where this movement of the plunger drive ram is in an injection direction, occurs when the plunger on the hydraulic remote is moved in a first direction.

3. The method of claim 2 , wherein movement of the plunger drive ram from the operating, where this movement of the plunger drive ram is in an aspiration direction, occurs when the plunger on the hydraulic remote is moved in a second direction.

4. The method of claim 1 , wherein movement of the plunger drive ram from the operating occurs when the sensed pressure is greater than the preset threshold.

5. The method of claim 1 , wherein movement of the plunger drive ram from the operating comprises moving the plunger drive ram at a rate related to the sensed pressure.

6. The method of claim 1 , wherein movement of the plunger drive ram from the operating comprises moving the plunger drive ram at a rate that is proportional to the sensed pressure.

7. A method of operating a medical fluid injector having a control circuit, the method comprising:

electrically coupling a circuit board to the control circuit of the injector, wherein the circuit board comprises at least one pressure transducer, wherein the circuit board is separate from and operatively connected with the control circuit, and wherein the control circuit controls operation of a motor of the injector;

fluidly connecting a hydraulic remote to the at least one pressure transducer;

operating the hydraulic remote manually by a user;

sensing a pressure from the operating the hydraulic remote, wherein the sensing comprises using the at least one pressure transducer; and

controlling operation of the motor of the injector to move a plunger drive ram of the injector, wherein the controlling is based on the sensed pressure, wherein movement of the plunger drive ram by the controlling operation occurs when the sensed pressure is greater than a preset threshold, wherein the at least one pressure transducer comprises first and second pressure transducers, and wherein the sensing comprises:

generating a first signal associated with the sensed pressure, the first signal being generated by the first pressure transducer; and

generating a second signal associated with the preset threshold, the second signal being generated by the second pressure transducer;

wherein movement of the plunger drive ram by the controlling operation comprises controlling movement of the plunger drive ram based on the first and second signals.

8. The method of claim 7 , wherein movement of the plunger drive ram by the controlling operation comprises moving the plunger drive ram at a rate related to the sensed pressure.

9. The method of claim 7 , wherein movement of the plunger drive ram by the controlling operation comprises moving the plunger drive ram at a rate that is proportional to the sensed pressure.

10. The method of claim 7 , wherein the operating the hydraulic remote comprises moving a plunger of the hydraulic remote to generate the pressure in a fluid medium for the hydraulic remote, wherein the moving a plunger of the hydraulic remote comprises a user manually engaging and manipulating the plunger of the hydraulic remote.

11. The method of claim 10 , wherein movement of the plunger drive ram from the controlling operation, where this movement of the plunger drive ram is in an injection direction, occurs when the plunger on the hydraulic remote is moved in a first direction.

12. The method of claim 11 , wherein movement of the plunger drive ram from the controlling operation, where this movement of the plunger drive ram is in an aspiration direction, occurs when the plunger on the hydraulic remote is moved in a second direction.

13. A method of controlling a medical fluid injector using a hydraulic remote coupled to the injector, the method comprising:

moving a plunger of the hydraulic remote, wherein the moving a plunger comprises a user manually engaging and manipulating the plunger, and wherein the plunger acts on a fluid medium for the hydraulic remote;

using a first pressure transducer to sense a pressure that is generated in the fluid medium by the moving;

using a second pressure transducer to sense the pressure that is generated in the fluid medium by the moving,

outputting a first signal from the first pressure transducer to a control circuit for the injector, wherein the first signal is representative of a magnitude of the pressure that is sensed by the first pressure transducer;

operating a motor of the injector to move a plunger drive ram of the injector in response to movement of the plunger of the hydraulic remote, wherein the operating comprises using an output of the control circuit and where this output is based on the first signal from the first pressure transducer; and

comparing the pressure in the fluid medium that is sensed by the second pressure transducer to a pressure threshold, wherein the injector is enabled when the pressure that is sensed by the second pressure transducer exceeds the pressure threshold such that the first signal from the first pressure transducer controls movement of the plunger drive ram of the injector by the operating, and wherein the injector is inoperative by the hydraulic remote when the pressure that is sensed by the second pressure transducer fails to exceed the pressure threshold.

14. The method of claim 13 , wherein movement of the plunger drive ram from the operating, where this movement of the plunger drive ram is in an injection direction, occurs when the plunger on the hydraulic remote is moved in a first direction.

15. The method of claim 14 , wherein movement of the plunger drive ram from the operating, where this movement of the plunger drive ram is in an aspiration direction, occurs when the plunger on the hydraulic remote is moved in a second direction.

16. The method of claim 13 , wherein movement of the plunger drive ram from the operating comprises moving the plunger drive ram at a rate related to the pressure sensed by the first pressure transducer.

17. The method of claim 13 , wherein movement of the plunger drive ram from the operating comprises moving the plunger drive ram at a rate that is proportional to the pressure sensed by the first pressure transducer.

18. A method of controlling a medical fluid injector using a hydraulic remote coupled to the injector, the method comprising:

moving a plunger of the hydraulic remote, wherein the moving a plunger comprises a user manually engaging and manipulating the plunger, and wherein the plunger acts on a fluid medium for the hydraulic remote;

using a first pressure transducer to sense a pressure that is generated in the fluid medium by the moving;

using a second pressure transducer to sense the pressure that is generated in the fluid medium by the moving;

outputting a first signal from the first pressure transducer to a control circuit for the injector, wherein the first signal is representative of a magnitude of the pressure that is sensed by the first pressure transducer; and

operating a motor of the injector to move a plunger drive ram of the injector in response to movement of the plunger of the hydraulic remote, wherein the operating comprises using an output of the control circuit and where this output is based on the first signal from the first pressure transducer, and wherein the operating comprises the output of the control circuit being based on both the first signal from the first pressure transducer and a second signal from the second pressure transducer.

Assignments (5)
RELEASE OF PATENT SECURITY INTERESTS RECORDED AT REEL 032480, FRAME 0001 Recorded Nov 16, 2023
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: THERAKOS, INC.; MALLINCKRODT INTERNATIONAL FINANCE S.A.; MALLINCKRODT CB LLC; MALLINCKRODT FINANCE GMBH; MALLINCKRODT US HOLDINGS LLC (F/K/A MALLINCKRODT US HOLDINGS INC.); MALLINCKRODT CARRIBEAN, INC.; MALLINCKRODT US POOL LLC; MNK 2011 LLC (F/K/A MALLINCKRODT INC.); LUDLOW LLC (F/K/A LUDLOW CORPORATION); CNS THERAPEUTICS, INC.; MALLINCKRODT ENTERPRISES HOLDINGS LLC (F/K/A MALLINCKRODT ENTERPRISES HOLDINGS, INC.); MALLINCKRODT ENTERPRISES LLC; MALLINCKRODT LLC; LAFAYETTE PHARMACEUTICALS LLC; LIEBEL-FLARSHEIM COMPANY LLC; MALLINCKRODT BRAND PHARMACEUTICALS LLC (F/K/A MALLINCKRODT BRAND PHARMACEUTICALS, INC.); MALLINCKRODT VETERINARY, INC.; MALLINCKRODT US HOLDINGS LLC; IMC EXPLORATION COMPANY; MEH, INC.; MALLINCKRODT HOSPITAL PRODUCTS IP UNLIMITED COMPANY (F/K/A MALLINCKRODT HOSPITAL PRODUCTS IP LIMITED); MALLINCKRODT ARD IP UNLIMITED COMPANY (F/K/A MALLINCKRODT ARD IP LIMITED); OCERA THERAPEUTICS LLC (F/K/A OCERA THERAPEUTICS, INC.); SPECGX LLC; STRATATECH CORPORATION; SUCAMPO PHARMA AMERICAS LLC; VTESSE LLC (F/K/A VTESSE INC.); MALLINCKRODT PHARMACEUTICALS IRELAND LIMITED; MALLINCKRODT PHARMA IP TRADING UNLIMITED COMPANY (F/K/A MALLINCKRODT PHARMA IP TRADING D.A.C.); INFACARE PHARMACEUTICAL CORPORATION; ST SHARED SERVICES LLC; IKARIA THERAPEUTICS LLC; INO THERAPEUTICS LLC
Reel/Frame 065609/0322 →
RELEASE OF SECURITY INTEREST Recorded Nov 30, 2015
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: LIEBEL-FLARSHEIM COMPANY LLC
Reel/Frame 037172/0094 →
SECURITY INTEREST Recorded Mar 19, 2014
From: MALLINCKRODT INTERNATIONAL FINANCE S.A.; MALLINCKRODT CB LLC; MALLINCKRODT FINANCE GMBH; MALLINCKRODT US HOLDINGS INC.; MALLINCKRODT CARIBBEAN, INC.; MALLINCKRODT US POOL LLC; MALLINCKRODT INC.; LUDLOW CORPORATION; CNS THERAPEUTICS, INC.; ENTERPRISES HOLDINGS, INC.; MALLINCKRODT ENTERPRISES LLC; MALLINCKRODT LLC; LAFAYETTE PHARMACEUTICALS LLC; LIEBEL-FLARSHEIM COMPANY LLC; MALLINCKRODT BRAND PHARMACEUTICALS, INC; MALLINCKRODT VETERINARY, INC.; MALLINCKRODT US HOLDINGS LLC; IMC EXPLORATION COMPANY; MEH, INC; MALLINCKRODT ENTERPRISES HOLDINGS, INC.
To: DEUTSCHE BANK AG NEW YORK BRANCH
Reel/Frame 032480/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2012
From: FAGO, FRANK M.; KNIPFER, JAMES E.; NEER, CHARLES S.
To: LIEBEL-FLARSHEIM COMPANY
Reel/Frame 027794/0863 →
CHANGE OF NAME Recorded Mar 2, 2012
From: LIEBEL-FLARSHEIM COMPANY
To: LIEBEL-FLARSHEIM COMPANY LLC
Reel/Frame 027795/0572 →