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Powerhead control in a power injection system

a technology of power injection system and power head, which is applied in the field of contrast media injector system, can solve the problems of reducing the accuracy of stored injection protocol

Inactive Publication Date: 2006-04-13
MALLINCKRODT INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0011] Accordingly embodiments of the present invention relate to improving power injectors that are used to inject contrast media and other fluids in a patient or animal.
[0013] Another aspect of the present invention relates to a touch screen interface for the powerhead of the contrast media injector system. The touch screen display can be driven from software so that it is configurable and not dependent on hardwired switches, LED indicators or 7-segment displays. The powerhead can therefore, provide the same functionality as the console display, thereby eliminating the console if desired. In addition to more data and more controls being available at the powerhead, help instructions and other contextual assistance can be provided to help the operator run the equipment.
[0017] One additional aspect of the present invention relates to a dual head injector that utilizes tubing in which the fluid paths remain separate until substantially at the patient. By utilizing this type of V-tubing, the elasticity of the fluid delivery components (e.g., syringe, tubing, etc.) can be easily accommodated and there is reduced lag time in administration of a desired fluid to a patient.
[0020] It will be appreciated that both the test injection and patency check have common characteristics that distinguish them from normal programming of an injector. Specifically, both are an injection that is separately enabled from the stored injection protocol to be administered to the patient, and both are separate from the stored injection protocol, i.e., they may selectively be conducted, or not, at the operator's discretion. Thus, the operator need not perform a patency check or test injection, but has the ready option to do so without altering a stored injection protocol. While the patency check and test injection are thus functionally and operationally separated from a stored protocol, they are nevertheless programmatically controlled injections, and use parameters that may be derived from the later, stored injection protocol, e.g., the flow rates or use of fluids is modeled after the planned injection. Because the test injection and patency check are programmatically controlled injections, they may accurately mimic the stored injection protocol in the relevant aspects, without the effort of human involvement and the possibility for human error. Furthermore, because they are programmatically controlled, it is possible to calculate the fluid requirements of the patency check or test injection, which may be combined with the planned subsequent injection to ensure that there is sufficient injectable fluid available, thus ensuring that time is not lost re-filling the injector (which may involve re-entering the scanning room after it has been sealed) as may occur if a patency check or test injection is manually performed. Finally, in the context of a dual headed injector, a test injection or patency check, because it is programmatically controlled, may include functionality to automatically return the injector tubing to an appropriate initial state, e.g., a state in which the tubing is filled with saline or contrast media, or a mixture, as the operator and physician prefers for the imaging procedure.
[0023] A further aspect of the present invention relates to an injector powerhead for injection from first and second syringes, which may contain fluids of two different types, in which the injector permits an operator to identify the type of fluid contained in the first or the second syringe, thus enabling the operator to use either syringe location for either type of fluid, at the operator's discretion.

Problems solved by technology

Nevertheless, the potential for accidentally injecting air into a patient remains a serious safety concern.
Unfortunately, operators have found it cumbersome to use the hand-operated movement buttons and to read the injector head gauges and displays, for several reasons, not the least of which is the necessary tilting of the injector head between the upward, filling position to the downward, injection position, changing the positions of the hand-operated movement buttons relative to the operator, and at some tilt angles rendering the gauges or displays difficult to read.
Unfortunately, the necessity of incorporating a magnetic detector into the outer housing of the injector head increases the complexity and expense of manufacturing the injector head.

Method used

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  • Powerhead control in a power injection system
  • Powerhead control in a power injection system
  • Powerhead control in a power injection system

Examples

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Embodiment Construction

[0038] Referring to FIG. 1A, an injector 20 in accordance with the present invention includes various functional components, such as a powerhead 22, a console 24 and powerpack 26. Syringes 36a and 36b are mounted to the injector 20 in faceplates 28a and 28b of the powerhead 22, and the various injector controls are used to fill the syringe with, e.g., contrast media for a CT, Angiographic or other procedure, which media is then injected into a subject under investigation under operator or pre-programmed control.

[0039] The injector powerhead 22 includes a hand-operated knobs 29a and 29b for use in controlling the movement of the internal drive motors engaged to syringes 36a and 36b, and a display 30 for indicating to the operator the current status and operating parameters of the injector. The console 24 includes a touch screen display 32 which may be used by the operator to remotely control operation of the injector 20, and may also be used to specify and store programs for automat...

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PUM

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Abstract

A dual head contrast media injection system performs a patency check or test injection, determining flow rate and / or flow volume from the programmed protocol. The tubing that connects syringes to a patient shares only a short common section near to the patient. Appropriate injection steps are taken to compensate for tubing elasticity. A wireless remote control and a touch screen control are provided, improving functionality and information delivery. The display brightness is controlled based on the ambient light, and the display panel includes a double swivel permitting re-orientation. The orientation of the display may also be controlled based on, e.g., the current step, the tilt angle of the powerhead, or a manual control. Furthermore, the display is customizable to identify the type of fluid (contrast, saline, etc.) on either side of the injector, to provide matched color coding, and to provide a folder / tab analogy for retrieving injection protocol parameters.

Description

CROSS REFERENCE TO RELATED APPLICATION [0001] The present application is related to co-pending and concurrently filed application Ser. No. ______, entitled IMPROVEMENTS TO POWERHEAD OF A POWER INJECTION SYSTEM, which is hereby incorporated by reference herein in its entirety.FIELD OF THE INVENTION [0002] The present invention relates to contrast media injector systems and, more particularly to improvements thereto. BACKGROUND OF THE INVENTION [0003] In many medical environments, a medical fluid is injected into a patient during diagnosis or treatment. One example is the injection of contrast media into a patient to improve CT, Angiographic, Magnetic Resonance or Ultrasound imaging, using a powered, automatic injector. [0004] Injectors suitable for these and similar applications typically must use a relatively large volume syringe and be capable of producing relatively large flow rates and injection pressures. For this reason, injectors for such applications are typically motorized, ...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): A61M1/00
CPCA61M5/007A61M5/14546A61M5/14566A61M5/16827A61M5/172A61M39/10A61M2205/3362A61M2205/3523A61M2205/3561A61M2205/3592A61M2205/50A61M2205/505A61M2205/6081
Inventor SMALL, JAMES R.BROOKS, DAVID M.NEER, CHARLES S.FAGO, FRANK M.WAGNER, GARY S.BORGEMENKE, ELAINELAFFERTY, SEAN
Owner MALLINCKRODT INC
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