Claims
- 1. Magnetic resonance imaging apparatus comprising:
- resonant RF circuit means for resonating at a predetermined radio frequency;
- transmission line means connected to said RF circuit means for applying a DC control signal to said circuit means and also adapted for conducting RF signals between said transmission line means and an external RF receiver and/or transmitter, said transmission line means including an inner conductor and a substantially cylindrical outer conductor surrounding and coaxial with said inner conductor, said outer conductor having inner and outer surfaces;
- coaxial choke assembly means, disposed along said transmission line means, for preventing RF signals from flowing along said transmission line means outer conductor outer surface and for permitting DC signals to flow along said transmission line means outer conductor outer surface;
- means coupled to said RF transmission line means and to said resonant RF circuit means for preventing said resonant circuit means from resonating at said predetermined frequency in response to said DC control signal; and
- further structure disposed in proximity to said resonant circuit means and connected to said preventing means for conducting said DC control signal but not RF signals between said resonant circuit means and said transmission line means.
- 2. Magnetic resonance imaging apparatus as in claim 1 wherein said further structure includes a conductor and an RF choke connected between said conductor and said preventing means.
- 3. Magnetic resonance imaging apparatus as in claim 1 wherein said further structure includes a conductor and an RF choke connected between said conductor and said transmission line means.
- 4. Magnetic resonance imaging apparatus as in claim 1 wherein said coaxial choke assembly means includes:
- a coiled section of said transmission line means, said coiled section including plural turns and whose outer conductor provides an inductance; and
- a lumped fixed capacitance connected in parallel with said coiled section's outer conductor and providing a capacitance, said inductance and capacitance together resonating at said predetermined radio frequency, said choke assembly means substantially impeding the flow of RF signals via the outer conductor outer surface of said transmission line coiled section.
- 5. Magnetic resonance imaging apparatus as in claim 4 wherein said coiled section and capacitance are encased within a cylindrical housing.
- 6. Magnetic resonance imaging apparatus as in claim 1 wherein said preventing means includes at least one switching diode.
- 7. Magnetic resonance imaging apparatus as in claim 1 wherein said preventing means includes at least one varactor diode.
- 8. Magnetic resonance imaging apparatus as in claim 1 further including bypass capacitor means coupled to said further structure for bypassing stray RF signals flowing on said further structure.
- 9. Magnetic resonance imaging apparatus as in claim 1 wherein said resonant circuit means conducts DC control current in a first direction between said transmission line means and said preventing means, and said further structure conducts DC control current in a second direction opposite said first direction between said transmission line means and said preventing means.
- 10. Magnetic resonance imaging apparatus comprising:
- resonant RF circuit means for resonating at a predetermined radio frequency;
- a coaxial transmission line connected to said RF circuit means, said transmission line means including an inner conductor and a substantially cylindrical outer conductor surrounding and coaxial with said inner conductor, said outer conductor having inner and outer surfaces;
- in-line coaxial choke assembly means connected in series with said transmission line for substantially impeding RF signals flowing along said tranmission line means outer conductor outer surface and for permitting DC signals to flow along said transmission line means outer conductor;
- means coupled to said RF transmission line means and to said resonant RF circuit means for preventing said resonant cirucit means from resonating at said predetermined frequency in response to a DC control signal appearing between said coaxial transmission line inner and outer conductors; and
- an untuned RF circuit means connected between said preventing means and said transmission line for conducting said DC control signal but not RF signals between said preventing means and said transmission line.
- 11. Magnetic resonance imaging apparatus as in claim 10 wherein said untuned circuit means conducts said DC control signal in a first direction between said preventing means and said transmission line, and a portion of said resonant circuit means conducts said DC control signal in a second direction opposite said first direction between said preventing means and said transmission line.
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation-in-part of commonly-assigned application Ser. No. 91,916 of Arakawa et al filed Sept. 1, 1987 entitled "MRI QD RF Coil Having Diode Switched Detuning Circuit Producing Reduced Artifact", which application is expressly incorporated herein by reference.
US Referenced Citations (9)
Non-Patent Literature Citations (1)
Entry |
"Quadrature RF Coil and Decoupling Systems for Mid Field NMR Imaging", Misic et al., vol. 1, Book of Abstracts, Society of Magnetic Resonance in Medicine, p. 83, (Aug. 19, 1986). |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
91916 |
Sep 1987 |
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