EP0459569A2

Radio frequency quadrature coil construction for magnetic resonance imaging (MRI) apparatus.

Abstract

A first circular ring of a given inductance is coupled to second and third circular rings by a plurality of equally spaced parallel rods to form a birdcage coil. The second and third rings have a combined inductance the same as that of the first ring and are located adjacent to each other at an end of the rods opposite the first ring. A tune-detune circuit is located at the end of and couples each of the rods to the second and third rings. This circuit includes parallel capacitances whose combined value is the same as the capacitance coupling the rods to the first ring to selectively tune the coil to a given radio-frequency. PIN diodes selectively rf couple the parallel capacitances respectively to the second and third rings. Direct current diode bias voltages are applied to the second and third rings which act as busses for the bias voltages. The second and third rings are split in half and capacitively coupled to permit applying relatively higher (DC) bias voltages to the diodes. The coil is divided into upper and lower halves with open space between the rods of the upper half to permit access to a patient's head and for patient comfort during examination.

EP0459569A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 23 May 2011, 15.3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

21 claims: 3 independent, 18 dependent

  1. 1
    A radio frequency (rf) quadrature coil construction for use in a magnetic resonance imaging (MRI) system comprising:a first electrically conductive annular ring;second and third spaced electrically conductive annular rings spaced from the first annular ring, said second and third annular rings being relatively closely spaced to one another and having a combined inductance substantially the same as the inductance of the first ring to thereby operate in circuit as a single ring;a plurality of spaced electrically conductive rods coupled at one end thereof to said first ring and at the other end to said second and third rings;and    coil tuning and detuning means coupled to said rods and rings for selectively tuning and detuning the structure formed by said rods and rings relative to a given radio frequency such that in response to a sensed given magnetic field a quadrature signal of said given radio frequency is induced in said structure only when tuned.
  2. 13
    A radio frequency (rf) quadrature coil construction for use in a magnetic resonance imaging (MRI) system comprising:a first electrically conductive circular ring split into two mirror image halves;second and third spaced electrically conductive circular rings spaced from the first annular ring, said second and third annular rings each being split into mirror image halves, said second and third rings being relatively closely spaced to one another and having a combined inductance substantially the same as the inductance of the first ring;a plurality of spaced electrically conductive rods coupled at one end thereof to said first ring and at the other opposing end to said second and third rings;capacitive tuning means coupled to said rods and rings for tuning the structure formed by said rods and rings to a given radio frequency such that in response to a sensed given magnetic field, a signal of said given radio frequency is induced in said structure;and    switch means connected to said rods at the opposing ends and to said second and third rings for selectively coupling and decoupling said rods to said second and third rings with respect to a signal of said given frequency to thereby respectively tune and detune the structure.
  3. 20
    A radio frequency (rf) quadrature coil construction for use in a magnetic resonance imaging apparatus comprising:a first annular ring of a given inductance;at least one second annular ring of substantially the same inductance as said first ring;a plurality of rods equally spaced from each other and capacitively coupled at one rod end to the first ring and at the other rod end to the at least one second ring to form the coil into a tuned circuit;and    a detune circuit coupled between each rod one end and the at least one second annular ring for selectively rf decoupling the rods from the at least one ring.