Claims
- 1. A coil for magnetic resonance imaging comprising:
a first electrically conductive ring forming an inferior end of the coil; a plurality of legs extending from the first electrically conductive ring, each of the plurality of legs having a linear portion and a tapered portion; and a second electrically conductive ring forming a superior end of the coil, the second electrically conductive ring being connected to the tapered portion of the plurality of legs.
- 2. The coil of claim 1 further comprising a plurality of reactive electrical components connected within the electrically conductive rings and the legs.
- 3. The coil of claim 1, wherein the second electrically conductive ring has a diameter that is smaller than a diameter of the first electrically conductive ring.
- 4. The coil of claim 3, wherein the tapered portion of the plurality of legs has a radius that is selected to maximize homogeneity in a field pattern of the coil.
- 5. The coil of claim 4, wherein the field pattern is a magnetic flux density in at least one of an XZ and a YZ imaging plane.
- 6. The coil of claim 1, wherein the tapered portion of the plurality of legs comprises at least one angled linear segmented section.
- 7. The coil of claim 1, wherein the first electrically conductive ring and the second electrically conductive ring are circular.
- 8. The coil of claim 1, wherein the first electrically conductive ring and the second electrically conductive ring are elliptical.
- 9. The coil of claim 1, wherein at least one of the electrically conductive rings is tapered larger relative to the center of said coil to provide a concentrated magnetic flux density within a region centered within the coil.
- 10. The coil of claim 1, further comprising at least one additional magnetic resonance (RF) coil positioned to at least partially overlap the coil.
- 11. The coil of claim 1, wherein the coil is a receive only coil.
- 12. The coil of claim 1, wherein the coil is a transmit/receive coil.
- 13. The coil of claim 1, wherein a ratio of a length of the legs to a diameter of the first electrically conductive ring is approximately 1:1.
- 14. A coil for magnetic resonance imaging comprising:
a first electrically conductive ring forming an inferior end of the coil; a second electrically conductive ring forming a superior end of the coil; and a plurality of legs extending between the first electrically conductive ring and the second electrically conductive ring, each of the plurality of legs having a linear center portion and a tapered portion at each end.
- 15. A method of making a birdcage resonator having a plurality of legs to provide improved homogeneity while maintaining signal-to-noise performance, the method comprising the steps of:
constructing a wire model of the birdcage resonator; calculating a magnetic flux density within the birdcage resonator; and adjusting at least one of an end ring diameter and a radius of taper the plurality of legs to improve homogeneity of the magnetic flux density.
- 16. A method as claimed in claim 11, wherein the improved homogeneity of the magnetic flux density is determined by applying a Biot-Savart model to the wire model.
- 17. A method as claimed in claim 11, wherein the homogeneity of the magnetic flux density is determined by experimental verification.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/109,831 filed Nov. 25, 1998.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60109831 |
Nov 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09449256 |
Nov 1999 |
US |
Child |
10068300 |
Feb 2002 |
US |