Combined shim and RF coil arrangement
View Patent ↗A coil arrangement for a magnetic resonance tomography device includes at least two antennas connected in parallel to one another for RF signals and connected in series with one another for direct current signals.
1. A coil arrangement for a magnetic resonance tomography (MRT) device, the coil arrangement comprising:
at least two antennas connected in parallel to one another for RF signals, and connected in series with one another for direct current signals.
2. The coil arrangement of claim 1 , wherein each antenna of the at least two antennas is connected to a shim signal source supplying a direct current signal via at least one inductor.
3. The coil arrangement of claim 1 , wherein the at least two antennas are connected to a radio-frequency signal source supplying an MRT radio-frequency signal via at least one capacitor in each case.
4. The coil arrangement of claim 1 , wherein the at least two antennas are connected to one another via capacitors.
5. The coil arrangement of claim 1 , wherein the at least two antennas are connected to one another via inductors.
6. The coil arrangement of claim 1 , wherein the at least two antennas are connected in parallel to one another by inductors and capacitors for the RF signals and are connected in series to one another for the direct current signals.
7. The coil arrangement of claim 1 , wherein for a direct current signal from a shim signal source, inductors of the coil arrangement are provided in a conducting manner, as a short circuit to, between, or to and between antennas, or a combination thereof, and
wherein for a direct current signal from the shim signal source, capacitors of the coil arrangement are provided as a block to, between, or to and between antennas.
8. The coil arrangement of claim 1 , wherein for an MRT radio-frequency signal from a radio-frequency signal source, inductors of the coil arrangement are provided as a block to, between, or to and between antennas, and
wherein for an MRT radio-frequency signal from a radio-frequency signal source, capacitors of the coil arrangement are provided in a conducting manner, as a short circuit to, between, or to and between antennas, or a combination thereof.
9. The coil arrangement of claim 1 , wherein the at least two antennas are arranged in or on a plurality of layers of boards lying one above the other.
10. The coil arrangement of claim 1 , wherein the at least two antennas are arranged in a plurality of layers above one another in or on boards of a multilayer board lying one above the other.
11. The coil arrangement of claim 1 , wherein the at least two antennas are connected to one another in a plurality of layers in or on boards lying one above the other via inductors arranged in, between, or in and between the boards and via capacitors arranged in, between, or in and between the boards.
12. The coil arrangement of claim 10 , wherein inductors, capacitors, or the inductors and the capacitors are arranged on an uppermost of the boards, under a lowermost of the boards, or on the uppermost of the boards and under the lowermost of the boards.
13. The coil arrangement of claim 12 , wherein the inductors, the capacitors, or the inductors and the capacitors are arranged on a side of the uppermost of the boards or the lowermost of the boards facing away from other boards.
14. The coil arrangement of claim 2 , wherein the inductors are configured on a multilayer board.
15. The coil arrangement of claim 14 , wherein the inductors are configured on the multilayer board as a surface mounted device (SMD), with through-plating, or as the SMD and with through-plating.
16. The coil arrangement of claim 1 , wherein the at least two antennas are configured to transmit an MRT radio-frequency signal on a multichannel basis.
17. The coil arrangement of claim 1 , wherein the at least two antennas are configured to receive an MRT radio-frequency signal on a multichannel basis.
18. The coil arrangement of claim 1 , wherein the coil arrangement is an MRT local coil.