3d printed mri coil, phantom and shimming element
US-2024230800-A9 · Jul 11, 2024 · US
US2020200845A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020200845-A1 |
| Application number | US-201916716704-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 17, 2019 |
| Priority date | Dec 19, 2018 |
| Publication date | Jun 25, 2020 |
| Grant date | — |
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The present application provides a switching power supply and a magnetic resonance imaging system. The switching power supply is used for supplying power to a radio frequency coil control device, wherein the radio frequency coil control device is used for controlling a flow direction of radio frequency power output by a radio frequency amplifier of the magnetic resonance imaging system. Moreover, the switching power supply comprises a first power unit, a second power unit, and an air-cored transformer, the second power unit and the first power unit being electrically coupled through the air-cored transformer, wherein the switching power supply is configured to operate at a preset frequency, and frequency multiplication of the preset frequency is beyond a reception bandwidth of the magnetic resonance imaging system.
Opening claim text (preview).
1 . A switching power supply, for supplying power to a radio frequency coil control device, wherein the radio frequency coil control device is used for controlling a flow direction of radio frequency power output by a radio frequency amplifier of a magnetic resonance imaging system, the switching power supply comprising: a first power unit and a second power unit; and an air-cored transformer, the second power unit and the first power unit being electrically coupled through the air-cored transformer, wherein the switching power supply is configured to operate at a preset frequency, and frequency multiplication of the preset frequency is beyond a reception bandwidth of the magnetic resonance imaging system. 2 . The switching power supply according to claim 1 , wherein the air-cored transformer comprises a non-magnetic core, a first winding, and a second winding magnetically coupled to the first winding, and the first winding and the second winding are wound on the non-magnetic core side by side. 3 . The switching power supply according to claim 2 , further comprising a bypass unit, wherein the bypass unit is connected between the first winding and the second winding. 4 . The switching power supply according to claim 2 , wherein the first power unit comprises: a power amplifier, for performing power amplification on an input signal; and a first capacitor, connected to the power amplifier and used for filtering out a direct current component in the amplified signal to output a first signal to the first winding. 5 . The switching power supply according to claim 4 , wherein the input signal operates at the preset frequency. 6 . The switching power supply according to claim 4 , wherein the second power unit comprises: a second capacitor, connected to the second winding and used for filtering out a direct current component in a second signal output by the second winding; and a rectifying unit, connected to the second capacitor and used for converting an alternating current component in the second signal into a direct current output signal. 7 . The switching power supply according to claim 1 , wherein the preset frequency is 1.4 MHz. 8 . A magnetic resonance imaging system, comprising: a radio frequency coil assembly, comprising a radio frequency transmitting coil and a radio frequency receiving coil; a radio frequency amplifier, for outputting radio frequency power to excite the radio frequency coil assembly to generate a radio frequency signal; a radio frequency coil control device, for controlling an output flow direction of the radio frequency power to control selection of a specific type of the radio frequency transmitting coil and/or a specific type of the radio frequency receiving coil; and the switching power supply according to claim 1 , connected to the radio frequency coil control device and configured to supply power to the radio frequency coil control device. 9 . The magnetic resonance imaging system according to claim 8 , wherein the radio frequency coil control device comprises: a control switch, configured to control the output flow direction of the radio frequency power; a half-bridge circuit, comprising a first switch and a second switch connected in series, wherein a connection point of the first switch and the second switch is connected to the control switch; and a voltage conversion device, connected to a driving end of the first switch and the switching power supply, and configured to convert a first driving signal into a first control signal to control the first switch. 10 . The magnetic resonance imaging system according to claim 9 , wherein the radio frequency coil control device further comprises a buffer unit that is connected to a driving end of the second switch, and configured to buffer a second driving signal to control the second switch.
Electrical details, e.g. matching or coupling of the coil to the receiver · CPC title
Manufacture of RF coils, e.g. using printed circuit board technology; additional hardware for providing mechanical support to the RF coil assembly or to part thereof, e.g. a support for moving the coil assembly relative to the remainder of the MR system · CPC title
Switching for purposes other than coil coupling or decoupling, e.g. switching between a phased array mode and a quadrature mode, switching between surface coil modes of different geometrical shapes, switching from a whole body reception coil to a local reception coil or switching for automatic coil selection in moving table MR or for changing the field-of-view (G01R33/3671 takes precedence) · CPC title
RF waveform generators, e.g. frequency generators, amplitude-, frequency- or phase modulators or shifters, pulse programmers, digital to analog converters for the RF signal, means for filtering or attenuating of the RF signal · CPC title
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