Method for the control of a magnetic resonance system
US-9547064-B2 · Jan 17, 2017 · US
US10082552B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10082552-B2 |
| Application number | US-201414560959-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 4, 2014 |
| Priority date | Dec 10, 2013 |
| Publication date | Sep 25, 2018 |
| Grant date | Sep 25, 2018 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
The embodiments relate to signal selection devices for reception antennas. The signal selection device includes a plurality of signal inputs for the reception of signals from the reception antennas via an interface arrangement, and a plurality of signal outputs for the output of altered signals from the reception antennas. The signal selection device is used for selecting/reducing received signals from the reception antennas and forwarding them to an image processing device. The signal selection device contains a plurality of A/D converter chips, a plurality of digital selection chips, and at least physical and/or logical portions of a control unit. The received signals from the reception antennas are fed into the plurality of A/D converter chips via a plurality of signal inputs, are converted into digital data streams, and are supplied to the digital selection chips via signal outputs of the A/D converter chips.
Opening claim text (preview).
The invention claimed is: 1. A signal selection device configured for selecting among local coil reception antennas of a reception device in a magnetic resonance imaging scanner, the signal selection device comprising: a control unit configured to provide metadata to at least one component of the signal selection device; a plurality of analog-digital (A/D) converter chips, wherein each A/D converter chip of the plurality of A/D converter chips comprises a plurality of signal inputs and a plurality of signal outputs, wherein the plurality of signal inputs is configured to receive signals from the local coil reception antennas via an interface arrangement, and wherein the plurality of signal outputs is configured to output altered signals from the local coil reception antennas via the same interface arrangement; a plurality of digital selection chips; and wherein the received signals from the local coil reception antennas are fed into the plurality of A/D converter chips via the plurality of signal inputs of the plurality of A/D converter chips; wherein the received signals are converted into at least two digital data streams by the plurality of A/D converter chips; wherein the plurality of A/D converter chips is configured to utilize metadata from the control unit when selecting a portion of the at least two digital data streams that is less than all of the digital data streams with the selected portion of the at least two digital data streams then being forwarded to an image processing device; and wherein the selected portion of the at least two digital data streams is supplied to the digital selection chips via the plurality of the signal outputs of the plurality of A/D converter chips. 2. The signal selection device as claimed in claim 1 , wherein a total number of the plurality of A/D converter chips is larger than a total number of the plurality of digital selection chips. 3. The signal selection device as claimed in claim 2 , wherein the plurality of A/D converter chips and the plurality of digital selection chips each comprise separate metadata inputs that are configured to input metadata from the control unit directly. 4. The signal selection device as claimed in claim 3 , wherein at least one metadata channel is arranged between each A/D converter chip of the plurality of A/D converter chips and an associated digital selection chip of the plurality of digital selection chips; and wherein the at least one metadata channel is configured to input metadata from the control unit into the plurality of A/D converter chips indirectly via the plurality of digital selection chips. 5. The signal selection device as claimed in claim 4 , further comprising a signal distribution unit arranged between the interface arrangement of the local coil reception antennas and the plurality of A/D converter chips; wherein the received signals from the local coil reception antennas are passed to the plurality of A/D converter chips via the signal distribution unit; and wherein the signal distribution unit is configured to receive metadata from the control unit via a metadata input in order to select the received signals from the local coil reception antennas and distribute the selected received signals over the associated A/D converter chips of the plurality of A/D converter chips. 6. The signal selection device as claimed in claim 5 , wherein the interface arrangement of the reception device in the magnetic resonance imaging scanner is located between the signal selection device of the magnetic resonance imaging scanner and the local coil reception antennas. 7. The signal selection device as claimed in claim 3 , further comprising a signal distribution unit arranged between the interface arrangement of the local coil reception antennas and the plurality of A/D converter chips; wherein the received signals from the local coil reception antennas are passed to the plurality of A/D converter chips via the signal distribution unit; wherein the signal distribution unit is configured to receive metadata from the control unit via a metadata input in order to select the received signals from the local coil reception antennas and distribute the selected received signals over the associated A/D converter chips of the plurality of A/D converter chips. 8. The signal selection device as claimed in claim 3 , wherein the interface arrangement of the reception device in the magnetic resonance imaging scanner, is located between the signal selection device of the magnetic resonance imaging scanner and the local coil reception antennas. 9. The signal selection device as claimed in claim 2 , wherein at least one metadata channel is arranged between each A/D converter chip of the plurality of A/D converter chips and an associated digital selection chip of the plurality of digital selection chips; and wherein the at least one metadata channel is configured to input metadata from the control unit into the plurality of A/D converter chips indirectly via the plurality of digital selection chips. 10. The signal selection device as claimed in claim 2 , further comprising a signal distribution unit arranged between the interface arrangement of the local coil reception antennas and the plurality of A/D converter chips; wherein the received signals from the local coil reception antennas are passed to the plurality of A/D converter chips via the signal distribution unit; and wherein the signal distribution unit is configured to receive metadata from the control unit via a metadata input in order to select the received signals from the local coil reception antennas and distribute the selected received signals over the associated A/D converter chips of the plurality of A/D converter chips. 11. The signal selection device as claimed in claim 2 , wherein the interface arrangement of the reception device in the magnetic resonance imaging scanner is located between the signal selection device of the magnetic resonance imaging scanner and the local coil reception antennas. 12. The signal selection device as claimed in claim 1 , wherein the plurality of A/D converter chips and the plurality of digital selection chips each comprise separate metadata inputs that are configured to input metadata from the control unit directly. 13. The signal selection device as claimed in claim 1 , wherein at least one metadata channel is arranged between each A/D converter chip of the plurality of A/D converter chips and an associated digital selection chip of the plurality of digital selection chips; and wherein the at least one metadata channel is configured to input metadata from the control unit into the plurality of A/D converter chips indirectly via the plurality of digital selection chips. 14. The signal selection device as claimed in claim 13 , wherein the at least one metadata channel is a bidirectional data channel that is configured to route data in both directions, whereby the metadata is routed in a first direction and a digitized data stream from the local coil reception antennas is routed in a second, opposite direction. 15. The signal selection device as claimed in claim 1 , further comprising a signal distribution unit arranged between the interface arrangement of the local coil reception antennas and the plurality of A/D converter chips; wherein the received signals from the local coil reception antennas are passed to the plurality of A/D converter chips via the signal distribution unit; and wherein the signal distribution unit is configured to receive metadata from the control unit via a metadata input in order to select the received signals from the local
Excitation or detection systems, e.g. using radio frequency signals · CPC title
NMR receivers or demodulators, e.g. preamplifiers, means for frequency modulation of the MR signal using a digital down converter, means for analog to digital conversion [ADC] or for filtering or processing of the MR signal such as bandpass filtering, resampling, decimation or interpolation · CPC title
involving electronic [EMR] or nuclear [NMR] magnetic resonance, e.g. magnetic resonance imaging · CPC title
Data processing and visualization specially adapted for MR, e.g. for feature analysis and pattern recognition on the basis of measured MR data, segmentation of measured MR data, edge contour detection on the basis of measured MR data, for enhancing measured MR data in terms of signal-to-noise ratio by means of noise filtering or apodization, for enhancing measured MR data in terms of resolution by means for deblurring, windowing, zero filling, or generation of gray-scaled images, colour-coded images or images displaying vectors instead of pixels (image data processing or generation, in general G06T) · CPC title
Features or image-related aspects of imaging apparatus, e.g. for MRI, optical tomography or impedance tomography apparatus; Arrangements of imaging apparatus in a room · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.