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US Patent 11510588 Techniques for noise suppression in an environment of a magnetic resonance imaging system

Patent 11510588 was granted and assigned to Hyperfine on November, 2022 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Hyperfine
Hyperfine
Current Assignee
Hyperfine
Hyperfine
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11510588
Date of Patent
November 29, 2022
Patent Application Number
16952317
Date Filed
November 19, 2020
Patent Citations
‌
US Patent 10222435 Magnetic coil power methods and apparatus
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US Patent 10139464 Noise suppression methods and apparatus
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US Patent 10145913 Methods and apparatus for magnetic field shimming
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US Patent 10145922 Automatic configuration of a low field magnetic resonance imaging system
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US Patent 10162026 Noise canceling in-situ NMR detection
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US Patent 10222434 Portable magnetic resonance imaging methods and apparatus
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US Patent 10520566 Low-field magnetic resonance imaging methods and apparatus
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US Patent 10527692 Rotatable magnet methods and apparatus for a magnetic resonance imaging system
...
Patent Citations Received
0
‌
US Patent 11841408 Electromagnetic shielding for magnetic resonance imaging methods and apparatus
0
‌
US Patent 11662412 Noise suppression methods and apparatus
0
Patent Primary Examiner
‌
G. M. A Hyder
CPC Code
‌
G01R 33/583
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G01R 33/4818
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G01R 33/445
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A61B 5/055
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G01R 33/3854

Techniques for suppressing noise in an environment of a magnetic resonance (MR) imaging system having at least one primary coil and at least one auxiliary sensor. The techniques involve estimating a transform, that, when applied to noise received by the at least one auxiliary sensor, provides an estimate of noise received by the at least one primary coil. The transform is estimated from data obtained by the at least one primary coil and the least one auxiliary sensor, with the data being weighted prior to estimation to remove or suppress data in regions with a high signal to noise ratio. In turn, the estimated transform may be applied to noise measured by the at least one auxiliary sensor during imaging of a patient, to estimate and suppress noise present in the MR signals received by the at least one primary coil during imaging.

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