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US Patent 10281541 Low-field magnetic resonance imaging methods and apparatus

Patent 10281541 was granted and assigned to Hyperfine Research, Inc. on May, 2019 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Patent Applicant
Hyperfine Research, Inc.
Hyperfine Research, Inc.
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Current Assignee
Hyperfine Research, Inc.
Hyperfine Research, Inc.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
102815410
Patent Inventor Names
Christopher Thomas McNulty0
Michael Stephen Poole0
Cedric Hugon0
Date of Patent
May 7, 2019
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Patent Application Number
159565540
Date Filed
April 18, 2018
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Patent Citations Received
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US Patent 12105175 Artefact reduction in magnetic resonance imaging
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US Patent 11510588 Techniques for noise suppression in an environment of a magnetic resonance imaging system
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US Patent 11986282 System and methods for detecting electromagnetic interference in patients during magnetic resonance imaging
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US Patent 12013453 Systems and methods for detecting patient motion during magnetic resonance imaging
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US Patent 12105173 Self ensembling techniques for generating magnetic resonance images from spatial frequency data
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US Patent 11467239 Deep learning techniques for magnetic resonance image reconstruction
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Patent Primary Examiner
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Louis M. Arana
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Patent abstract

According to some aspects, a low-field magnetic resonance imaging system is provided. The low-field magnetic resonance imaging system comprises a magnetics system having a plurality of magnetics components configured to produce magnetic fields for performing magnetic resonance imaging, the magnetics system comprising, a B0 magnet configured to produce a B0 field for the magnetic resonance imaging system at a low-field strength of less than 0.2 Tesla (T), a plurality of gradient coils configured to, when operated, generate magnetic fields to provide spatial encoding of magnetic resonance signals, and at least one radio frequency coil configured to, when operated, transmit radio frequency signals to a field of view of the magnetic resonance imaging system and to respond to magnetic resonance signals emitted from the field of view, a power system comprising one or more power components configured to provide power to the magnetics system to operate the magnetic resonance imaging system to perform image acquisition, and a power connection configured to connect to a single-phase outlet to receive mains electricity and deliver the mains electricity to the power system to provide power needed to operate the magnetic resonance imaging system. According to some aspects, the power system operates the low-field magnetic resonance imaging system using an average of less than 1.6 kilowatts during image acquisition.

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