IP Library Granted Patent US 12,429,532
Granted Patent B2
US 12,429,532 · App. 18/540,666 · Granted Sep 30, 2025

Magnetic resonance imaging

Inventor: James F. Dempsey (Atherton, CA)
Assignee: ViewRay Systems, Inc.
G01R33/0023A61B5/055A61N5/1049G01R33/0017G01R33/287G01R33/3815G01R33/385G01R33/48A61N2005/1055G01R33/3806G01R33/381G01R33/4808G01R33/4835G01R33/56325G01R33/56527G01R33/56536
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Quick Facts
Patent No.
US 12,429,532
App. No.
18/540,666
Granted
Sep 30, 2025
Kind
B2
Abstract

Improved magnetic resonance imaging systems, methods and software are described including a low field strength main magnet, a gradient coil assembly, an RF coil system, and a control system configured for the acquisition and processing of magnetic resonance imaging data from a patient while utilizing a sparse sampling imaging technique.

Claims (31)

1. A magnetic resonance imaging system (MRI) comprising:

a main magnet having a field strength of between 0.1 and 0.5 Tesla;

a gradient coil assembly;

an RF coil system; and

a control system configured for acquisition and processing of magnetic resonance imaging data from a human patient and configured to utilize a sparse sampling imaging technique without parallel imaging; wherein the control system is further configured for an RF bandwidth of less than 1800 Hz.

2. A magnetic resonance imaging system (MRI) comprising:

a main magnet having a field strength of between 0.1 and 0.5 Tesla;

a gradient coil assembly;

an RF coil system; and

a control system configured for acquisition and processing of magnetic resonance imaging data from a human patient and configured to utilize a sparse sampling imaging technique without parallel imaging; wherein the control system is configured to employ pulse sequences, wherein the pulse sequences do not require dephasing pulses.

3. A computer program product comprising a non-transient, machine-readable medium storing instructions which, when executed by at least one programmable processor, cause the at least one programmable processor to perform operations comprising:

acquiring, through a control system, magnetic resonance imaging data from a human patient through a magnetic resonance imaging system (MRI) having a main magnet with a field strength of between 0.1 and 0.5 Tesla, a gradient coil assembly and an RF coil system, the acquiring utilizing a sparse sampling imaging technique without parallel imaging; wherein the control system is further configured for an RF bandwidth of less than 1800 Hz; and

processing the magnetic resonance imaging data, the processing including reconstructing images of the human patient.

4. A computer program product comprising a non-transient, machine-readable medium storing instructions which, when executed by at least one programmable processor, cause the at least one programmable processor to perform operations comprising:

acquiring magnetic resonance imaging data from a human patient through a magnetic resonance imaging system (MRI) having a main magnet with a field strength of between 0.1 and 0.5 Tesla, a gradient coil assembly and an RF coil system, the acquiring utilizing a sparse sampling imaging technique without parallel imaging; wherein the acquiring employs pulse sequences, wherein the pulse sequences do not require dephasing pulses; and

processing the magnetic resonance imaging data, the processing including reconstructing images of the human patient.

5. A magnetic resonance imaging system (MRI) comprising:

a main magnet having a field strength of between 0.1 and 0.5 Tesla;

a gradient coil assembly; wherein the gradient coil assembly is operable to create a gradient field with gradient field strengths, wherein the gradient field strengths are below 20 mT/m an RF coil system; and

a control system configured for acquisition and processing of magnetic resonance imaging data from a human patient and configured to utilize a sparse sampling imaging technique without parallel imaging.

6. A magnetic resonance imaging system (MRI) comprising:

a main magnet having a field strength of between 0.1 and 0.5 Tesla;

a gradient coil assembly;

an RF coil system; wherein the RF coil system is operable to create flip angles, wherein the flip angles are greater than 40 degrees; and

a control system configured for acquisition and processing of magnetic resonance imaging data from a human patient and configured to utilize a sparse sampling imaging technique without parallel imaging.

7. A computer program product comprising a non-transient, machine-readable medium storing instructions which, when executed by at least one programmable processor, cause the at least one programmable processor to perform operations comprising:

acquiring magnetic resonance imaging data from a human patient through a magnetic resonance imaging system (MRI) having a main magnet with a field strength of between 0.1 and 0.5 Tesla, a gradient coil assembly and an RF coil system, the acquiring utilizing a sparse sampling imaging technique without parallel imaging; wherein the acquiring utilizes gradient field strengths that are below 20 mT/m; and

processing the magnetic resonance imaging data, the processing including reconstructing images of the human patient.

8. A computer program product comprising a non-transient, machine-readable medium storing instructions which, when executed by at least one programmable processor, cause the at least one programmable processor to perform operations comprising:

acquiring magnetic resonance imaging data from a human patient through a magnetic resonance imaging system (MRI) having a main magnet with a field strength of between 0.1 and 0.5 Tesla, a gradient coil assembly and an RF coil system, the acquiring utilizing a sparse sampling imaging technique without parallel imaging; wherein the acquiring utilizes flip angles that are greater than 40 degrees; and

processing the magnetic resonance imaging data, the processing including reconstructing images of the human patient.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2024
From: VIEWRAY, INC.; VIEWRAY TECHNOLOGIES, INC.
To: VIEWRAY SYSTEMS, INC.
Reel/Frame 067096/0625 →
Continuity (4)
Continuation 17848277 · Jun 23, 2022
Continuation 15630890 · Jun 22, 2017
Provisional Application 62353538 · Jun 22, 2016
Related Publication 20240310457A1 · Sep 19, 2024
References Cited (3)
US 11378629B2 · Dempsey · 2022 [cited by examiner]
US 11768257B2 · Dempsey · 2023 [cited by examiner]
US 11892523B2 · Dempsey · 2024 [cited by examiner]