IP Library Granted Patent US 11,175,364
Granted Patent B2
US 11,175,364 · App. 16/583,175 · Granted Nov 16, 2021

Low field magnetic resonance imaging methods and apparatus

Inventors: Jonathan M. Rothberg (Guilford, CT); Matthew Scot Rosen (Somerville, MA); Gregory L. Charvat (Guilford, CT); William J. Mileski (Ledyard, CT); Todd Rearick (Cheshire, CT); Michael Stephen Poole (Guilford, CT); Keith G. Fife (Palo Alto, CA)
Assignee: Hyperfine, Inc.
G01R33/5608G01R33/28G01R33/34007G01R33/36G01R33/3614G01R33/38G01R33/381G01R33/3802G01R33/383G01R33/3804G01R33/385G01R33/3806G01R33/3852G01R33/3854G01R33/3856G01R33/3858G01R33/3875G01R33/445G01R33/48G01R33/543G01R33/546G01R33/56G01R33/56518G01R33/58H01F7/02H01F7/06G01R33/422
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Quick Facts
Patent No.
US 11,175,364
App. No.
16/583,175
Granted
Nov 16, 2021
Kind
B2
Abstract

According to some aspects, a laminate panel is provided. The laminate panel comprises at least one laminate layer including at least one non-conductive layer and at least one conductive layer patterned to form at least a portion of a B 0 coil configured to contribute to a B 0 field suitable for use in low-field magnetic resonance imaging (MRI).

Claims (33)

1. A laminate panel comprising:

a plurality of laminate layers, each of the plurality of laminate layers including at least one non-conductive layer and at least one conductive layer patterned to form at least a portion of a magnetics component for use in magnetic resonance imaging (MRI), the plurality of laminate layers comprising:

at least one first laminate layer having patterned thereon a first gradient coil configured to, when operated, generate or contribute to a magnetic field to provide spatial encoding of emitted magnetic resonance (MR) signals in a first direction;

at least one second laminate layer having patterned thereon a second gradient coil configured to, when operated, generate or contribute to a magnetic field to provide spatial encoding of emitted MR signals in a second direction; and

a plurality of electrical connections between the plurality of laminate layers comprising through-hole vias provided through one or more layers of the plurality of laminate layers of the laminate panel,

wherein a location of at least one of the through-hole vias is selected to minimize an effect on a homogeneity of a B 0 field and/or to optimize one or more electrical properties of at least one coil when energized.

2. The laminate panel of claim 1 , wherein the through-hole vias are provided through all layers of the plurality of laminate layers.

3. The laminate panel of claim 1 , wherein the plurality of laminate layers comprises a top laminate layer, a bottom laminate layer, and a plurality of intervening laminate layers, and wherein the plurality of electrical connections comprise through-hole vias provided through the top laminate layer, the bottom laminate layer and each of the plurality of intervening laminate layers.

4. The laminate panel of claim 1 , further comprising at least one third laminate layer having patterned thereon at least a portion of a B 0 coil configured to contribute to a B 0 field suitable for use in MRI.

5. The laminate panel of claim 1 , wherein at least one of the through-hole vias is a plated through-hole via.

6. The laminate panel of claim 1 , wherein at least one of the through-hole vias is a pin via.

7. A magnetic resonance imaging system comprising:

a B 0 magnet configured to generate a magnetic field to contribute to a B 0 magnetic field for the magnetic resonance imaging system; and

at least one laminate panel comprising a plurality of laminate layers, each of the plurality of laminate layers including at least one non-conductive layer and at least one conductive layer patterned to form at least a portion of a magnetics component for use in magnetic resonance imaging (MRI), the plurality of laminate layers comprising:

at least one first laminate layer having patterned thereon a first gradient coil configured to, when operated, generate or contribute to a magnetic field to provide spatial encoding of emitted magnetic resonance (MR) signals in a first direction;

at least one second laminate layer having patterned thereon a second gradient coil configured to, when operated, generate or contribute to a magnetic field to provide spatial encoding of emitted MR signals in a second direction; and

a plurality of electrical connections between the plurality of laminate layers comprising through-hole vias provided through one or more layers of the plurality of laminate layers of the at least one laminate panel,

wherein a location of at least one of the through-hole vias is selected to minimize an effect on a homogeneity of a B 0 field and/or to optimize one or more electrical properties of at least one coil when energized.

8. The magnetic resonance imaging system of claim 7 , wherein the through-hole vias are provided through all layers of the plurality of laminate layers.

9. The magnetic resonance imaging system of claim 7 , wherein the plurality of laminate layers comprises a top laminate layer, a bottom laminate layer, and a plurality of intervening laminate layers, and wherein the plurality of electrical connections comprises through-hole vias provided through the top laminate layer, the bottom laminate layer and each of the plurality of intervening laminate layers.

10. The magnetic resonance imaging system of claim 7 , further comprising at least one third laminate layer having patterned thereon at least a portion of a B 0 coil configured to contribute to the B 0 field.

11. The magnetic resonance imaging system of claim 7 , wherein at least one of the through-hole vias is a plated through-hole via.

12. The magnetic resonance imaging system of claim 7 , wherein at least one of the through-hole vias is a pin via.

13. A method of manufacturing a laminate panel comprising a plurality of laminate layers, each of the plurality of laminate layers including at least one non-conductive layer and at least one conductive layer patterned to form at least a portion of a magnetics component for use in magnetic resonance imaging (MRI), the method comprising:

patterning, on at least one first laminate layer, a first gradient coil configured to, when operated, generate or contribute to a magnetic field to provide spatial encoding of emitted magnetic resonance (MR) signals in a first direction;

patterning, on at least one second laminate layer, a second gradient coil configured to, when operated, generate or contribute to a magnetic field to provide spatial encoding of emitted MR signals in a second direction; and

forming a plurality of electrical connections between the plurality of laminate layers comprising through-hole vias provided through one or more layers of the plurality of laminate layers of the laminate panel,

wherein a location of at least one of the through-hole vias is selected to minimize an effect on a homogeneity of a B 0 field and/or to optimize one or more electrical properties of at least one coil when energized.

14. The method of claim 13 , further comprising patterning, on at least one third laminate layer, at least a portion of a B 0 coil configured to contribute to a B 0 field suitable for use in MRI.

15. The method of claim 13 , wherein forming the plurality of electrical connections comprises drilling through the plurality of laminate layers to form a plurality of through-holes and plating the plurality of through-holes to form a plurality of plated through-hole vias.

16. The method of claim 13 , wherein forming the plurality of electrical connections comprises drilling through the plurality of laminate layers to form a plurality of through-holes and inserting pins in the plurality of through-holes to form a plurality of pin vias.

17. The magnetic resonance imaging system of claim 7 , wherein the magnetic resonance imaging system is configured to generate a B 0 magnetic field having a field strength of less than or equal to 0.2 T.

18. The laminate panel of claim 1 , wherein the plurality of electrical connections between the plurality of laminate layers consists of through-hole vias provided through one or more layers of the plurality of laminate layers of the laminate panel.

Assignments (3)
CHANGE OF NAME Recorded Mar 7, 2022
From: HYPERFINE, INC.
To: HYPERFINE OPERATIONS, INC.
Reel/Frame 059332/0615 →
CHANGE OF NAME Recorded Jun 4, 2021
From: HYPERFINE RESEARCH, INC.
To: HYPERFINE, INC.
Reel/Frame 056593/0446 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2019
From: ROTHBERG, JONATHAN M.; ROSEN, MATTHEW SCOT; CHARVAT, GREGORY L.; MILESKI, WILLIAM J.; REARICK, TODD; POOLE, MICHAEL STEPHEN; FIFE, KEITH G.
To: HYPERFINE RESEARCH, INC.
Reel/Frame 050814/0967 →
Continuity (7)
Continuation 15721340 · Sep 29, 2017
Continuation 14845652 · Sep 4, 2015
Provisional Application 62174666 · Jun 12, 2015
Provisional Application 62111320 · Feb 3, 2015
Provisional Application 62110049 · Jan 30, 2015
Provisional Application 62046814 · Sep 5, 2014
Related Publication 20200018806A1 · Jan 16, 2020