IP Library Granted Patent US 9,014,328
Granted Patent B2
US 9,014,328 · App. 14/324,123 · Granted Apr 21, 2015

Method and apparatus for advanced X-ray imaging systems

Inventor: Tobias Funk (Martinez, CA)
Assignee: Triple Ring Technologies, Inc.
A61B6/587A61B6/032A61B6/06A61B6/4007A61B6/4028A61B6/4064A61B6/4241A61B6/4435A61B6/4488
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Quick Facts
Patent No.
US 9,014,328
App. No.
14/324,123
Granted
Apr 21, 2015
Kind
B2
Abstract

The present invention pertains to an apparatus and method for X-ray imaging a human patient. A vacuum bell bonded to an X-ray radiation-permeable window that can emit X-ray radiation from a plurality of spots located 1 cm from its edge, a collimator, and a detector are used. A ring of stationary X-ray sources can also be used with a stationary collimator and a rotating slot collimator and detector. An X-ray beam can be aligned in an X-ray system by establishing a position of the beam with respect to a moving collimator at a number of points in time, monitoring the velocity of the collimator, navigating the beam to a calculated position of a hole in the collimator, and correcting the alignment of the beam based on the location of the beam on the detector.

Claims (40)

1. An X-ray imaging system for imaging an object comprising:

a vacuum bell for creating a vacuum envelope in an X-ray source;

an X-ray radiation-permeable window configured to emit X-ray radiation from a plurality of spots;

a collimator located between said X-ray source and said object for projecting said X-ray radiation through said object;

an X-ray detector for measuring amount of said X-ray radiation passing through said object and striking said detector;

a second vacuum bell in contact with said vacuum bell for creating a second vacuum envelope in a second X-ray source; and

a second X-ray radiation-permeable window configured to emit X-ray radiation from a second plurality of spots.

2. The X-ray imaging system of claim 1 wherein said X-ray radiation-permeable window and said second X-ray radiation-permeable window are in contact with each other.

3. The X-ray imaging system of claim 1 wherein said plurality of spots is located less than 1 cm from an edge of said window.

4. The X-ray imaging system of claim 1 further comprising:

a bonded connection between said window and said vacuum bell.

5. The X-ray imaging system of claim 4 wherein said bonded connection is a brazed bond.

6. The X-ray imaging system of claim 4 wherein said bonded connection is an electron beam weld.

7. A computed tomography X-ray imaging system for imaging an object comprising:

a plurality of stationary X-ray sources forming a ring for producing X-ray radiation;

a rotating X-ray detector positioned within said ring for measuring amount of said X-ray radiation passing through said object and striking said detector;

a stationary collimator located between said plurality of X-ray sources and said object;

a rotating collimator located between said plurality of X-ray sources and said object with a plurality of slots.

8. The computed tomography X-ray imaging system of claim 7 wherein said stationary collimator further comprises at least ten slots.

9. The computed tomography X-ray imaging system of claim 7 wherein said stationary collimator further comprises between 10 and 50 slots.

10. The computed tomography X-ray imaging system of claim 7 wherein said rotating slot collimator spans an arc between 60 and 160 degrees.

11. The computed tomography X-ray imaging system of claim 7 wherein said stationary collimator further comprises metal rings.

12. The computed tomography X-ray imaging system of claim 7 further comprising:

cooling water coupled to an X-ray target for removing heat generated by said X-ray target.

13. The computed tomography X-ray imaging system of claim 7 wherein said stationary collimator further comprises at least ten slots perpendicular to said plurality of slots.

14. The computed tomography X-ray imaging system of claim 7 further comprising a sensor for monitoring velocity of said rotating collimator.

15. The computed tomography X-ray imaging system of claim 7 wherein said plurality of X-ray sources operate at full power for at least one hour.

16. A method of aligning an X-ray beam in an X-ray imaging system comprising:

establishing a position of said X-ray beam with respect to a moving collimator at a plurality of time points;

navigating said X-ray beam to a calculated position of a hole in said collimator; and

correcting alignment of said X-ray beam based on location of said X-ray beam on said detector.

17. The method of claim 16 further comprising:

aborting said X-ray beam if said X-ray beam is not aligned.

18. The method of claim 16 further comprising:

determining centroid position of said X-ray beam on said detector; and

comparing said centroid position with a calculated centroid position for said X-ray beam.

19. The method of claim 16 further comprising:

monitoring velocity of said collimator.

20. The method of claim 16 further comprising:

calculating position of said detector based on said velocity and an initial position of said collimator.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Apr 14, 2022
From: WESTERN ALLIANCE BANK, AS SUCCESSOR IN INTEREST TO BRIDGE BANK, NATIONAL ASSOCIATION
To: TRIPLE RING TECHNOLOGIES, INC.
Reel/Frame 059605/0827 →
RELEASE OF SECURITY INTEREST Recorded Aug 25, 2017
From: AGILITY CAPITAL II, LLC
To: TRIPLE RING TECHNOLOGIES, INC.
Reel/Frame 043414/0183 →
SECURITY INTEREST Recorded Aug 12, 2014
From: TRIPLE RING TECHNOLOGIES, INC.
To: BRIDGE BANK, NATIONAL ASSOCIATION
Reel/Frame 033521/0778 →
SECURITY INTEREST Recorded Aug 12, 2014
From: TRIPLE RING TECHNOLOGIES, INC.
To: AGILITY CAPITAL II, LLC
Reel/Frame 033521/0804 →
Continuity (3)
Continuation 13440394 · Apr 5, 2012
Provisional Application 61472128 · Apr 5, 2011
Related Publication 20140321606A1 · Oct 30, 2014