IP Library Granted Patent US 9,895,115
Granted Patent B2
US 9,895,115 · App. 15/357,857 · Granted Feb 20, 2018

Tomosynthesis with shifting focal spot and oscillating collimator blades

Inventors: Baorui Ren (Andover, MA); Andrew P. Smith (Lexington, MA); Thomas Farbizio (Patterson, NY); Zhenxue Jing (Chadds Ford, PA); Jay Stein (Boston, MA)
Assignee: Hologic, Inc.
A61B6/06A61B6/502G21K1/02G21K1/04
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Quick Facts
Patent No.
US 9,895,115
App. No.
15/357,857
Granted
Feb 20, 2018
Kind
B2
Abstract

In a tomosynthesis system a static focal spot is moved in a direction opposite to and generally synchronized with the directional movement of an x-ray source and X-ray collimator blades are moved during each exposure in synchronization with the shifting of the static focal spot. The synchronized movement of the static focal spot, x-ray tube and collimator blades helps keep the effective focal spot fixed in space relative to the breast, detector or both during the entire duration of the exposure and keeps the x-ray field on the detector and breast static. The shifting collimator blades follow an oscillating pattern over the multiple x-ray exposures of a tomosynthesis scan.

Claims (36)

1. A method comprising:

emitting x-ray radiation from an x-ray source during a tomosynthesis scan towards at least one collimator blade so as to collimate the x-ray radiation, wherein the at least one collimator blade at least partially defines a static focal spot;

synchronously moving generally, during the emission of x-ray radiation, the x-ray source in a first direction and the at least one collimator blade in a second direction, wherein movement of the at least one collimator blade controls dispersion of the x-ray radiation so as to maintain the static focal spot; and

receiving the collimated x-ray radiation at a detector.

2. The method of claim 1 , further comprising moving the detector, wherein movement of the detector is synchronized with movement of the x-ray source.

3. The method of claim 1 , wherein the tomosynthesis scan comprises a plurality of x-ray radiation emissions by the x-ray source.

4. The method of claim 1 , wherein the at least one collimator blade is moved along a linear oscillating pattern.

5. The method of claim 1 , further comprising positioning the at least one collimator blade to a start position prior to the tomosynthesis scan.

6. The method of claim 5 , further comprising returning the at least one collimator blade to the start position after the tomosynthesis scan.

7. The method of claim 1 , wherein the operation of emitting x-ray radiation from the x-ray source during the tomosynthesis scan comprises:

positioning the x-ray source in a first source position;

activating the x-ray source to emit a first x-ray radiation emission;

terminating the first x-ray radiation emission;

after terminating the first x-ray radiation emission, moving the x-ray source to a second source position; and

activating the x-ray source to emit a second x-ray radiation emission.

8. The method of claim 1 , further comprising:

positioning the at least one collimator blade in a first collimator blade position prior to emitting the x-ray radiation emission; and

after terminating the x-ray radiation emission, moving the at least one collimator blade to a second collimator blade position.

9. The method of claim 8 , wherein the operation of receiving the collimated x-ray radiation at the detector comprises:

positioning the detector in a first detector position prior to emitting the first x-ray radiation emission; and

after terminating the x-ray radiation emission, moving the detector to a second detector position.

10. The method of claim 9 , wherein the moving of the x-ray source and the at least one collimator blade are generally synchronized by a motion controller.

11. The method of claim 8 , wherein the at least one collimator blade is moved from the first collimator blade position to the second collimator blade position along a linear oscillating pattern.

12. The method of claim 8 , wherein the operation of synchronously moving generally the x-ray source and the at least one collimator blade comprises moving the at least one collimator blade at a collimator blade linear speed equal to an x-ray source linear speed during an exposure.

13. The method of claim 1 , wherein the static focal spot has a predetermined size, and wherein the synchronously moving operation maintains the predetermined size of the static focal spot.

14. The method of claim 1 , wherein the static focal spot directs the x-ray radiation to a predetermined location on a breast, and wherein the synchronously moving operation maintains the static focal spot fixed in space relative to the predetermined location on the breast.

15. A system comprising:

an x-ray source configured to move in a first direction during a tomosynthesis scan;

a detector configured to obtain images during the tomosynthesis scan;

at least one collimator blade configured to form a static focal spot and configured to move in a second direction substantially opposite from the first direction so as to control at least one of a size of the static focal spot and a position of the static focal spot relative to a breast during the tomosynthesis scan, and wherein the at least one collimator blade is configured to control dispersion of radiation from the x-ray source; and

a motion controller for generally synchronizing a movement of the at least one collimator blade with the x-ray source movement.

16. The system of claim 15 , wherein the motion controller is configured to move the at least one collimator blade in the second direction during an emission of the x-ray source.

17. The system of claim 15 , wherein the x-ray source at least partially defines the static focal spot, and wherein the motion controller generally synchronizes a movement of the static focal spot with collimator blade movement and x-ray source movement.

18. The system of claim 15 , wherein the motion controller comprises two parallel plates located next to a focusing cup.

19. The system of claim 15 , wherein the static focal spot has a predetermined size, and wherein the at least one collimator blade maintains the predetermined size of the static focal spot.

20. The system of claim 15 , wherein the static focal spot directs the x-ray radiation to a predetermined location on the breast, and wherein the at least one collimator blade maintains the static focal spot fixed in space relative to the predetermined location on the breast.

Assignments (4)
RELEASE OF SECURITY INTEREST RECORDED AT REEL/FRAME 044123/0353 Recorded Apr 23, 2026
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: HOLOGIC, INC.; GEN-PROBE INCORPORATED; CYNOSURE, LLC, AS SUCCESSOR-BY-CONVERSION TO CYNOSURE, INC.; CYTYC CORPORATION, AS SUCCESSOR-BY-MERGER TO BIOLUCENT, LLC
Reel/Frame 075515/0446 →
SECURITY INTEREST Recorded Apr 8, 2026
From: BIOTHERANOSTICS, INC.; GEN-PROBE INCORPORATED; GEN-PROBE PRODESSE, INC.; CYTYC CORPORATION; SUROS SURGICAL SYSTEMS, INC.; GYNESONICS, INC.; BOLDER SURGICAL, LLC; FAXITRON BIOPTICS, LLC; HEALTH BEACONS, INC.; HOLOGIC, INC.
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 075462/0440 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2024
From: REN, BAORUI; SMITH, ANDREW; FARBIZIO, TOM; JING, ZHENXUE; STEIN, JAY
To: HOLOGIC, INC.
Reel/Frame 068247/0366 →
SECURITY INTEREST Recorded Nov 14, 2017
From: HOLOGIC, INC.; GEN-PROBE INCORPORATED; CYNOSURE, INC.; BIOLUCENT, LLC
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 044123/0353 →
Continuity (7)
Continuation 14966011 · Dec 11, 2015
Continuation 14319170 · Jun 30, 2014
Continuation 13966606 · Aug 14, 2013
Continuation 12849294 · Aug 3, 2010
Continuation In Part 12623472 · Nov 23, 2009
Provisional Application 61117453 · Nov 24, 2008
Related Publication 20170135653A1 · May 18, 2017