IP Library Granted Patent US 9,788,783
Granted Patent B2
US 9,788,783 · App. 15/382,469 · Granted Oct 17, 2017

Methods and apparatus for the planning and delivery of radiation treatments

Inventor: Karl Otto (Salt Spring Island, CA)
Assignee: Varian Medical Systems International AG
A61B5/4836A61B5/08A61B5/113A61N5/1037A61N5/1045A61N5/1049A61N5/1077
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Quick Facts
Patent No.
US 9,788,783
App. No.
15/382,469
Granted
Oct 17, 2017
Kind
B2
Abstract

Methods and apparatus are provided for planning and delivering radiation treatments by modalities which involve moving a radiation source along a trajectory relative to a subject while delivering radiation to the subject. In some embodiments the radiation source is moved continuously along the trajectory while in some embodiments the radiation source is moved intermittently. Some embodiments involve the optimization of the radiation delivery plan to meet various optimization goals while meeting a number of constraints. For each of a number of control points along a trajectory, a radiation delivery plan may comprise: a set of motion axes parameters, a set of beam shape parameters and a beam intensity.

Claims (68)

1. A method for delivering radiation dose to a target area within a subject, the method comprising:

defining a trajectory comprising relative movement between a treatment radiation source and the subject and determining a radiation delivery plan;

sensing a position of the subject;

effecting relative movement between the treatment radiation source and the subject along the trajectory and, during the relative movement between the treatment radiation source and the subject along the trajectory, delivering a treatment radiation beam from the treatment radiation source to the subject according to the radiation delivery plan to impart a dose distribution on the subject, wherein delivering the treatment radiation beam from the treatment radiation source to the subject comprises:

varying an intensity of the treatment radiation beam over at least a portion of the trajectory;

sensing that the position is outside of an acceptable range and deactivating delivery of the treatment radiation beam based on the sensing that the position is outside of an acceptable range; and

sensing that the position is within the acceptable range and reactivating delivery of the treatment radiation beam based on the sensing that the position is within the acceptable range; and

wherein varying the intensity of the treatment radiation beam over at least a portion of the trajectory comprises varying a radiation output rate of the treatment radiation source in accordance with the radiation delivery plan during the relative movement between the treatment radiation source and the subject along the trajectory.

2. A method according to claim 1 wherein the subject is a living subject.

3. A method according to claim 1 wherein defining the trajectory comprises defining an initial trajectory and wherein determining the radiation delivery plan comprises modifying the initial trajectory to provide the trajectory.

4. A method according to claim 1 wherein the position of the subject comprises a location of the target area and wherein sensing the position of the subject comprises sensing a location of the target area.

5. A method according to claim 1 wherein delivering the treatment radiation beam from the treatment radiation source to the subject comprises varying a shape of the treatment radiation beam over at least a portion of the trajectory.

6. A method according to claim 1 wherein sensing the position comprises, during the relative movement between the treatment radiation source and the subject along the trajectory, obtaining two-dimensional projection images of the target area at a plurality of locations along the trajectory.

7. A method according to claim 1 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises effecting continuous relative movement between the treatment radiation source and the subject.

8. A method according to claim 1 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises effecting non-self-overlapping relative movement between the treatment radiation source and the subject.

9. A method according to claim 1 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises wherein a start of the trajectory and an end of the trajectory comprise a same relative position between the treatment radiation source and the subject and effecting otherwise non-self-overlapping relative movement between the treatment radiation source and the subject.

10. A method according to claim 1 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises moving a plurality of motion axes of a radiation delivery apparatus.

11. A method according to claim 1 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises:

sensing that the position is outside of the acceptable range and deactivating relative movement between the treatment radiation source and the subject based on the sensing that the position is outside of the acceptable range; and

sensing that the position is within the acceptable range and reactivating relative movement between the treatment radiation source and the subject based on the sensing that the position is within the acceptable range.

12. A method according to claim 1 wherein the trajectory comprises a single non-self overlapping trajectory which involves non-self-overlapping movement between the treatment radiation source and the subject.

13. A method according to claim 1 wherein:

deactivating delivery of the treatment radiation beam based on the sensing that the position is outside of the acceptable range comprises sensing that respiration of the subject has caused the position to be outside of the acceptable range and deactivating delivery of the treatment radiation beam based on the sensing that respiration of the subject has caused the position to be outside of the acceptable range; and

reactivating delivery of the treatment radiation beam based on the sensing that the position is within the acceptable range comprises sensing that respiration of the subject has caused the position to be within the acceptable range and reactivating delivery of the treatment radiation beam based on the sensing that respiration of the subject has caused the position to be within the acceptable range.

14. A method according to claim 13 wherein sensing respiration of the subject comprises sensing respiration using one or more sensors selected from the group consisting of: respirometers, infrared position sensors, and electromyogram sensors.

15. A method according to claim 1 wherein the trajectory comprises a plurality of arcs, each arc involving relative movement between the treatment radiation source and the subject within a corresponding plane.

16. A method according to claim 1 wherein the trajectory comprises a start and end at a same relative position between the treatment radiation source and the subject and the trajectory is otherwise non-self overlapping.

17. A method for delivering radiation dose to a target area within a subject, the method comprising:

defining a trajectory comprising relative movement between a treatment radiation source and the subject and determining a radiation delivery plan;

sensing a position of the subject;

effecting relative movement between the treatment radiation source and the subject along the trajectory and, during the relative movement between the treatment radiation source and the subject along the trajectory, delivering a treatment radiation beam from the treatment radiation source to the subject according to the radiation delivery plan to impart a dose distribution on the subject, wherein delivering the treatment radiation beam from the treatment radiation source to the subject comprises:

varying an intensity of the treatment radiation beam over at least a portion of the trajectory;

sensing that the position is outside of an acceptable range and deactivating delivery of the treatment radiation beam based on the sensing that the position is outside of an acceptable range; and

sensing that the position is within the acceptable range and reactivating delivery of the treatment radiation beam based on the sensing that the position is within the acceptable range;

wherein varying the intensity of the treatment radiation beam over at least a portion of the trajectory comprises varying a radiation output rate of the treatment radiation source in accordance with the radiation delivery plan during the relative movement between the treatment radiation source and the subject along the trajectory;

wherein the trajectory comprises a plurality of arcs, each arc involving relative movement between the treatment radiation source and the subject within a corresponding plane; and

wherein, between successive ones of the plurality of arcs, the trajectory comprises inter-arc relative movement between the treatment radiation source and the subject, the inter-arc relative movement comprising movement such that the corresponding planes associated with each arc intersect one another.

18. A method for delivering radiation dose to a target area within a subject, the method comprising:

defining a trajectory comprising relative movement between a treatment radiation source and the subject and determining a radiation delivery plan;

sensing a position of the subject;

effecting relative movement between the treatment radiation source and the subject along the trajectory and, during the relative movement between the treatment radiation source and the subject along the trajectory, delivering a treatment radiation beam from the treatment radiation source to the subject according to the radiation delivery plan to impart a dose distribution on the subject, wherein delivering the treatment radiation beam from the treatment radiation source to the subject comprises:

varying an intensity of the treatment radiation beam over at least a portion of the trajectory;

sensing that the position is outside of an acceptable range and deactivating delivery of the treatment radiation beam based on the sensing that the position is outside of an acceptable range; and

sensing that the position is within the acceptable range and reactivating delivery of the treatment radiation beam based on the sensing that the position is within the acceptable range;

wherein varying the intensity of the treatment radiation beam over at least a portion of the trajectory comprises varying a radiation output rate of the treatment radiation source in accordance with the radiation delivery plan during the relative movement between the treatment radiation source and the subject along the trajectory;

wherein the trajectory comprises a plurality of arcs, each arc involving relative movement between the treatment radiation source and the subject within a corresponding plane; and

wherein, between successive ones of the plurality of arcs, the trajectory comprises inter-arc relative movement between the treatment radiation source and the subject, the inter-arc relative movement comprising movement such that the corresponding planes associated with each arc are parallel with one another.

19. A method for delivering radiation dose to a target area within a subject, the method comprising:

defining a trajectory comprising relative movement between a treatment radiation source and the subject and determining a radiation delivery plan;

sensing a respiratory cycle of the subject;

effecting relative movement between the treatment radiation source and the subject along the trajectory and, during the relative movement between the treatment radiation source and the subject along the trajectory, delivering a treatment radiation beam from the treatment radiation source to the subject according to the radiation delivery plan to impart a dose distribution on the subject, wherein delivering the treatment radiation beam from the treatment radiation source to the subject comprises:

varying an intensity of the treatment radiation beam over at least a portion of the trajectory;

sensing that the respiratory cycle of the subject has moved a location of the target area outside of an acceptable range and deactivating delivery of the treatment radiation beam based on the sensing that the respiratory cycle of the subject has moved a location of the target area outside of an acceptable range; and

sensing that the respiratory cycle of the subject has moved the location of the target area to within the acceptable range and reactivating delivery of the treatment radiation beam based on the sensing that the respiratory cycle of the subject has moved the location of the target area to within the acceptable range; and

wherein varying the intensity of the treatment radiation beam over at least a portion of the trajectory comprises varying a radiation output rate of the treatment radiation source in accordance with the radiation delivery plan during the relative movement between the treatment radiation source and the subject along the trajectory.

20. A method according to claim 19 wherein the subject is a living subject.

21. A method according to claim 19 wherein defining the trajectory comprises defining an initial trajectory and wherein determining the radiation delivery plan comprises modifying the initial trajectory to provide the trajectory.

22. A method according to claim 19 wherein delivering the treatment radiation beam from the treatment radiation source to the subject comprises varying shape of the treatment radiation beam over at least a portion of the trajectory.

23. A method according to claim 19 wherein sensing the respiratory cycle comprises, during the relative movement between the treatment radiation source and the subject along the trajectory, obtaining two-dimensional projection images of the target area at a plurality of locations along the trajectory.

24. A method according to claim 19 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises effecting continuous relative movement between the treatment radiation source and the subject.

25. A method according to claim 19 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises effecting non-self-overlapping relative movement between the treatment radiation source and the subject.

26. A method according to claim 19 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises wherein a start of the trajectory and an end of the trajectory comprise a same relative position between the treatment radiation source and the subject and effecting otherwise non-self-overlapping relative movement between the treatment radiation source and the subject.

27. A method according to claim 19 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises moving a plurality of motion axes of a radiation delivery apparatus.

28. A method according to claim 19 wherein effecting relative movement between the treatment radiation source and the subject along the trajectory comprises:

sensing that the respiratory cycle of the subject has moved the location of the target area outside of the acceptable range and deactivating relative movement between the treatment radiation source and the subject based on the sensing that the respiratory cycle of the subject has moved the location of the target area outside of the acceptable range; and

sensing that the respiratory cycle of the subject has moved the location of the target area to within the acceptable range and reactivating relative movement between the treatment radiation source and the subject based on the sensing that the respiratory cycle of the subject has moved the location of the target area to within the acceptable range.

29. A method according to claim 19 wherein sensing respiration of the subject comprises sensing respiration using one or more sensors selected from the group consisting of: respirometers, infrared position sensors, and electromyogram sensors.

30. A method according to claim 19 wherein the trajectory comprises a plurality of arcs, each arc involving relative movement between the treatment radiation source and the subject within a corresponding plane.

Assignments (2)
CHANGE OF NAME Recorded Jan 24, 2024
From: VARIAN MEDICAL SYSTEMS INTERNATIONAL AG
To: SIEMENS HEALTHINEERS INTERNATIONAL AG
Reel/Frame 066368/0448 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2016
From: OTTO, KARL
To: VARIAN MEDICAL SYSTEMS INTERNATIONAL AG
Reel/Frame 040644/0138 →
Continuity (7)
Continuation 14710485 · May 12, 2015
Continuation 14202305 · Mar 10, 2014
Continuation 12986420 · Jan 7, 2011
Continuation 12132597 · Jun 3, 2008
Continuation In Part 11996932
Provisional Application 60701974 · Jul 25, 2005
Related Publication 20170095201A1 · Apr 6, 2017