IP Library Granted Patent US 10,828,514
Granted Patent B2
US 10,828,514 · App. 16/330,106 · Granted Nov 10, 2020

Radiotherapy system preventing radiation of health tissue

Inventor: Per Havard Kleven (Kongsberg, NO)
Assignee: PH Kleven AS
A61N5/1084A61N5/1049A61N5/1065A61N2005/1087
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Quick Facts
Patent No.
US 10,828,514
App. No.
16/330,106
Granted
Nov 10, 2020
Kind
B2
Abstract

A radiotherapy system comprising a plurality of particle beam sources ( 1 a, 1 b, 1 c ) arranged to radiate particle beams ( 6 a, 6 b, 6 c ) on a three-dimensional radiation target ( 3 ) located inside the body of a radiotherapy patient ( 4 ), the position in space and alignment of which particle beam sources are individually controllable; and an imaging system ( 2 ) arranged to monitor the position and orientation in space of the three-dimensional radiation target including direction and speed of any movement of the radiation target, and also to monitor tissue characteristics of body tissue ( 5 ) surrounding the radiation target located in the radiation paths of the particle beams. The radiotherapy system comprises a particle beam control system ( 7 ) which, during a radiation treatment session, is arranged for receiving information on the position and orientation of the radiation target and on said tissue characteristics from the imaging system; based on the received information on said tissue characteristics, identifying body tissue which shall not be exposed to the particle beams; and in response to movement of the radiation target and/or of body tissue surrounding the radiation target, adjusting the individual positions and alignments of the particle beam sources and the individual characteristics of the particle beams so that (i) Bragg peaks or spread out Brag peaks (SOBP) of the particle beams are brought to intersect in a predetermined beam intersect region ( 8 ) inside the radiation target; and (ii) the radiation paths of the particle beams do not travel through said body tissue identified as not to be exposed to the particle beams.

Claims (18)

1. A radiotherapy system comprising:

a plurality of particle beam sources arranged to radiate particle beams on a three-dimensional radiation target located inside the body of a radiotherapy patient, the position in space and alignment of which particle beam sources are individually controllable; and

an imaging system arranged to monitor the position and orientation in space of the three-dimensional radiation target including direction and speed of any movement of the radiation target, and also to monitor tissue characteristics of body tissue surrounding the radiation target located in the radiation paths of the particle beams;

wherein the radiotherapy system comprises:

a particle beam control system which, during a radiation treatment session, is arranged for:

receiving information on the position and orientation of the radiation target and on said tissue characteristics from the imaging system;

based on the received information on said tissue characteristics, identifying body tissue which shall not be exposed to the particle beams; and

in response to movement of the radiation target and/or of body tissue surrounding the radiation target, adjusting the individual positions and alignments of the particle beam sources and/or the individual characteristics of the particle beams so that:

Bragg peaks or spread out Brag peaks of the particle beams are brought to intersect in a predetermined beam intersect region inside the radiation target; and

the radiation paths of the particle beams do not travel through said body tissue identified as not to be exposed to the particle beams.

2. The radiotherapy system according to claim 1 , wherein the individual characteristics of the particle beams comprise at least one of: particle beam energy; particle beam frequency; and particle beam attenuation.

3. The radiotherapy system according to claim 2 , wherein the particle beam control system is arranged to dynamically adjust an attenuator positioned in the beam path of at least one of the particle beams.

4. The radiotherapy system according to claim 1 , wherein the position in space and alignment of the particle beam sources are individually controlled by actuators controlled by the particle beam control system.

5. The radiotherapy system according to claim 1 , wherein the imaging system comprises any one of an X-ray computed tomography, imaging system, a magnetic resonance imaging system, a proton computed tomography imaging system and a positron emission tomography imaging system.

6. The radiotherapy system according to claim 1 , wherein the particle beam control system, during a radiation treatment session, is arranged to lock the beam intersect region to a predetermined position within the radiation target.

7. The radiotherapy system according to claim 1 , wherein the particle beam control system, during a radiation treatment session, is arranged to sweep the beam intersect region across the radiation target along a predetermined path.

8. The radiotherapy system according to claim 1 , wherein the particle beam control system, during a radiation treatment session, is arranged to stepwise reposition the beam intersect region to predetermined position within the radiation target.

9. The radiotherapy system according to claim 1 , wherein the particle beams are proton beams.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2019
From: KLEVEN, PER HALVARD
To: PH KLEVEN AS
Reel/Frame 049058/0494 →
Priority Claims (1)
SE 1651223 · Sep 12, 2016 · national
Continuity (1)
Related Publication 20190232089A1 · Aug 1, 2019
Cited By (1)
US 12,447,358