Method and apparatus for measuring, verifying, and displaying progress of dose delivery in scanned beam particle therapy
First Claim
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1. A method for real-time control of a charged particle pencil beam system during therapeutic treatment of a patient, the method comprising:
- receiving a treatment map for therapeutic treatment of a patient using a charged particle pencil beam system, the treatment map comprising an array of target spots;
generating an acquired matrix from the treatment map, the acquired matrix comprising pixels having target data corresponding to the array of spots, the target data comprising a target position, a target shape, and a target intensity distribution;
removing target data from first pixels corresponding to a first spot from the treatment map;
therapeutically treating a spot in a patient with a charged particle pencil beam;
measuring an acquired image from a pixelated detector disposed between a charged particle pencil beam source and a magnetic field generator, the acquired image including an actual shape and an actual intensity distribution of the charged particle pencil beam;
determining an actual position of the charged particle pencil beam at an isocenter plane;
defining an active region of pixels that receive at least some intensity of the charged particle pencil beam;
updating the first pixels with acquired data for the active region, the acquired data including the actual position, the actual shape, and the actual intensity distribution of the charged particle beam;
comparing the acquired data with target data for each pixel in the active region to generate comparison data; and
automatically stopping the therapeutic treatment if the comparison data is greater than a tolerance.
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Abstract
The present disclosure is directed to systems and methods for real-time control of a charged particle pencil beam system during therapeutic treatment of a patient. In an aspect, the present disclosure is directed to measuring an actual shape, an actual intensity distribution, and an actual location at isocenter of the charged particle pencil beam. The actual data is compared to model treatment data in real time to determine if a statistically significant variance occurs in which case the charged particle pencil beam can be stopped mid-treatment for correction and/or analysis.
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Citations
7 Claims
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1. A method for real-time control of a charged particle pencil beam system during therapeutic treatment of a patient, the method comprising:
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receiving a treatment map for therapeutic treatment of a patient using a charged particle pencil beam system, the treatment map comprising an array of target spots; generating an acquired matrix from the treatment map, the acquired matrix comprising pixels having target data corresponding to the array of spots, the target data comprising a target position, a target shape, and a target intensity distribution; removing target data from first pixels corresponding to a first spot from the treatment map; therapeutically treating a spot in a patient with a charged particle pencil beam; measuring an acquired image from a pixelated detector disposed between a charged particle pencil beam source and a magnetic field generator, the acquired image including an actual shape and an actual intensity distribution of the charged particle pencil beam; determining an actual position of the charged particle pencil beam at an isocenter plane; defining an active region of pixels that receive at least some intensity of the charged particle pencil beam; updating the first pixels with acquired data for the active region, the acquired data including the actual position, the actual shape, and the actual intensity distribution of the charged particle beam; comparing the acquired data with target data for each pixel in the active region to generate comparison data; and automatically stopping the therapeutic treatment if the comparison data is greater than a tolerance. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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Specification