Controlling operation of a radiotherapy device
Disclosed herein is a computer-implemented method of determining a control scheme for operating a radiotherapy device for delivery of a radiation dose via a radiotherapy treatment beam to a target. The radiotherapy device comprises abeam generation apparatus that is configured to output radiation via a radiotherapy treatment beam, and wherein operation of the radiotherapy device can be described using at least one operational parameter. The method comprises determining the control scheme by identifying a first time (t 1 ) at which at least a first portion of the radiation dose is to be delivered at a first radiation delivery rate; and identifying a second time (t 2 ) for the radiotherapy device to undergo a cool-down period, wherein during the cool-down period the radiation delivery rate is less than the first radiation delivery rate; wherein the control scheme is determined such that at least one criterion associated with the at least one operational parameter is met.
1 . A computer-implemented method of determining a control scheme for operating a radiotherapy device for a delivery of a radiation dose via a radiotherapy treatment beam to a target, the radiotherapy device comprising:
a beam generation apparatus that is configured to output radiation via a radiotherapy treatment beam, wherein an operation of the radiotherapy device includes a use of at least one operational parameter, wherein the at least one operational parameter is heat generated at a component of the radiotherapy device;
the computer-implemented method comprising determining the control scheme by:
identifying a first time (t 1 ) at which at least a first portion of the radiation dose is to be delivered at a first radiation delivery rate; and
identifying a second time (t 2 ) for the radiotherapy device to undergo a cool-down period, wherein during the cool-down period, a second radiation delivery rate is less than the first radiation delivery rate, and wherein the control scheme is determined such that at least one criterion associated with the at least one operational parameter is met, wherein the at least one criterion is that a predefined heat threshold should not be exceeded.
2 . The computer-implemented method of claim 1 , wherein the second radiation delivery rate during the cool-down period is zero.
3 . The computer-implemented method of claim 1 , wherein the second radiation delivery rate during the cool-down period comprises a threshold of a default maximum delivery rate for the beam generation apparatus.
4 . The computer-implemented method of claim 1 , wherein the first time (t 1 ) and the second time (t 2 ) occur within a pre-determined common time window.
5 . The computer-implemented method of claim 1 , wherein the second time (t 2 ) is a time at which the target, or a part of the target, will exhibit a pre-determined motion characteristic, during which the delivery of the radiation dose to the target is inhibited.
6 . The computer-implemented method of claim 1 , wherein the target is subject to an anatomical motion, and determining the control scheme further comprises:
receiving information indicative of a movement of the target with respect to a treatment volume through which the radiotherapy treatment beam will pass; and:
identifying the first time (t 1 ) such that the at least a first portion of the radiation dose is delivered while the target is at least partly located within the treatment volume; and/or
identifying the second time (t 2 ) such that the cool-down period occurs while the target is at least partly located outside the treatment volume.
7 . The computer-implemented method of claim 1 , wherein the target comprises one or more target regions on or within a body of a patient.
8 . The computer-implemented method of any preceding claim 1 , wherein each of the first time (t 1 ) and the second time (t 2 ) comprises at least one of: one or more instantaneous times, one or more pulse durations, or one or more continuous time periods.
9 . The computer-implemented method of claim 1 , wherein the at least one criterion is that the at least one operational parameter of the radiotherapy device must be kept below a threshold throughout an implementation of the control scheme.
10 . The computer-implemented method of claim 1 , wherein the first radiation delivery rate is determined, and/or the first time (t 1 ) is identified, based on the at least one operational parameter of the radiotherapy device.
11 . The computer-implemented method of claim 1 , wherein the at least one operational parameter of the radiotherapy device further comprises any of a voltage, a current, power, or heat, and/or wherein the at least one operational parameter of the radiotherapy device is associated with at least one component of the radiotherapy device, and wherein the at least one component of the radiotherapy device comprises any of a magnetron, an RF window, an RF circulator, a cooling system, or the beam generation apparatus.
12 . The computer-implemented method of claim 1 , wherein the radiotherapy device has a pre-determined heat threshold, and wherein the computer-implemented method further comprises:
determining the control scheme such that an amount of heat generated during the first time (t 1 ) and an amount of heat generated during the cool-down period does not exceed the pre-determined heat threshold, wherein a second portion of the radiation dose is delivered during the cool-down period, and wherein determining the control scheme such that the amount of heat generated during the first time (t 1 ) and the amount of heat generated during the cool-down period does not exceed the pre-determined heat threshold comprises ensuring that a ratio between a size of the first portion of the radiation dose and a size of the second portion of the radiation dose is in accordance with the pre-determined heat threshold.
13 . The computer-implemented method of claim 1 , wherein the control scheme comprises instructions which, when implemented, cause the radiotherapy device to apply the radiotherapy treatment beam intermittently to the target, during at least part of the first time (t 1 ).
14 . The computer-implemented method of claim 1 , wherein the radiotherapy treatment beam comprises:
a plurality of radiation pulses, emitted at a pulse repetition frequency (PRF), wherein the control scheme comprises instructions which, when implemented, cause the radiotherapy device to emit one or more radiation pulses, which coincide with an occurrence of the first time (t 1 ).
15 . The computer-implemented method of claim 1 , wherein the control scheme comprises instructions which, when implemented, cause the radiotherapy device to:
deliver the at least a first portion of the radiation dose at the first time (t 1 ) and at the first radiation delivery rate; and
deliver a second portion of the radiation dose at the second time (t 2 ) and at the second radiation delivery rate, wherein the beam generation apparatus has a pre-determined heat threshold, and the computer-implemented method further comprising:
increasing a size of the second portion of the radiation dose, relative to the first portion of the radiation dose, to decrease a total delivery time for the radiation dose, without exceeding the pre-determined heat threshold for the beam generation apparatus.
16 . The computer-implemented method of claim 1 , wherein determining the control scheme further comprises:
scheduling a plurality of first times at which radiation is to be delivered at the first radiation delivery rate, and a plurality of second times at which the radiotherapy device is to undergo a cool-down period, and wherein the control scheme is determined such that the at least one criterion is met throughout an implementation of the control scheme.
17 . A radiotherapy device for a delivery of a radiotherapy treatment beam, the radiotherapy device comprising:
a beam generation apparatus that is configured to output radiation via a radiotherapy treatment beam, wherein an operation of the radiotherapy device includes use of at least one operational parameter, wherein the at least one operational parameter is heat generated at a component of the radiotherapy device, wherein the component is one of a magnetron, an RF window, an RF circulator, a cooling system or the beam generation apparatus, and wherein the radiotherapy device is configured to deliver a radiation dose to a target; and
a processor configured to determine a control scheme according to at least one criterion associated with the at least one operational parameter, wherein the at least one criterion is that a predefined heat threshold should not be exceeded, and wherein the determined control scheme comprises instructions which, when implemented by the processor of the radiotherapy device, cause the radiotherapy device to:
deliver at least a first portion of the radiation dose at a first radiation delivery rate at a first time (t 1 ); and
undergo a cool-down period, wherein during the cool-down period a second radiation delivery rate is less than the first radiation delivery rate.