Imaging system for a radiotherapy device
Disclosed herein is an imaging system for a radiotherapy device which is configured to provide therapeutic radiation to a patient via a source of therapeutic radiation. The imaging system comprises a source of imaging radiation, a CBCT panel detector, and a CT detector, wherein the source of imaging radiation is configured to be adjustable such that in a first configuration it is configured to emit imaging radiation towards the CT detector and in a second configuration it is configured to emit imaging radiation towards the CBCT detector.
1 . An imaging system for a radiotherapy device configured to provide therapeutic radiation to a patient via a source of therapeutic radiation, the imaging system comprising:
a source of imaging radiation;
a cone beam computed tomography (CBCT) panel detector; and
a computed tomography (CT) detector;
wherein the source of imaging radiation is configured to be adjustable such that in a first configuration the source of imaging radiation is configured to emit imaging radiation towards the CT detector and in a second configuration it is configured to emit imaging radiation towards the CBCT detector, wherein, in the second configuration, the source of imaging radiation is configured to emit imaging radiation along a first imaging axis, and the CT detector is positioned adjacent to the first imaging axis.
2 . The imaging system of claim 1 , wherein the source of imaging radiation is configured to move between a first position and a second position, and wherein the first position corresponds to the first configuration and the second position corresponds to the second configuration.
3 . The imaging system of claim 2 , wherein the source of imaging radiation is configured to move between the first position and second position through a translation mechanism.
4 . The imaging system of claim 2 , wherein the source of imaging radiation is configured to move between the first position and second position through a rotation mechanism.
5 . The imaging system of claim 1 , further comprising:
a collimator component, arranged such that, when the source of imaging radiation is in the first configuration, the collimator component is configured to shape radiation into a fan beam, and when the source of imaging radiation is in the second configuration, the collimator component is configured to shape radiation into a cone beam.
6 . The imaging system of claim 1 , wherein the imaging radiation is X-ray radiation.
7 . The imaging system of claim 1 , wherein the source of imaging radiation is configured to operate in a pulsed manner.
8 . The imaging system of claim 1 , wherein the dimensions of the CT detector are 800 mm×64 mm.
9 . The imaging system of claim 1 , wherein the dimensions of the CBCT panel detector are 250×250 mm.
10 . A radiotherapy device comprising:
an imaging system, wherein the radiotherapy device is configured to provide therapeutic radiation to a patient via a source of therapeutic radiation, and wherein the imaging system comprises:
a source of imaging radiation;
a cone beam computed tomography (CBCT) panel detector; and
a computed tomography (CT) detector, wherein the source of imaging radiation is configured to be adjustable such that in a first configuration it is configured to emit imaging radiation towards the CT detector and in a second configuration it is configured to emit imaging radiation towards the CBCT detector, wherein, in the second configuration, the source of imaging radiation is configured to emit imaging radiation along a first imaging axis, and the CT detector is positioned adjacent to the first imaging axis.
11 . The radiotherapy device of claim 10 , wherein the imaging system comprises:
a collimator component, arranged such that, when the source of imaging radiation is in the first configuration, the collimator component is configured to shape radiation into a fan beam, and when the source of imaging radiation is in the second configuration, the collimator component is configured to shape radiation into a cone beam.
12 . The radiotherapy device of claim 10 , wherein the source of imaging radiation is configured to move between a first position and a second position, wherein the first position corresponds to the first configuration and the second position corresponds to the second configuration, and wherein the source of imaging radiation is configured move between the first position and second position using at least one of a translation mechanism or a rotation mechanism.
13 . A method for imaging for radiotherapy, the method comprising:
acquiring an image using a source of imaging radiation in a first configuration and a Computed Tomography (CT) detector panel prior to radiotherapy treatment;
updating one or more radiation delivery variables based on the image;
configuring a radiotherapy device to deliver treatment according to the updated radiation delivery variables,
adjusting the source of imaging radiation to a second configuration wherein, in the second configuration, the source of imaging radiation is configured to emit imaging radiation along a first imaging axis, and the CT detector panel is positioned adjacent to the first imaging axis; and
acquiring a second image using the source of imaging radiation in the second configuration and a Cone Beam Computed Tomography (CBCT) detector panel.
14 . The method of claim 13 , comprising:
moving the source of imaging radiation between a first position and a second position, wherein the first position corresponds to the first configuration and the second position corresponds to the second configuration.
15 . The method of claim 14 , wherein the source of imaging radiation is configured to move between the first position and second position through a translation mechanism.
16 . The method of claim 14 , wherein the source of imaging radiation is configured to move between the first position and second position through a rotation mechanism.
17 . The method of claim 13 , wherein the imaging radiation is X-ray radiation.
18 . A non-transitory computer-readable medium containing instructions that, when executed by a processor, cause the processor to perform operations comprising:
acquiring an image using a source of imaging radiation in a first configuration and a Computed Tomography (CT) detector panel prior to radiotherapy treatment;
updating one or more radiation delivery variables based on the image;
configuring a radiotherapy device to deliver treatment according to the updated radiation delivery variables;
adjusting the source of imaging radiation to a second configuration wherein, in the second configuration, the source of imaging radiation is configured to emit imaging radiation along a first imaging axis, and the CT detector panel is positioned adjacent to the first imaging axis; and
acquiring a second image using the source of imaging radiation in the second configuration and a Cone Beam Computed Tomography (CBCT) detector panel.
19 . The non-transitory computer-readable medium of claim 18 , the operations comprising:
moving the source of imaging radiation between a first position and a second position, wherein the first position corresponds to the first configuration and the second position corresponds to the second configuration.
20 . The non-transitory computer-readable medium of claim 19 , wherein the source of imaging radiation is configured to move between the first position and second position through a translation mechanism.