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- Very high energy electrons ( MeV) and radiation therapy.?
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Radiation therapy with high-energy electrons. I. Physical considerations, 10 to 60 Mev.
Tissue substitutes incorporated herein by this reference ] obtained from tissue component ICRU document. The design of ultra-high gradient accelerator structure. Development of technology. Proceedings of the Particle AcceleratorConf erence particle accelerator Conference Proceedings in , ; Other design organization. The injector system design options for. The RF source to optimize the system by adding pulse compression.
The target position of the imaging and verification options. Dynamic scanning optical surface, over the combined internal imaging modalities, such as CT or fluoroscopy, thereby providing real-time related to the inside surface of the outer target position. Quickly integrated X-ray computed tomography. The implantable radio beacons, which can be read by the three-dimensional position of the external antenna array in real time.
Integrated ultrasound. Although technically the most complex embodiment, but may be implemented as magnetic resonance imaging, magnetic resonance imaging can provide real-time three-dimensional positioning of the target area. The intensity-modulated to achieve. Other design organization  1.
A method for particle beam delivery system to the targeted tissue within a patient, the system comprising: one or more of the accelerator, the accelerator is configured to generate one or more particle beams; one or more beams steering apparatus, steering the beam from the apparatus is configured to receive the one or more accelerators and one or more particle beams from a plurality of directions to the one or more beam steering to the targeted tissue; and a control , said controller capable of controlling the delivery of all therapeutic dose in a beam radiation length of time or more targeted tissue, passing the length of time the entire therapeutic dose of less than 10 seconds, and when transferring the control dose said beam steering device steering the beam direction to the targeted tissue.
The system according to claim 1, wherein the controller is configured to receive information from the target positioning device and using the positioning information from the target device to control the one or more beams the beam steering apparatus to the steering direction of the targeted tissue, wherein the position data received from the authentication target positioning device by the beam steering device, the treatment dose is transmitted to all the targeted tissue.
The system according to claim 1, wherein the entire dose delivery duration is less than I second. The system according to claim 1, wherein said beam steering device is selected from the group consisting of radio frequency and electromagnetic devices consisting of a deflector device.
The system according to claim 1, wherein the beam steering apparatus includes a gantry, the gantry comprising a plurality of beam ports. The system according to claim 1, wherein the beam steering apparatus capable of providing a pencil beam raster scanning. The system according to claim 1, wherein the beam steering apparatus includes a continuous annular gantry.
"An evaluation of very high energy electron beams (up to MeV) in ra" by Colleen M DesRosiers
The system according to claim 1, wherein the beam steering apparatus capable of providing scanning volume fill. The system according to claim 1, wherein the beam steering device does not include moving parts. The system according to claim 1, wherein: said one or more beam steering device is configured to less than 10 seconds in a plurality of directions from the one or more beam steering to the target to the tissue, without any moving mechanical parts.
The system according to claim 1, wherein: said system is configured to be guided to the targeted tissue comprising one or more of the one or more beam photon beam. The system according to claim 12, characterized by further comprising: a plurality of beam ports, one or more electron beams which are guided through, and a plurality of beams in said plurality of beam ports or a photon source or a plurality of ports, said one or more passing electron beams through one or more beam ports, one or more of the photon beam.
The system according to claim 1, wherein: receiving from the one or more of the one or more of the accelerator particle beam before passing to the target tissue is directed through one or more channels to one or more outlets, wherein said one or more particle beams associated to each of the emission angle of each outlet, such that one or more beams are directed from a plurality of non-coplanar direction in the direction to the target range to the organization.
The system according to claim 2, wherein: said target positioning device is configured to transfer immediate access to targeted tissue, or targeted tissue image prior to said one or more particle beams to a targeted site. The system according to claim 15, wherein: said controller is configured to image the pre-treatment planning images based on comparing the one or more control beam transmitted to the target. The system according to claim 17, wherein said image forming apparatus capable of providing information to the controller to trigger the system when the beam delivered to the target tissue.
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The system according to claim 17, wherein using information from the imaging device, the system is capable of a plurality of predetermined directions from the beam at a plurality of predetermined time points is automatically transmitted to the target tissue. The system according to claim 17, wherein said accelerator is a linear accelerator capable of generating a beam of between 75 and 10MeV.
The system according to claim 17, characterized in that the length of the time is less than I second. The system according to claim 17, wherein the beam steering device is selected from the group consisting of radio frequency and electromagnetic devices consisting of a deflector device. The system according to claim 17, wherein the beam steering device does not include moving parts. USP true Pluridirectional very high electron energy radiation therapy systems and processes.
EPB1 en. CNB en. WOA1 en. Methods for validating plastic scintillating detectors and applications of same. WOA2 en. Methods and systems for beam intensity-modulation to facilitate rapid radiation therapies.
Related High Energy Electrons in Radiation Therapy
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