Development of a Radiotherapy System Based on 6 MeV Linac and Cone-Beam Computer Tomograph


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Resumo

A system currently under development for remote radiotherapy based on a 6 MeV linac and cone-beam computer tomograph is presented. Its distinguishing design features and solutions are described: compact 5-cm wavelength electron accelerator, solid-state modulator, visualization in the bremsstrahlung beam with low nominal energy 2.5 MeV, bremsstrahlung beam without a compensating filter, cone-beam computer tomography, multi-leaf collimator, adaptive radiotherapy, and a therapeutic table with six degrees of freedom. The system is compared with foreign analogs.

Sobre autores

I. Rod’ko

National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)

Autor responsável pela correspondência
Email: maryjane.gargar@springer.com
Rússia, Moscow

G. Sarychev

National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)

Email: maryjane.gargar@springer.com
Rússia, Moscow

P. Balakirev

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

T. Bondarenko

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

I. Dergacheva

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

A. Evteev

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

S. Kovalev

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

S. Koloskov

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

T. Krylova

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

T. Lobzhanidze

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

S. Polikhov

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

V. Smirnov

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

G. Sharkov

Research Institute of Technical Physics and Automation (NIITFA)

Email: maryjane.gargar@springer.com
Rússia, Moscow

G. Gorlachev

Radiation-Oncological Intelligent Systems and Services

Email: maryjane.gargar@springer.com
Rússia, Moscow

I. Gulidov

National Medical Research Center of Radiology (NMITS Radiology)

Email: maryjane.gargar@springer.com
Rússia, Moscow

S. Ivanov

National Medical Research Center of Radiology (NMITS Radiology)

Email: maryjane.gargar@springer.com
Rússia, Moscow

A. Kaprin

National Medical Research Center of Radiology (NMITS Radiology)

Email: maryjane.gargar@springer.com
Rússia, Moscow

Yu. Romanko

National Medical Research Center of Radiology (NMITS Radiology)

Email: maryjane.gargar@springer.com
Rússia, Moscow

E. Khmelevskii

National Medical Research Center of Radiology (NMITS Radiology)

Email: maryjane.gargar@springer.com
Rússia, Moscow

L. Ovchinnikova

Laboratory of Electron Accelerators (LEU MGU), Lomonosov Moscow State University

Email: maryjane.gargar@springer.com
Rússia, Moscow

V. Shvedunov

Laboratory of Electron Accelerators (LEU MGU), Lomonosov Moscow State University

Email: maryjane.gargar@springer.com
Rússia, Moscow

N. Shvedunov

Laboratory of Electron Accelerators (LEU MGU), Lomonosov Moscow State University

Email: maryjane.gargar@springer.com
Rússia, Moscow

D. Cherednichenko

Rusatom Healthcare

Email: maryjane.gargar@springer.com
Rússia, Moscow

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