High-Energy Electron Beam Dose Distribution Analysis in a 3D-Printed Mouse Phantom
| Parent link: | Radiation from Relativistic Electrons in Periodic Structures, RREPS-25.— 2025.— P. 82 |
|---|---|
| Kolejni autorzy: | Bulavskaya A. A. Angelina Aleksandrovna, Polomoshnova D. A. Darjya Anatoljevna, Miloichikova I. A. Irina Alekseevna, Stuchebrov S. G. Sergey Gennadevich |
| Streszczenie: | Title screen Animal studies remain vital for advancing radiation therapy by improving targeting precision and healthy tissue sparing Текстовый файл |
| Język: | angielski |
| Wydane: |
2025
|
| Hasła przedmiotowe: | |
| Dostęp online: | https://indi.to/3TsLv |
| Format: | Elektroniczne Rozdział |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=683496 |
Podobne zapisy
Modulation of The Electron Beams Depths Dose Distribution Via 3D Printed Plastic Samples
Wydane: (2021)
Wydane: (2021)
The comparison results of the electron beam depth dose distribution formed by standard and 3d-printed boluses
Wydane: (2023)
Wydane: (2023)
Electron beam depth dose distributions in 3D-printed samples with different material filling factor
Wydane: (2020)
Wydane: (2020)
Studying the Option to Form Depth Dose Distribution of an Electron Beam Using a 3D-Printed Plastic Bolus
Wydane: (2023)
Wydane: (2023)
The measurement of the central-axis depth-dose curve of betatron electron beam in the phantom
od: Miloichikova I. A. Irina Alekseevna
Wydane: (2013)
od: Miloichikova I. A. Irina Alekseevna
Wydane: (2013)
Numerical simulation of electron beam depth dose distribution in water phantom passed through modified plastic materials
Wydane: (2023)
Wydane: (2023)
Dose Depth Distribution of Pulsed Electron Beam with Wide Electron Kinetic Energy Spectrum for Polyethylene Target
od: Serebrennikov M. A. Maksim Anatolevich
Wydane: (2020)
od: Serebrennikov M. A. Maksim Anatolevich
Wydane: (2020)
The depth distribution of the absorbed dose of the electron beam in the tissue-equivalent medium
od: Miloichikova I. A. Irina Alekseevna
Wydane: (2013)
od: Miloichikova I. A. Irina Alekseevna
Wydane: (2013)
Transverse profile forming for high energy electron beams using 3D-printed plastic samples
Wydane: (2021)
Wydane: (2021)
Making a copy of conventional anthropomorphic phantom section by 3D printing
Wydane: (2020)
Wydane: (2020)
Electron beam modulation by 3D printed plastic samples
Wydane: (2023)
Wydane: (2023)
Electron beam sintering of 3D-printed lithium ferrites
Wydane: (2024)
Wydane: (2024)
Formation of electron beam fields with 3D printed filters
Wydane: (2016)
Wydane: (2016)
Influence of the Kinetic Energy Spectrum of Pulsed Beam Electrons on the Effective Absorbed Dose Distribution Over the Target Depth
Wydane: (2020)
Wydane: (2020)
Investigation of the possibility of shaping an electron dose field of a clinical accelerator with 3D printed polymer products
Wydane: (2024)
Wydane: (2024)
Numerical simulation of radiotherapy beam interaction with soft tissues and PLA plastic for 3D printing of dosimetric phantoms
Wydane: (2024)
Wydane: (2024)
Clinical Electron Beam Shaping By 3D Printed PlasticCollimators
Wydane: (2021)
Wydane: (2021)
The medical electron beam shaping by 3d-printed plastic collimator
Wydane: (2022)
Wydane: (2022)
Influence of 3D-printed collimator thickness on near-the-edge scattering of high-energy electrons
Wydane: (2020)
Wydane: (2020)
Research of high-current pulsed electron beam energy distribution in depth of sheet of water
od: Pushkarev A. I. Aleksandr Ivanovich
Wydane: (2007)
od: Pushkarev A. I. Aleksandr Ivanovich
Wydane: (2007)
To A Mouse
od: Robert B.
Wydane: (Санкт-Петербург, Лань, 2013)
od: Robert B.
Wydane: (Санкт-Петербург, Лань, 2013)
Modulation of relativistic electron beam characteristics by 3D-printed periodic structures
Wydane: (2025)
Wydane: (2025)
Development of the patient-specific phantom of the human arm part using 3D printing
Wydane: (2021)
Wydane: (2021)
Sectioned calorimeter for quick diagnostic of the electron beam energy distribution
Wydane: (2017)
Wydane: (2017)
Thermoluminescent and Dosimetric Properties of Zirconium Dioxide Ceramics Irradiated with High Doses of Pulsed Electron Beam
Wydane: (2023)
Wydane: (2023)
One approach for selection of materials available for 3D printing of a dosimetry pelvic phantom: numerical simulation
Wydane: (2023)
Wydane: (2023)
The dosimetry test of the developed 3D-printed heterogeneous individual phantom on clinical linear accelerator
Wydane: (2023)
Wydane: (2023)
Comparison of electron beam shaping efficiency with metal and 3D-printed plastic collimators
Wydane: (2020)
Wydane: (2020)
Clinical electron beam modulation by plastic samples produced with 3D printing approach
Wydane: (2021)
Wydane: (2021)
Comparison of Electron Beam Scattering at Edges of 3D-Printed Plastic and Metal Collimators
Wydane: (2019)
Wydane: (2019)
Electron beam absorption in 3D-printed polymer samples with different infill densities
Wydane: (2019)
Wydane: (2019)
Energy spectrum analysis for intense pulsed electron beam
Wydane: (2016)
Wydane: (2016)
Developing a Numerical Model for Determining the Distribution of the Depths of Electric Beam Doses in Modified Plastics
Wydane: (2024)
Wydane: (2024)
Energy depth distribution of pulsed electron beam with wide electron kinetic energy spectrum for an aluminum target
Wydane: (2019)
Wydane: (2019)
Energy depth distribution of pulsed electron beam of wide electron kinetic energy spectrum for an aluminum target
Wydane: (2019)
Wydane: (2019)
Grief is a Mouse
od: Emily E. D.
Wydane: (Санкт-Петербург, Лань, 2013)
od: Emily E. D.
Wydane: (Санкт-Петербург, Лань, 2013)
Distribution of the energy density of a pulsed ion beam
od: Pushkarev A. I. Aleksandr Ivanovich
Wydane: (2016)
od: Pushkarev A. I. Aleksandr Ivanovich
Wydane: (2016)
Phantom
od: Bennett E. A.
Wydane: (Санкт-Петербург, Лань, 2013)
od: Bennett E. A.
Wydane: (Санкт-Петербург, Лань, 2013)
Phantom
od: Samuel T. C.
Wydane: (Санкт-Петербург, Лань, 2013)
od: Samuel T. C.
Wydane: (Санкт-Петербург, Лань, 2013)
Time evolution of the energy spectrum of a high-current relativistic electron beam
od: Kotlyarevskii G. I.
Wydane: (1976)
od: Kotlyarevskii G. I.
Wydane: (1976)
Podobne zapisy
-
Modulation of The Electron Beams Depths Dose Distribution Via 3D Printed Plastic Samples
Wydane: (2021) -
The comparison results of the electron beam depth dose distribution formed by standard and 3d-printed boluses
Wydane: (2023) -
Electron beam depth dose distributions in 3D-printed samples with different material filling factor
Wydane: (2020) -
Studying the Option to Form Depth Dose Distribution of an Electron Beam Using a 3D-Printed Plastic Bolus
Wydane: (2023) -
The measurement of the central-axis depth-dose curve of betatron electron beam in the phantom
od: Miloichikova I. A. Irina Alekseevna
Wydane: (2013)