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Handbook of Radiotherapy Physics: Theory and Practice Vol. One. / Editores; W. P. M. Mayles, A. E. Nahum, J. C. Rosenwald

Colaborador(es): Idioma: Inglés Detalles de publicación: Boca Raton, FL : CRC Press, 2022Edición: 2nd edDescripción: xix, 645 [xxix] P. : il. ; 29 cmISBN:
  • 9781498721462
Tema(s): Clasificación CDD:
  • 615.842 H236
Resumen: Volume 1, Part A includes the Interaction of Radiation with Matter (charged particles and photons) and the Fundamentals of Dosimetry with an extensive section on small-field physics. Part B covers Radiobiology with increased emphasis on hypofractionation. Part C describes Equipment for Imaging and Therapy including MR-guided linear accelerators. Part D on Dose Measurement includes chapters on ionisation chambers, solid-state detectors, film and gels, as well as a detailed description and explanation of Codes of Practice for Reference Dose Determination including detector correction factors in small fields. Part E describes the properties of Clinical (external) Beams. The various methods (or 'algorithms') for Computing Doses in Patients irradiated by photon, electron and proton beams are described in Part F with increased emphasis on Monte-Carlo-based and grid-based deterministic algorithms.
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Libro Libro Biblioteca Rafael Meza Ayau Colección General 615.842 H236 2022 (Navegar estantería(Abre debajo)) 01 Disponible 70202

Volume 1, Part A includes the Interaction of Radiation with Matter (charged particles and photons) and the Fundamentals of Dosimetry with an extensive section on small-field physics. Part B covers Radiobiology with increased emphasis on hypofractionation. Part C describes Equipment for Imaging and Therapy including MR-guided linear accelerators. Part D on Dose Measurement includes chapters on ionisation chambers, solid-state detectors, film and gels, as well as a detailed description and explanation of Codes of Practice for Reference Dose Determination including detector correction factors in small fields. Part E describes the properties of Clinical (external) Beams. The various methods (or 'algorithms') for Computing Doses in Patients irradiated by photon, electron and proton beams are described in Part F with increased emphasis on Monte-Carlo-based and grid-based deterministic algorithms.

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