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Titlebook: Basic Radiotherapy Physics and Biology; David S. Chang,Foster D. Lasley,Joseph R. Dynlacht Book 2021Latest edition Springer Nature Switzer

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期刊全稱Basic Radiotherapy Physics and Biology
影響因子2023David S. Chang,Foster D. Lasley,Joseph R. Dynlacht
視頻videohttp://file.papertrans.cn/182/181130/181130.mp4
發(fā)行地址Easy-to-read handbook covering the physics and biology of radiation therapy.Fully updated and includes four new chapters on MRI linac, proton beam radiotherapy, chemomodulation and immunomodulation of
圖書封面Titlebook: Basic Radiotherapy Physics and Biology;  David S. Chang,Foster D. Lasley,Joseph R. Dynlacht Book 2021Latest edition Springer Nature Switzer
影響因子.This book is a concise and well-illustrated review of the physics and biology of radiation therapy intended for radiation therapists, dosimetrists, radiation oncology residents, and physicists. It presents topics that are included on the radiation therapy physics and biology board examinations and is designed with the intent of presenting information in an easily digestible format with maximum retention in mind. The inclusion of mnemonics, rules of thumb, and reader-friendly illustrations throughout the book help to make difficult concepts easier to grasp. This new edition is updated throughout with the latest information and applications of radiation oncology physics and biology and includes four new chapters. New topics include: MRI linac, proton beam radiotherapy, chemomodulation and immunomodulation of radiation in vitro and in vivo, and stochastic and deterministic late effects. .Basic Radiotherapy Physics and Biology. is a valuable reference for radiation oncologists, medical professionals in the field, residents, and all students interested in radiation oncology..
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Production and Properties of Radiationadiation. Particles are directly ionizing while electromagnetic radiation is indirectly ionizing because it sets other particles in motion to deposit the dose. The majority of innovation in radiation therapy has focused on electromagnetic radiation, beginning with X-ray tubes and γ-rays emitted from
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Interactions of Particulate Radiation with Matterrpose of describing particle radiotherapy. Particles can be described as charged or uncharged and heavy or light. Charged particles are usually directly ionizing by acting through coulombic forces while uncharged particles are indirectly ionizing, often causing ionization as a secondary consequence
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Dosimetry of Photon Beams in Waterapter provide several methods for calculating monitor units, depending on treatment setup variables such as source-to-surface (skin) distance/source-to-axis distance (SSD/SAD), field size, depth, wedges, and other factors. SSD setups are calculated using percent depth dose (PDD)-based formulae, whil
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Dosimetry of Photon Beams in a Patientions in shape and density. These dose correction techniques range from very simple rules to complex computer algorithms. Wedges and compensators may be used to correct for patient surface shape. Bolus may be used to increase the surface dose. Field-matching techniques may be used for treatments with
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Dosimetry of Electron Beamsons. Surface dose increases with energy, unlike photons. Simple dose calculations are based on electron dose to water, using source-to-surface distance (SSD) setup geometry. Density inhomogeneities greatly alter electron dose distributions. Electrons take the path of least resistance, increasing the
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