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Medical Radiation Dosimetry: Theory of Charged Particle Collision Energy Loss

Medical Radiation Dosimetry: Theory of Charged Particle Collision Energy Loss

Hardcover

Medical ReferenceTechnology & Engineering

ISBN10: 1447154029
ISBN13: 9781447154020
Publisher: Springer Nature
Published: Nov 29 2013
Pages: 622
Weight: 3.05
Height: 1.50 Width: 6.30 Depth: 9.20
Language: English

Accurate radiation dosimetry is a requirement of radiation oncology, diagnostic radiology and nuclear medicine. It is necessary so as to satisfy the needs of patient safety, therapeutic and diagnostic optimisation, and retrospective epidemiological studies of the biological effects resulting from low absorbed doses of ionising radiation. The radiation absorbed dose received by the patient is the ultimate consequence of the transfer of kinetic energy through collisions between energetic charged particles and atoms of the tissue being traversed. Thus, the ability of the medical physicist to both measure and calculate accurately patient dosimetry demands a deep understanding of the physics of charged particle interactions with matter. Interestingly, the physics of charged particle energy loss has an almost exclusively theoretical basis, thus necessitating an advanced theoretical understanding of the subject in order to apply it appropriately to the clinical regime.

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