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  • Advancing technology has enabled the introduction of complex forms of radiotherapy in the treatment of cancer, in which the dose is delivered in ways that are far removed from established reference dosimetry. While treated volumes can now conform closely to the defined target, thus reducing damage to surrounding normal tissue, the accuracy with which the dose is delivered may fall short of the requirements given by ICRU Report 24 (uncertainty of 5 % at the 95 % confidence level on the dose in the target volume). The overall doses targeting the affected areas have significant implications for the results. Too low a dose in the target volume increases the chance of treatment failure through recurrence of the cancer, and lack of traceability to established reference dosimetry and primary standards makes it more difficult to meet the requirement of ICRU Report 24.
  • Advancing technology has enabled the introduction of complex forms of radiotherapy in the treatment of cancer, in which the dose is delivered in ways that are far removed from established reference dosimetry. While treated volumes can now conform closely to the defined target, thus reducing damage to surrounding normal tissue, the accuracy with which the dose is delivered may fall short of the requirements given by ICRU Report 24 (uncertainty of 5 % at the 95 % confidence level on the dose in the target volume). The overall doses targeting the affected areas have significant implications for the results. Too low a dose in the target volume increases the chance of treatment failure through recurrence of the cancer, and lack of traceability to established reference dosimetry and primary standards makes it more difficult to meet the requirement of ICRU Report 24. (en)
Title
  • Metrology for radiotherapy using complex radiation fields
  • Metrology for radiotherapy using complex radiation fields (en)
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  • 7AX13002
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  • Metrology; radiotherapy (en)
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  • Metrology
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