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November 10, 2021Radiotherapy and Oncology98 citationsOpen Access

Reduction of clinical safety margins in proton therapy enabled by the clinical implementation of dual-energy CT for direct stopping-power prediction

NPNils PetersPWPatrick WohlfahrtCHChristian Hofmann

Key Points

  • This research aims to improve the accuracy of range predictions in proton therapy treatment planning using dual-energy CT.
  • Implemented patient-specific stopping-power prediction using dual-energy CT
  • Achieved a reduction of range prediction uncertainty to a 2% level
  • Range prediction accuracy improved significantly, with a reduction in uncertainty to 2% level
  • Clinical implementation of DECT resulted in effective stopping-power prediction

Abstract

A substantial increase in range prediction accuracy in clinical proton treatment planning was achieved by patient-specific DECT-based SPR prediction. For the first time, a relevant imaging-based reduction of range prediction uncertainty on a 2% level has been achieved.

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Cite This Study

Peters et al. (2021) studied this question.

synapsesocial.com/papers/69d8f2fd17a1cc0598d18f34https://doi.org/10.1016/j.radonc.2021.11.002
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