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Minimax optimization for handling range and setup uncertainties in proton therapy

Medical Physics · 2011 · Vol. 38(3) · pp. 1672–1684
Albin FredrikssonAnders ForsgrenBjörn Hårdemark

Abstract

Minimax optimization provides robust target coverage without sacrificing the sparing of healthy tissues, even in the presence of low density lung tissue and high density titanium implants. Conventional methods using margins, SFUD, and MO do not utilize the full potential of IMPT and deliver unnecessarily high doses to healthy tissues.

Radiation Therapy and DosimetryAdvanced Radiotherapy TechniquesNuclear reactor physics and engineeringMinimaxRobust optimizationMathematical optimizationRobustness (evolution)Range (aeronautics)Computer scienceOptimization problemMathematicsEngineering

MeSH terms

HumansMaleNeoplasmsProtonsRadiotherapy Planning, Computer-AssistedStochastic ProcessesUncertaintyRadiotherapy, Intensity-ModulatedProton Therapy

Funding

  • Vetenskapsrådet
Citations
452
FWCI
11.72
field-weighted impact
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25
Percentile
99%
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Citations per year
References
The Price of Robustness
Operations Research · 2004 · 4,329 citations
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