2023
DOI: 10.1002/mp.16746
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A radiomic‐ and dosiomic‐based machine learning regression model for pretreatment planning in 177Lu‐DOTATATE therapy

Dimitris Plachouris,
Vassilios Eleftheriadis,
Thomas Nanos
et al.

Abstract: BackgroundStandardized patient‐specific pretreatment dosimetry planning is mandatory in the modern era of nuclear molecular radiotherapy, which may eventually lead to improvements in the final therapeutic outcome. Only a comprehensive definition of a dosage therapeutic window encompassing the range of absorbed doses, that is, helpful without being detrimental can lead to therapy individualization and improved outcomes. As a result, setting absorbed dose safety limits for organs at risk (OARs) requires knowledg… Show more

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Cited by 5 publications
(1 citation statement)
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References 68 publications
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“…In a ground-breaking retrospective study, Plachouris et al [76] employed the power of cutting-edge ML regression algorithms to predict OARs absorbed doses in patients suffering from NETs, sourced from two clinical centers. Their innovative approach involved integrating radiomic features from [ 68 Ga]Ga-DOTA-TOC PET/CT scans with dosiomic features extracted from dose maps of [ 177 Lu]Lu-DOTATATERPT treatment cycles.…”
Section: Dose Predictionmentioning
confidence: 99%
“…In a ground-breaking retrospective study, Plachouris et al [76] employed the power of cutting-edge ML regression algorithms to predict OARs absorbed doses in patients suffering from NETs, sourced from two clinical centers. Their innovative approach involved integrating radiomic features from [ 68 Ga]Ga-DOTA-TOC PET/CT scans with dosiomic features extracted from dose maps of [ 177 Lu]Lu-DOTATATERPT treatment cycles.…”
Section: Dose Predictionmentioning
confidence: 99%