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We incorporated tumour relapse kinetics into the TCP framework and calculate the associated second cancer risks. To calculate proton therapy-induced secondary cancer induction, we used the well-known biologically motivated mathematical model, initiation–inactivation–proliferation formalism. We used the available in vitro data for the linear ener…

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ProtonTherapy-TCP-Relapse-SecondCancer

We incorporated tumour relapse kinetics into the TCP framework and calculate the associated second cancer risks. To calculate proton therapy-induced secondary cancer induction, we used the initiation–inactivation–proliferation formalism, and in-vitro data to model the linear energy transfer (LET) dependence of cell killing and mutation induction parameters. As a clinical application, we employed the mathematical model to Hodgkin's Lymphoma patient data.

https://academic.oup.com/imammb/article-abstract/35/3/347/3925038?redirectedFrom=fulltext

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We incorporated tumour relapse kinetics into the TCP framework and calculate the associated second cancer risks. To calculate proton therapy-induced secondary cancer induction, we used the well-known biologically motivated mathematical model, initiation–inactivation–proliferation formalism. We used the available in vitro data for the linear ener…

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