Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan comparisons. To improve efficient decision making, we developed a dose mimicking and reducing (DMR) algorithm to automatically generate a robust proton plan from a reference photon dose, as well as target and organ at risk (OAR) delineations.Methods and Materials: The DMR algorithm was evaluated in 40 patients with head and neck cancer. The first step of the DMR algorithm comprises dose-volume histogram-based mimicking of the photon dose distribution in the clinical target volumes and OARs. Target robustness is included by mimicking the nominal photon dose in 21 perturbed scenarios. The second step of the optimization aims to reduce the OAR doses wh...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Purpose: Reducing dose to normal tissues is the advantage of protons versus photons. We aimed to des...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Background and purpose Patient selection for proton therapy by comparing proton/photon treatment pla...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
This thesis aims to improve the way uncertainties are incorporated in the treatment planning process...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Purpose: Reducing dose to normal tissues is the advantage of protons versus photons. We aimed to des...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Purpose: Patient selection for proton therapy is increasingly based on proton to photon plan compari...
Background and purpose Patient selection for proton therapy by comparing proton/photon treatment pla...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
Background and purpose: A planning target volume (PTV) in photon treatments aims to ensure that the ...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
This thesis aims to improve the way uncertainties are incorporated in the treatment planning process...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Each patient treated with photon or proton radiotherapy requires a personalized treatment plan. The ...
Purpose: Reducing dose to normal tissues is the advantage of protons versus photons. We aimed to des...