Proton therapy with active scanning beam delivery has significant advantages compared to conventional radiotherapy. However, so far only static targets have been treated in this way, since moving targets potentially lead to interplay effects. For 4D treatment planning, information on the target motion is needed to calculate time-resolved dose distributions. In this study, respiratory liver motion has been extracted from 4D CT data using two deformable image registration algorithms. In moderately moving patient cases (mean motion range around 6 mm), the registration error was no more than 3 mm, while it reached 7 mm for larger motions (range around 13 mm). The obtained deformation fields have then been used to calculate different time-resolv...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
Proton therapy with active scanning beam delivery has significant advantages compared to conventiona...
Proton therapy with active scanning beam delivery has significant advantages compared to conventiona...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
Motion mitigation strategies are crucial for scanned particle therapy of mobile tumours in order to ...
I.Introduction and purpose Proton therapy offers unique dosimetric advantages over photon therapy to...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
Proton therapy with active scanning beam delivery has significant advantages compared to conventiona...
Proton therapy with active scanning beam delivery has significant advantages compared to conventiona...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
International audienceIn the treatment of moving targets with proton beams, time resolved image guid...
Motion mitigation strategies are crucial for scanned particle therapy of mobile tumours in order to ...
I.Introduction and purpose Proton therapy offers unique dosimetric advantages over photon therapy to...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...