Motion mitigation strategies are crucial for scanned particle therapy of mobile tumours in order to prevent geometrical target miss and interplay effects. We developed a patient-specific respiratory motion model based on simultaneously acquired time-resolved volumetric MRI and 2D abdominal ultrasound images. We present its effects on 4D pencil beam scanned treatment planning and simulated dose distributions. Given an ultrasound image of the liver and the diaphragm, principal component analysis and Gaussian process regression were applied to infer dense motion information of the lungs. 4D dose calculations for scanned proton therapy were performed using the estimated and the corresponding ground truth respiratory motion; the differences were...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Respiratory motion poses a major challenge in image acquisition and image-guided interventions of th...
Pencil beam scanned (PBS) proton therapy of lung tumours is hampered by respiratory motion and the m...
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...
In the radiation therapy of cancer, proton therapy offers the opportunity to conform the delivered d...
Proton therapy with active scanning beam delivery has significant advantages compared to conventiona...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Respiratory motion causes an important uncertainty in radiotherapy planning of the thorax and upper ...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
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...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...
Respiratory motion poses a major challenge in image acquisition and image-guided interventions of th...
Pencil beam scanned (PBS) proton therapy of lung tumours is hampered by respiratory motion and the m...
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...
In the radiation therapy of cancer, proton therapy offers the opportunity to conform the delivered d...
Proton therapy with active scanning beam delivery has significant advantages compared to conventiona...
Organ motion is a major problem for any dynamic radiotherapy delivery technique, and is particularly...
Respiratory motion causes an important uncertainty in radiotherapy planning of the thorax and upper ...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
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...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Tumour tracking with scanned particle beams potentially requires accurate 3D information on both tum...
Pencil beam scanning (PBS) proton therapy is due to its steep dose gradients a promising treatment o...