To reduce the side effects and to improve the efficiency of radiation therapy in lung cancer, a pinpoint radiation therapy system is under development. In the system, the movement of lung tumor during breathing could be estimated by employing a suitable numerical modeling technique. This paper presents a gridless numerical technique called Moving Particle Semi-implicit (MPS) method to simulate the lung deformation during breathing. The potential of the proposed method to employ in the future pinpoint radiation therapy system has been explored. Deformation of lung during breathing was dynamically tracked and compared against the experimental results at two different locations (upper lobe and lower lobe). Numerical simulations showed that the...
In radiotherapy, conformal irradiation of tumors with respiratory motion is an important issue. Some...
Engineering and Computational Sciences for Medical Imaging in Oncology - ECSMIO is the special sessi...
International audienceMotivated by medical needs, we propose to simulate lung deformation and motion...
International audienceThe aim of this study is the development and experimental testing of a tumor t...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
International audienceA main challenge in radiotherapy is to precisely take into account organs defo...
In this paper, we present a real-time simulation and visualization framework that models a deformabl...
International audienceIn this chapter, we evaluate the 3D tumor trajectories from patient-specific b...
Lung cancer is the most deadly cancer in the United States. Radiation therapy uses ionizing radiatio...
The purpose of this dissertation was to investigate the effects of respiration on the motion of lung...
International audienceDetailed internal information of lung morphology is made possible by the adven...
9th workchop HCPBM. Lyon (Fr). p 31International audienceOur team gathers medical, physical and comp...
Lung tumors move during breathing depending on the patient\u27s patho-physiological condition and or...
International audienceMotivated by radiotherapy and hadrontherapy improvement, we consider in a firs...
In radiotherapy, conformal irradiation of tumors with respiratory motion is an important issue. Some...
Engineering and Computational Sciences for Medical Imaging in Oncology - ECSMIO is the special sessi...
International audienceMotivated by medical needs, we propose to simulate lung deformation and motion...
International audienceThe aim of this study is the development and experimental testing of a tumor t...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
International audienceA main challenge in radiotherapy is to precisely take into account organs defo...
In this paper, we present a real-time simulation and visualization framework that models a deformabl...
International audienceIn this chapter, we evaluate the 3D tumor trajectories from patient-specific b...
Lung cancer is the most deadly cancer in the United States. Radiation therapy uses ionizing radiatio...
The purpose of this dissertation was to investigate the effects of respiration on the motion of lung...
International audienceDetailed internal information of lung morphology is made possible by the adven...
9th workchop HCPBM. Lyon (Fr). p 31International audienceOur team gathers medical, physical and comp...
Lung tumors move during breathing depending on the patient\u27s patho-physiological condition and or...
International audienceMotivated by radiotherapy and hadrontherapy improvement, we consider in a firs...
In radiotherapy, conformal irradiation of tumors with respiratory motion is an important issue. Some...
Engineering and Computational Sciences for Medical Imaging in Oncology - ECSMIO is the special sessi...
International audienceMotivated by medical needs, we propose to simulate lung deformation and motion...