Radiation therapy (RT) is an important component of treatment for lung cancer. However, the accuracy of this method can be affected by the complex respiratory motion/deformation of the target tumor during treatment. To improve the accuracy of RT, patient-specific biomechanical models of the lung have been proposed for estimating the tumor\u27s respiratory motion/deformation. Chronic obstructive pulmonary disease (COPD) has a high incidence among lung cancer patients and is associated with heterogeneous destruction of lung parenchyma. This key heterogeneity element, however, has not been incorporated in lung biomechanical models developed in previous studies. In this work, we have developed a physiologically and patho-physiologically realist...
Lung radiotherapy is greatly benefitted when the tumor motion caused by breathing can be modeled. Th...
Lung radiotherapy is greatly benefitted when the tumor motion caused by breathing can be modeled. Th...
In this paper, we present a real-time simulation and visualization framework that models a deformabl...
Finite element analysis (FEA)-based biomechanical modeling can be used to predict lung respiratory m...
Radiation therapy is a main component of treatment for many lung cancer patients. However, the respi...
International audienceIn this chapter, we evaluate the 3D tumor trajectories from patient-specific b...
International audienceIn this chapter, we evaluate the 3D tumor trajectories from patient-specific b...
International audiencePrediction of respiratory motion has the potential tosubstantially improve can...
International audiencePrediction of respiratory motion has the potential tosubstantially improve can...
International audiencePrediction of respiratory motion has the potential tosubstantially improve can...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
A biomechanical model is proposed to predict deflated lung tumor motion caused by diaphragm respirat...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
Lung radiotherapy is greatly benefitted when the tumor motion caused by breathing can be modeled. Th...
Lung radiotherapy is greatly benefitted when the tumor motion caused by breathing can be modeled. Th...
In this paper, we present a real-time simulation and visualization framework that models a deformabl...
Finite element analysis (FEA)-based biomechanical modeling can be used to predict lung respiratory m...
Radiation therapy is a main component of treatment for many lung cancer patients. However, the respi...
International audienceIn this chapter, we evaluate the 3D tumor trajectories from patient-specific b...
International audienceIn this chapter, we evaluate the 3D tumor trajectories from patient-specific b...
International audiencePrediction of respiratory motion has the potential tosubstantially improve can...
International audiencePrediction of respiratory motion has the potential tosubstantially improve can...
International audiencePrediction of respiratory motion has the potential tosubstantially improve can...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
A biomechanical model is proposed to predict deflated lung tumor motion caused by diaphragm respirat...
International audienceThe goal of this paper is to calculate a complex internal respiratory and tumo...
Lung radiotherapy is greatly benefitted when the tumor motion caused by breathing can be modeled. Th...
Lung radiotherapy is greatly benefitted when the tumor motion caused by breathing can be modeled. Th...
In this paper, we present a real-time simulation and visualization framework that models a deformabl...