International audiencePredicting respiratory motion is challenging, due to the complexity and irregularity of the underlying motion pattern. In order to predict respiratory motion, we have developed a biomechanical modeling of the respiratory system which utilizes the 4D scan data (geometrical and mechanical properties) to accurately predict the tumor position due to the deformations and displacement caused by the respiratory movement, to increase the precision of the treatment. The diaphragm is the principal muscle used in the process of respiration. In this case, we introduce a method that enables the simulation of the contractile force generated by the diaphragm muscles. Physiologically, respiratory motion modeling involves the use press...
Abstract: Tumour motion is an essential source of error for treatment planning in radiation therapy....
This thesis presents a tunable 3D real-time interactive simulator of the geometrical displacement of...
This thesis presents a tunable 3D real-time interactive simulator of the geometrical displacement of...
International audiencePredicting respiratory motion is challenging, due to the complexity and irregu...
International audienceTumor motion during irradiation reduces target coverage and increases dose to ...
International audienceTumor motion during irradiation reduces target coverage and increases dose to ...
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 audiencePatient-specific respiratory motion modeling may help to understand pathophysi...
International audiencePatient-specific respiratory motion modeling may help to understand pathophysi...
International audienceIn this paper, we present a dynamic patient-specific model of the respiratory ...
International audienceIn this paper, we present a dynamic patient-specific model of the respiratory ...
International audienceIn this paper, we present a dynamic patient-specific model of the respiratory ...
Engineering and Computational Sciences for Medical Imaging in Oncology - ECSMIO is the special sessi...
Abstract: Tumour motion is an essential source of error for treatment planning in radiation therapy....
This thesis presents a tunable 3D real-time interactive simulator of the geometrical displacement of...
This thesis presents a tunable 3D real-time interactive simulator of the geometrical displacement of...
International audiencePredicting respiratory motion is challenging, due to the complexity and irregu...
International audienceTumor motion during irradiation reduces target coverage and increases dose to ...
International audienceTumor motion during irradiation reduces target coverage and increases dose to ...
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 audiencePatient-specific respiratory motion modeling may help to understand pathophysi...
International audiencePatient-specific respiratory motion modeling may help to understand pathophysi...
International audienceIn this paper, we present a dynamic patient-specific model of the respiratory ...
International audienceIn this paper, we present a dynamic patient-specific model of the respiratory ...
International audienceIn this paper, we present a dynamic patient-specific model of the respiratory ...
Engineering and Computational Sciences for Medical Imaging in Oncology - ECSMIO is the special sessi...
Abstract: Tumour motion is an essential source of error for treatment planning in radiation therapy....
This thesis presents a tunable 3D real-time interactive simulator of the geometrical displacement of...
This thesis presents a tunable 3D real-time interactive simulator of the geometrical displacement of...