The present work deals with the producing of patient-specific aortic phantoms using an additive manufacturing technique by 3D printing. Phantoms are manufactured from synthetic materials with morphological and mechanical characteristics which should be close to these identified on a patient. They can be used to develop techniques of medical imaging, to understand the relationship between aortic mechanical behavior and hemodynamic properties of blood flow, as well as to perform a preoperative training of interventions, such as endovascular treatment. In this study, the hyper-viscoelastic aortic mechanical behavior was described using a generalized solid Maxwell model. Silicone materials were developed based on the model’s mechanical paramete...
(1) Background: The realization of appropriate aortic replicas for in vitro experiments requires a s...
International audienceThis work was carried out within a research project aiming to produce replicas...
Cardiovascular diseases (CVDs) are one of the leading causes of death globally. In-vitro measurement...
The present work deals with the producing of patient-specific aortic phantoms using an additive manu...
Le travail présenté dans ce manuscrit concerne la fabrication de fantômes d'aorte patient spécifique...
Additive manufacturing (AM) is a useful technology to produce artificial aortic models for the train...
Compliant phantoms of the human aortic arch can mimic patient specific cardiovascular dysfunctions i...
Patient specific surgical simulators can be effective training tools in cardiac surgery. There is cu...
Heart valve diseases are among the leading causes of cardiac failure around the globe. Current adva...
Heart valve diseases are among the leading causes of cardiac failure around the globe. Current advan...
peer-reviewedAbdominal aortic aneurysm (AAA) is a permanent, irreversible dilation of the distal reg...
We design and manufacture a silicone model of the human aorta, able to mimic both the geometrical an...
We design and manufacture a silicone model of the human aorta, able to mimic both the geometrical an...
(1) Background: The realization of appropriate aortic replicas for in vitro experiments requires a s...
International audienceThis work was carried out within a research project aiming to produce replicas...
Cardiovascular diseases (CVDs) are one of the leading causes of death globally. In-vitro measurement...
The present work deals with the producing of patient-specific aortic phantoms using an additive manu...
Le travail présenté dans ce manuscrit concerne la fabrication de fantômes d'aorte patient spécifique...
Additive manufacturing (AM) is a useful technology to produce artificial aortic models for the train...
Compliant phantoms of the human aortic arch can mimic patient specific cardiovascular dysfunctions i...
Patient specific surgical simulators can be effective training tools in cardiac surgery. There is cu...
Heart valve diseases are among the leading causes of cardiac failure around the globe. Current adva...
Heart valve diseases are among the leading causes of cardiac failure around the globe. Current advan...
peer-reviewedAbdominal aortic aneurysm (AAA) is a permanent, irreversible dilation of the distal reg...
We design and manufacture a silicone model of the human aorta, able to mimic both the geometrical an...
We design and manufacture a silicone model of the human aorta, able to mimic both the geometrical an...
(1) Background: The realization of appropriate aortic replicas for in vitro experiments requires a s...
International audienceThis work was carried out within a research project aiming to produce replicas...
Cardiovascular diseases (CVDs) are one of the leading causes of death globally. In-vitro measurement...