Realistic and fast simulation of anatomical deforma- tions due to ultrasound probe pressure is of outstanding impor- tance for testing and validation of autonomous robotic ultrasound systems. We propose a deformation model which relies on the position-based dynamics (PBD) approach to simulate the probe- tissue interaction and predict the displacement of internal targets during US acquisition. Performances of the patient-specific PBD anatomical model are evaluated in comparison to two different simulations relying on the traditional finite element (FE) method, in the context of breast ultrasound scanning. Localization error obtained when applying the PBD model remains below 11 mm for all the tumors even for input displacements in the order o...
International audience— In this paper, we present a novel approach for tracking a deformable anatomi...
Purpose\ud \ud In ultrasound-guided High Intensity Focused Ultrasound (HIFU) therapy, the target tis...
During minimally invasive surgical procedures (e.g., needle insertion during interventional radiolog...
Realistic and fast simulation of anatomical deformations due to ultrasound probe pressure is of outs...
Although ultrasound (US) images represent the most popular modality for guiding breast biopsy, they ...
Although ultrasound (US) images represent the most popular modality for guiding breast biopsy, they ...
Purpose: Although ultrasound (US) images represent the most popular modality for guiding breast biop...
International audiencePurpose Although ultrasound (US) images represent the most popular modality fo...
Purpose: Biomechanical simulation of anatomical deformations caused by ultrasound probe pressure is ...
Tissue deformation in ultrasound imaging poses a challenge to the development of many image registra...
Soft tissue displacements during minimally invasive surgical procedures may cause target motion and ...
Soft tissue displacements during minimally invasive surgical procedures may cause target motion and ...
Intraoperative ultrasound is an imaging modality frequently used to provide delineation of tissue bo...
International audienceIn several medical applications such as liver or kidney biopsies, an anatomica...
International audience— In this paper, we present a novel approach for tracking a deformable anatomi...
Purpose\ud \ud In ultrasound-guided High Intensity Focused Ultrasound (HIFU) therapy, the target tis...
During minimally invasive surgical procedures (e.g., needle insertion during interventional radiolog...
Realistic and fast simulation of anatomical deformations due to ultrasound probe pressure is of outs...
Although ultrasound (US) images represent the most popular modality for guiding breast biopsy, they ...
Although ultrasound (US) images represent the most popular modality for guiding breast biopsy, they ...
Purpose: Although ultrasound (US) images represent the most popular modality for guiding breast biop...
International audiencePurpose Although ultrasound (US) images represent the most popular modality fo...
Purpose: Biomechanical simulation of anatomical deformations caused by ultrasound probe pressure is ...
Tissue deformation in ultrasound imaging poses a challenge to the development of many image registra...
Soft tissue displacements during minimally invasive surgical procedures may cause target motion and ...
Soft tissue displacements during minimally invasive surgical procedures may cause target motion and ...
Intraoperative ultrasound is an imaging modality frequently used to provide delineation of tissue bo...
International audienceIn several medical applications such as liver or kidney biopsies, an anatomica...
International audience— In this paper, we present a novel approach for tracking a deformable anatomi...
Purpose\ud \ud In ultrasound-guided High Intensity Focused Ultrasound (HIFU) therapy, the target tis...
During minimally invasive surgical procedures (e.g., needle insertion during interventional radiolog...