Ultrasound super-resolution imaging can be achieved by localizing spatially isolated microbubble contrast agents over multiple imaging frames. In vivo images with resolutions of ~10-20 microns in deep tissue have been demonstrated. The technique has the potential to revolutionize the way micro-circulation can be visualized and quantified, and has implications in a wide range of clinical applications including cancer, diabetes and beyond. In this paper we describe the principle of the technique with in vivo results demonstrating the superior resolution achieved compared with existing ultrasound imaging. We also discuss the challenges and opportunities in the area of 3D imaging including, imaging speed, tissue motion and microbubble localizat...
Super-resolution ultrasound enables detailed assessment of the fine vascular network by pinpointing ...
International audienceBecause it drives the compromise between resolution and penetration, the diffr...
Objectives The aim of this study was to provide an ultrasound-based super-resolution methodology tha...
Ultrasound super-resolution imaging can be achieved by localizing spatially isolated microbubble con...
Ultrasound super-resolution techniques use the response of microbubble contrast agents (MBs) to visu...
Ultrasound super-resolution techniques use the response of microbubble contrast agents (MBs) to visu...
Ultrasound (US) is a widely used clinical imaging modality that offers penetration depths in tissue ...
International audienceThe majority of exchanges of oxygen and nutrients are performed around vessels...
© 2018 IEEE. Assessment of complex and disordered tumour vasculature requires full 3D visualization....
The majority of exchanges of oxygen and nutrients are performed around vessels smaller than 100 μm, ...
The structure of microvasculature cannot be resolved using standard clinical ultrasound (US) imaging...
Imaging of microvasculature can be valuable for the diagnosis and treatment monitoring of cancer and...
The structure of microvasculature cannot be resolved using standard clinical ultrasound (US) imaging...
© 2018 IEEE. Acoustic super-resolution (SR) has the potential to visualize microvasculature by local...
Perfusion by the microcirculation is key to the development, maintenance and pathology of tissue. It...
Super-resolution ultrasound enables detailed assessment of the fine vascular network by pinpointing ...
International audienceBecause it drives the compromise between resolution and penetration, the diffr...
Objectives The aim of this study was to provide an ultrasound-based super-resolution methodology tha...
Ultrasound super-resolution imaging can be achieved by localizing spatially isolated microbubble con...
Ultrasound super-resolution techniques use the response of microbubble contrast agents (MBs) to visu...
Ultrasound super-resolution techniques use the response of microbubble contrast agents (MBs) to visu...
Ultrasound (US) is a widely used clinical imaging modality that offers penetration depths in tissue ...
International audienceThe majority of exchanges of oxygen and nutrients are performed around vessels...
© 2018 IEEE. Assessment of complex and disordered tumour vasculature requires full 3D visualization....
The majority of exchanges of oxygen and nutrients are performed around vessels smaller than 100 μm, ...
The structure of microvasculature cannot be resolved using standard clinical ultrasound (US) imaging...
Imaging of microvasculature can be valuable for the diagnosis and treatment monitoring of cancer and...
The structure of microvasculature cannot be resolved using standard clinical ultrasound (US) imaging...
© 2018 IEEE. Acoustic super-resolution (SR) has the potential to visualize microvasculature by local...
Perfusion by the microcirculation is key to the development, maintenance and pathology of tissue. It...
Super-resolution ultrasound enables detailed assessment of the fine vascular network by pinpointing ...
International audienceBecause it drives the compromise between resolution and penetration, the diffr...
Objectives The aim of this study was to provide an ultrasound-based super-resolution methodology tha...