abstract: Ultrasound B-mode imaging is an increasingly significant medical imaging modality for clinical applications. Compared to other imaging modalities like computed tomography (CT) or magnetic resonance imaging (MRI), ultrasound imaging has the advantage of being safe, inexpensive, and portable. While two dimensional (2-D) ultrasound imaging is very popular, three dimensional (3-D) ultrasound imaging provides distinct advantages over its 2-D counterpart by providing volumetric imaging, which leads to more accurate analysis of tumor and cysts. However, the amount of received data at the front-end of 3-D system is extremely large, making it impractical for power-constrained portable systems. In this thesis, algorithm and hardware des...
Super-resolution ultrasound imaging has been so far achieved in 3-D by mechanically scanning a volum...
Point of care ultrasonography has been the focus of extensive research over the past few decades. Mi...
We present an efficient FPGA architecture suitable for a medical 3D ultrasound beamformer. We tackle...
abstract: Three dimensional (3-D) ultrasound is safe, inexpensive, and has been shown to drastically...
Ultrasound Imaging (USI) or Medical Sonography (MS), as it is formally called, has been widely used ...
Ultrasound imaging is a ubiquitous diagnostic technique, but does not fit the requirements of the te...
Volumetric Ultrasound (US) imaging is an emerging tech- nology for medical US applications. Typicall...
High frame rate 3-D ultrasound imaging technology combined with super-resolution processing method c...
Enabling telemedicine in Ultrasound (US) imaging, i.e. telesonography, is until today just a wish. A...
High frame rate 3-D ultrasound imaging technology combined with super-resolution processing method c...
Abstract-3D ultrasound is becoming common for noninvasive medical imaging because of its accuracy, s...
Ultrasound imaging is a ubiquitous diagnostic technique, but does not fit the requirements of the te...
3D ultrasound is an emerging diagnostic technique that extends standard ultrasound imaging by captur...
Three-dimensional ultrasound is a powerful imaging technique, but it requires thousands of sensors a...
High-frame-rate 3-D ultrasound imaging technology combined with super-resolution processing method c...
Super-resolution ultrasound imaging has been so far achieved in 3-D by mechanically scanning a volum...
Point of care ultrasonography has been the focus of extensive research over the past few decades. Mi...
We present an efficient FPGA architecture suitable for a medical 3D ultrasound beamformer. We tackle...
abstract: Three dimensional (3-D) ultrasound is safe, inexpensive, and has been shown to drastically...
Ultrasound Imaging (USI) or Medical Sonography (MS), as it is formally called, has been widely used ...
Ultrasound imaging is a ubiquitous diagnostic technique, but does not fit the requirements of the te...
Volumetric Ultrasound (US) imaging is an emerging tech- nology for medical US applications. Typicall...
High frame rate 3-D ultrasound imaging technology combined with super-resolution processing method c...
Enabling telemedicine in Ultrasound (US) imaging, i.e. telesonography, is until today just a wish. A...
High frame rate 3-D ultrasound imaging technology combined with super-resolution processing method c...
Abstract-3D ultrasound is becoming common for noninvasive medical imaging because of its accuracy, s...
Ultrasound imaging is a ubiquitous diagnostic technique, but does not fit the requirements of the te...
3D ultrasound is an emerging diagnostic technique that extends standard ultrasound imaging by captur...
Three-dimensional ultrasound is a powerful imaging technique, but it requires thousands of sensors a...
High-frame-rate 3-D ultrasound imaging technology combined with super-resolution processing method c...
Super-resolution ultrasound imaging has been so far achieved in 3-D by mechanically scanning a volum...
Point of care ultrasonography has been the focus of extensive research over the past few decades. Mi...
We present an efficient FPGA architecture suitable for a medical 3D ultrasound beamformer. We tackle...