This thesis describes low-power application-specific integrated circuit (ASIC) designs to mitigate the constraint of cable count in miniature 3-D TEE probes. Receive cable count reduction techniques including subarray beamforming and digital time-division multiplexing (TDM) have been explored and the effectiveness of these techniques has been demonstrated by experimental prototypes. Digital TDM is a reliable technique to reduce cable count but it requires an in-probe datalink for high-speed data communication. A quantitative study on the impact of the datalink performance on B-mode ultrasound image quality has been introduced in this thesis for data communications in future digitized ultrasound probes. Finally, a high-voltage transmitter pr...
<p>This paper presents a power-and area-efficient front-end application-specific integrated circuit ...
Imagine that the technical development can take the ultrasound measurement systems from the large pi...
In ultrasound imaging catheter applications, gathering the data from multi-element transducer arrays...
This thesis describes the design of a front-end application-specific integrated circuit (ASIC), whic...
Miniature ultrasound probes, such as intravascular ultrasound (IVUS) probes, are valuable diagnostic...
This thesis discusses the architecture, circuit implementation and the simulation results of a cable...
This thesis describes the analysis, design and evaluation of front-end application-specific integrat...
This thesis describes the design, prototyping and experimental evaluation of transceiver ASICs (appl...
An ASIC is presented for intra-vascular ultrasound imaging. Despite being connected via a single coa...
In real-time catheter based 3D ultrasound imaging applications, gathering data from the transducer a...
This article presents an application-specific integrated circuit (ASIC) designed for intra-vascular ...
This paper presents an area- and power-efficient application-specified integrated circuit (ASIC) for...
The cost and complexity of medical ultrasound imaging systems can be reduced by integrating the tran...
As medical ultrasound imaging moves from conventional cart-based scanners to new form factors such a...
In this article, an application-specific integrated circuit (ASIC) for 3-D, high-frame-rate ultrasou...
<p>This paper presents a power-and area-efficient front-end application-specific integrated circuit ...
Imagine that the technical development can take the ultrasound measurement systems from the large pi...
In ultrasound imaging catheter applications, gathering the data from multi-element transducer arrays...
This thesis describes the design of a front-end application-specific integrated circuit (ASIC), whic...
Miniature ultrasound probes, such as intravascular ultrasound (IVUS) probes, are valuable diagnostic...
This thesis discusses the architecture, circuit implementation and the simulation results of a cable...
This thesis describes the analysis, design and evaluation of front-end application-specific integrat...
This thesis describes the design, prototyping and experimental evaluation of transceiver ASICs (appl...
An ASIC is presented for intra-vascular ultrasound imaging. Despite being connected via a single coa...
In real-time catheter based 3D ultrasound imaging applications, gathering data from the transducer a...
This article presents an application-specific integrated circuit (ASIC) designed for intra-vascular ...
This paper presents an area- and power-efficient application-specified integrated circuit (ASIC) for...
The cost and complexity of medical ultrasound imaging systems can be reduced by integrating the tran...
As medical ultrasound imaging moves from conventional cart-based scanners to new form factors such a...
In this article, an application-specific integrated circuit (ASIC) for 3-D, high-frame-rate ultrasou...
<p>This paper presents a power-and area-efficient front-end application-specific integrated circuit ...
Imagine that the technical development can take the ultrasound measurement systems from the large pi...
In ultrasound imaging catheter applications, gathering the data from multi-element transducer arrays...