3-D imaging ICE catheters with large element counts present design challenges in achieving simultaneous data readout from all elements while significantly reducing cable count for a small catheter diameter. Current approaches such as microbeamformer techniques tend to rely on area and power hungry circuits, making them undesirable for ICE catheters. In this paper, a system which uses are an efficient real-time programmable on-chip transmit (TX) beamformer circuitry to reduce the cable count on the TX side and analog 8/1 Time Division Multiplexing (TDM) with Direct Digital Demodulation (DDD) to reduce the cable count on the receive (RX) side is presented
Intra-cardiac echography (ICE) probes (Fig. 32.2.1) are widely used in electrophysiology for their g...
Introduction – Cardiovascular diseases are the leading cause of death in the world with one in three...
This thesis describes the design and realization of integrated ultrasound transceivers for carotid a...
Intracardiac echocardiography (ICE) provides real-time ultrasound imaging of the heart anatomy from ...
In ultrasound imaging catheter applications, gathering the data from multi-element transducer arrays...
In real-time catheter based 3D ultrasound imaging applications, gathering data from the transducer a...
In catheter based ultrasound imaging applications, gathering real-time imaging data from a large num...
This paper presents a single chip reduced-wire active catheter application-specific integrated circu...
CMUT-on-CMOS integration is particularly suitable for catheter based ultrasound imaging applications...
Forward looking (FL) imaging catheters would be an important tool for several intravascular ultrasou...
Close integration of front-end electronics and the transducer array within the catheter is critical ...
Intracardiac imaging catheters represent unique instruments to diagnose and treat a diseased heart. ...
The objective of the proposed research is to minimize and integrate intravascular ultrasound imaging...
Smart minimally invasive devices face a connectivity challenge. An example is found in intracardiac ...
In this article, an application-specific integrated circuit (ASIC) for 3-D, high-frame-rate ultrasou...
Intra-cardiac echography (ICE) probes (Fig. 32.2.1) are widely used in electrophysiology for their g...
Introduction – Cardiovascular diseases are the leading cause of death in the world with one in three...
This thesis describes the design and realization of integrated ultrasound transceivers for carotid a...
Intracardiac echocardiography (ICE) provides real-time ultrasound imaging of the heart anatomy from ...
In ultrasound imaging catheter applications, gathering the data from multi-element transducer arrays...
In real-time catheter based 3D ultrasound imaging applications, gathering data from the transducer a...
In catheter based ultrasound imaging applications, gathering real-time imaging data from a large num...
This paper presents a single chip reduced-wire active catheter application-specific integrated circu...
CMUT-on-CMOS integration is particularly suitable for catheter based ultrasound imaging applications...
Forward looking (FL) imaging catheters would be an important tool for several intravascular ultrasou...
Close integration of front-end electronics and the transducer array within the catheter is critical ...
Intracardiac imaging catheters represent unique instruments to diagnose and treat a diseased heart. ...
The objective of the proposed research is to minimize and integrate intravascular ultrasound imaging...
Smart minimally invasive devices face a connectivity challenge. An example is found in intracardiac ...
In this article, an application-specific integrated circuit (ASIC) for 3-D, high-frame-rate ultrasou...
Intra-cardiac echography (ICE) probes (Fig. 32.2.1) are widely used in electrophysiology for their g...
Introduction – Cardiovascular diseases are the leading cause of death in the world with one in three...
This thesis describes the design and realization of integrated ultrasound transceivers for carotid a...