Phase aberration of focused ultrasound by tissue structure causes focus degradation and reduces the quality of B-mode images. Refraction at the boundary between subcutaneous fat and muscle is one of the dominant factors behind such degradation. To correct this, we propose a refraction compensation method in which ultrasound is transmitted and received twice. The boundary shape between different tissues is detected by the first ultrasound transmission. Next, ultrasound rays from probe elements to the target are calculated taking refraction into account. Corrected delay times are calculated from the length of the rays and the sound velocity of the medium. Finally, ultrasound is transmitted a second time using the corrected delay time and a B-...
A computationally efficient method for phase aberration correction in ultrasound imaging is presente...
In a recent study, we proposed a technique to correct aberration caused by the skull and reconstruct...
In a recent study, we proposed a technique to correct aberration caused by the skull and reconstruct...
Commercial medical ultrasound scanners assume average sound velocity of 1540 m/s while sound speed v...
Abstract- Phase aberration is one of the most important factors that limit improvement to lateral re...
We present the first correction of refraction in three-dimensional (3D) ultrasound imaging using an ...
Abstract- This paper presents a computationaily efficient method to correct the phase aberration pro...
The work presented in this thesis is devoted to studying aberration in ultrasound medical imaging, a...
AbstractIn transabdominal histotripsy, ultrasound pulses are focused on the body to noninvasively de...
Transcranial ultrasound imaging (TUI) is a diagnostic modality with numerous applications, but unfor...
Abdominal ultrasound image quality is hampered by phase aberration, that is mainly caused by the lar...
Beam refraction in soft tissue and phase cancellation at the receiver can cause large errors and pre...
Aberrations of the acoustic wave front, caused by spatial variations of the speed-of-sound, are a ...
Phase aberration due to tissues with inhomogeneous acoustic speeds is a major source for image degra...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
A computationally efficient method for phase aberration correction in ultrasound imaging is presente...
In a recent study, we proposed a technique to correct aberration caused by the skull and reconstruct...
In a recent study, we proposed a technique to correct aberration caused by the skull and reconstruct...
Commercial medical ultrasound scanners assume average sound velocity of 1540 m/s while sound speed v...
Abstract- Phase aberration is one of the most important factors that limit improvement to lateral re...
We present the first correction of refraction in three-dimensional (3D) ultrasound imaging using an ...
Abstract- This paper presents a computationaily efficient method to correct the phase aberration pro...
The work presented in this thesis is devoted to studying aberration in ultrasound medical imaging, a...
AbstractIn transabdominal histotripsy, ultrasound pulses are focused on the body to noninvasively de...
Transcranial ultrasound imaging (TUI) is a diagnostic modality with numerous applications, but unfor...
Abdominal ultrasound image quality is hampered by phase aberration, that is mainly caused by the lar...
Beam refraction in soft tissue and phase cancellation at the receiver can cause large errors and pre...
Aberrations of the acoustic wave front, caused by spatial variations of the speed-of-sound, are a ...
Phase aberration due to tissues with inhomogeneous acoustic speeds is a major source for image degra...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
A computationally efficient method for phase aberration correction in ultrasound imaging is presente...
In a recent study, we proposed a technique to correct aberration caused by the skull and reconstruct...
In a recent study, we proposed a technique to correct aberration caused by the skull and reconstruct...