Phase aberration in transcranial ultrasound imaging (TUI) caused by the human skull leads to an inaccurate image reconstruction. In this article, we present a novel method for estimating the speed of sound and an adaptive beamforming technique for phase aberration correction in a flat polyvinylchloride (PVC) slab as a model for the human skull. First, the speed of sound of the PVC slab is found by extracting the overlapping quasi-longitudinal wave velocities of symmetrical Lamb waves in the frequency-wavenumber domain. Then, the thickness of the plate is determined by the echoes from its front and back side. Next, an adaptive beamforming method is developed, utilizing the measured sound speed map of the imaging medium. Finally, to minimize ...
Aberrations of the acoustic wave front, caused by spatial variations of the speed-of-sound, are a ...
Two major topics in clinical ultrasound imaging are addressed in this thesis. The first is phase abe...
Conventional ultrasound (US) devices use the time of flight (TOF) of reflected US pulses to calculat...
Phase aberration in transcranial ultrasound imaging (TUI) caused by the human skull leads to an inac...
Medical ultrasound imaging is in widespread use today due to its low cost, portability, lack of side...
Transcranial ultrasound imaging is a suitable technology for diagnosis of strokes as it is safe, por...
Transcranial ultrasound imaging (TUI) is a diagnostic modality with numerous applications, but unfor...
A new adaptive beamforming method for ultrasonic imaging via small-aperture phased arrays through co...
While transcranial ultrasound imaging is a promising diagnostic modality, it is still hindered due t...
The contents of this thesis consider new methods for generating ultrasound beams for enhanced image ...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
Echography relies on the transmission of ultrasound signals through biological tissues, and the proc...
Most ultrasound imaging techniques necessitate the fundamental step of converting temporal signals r...
An approach aimed at improved ultrasound resolution and signal strength through highly attenuating m...
Shear wave elasticity imaging (SWEI) is a non-invasive imaging modality that provides tissue elastic...
Aberrations of the acoustic wave front, caused by spatial variations of the speed-of-sound, are a ...
Two major topics in clinical ultrasound imaging are addressed in this thesis. The first is phase abe...
Conventional ultrasound (US) devices use the time of flight (TOF) of reflected US pulses to calculat...
Phase aberration in transcranial ultrasound imaging (TUI) caused by the human skull leads to an inac...
Medical ultrasound imaging is in widespread use today due to its low cost, portability, lack of side...
Transcranial ultrasound imaging is a suitable technology for diagnosis of strokes as it is safe, por...
Transcranial ultrasound imaging (TUI) is a diagnostic modality with numerous applications, but unfor...
A new adaptive beamforming method for ultrasonic imaging via small-aperture phased arrays through co...
While transcranial ultrasound imaging is a promising diagnostic modality, it is still hindered due t...
The contents of this thesis consider new methods for generating ultrasound beams for enhanced image ...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
Echography relies on the transmission of ultrasound signals through biological tissues, and the proc...
Most ultrasound imaging techniques necessitate the fundamental step of converting temporal signals r...
An approach aimed at improved ultrasound resolution and signal strength through highly attenuating m...
Shear wave elasticity imaging (SWEI) is a non-invasive imaging modality that provides tissue elastic...
Aberrations of the acoustic wave front, caused by spatial variations of the speed-of-sound, are a ...
Two major topics in clinical ultrasound imaging are addressed in this thesis. The first is phase abe...
Conventional ultrasound (US) devices use the time of flight (TOF) of reflected US pulses to calculat...