We present the first correction of refraction in three-dimensional (3D) ultrasound imaging using an iterative approach that traces propagation paths through a two-layer planar tissue model, applying Snell’s law in 3D. This approach is applied to real-time 3D transcranial ultrasound imaging by precomputing delays offline for several skull thicknesses, allowing the user to switch between three sets of delays for phased array imaging at the push of a button. Simulations indicate that refraction correction may be expected to increase sensitivity, reduce beam steering errors, and partially restore lost spatial resolution, with the greatest improvements occurring at the largest steering angles. Distorted images of cylindrical lesions were created...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
A new adaptive beamforming method for ultrasonic imaging via small-aperture phased arrays through co...
Phase aberration in transcranial ultrasound imaging (TUI) caused by the human skull leads to an inac...
We present the first correction of refraction in three-dimensional (3D) ultrasound imaging using an ...
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...
Transcranial ultrasound imaging (TUI) is a diagnostic modality with numerous applications, but unfor...
<p>Phase correction has the potential to increase the image quality of real-time 3D (RT3D) ultrasoun...
Phase aberration of focused ultrasound by tissue structure causes focus degradation and reduces the ...
Background: Three-dimensional ultrasound (3D-US) is used in planning and treatment during external b...
Transcranial ultrasound imaging is a suitable technology for diagnosis of strokes as it is safe, por...
While transcranial ultrasound imaging is a promising diagnostic modality, it is still hindered due t...
AbstractThe computational complexity of wave-based image ultrasound transmission reconstructionsis v...
Ultrasound tomography (UST) has seen a revival of interest in the past decade, especially for breast...
Matrix imaging paves the way towards a next revolution in wave physics. Based on the response matrix...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
A new adaptive beamforming method for ultrasonic imaging via small-aperture phased arrays through co...
Phase aberration in transcranial ultrasound imaging (TUI) caused by the human skull leads to an inac...
We present the first correction of refraction in three-dimensional (3D) ultrasound imaging using an ...
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...
Transcranial ultrasound imaging (TUI) is a diagnostic modality with numerous applications, but unfor...
<p>Phase correction has the potential to increase the image quality of real-time 3D (RT3D) ultrasoun...
Phase aberration of focused ultrasound by tissue structure causes focus degradation and reduces the ...
Background: Three-dimensional ultrasound (3D-US) is used in planning and treatment during external b...
Transcranial ultrasound imaging is a suitable technology for diagnosis of strokes as it is safe, por...
While transcranial ultrasound imaging is a promising diagnostic modality, it is still hindered due t...
AbstractThe computational complexity of wave-based image ultrasound transmission reconstructionsis v...
Ultrasound tomography (UST) has seen a revival of interest in the past decade, especially for breast...
Matrix imaging paves the way towards a next revolution in wave physics. Based on the response matrix...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
A new adaptive beamforming method for ultrasonic imaging via small-aperture phased arrays through co...
Phase aberration in transcranial ultrasound imaging (TUI) caused by the human skull leads to an inac...