Medical phantoms are frequently required to verify image and signal processing systems, and are often used to support algorithm development for a wide range of imaging and blood flow assessments. A phantom with accurate scattering properties is a crucial requirement when assessing the effects of multi-path propagation channels during the development of complex signal processing techniques for Transcranial Doppler (TCD) ultrasound. The simulation of physiological blood flow in a phantom with tissue and blood equivalence can be achieved using a variety of techniques. In this paper, poly (vinyl alcohol) cryogel (PVA-C) tissue mimicking material (TMM) is evaluated in conjunction with a number of potential scattering agents. The acoustic propert...
Ultrasound imaging systems need tissue-mimicking phantoms with a good range of acoustic properties. ...
Purpose: This work aims to develop a simple, anatomically and haptically realistic vascular phantom,...
Vascular phantoms are crucial tools for clinical training and for calibration and validation of medi...
Medical phantoms are frequently required to verify image and signal processing systems, and are ofte...
Polyvinyl alcohol cryogel, (PVA-C) is presented as a vessel mimicking material for use in anatomical...
The wall-less flow phantoms with recognized acoustic features (attenuation and speed of sound), inte...
AbstractThere are currently very few test objects suitable for high-frequency ultrasound scanners th...
© 2016 SPIE. Tissue mimicking materials are physical constructs exhibiting certain desired propertie...
Tissue-mimicking materials (TMMs) typically used for ultrasound phantoms include gelatin, agarose an...
Flow phantoms with anatomically realistic geometry and high acoustic compatibility with real vessels...
Polyvinyl-alcohol cryogel is commonly used for soft tissue phantom manufacture. The gel formation fr...
Materials with well-characterized acoustic properties are of great interest for the development of t...
Background: To examine the blood flow and detection of the issues related to it by medical ultrasoun...
Doppler ultrasound can be used to investigate brain tissue motion. The objective of this study was t...
Purpose The stiffness of Polyvinyl-alcohol cryogel can be adjusted through application of consecutiv...
Ultrasound imaging systems need tissue-mimicking phantoms with a good range of acoustic properties. ...
Purpose: This work aims to develop a simple, anatomically and haptically realistic vascular phantom,...
Vascular phantoms are crucial tools for clinical training and for calibration and validation of medi...
Medical phantoms are frequently required to verify image and signal processing systems, and are ofte...
Polyvinyl alcohol cryogel, (PVA-C) is presented as a vessel mimicking material for use in anatomical...
The wall-less flow phantoms with recognized acoustic features (attenuation and speed of sound), inte...
AbstractThere are currently very few test objects suitable for high-frequency ultrasound scanners th...
© 2016 SPIE. Tissue mimicking materials are physical constructs exhibiting certain desired propertie...
Tissue-mimicking materials (TMMs) typically used for ultrasound phantoms include gelatin, agarose an...
Flow phantoms with anatomically realistic geometry and high acoustic compatibility with real vessels...
Polyvinyl-alcohol cryogel is commonly used for soft tissue phantom manufacture. The gel formation fr...
Materials with well-characterized acoustic properties are of great interest for the development of t...
Background: To examine the blood flow and detection of the issues related to it by medical ultrasoun...
Doppler ultrasound can be used to investigate brain tissue motion. The objective of this study was t...
Purpose The stiffness of Polyvinyl-alcohol cryogel can be adjusted through application of consecutiv...
Ultrasound imaging systems need tissue-mimicking phantoms with a good range of acoustic properties. ...
Purpose: This work aims to develop a simple, anatomically and haptically realistic vascular phantom,...
Vascular phantoms are crucial tools for clinical training and for calibration and validation of medi...