Surface acoustic waves (SAWs) is a non-invasive and nondestructive method to detect elastic property of materials in industrial and medical field. Elastography derived from SAWs has been proved to be efficient for reconstructing the elasticity distribution map. Current SAWs elastography applied in tissues provides lower lateral resolution as the SAW impulse was detected in larger distance interval (millimeter level). Therefore, a new protocol to form elastography with higher lateral resolution was proposed in this paper. Phase sensitive optical coherence tomography (PhS-OCT) with high spatial resolution was employed to monitor SAWs impulse stimulated by HIFU transducer. Tissue-mimicking phantoms were tested in this experiment. SAWs dispersi...
The aim of this study was to investigate the feasibility of utilizing the phase velocity dispersion ...
Surface acoustic waves (SAWs) shows great potential in non-destructive mechanical characterization, ...
The mechanical properties of skin are important parameters that are useful for understanding skin pa...
Surface acoustic wave (SAW) elastography has been proven to be a non-invasive, non-destructive metho...
Elastography has the ability of quantitatively evaluating the mechanical properties of soft tissue, ...
The combined use of surface acoustic wave (SAW) and phase-sensitive optical coherence tomography (Ph...
By combining with the phase sensitive optical coherence tomography (PhS-OCT), vibration and surface ...
Surface acoustic wave (SAW) shows advantages in revealing skin mechanical properties. In this paper,...
We report on a quantitative elastography technique achieved by combining phase-sensitive optical coh...
This paper presents the combination of phase sensitive optical coherence tomography (PhS-OCT) imagin...
Measuring the elasticity distribution inside the human body is of great interest because elastic abn...
AbstractSurface acoustic wave (SAW) shows advantages in revealing skin mechanical properties. In thi...
The aim of this study was to investigate the feasibility of utilizing the phase velocity dispersion ...
Surface acoustic waves (SAWs) shows great potential in non-destructive mechanical characterization, ...
The mechanical properties of skin are important parameters that are useful for understanding skin pa...
Surface acoustic wave (SAW) elastography has been proven to be a non-invasive, non-destructive metho...
Elastography has the ability of quantitatively evaluating the mechanical properties of soft tissue, ...
The combined use of surface acoustic wave (SAW) and phase-sensitive optical coherence tomography (Ph...
By combining with the phase sensitive optical coherence tomography (PhS-OCT), vibration and surface ...
Surface acoustic wave (SAW) shows advantages in revealing skin mechanical properties. In this paper,...
We report on a quantitative elastography technique achieved by combining phase-sensitive optical coh...
This paper presents the combination of phase sensitive optical coherence tomography (PhS-OCT) imagin...
Measuring the elasticity distribution inside the human body is of great interest because elastic abn...
AbstractSurface acoustic wave (SAW) shows advantages in revealing skin mechanical properties. In thi...
The aim of this study was to investigate the feasibility of utilizing the phase velocity dispersion ...
Surface acoustic waves (SAWs) shows great potential in non-destructive mechanical characterization, ...
The mechanical properties of skin are important parameters that are useful for understanding skin pa...