ABSTRACT. Assessing the biomechanical properties of soft tissue provides clinically valuable information to supplement conventional structural imaging. In the previous studies, we introduced a dynamic elastography technique based on phase-sensitive optical coherence tomography (PhS-OCT) to characterize submillimetric structures such as skin layers or ocular tissues. Here, we propose to implement a pulse compression technique for shear wave elastography. We performed shear wave pulse compression in tissue-mimicking phantoms. Using a mechanical actuator to generate broadband frequency-modulated vibrations (1 to 5 kHz), induced displacements were detected at an equivalent frame rate of 47 kHz using a PhS-OCT. The recorded signal was digitally ...
We propose an integrated method combining low-frequency mechanics with optical imaging to map the sh...
This study aimed at visualizing relative relaxation time constant (RTC) in soft tissue by using opti...
Dynamic optical coherence elastography (OCE) tracks elastic wave propagation speed within tissue, en...
ABSTRACT. Assessing the biomechanical properties of soft tissue provides clinically valuable informa...
Investigating the elasticity of ocular tissue (cornea and intraocular lens) could help the understan...
Optical coherence tomography (OCT) provides high spatial resolution and sensitivity that are ideal f...
Shear wave optical coherence elastography (SW-OCE) is a quantitative approach to assess tissue struc...
Shear Wave Optical Coherence Elastography (SW-OCE) uses the speed of propagating shear waves to prov...
Dynamic optical coherence elastography (OCE) techniques have shown great promise at quantitatively o...
We report on the use of phase-sensitive optical coherence tomography (PhS-OCT) to detect and track t...
Assessing the biomechanical properties of the cornea can provide clinically valuable information in ...
Thesis (Ph. D.)--University of Rochester. Department of Electrical and Computer Engineering, 2020.Dy...
We propose an integrated method combining low-frequency mechanics with optical imaging to map the sh...
This study aimed at visualizing relative relaxation time constant (RTC) in soft tissue by using opti...
Dynamic optical coherence elastography (OCE) tracks elastic wave propagation speed within tissue, en...
ABSTRACT. Assessing the biomechanical properties of soft tissue provides clinically valuable informa...
Investigating the elasticity of ocular tissue (cornea and intraocular lens) could help the understan...
Optical coherence tomography (OCT) provides high spatial resolution and sensitivity that are ideal f...
Shear wave optical coherence elastography (SW-OCE) is a quantitative approach to assess tissue struc...
Shear Wave Optical Coherence Elastography (SW-OCE) uses the speed of propagating shear waves to prov...
Dynamic optical coherence elastography (OCE) techniques have shown great promise at quantitatively o...
We report on the use of phase-sensitive optical coherence tomography (PhS-OCT) to detect and track t...
Assessing the biomechanical properties of the cornea can provide clinically valuable information in ...
Thesis (Ph. D.)--University of Rochester. Department of Electrical and Computer Engineering, 2020.Dy...
We propose an integrated method combining low-frequency mechanics with optical imaging to map the sh...
This study aimed at visualizing relative relaxation time constant (RTC) in soft tissue by using opti...
Dynamic optical coherence elastography (OCE) tracks elastic wave propagation speed within tissue, en...