Microliter air-pulse stimulated optical coherence elastography (OCE) was recently proposed for tissue biomechanical characterization using natural frequency oscillations. However, previous studies have not quantified actual stimulation parameters (e.g. time-frequency analysis), obscuring the actual stimulation-response function, leading to potential errors in natural frequency measurement. We propose a dual-channel air-pulse OCE method with one channel stimulating the sample and the other simultaneously measured with a pressure sensor. While pressure amplitude differences were ~10%, the frequency profiles were identical (duration: 3–35 ms; pressure: 20 Pa to 2 kPa) for both channels. The frequency response function was used to characterize ...
This study aimed at visualizing relative relaxation time constant (RTC) in soft tissue by using opti...
Thesis (Ph. D.)--University of Rochester. Department of Electrical and Computer Engineering, 2020.Dy...
Current clinical tools provide critical information about ocular health such as intraocular pressure...
Dynamic optical coherence elastography (OCE) techniques have shown great promise at quantitatively o...
This dissertation reports the development of noncontact techniques to quantify the biomechanical pro...
We present a new approach to optical coherence elastography (OCE), which probes the local elastic pr...
Acoustic radiation force optical coherence elastography (ARF-OCE) has been successfully implemented ...
The mechanical properties of tissues can provide valuable information about tissue integrity and hea...
Optical elastography is aimed at using the visco-elastic properties of soft tissue as a contrast mec...
High-resolution elasticity mapping of tissue biomechanical properties is crucial in early detection ...
Optical coherence tomography (OCT) provides high spatial resolution and sensitivity that are ideal f...
Mechanical elasticity often serves as a major indicator for pathological changes in ocular as well a...
Biomechanical properties of soft tissues are important indicators of tissue functions which can be u...
The measurement of the biomechanical properties of the skin is of great interest since these propert...
Purpose : To investigate the possibility of determining the eye's intraocular pressure (IOP), biomec...
This study aimed at visualizing relative relaxation time constant (RTC) in soft tissue by using opti...
Thesis (Ph. D.)--University of Rochester. Department of Electrical and Computer Engineering, 2020.Dy...
Current clinical tools provide critical information about ocular health such as intraocular pressure...
Dynamic optical coherence elastography (OCE) techniques have shown great promise at quantitatively o...
This dissertation reports the development of noncontact techniques to quantify the biomechanical pro...
We present a new approach to optical coherence elastography (OCE), which probes the local elastic pr...
Acoustic radiation force optical coherence elastography (ARF-OCE) has been successfully implemented ...
The mechanical properties of tissues can provide valuable information about tissue integrity and hea...
Optical elastography is aimed at using the visco-elastic properties of soft tissue as a contrast mec...
High-resolution elasticity mapping of tissue biomechanical properties is crucial in early detection ...
Optical coherence tomography (OCT) provides high spatial resolution and sensitivity that are ideal f...
Mechanical elasticity often serves as a major indicator for pathological changes in ocular as well a...
Biomechanical properties of soft tissues are important indicators of tissue functions which can be u...
The measurement of the biomechanical properties of the skin is of great interest since these propert...
Purpose : To investigate the possibility of determining the eye's intraocular pressure (IOP), biomec...
This study aimed at visualizing relative relaxation time constant (RTC) in soft tissue by using opti...
Thesis (Ph. D.)--University of Rochester. Department of Electrical and Computer Engineering, 2020.Dy...
Current clinical tools provide critical information about ocular health such as intraocular pressure...