Heating of tissue by high-intensity focused ultrasound (HIFU) can result in sufficient temperature elevation to cause irreversible changes in the tissue structure. The contiguous volume occupied by these changes, a lesion, and the extent of the tissue changes may be quantified histologically or estimated through techniques such as ultrasonic elastography. We have shown that changes in tissue optical scattering could be used as a proxy to improve sensing and imaging of HIFU lesion formation as an alternative to thermometry. Optical coherence tomography (OCT) is a light-based method appropriate for optically accessible tissues, which we have used to quantify lesion volume, shape, and quality based upon the irreversible changes in optical scat...
There are limited imaging technologies available that can accurately assess or provide surrogate mar...
Purpose: The aims of this study are: (a) to investigate the capability of photoacoustic (PA) method ...
Real-time acousto-optic (AO) sensing - a dual-wave modality that combines ultrasound with diffuse li...
Heating of tissue by high-intensity focused ultrasound (HIFU) can result in sufficient temperature e...
Heating of tissue by high-intensity focused ultrasound (HIFU) can result in sufficient temperature e...
The optical properties of tissue change during thermal ablation. Multi-modal methods such as acousto...
Polarization Sensitive Optical Coherence Tomography (PS- OCT) was used to image the reduction of bir...
High-intensity focused ultrasound (HIFU) is often used to create lesions, or regions of tissue destr...
HIFU is a noninvasive, acoustic therapeutic technique that utilizes high intensity acoustic field in...
Real‐time imaging of the heating of tissue and lesion formation is a major barrier to the clinical a...
High Intensity Focused Ultrasound (HIFU) is a therapeutic modality which involves the use of ultraso...
The accurate determination of burn depth is critical in the clinical management of burn wounds. Pola...
Burn depth determination is a critical factor in the treatment of thermal injury. We have developed ...
We report the first application of high-speed fiber-based polarization sensitive optical coherence t...
Successful high-intensity focused ultrasound (HIFU) thermal tissue ablation relies on accurate infor...
There are limited imaging technologies available that can accurately assess or provide surrogate mar...
Purpose: The aims of this study are: (a) to investigate the capability of photoacoustic (PA) method ...
Real-time acousto-optic (AO) sensing - a dual-wave modality that combines ultrasound with diffuse li...
Heating of tissue by high-intensity focused ultrasound (HIFU) can result in sufficient temperature e...
Heating of tissue by high-intensity focused ultrasound (HIFU) can result in sufficient temperature e...
The optical properties of tissue change during thermal ablation. Multi-modal methods such as acousto...
Polarization Sensitive Optical Coherence Tomography (PS- OCT) was used to image the reduction of bir...
High-intensity focused ultrasound (HIFU) is often used to create lesions, or regions of tissue destr...
HIFU is a noninvasive, acoustic therapeutic technique that utilizes high intensity acoustic field in...
Real‐time imaging of the heating of tissue and lesion formation is a major barrier to the clinical a...
High Intensity Focused Ultrasound (HIFU) is a therapeutic modality which involves the use of ultraso...
The accurate determination of burn depth is critical in the clinical management of burn wounds. Pola...
Burn depth determination is a critical factor in the treatment of thermal injury. We have developed ...
We report the first application of high-speed fiber-based polarization sensitive optical coherence t...
Successful high-intensity focused ultrasound (HIFU) thermal tissue ablation relies on accurate infor...
There are limited imaging technologies available that can accurately assess or provide surrogate mar...
Purpose: The aims of this study are: (a) to investigate the capability of photoacoustic (PA) method ...
Real-time acousto-optic (AO) sensing - a dual-wave modality that combines ultrasound with diffuse li...