Visualizing stiffness within the local tissue environment at the cellular and subcellular level promises to provide insight into the genesis and progression of disease. In this Letter, we propose ultrahigh-resolution optical coherence elastography (UHROCE), and demonstrate 3D imaging of local axial strain of tissues undergoing compressive loading. We combine optical coherence microscopy (OCM) and phase-sensitive detection of local tissue displacement to produce strain elastograms with resolution
Compression optical coherence elastography forms images based on the mechanical properties of tissue...
We present an acquisition method for optical coherence elastography (OCE) that enables acquisition o...
We present optical coherence micro-elastography, an improved form of compression optical coherence e...
Visualizing stiffness within the local tissue environment at the cellular and subcellular level prom...
Visualizing stiffness within the local tissue environment at the cellular and sub-cellular level pro...
Visualizing stiffness within the local tissue environment at the cellular and sub-cellular level pro...
Optical coherence elastography (OCE) is a strain imaging technique that characterizes the elastic pr...
Optical coherence elastography (OCE) is a strain imaging technique that characterizes the elastic pr...
Optical coherence elastography (OCE) is emerging as a method to image the mechanical properties of t...
Optical coherence elastography (OCE) is emerging as a method to image the mechanical properties of t...
The mechanical properties of tissue are pivotal in its function and behavior, and are often modified...
The mechanical properties of tissue are pivotal in its function and behavior, and are often modified...
OCE provides 3-D maps of tissue stiffness on the micrometer to millimeter scale, bridging a crucial ...
OCE provides 3-D maps of tissue stiffness on the micrometer to millimeter scale, bridging a crucial ...
We present optical coherence micro-elastography, an improved form of compression optical coherence e...
Compression optical coherence elastography forms images based on the mechanical properties of tissue...
We present an acquisition method for optical coherence elastography (OCE) that enables acquisition o...
We present optical coherence micro-elastography, an improved form of compression optical coherence e...
Visualizing stiffness within the local tissue environment at the cellular and subcellular level prom...
Visualizing stiffness within the local tissue environment at the cellular and sub-cellular level pro...
Visualizing stiffness within the local tissue environment at the cellular and sub-cellular level pro...
Optical coherence elastography (OCE) is a strain imaging technique that characterizes the elastic pr...
Optical coherence elastography (OCE) is a strain imaging technique that characterizes the elastic pr...
Optical coherence elastography (OCE) is emerging as a method to image the mechanical properties of t...
Optical coherence elastography (OCE) is emerging as a method to image the mechanical properties of t...
The mechanical properties of tissue are pivotal in its function and behavior, and are often modified...
The mechanical properties of tissue are pivotal in its function and behavior, and are often modified...
OCE provides 3-D maps of tissue stiffness on the micrometer to millimeter scale, bridging a crucial ...
OCE provides 3-D maps of tissue stiffness on the micrometer to millimeter scale, bridging a crucial ...
We present optical coherence micro-elastography, an improved form of compression optical coherence e...
Compression optical coherence elastography forms images based on the mechanical properties of tissue...
We present an acquisition method for optical coherence elastography (OCE) that enables acquisition o...
We present optical coherence micro-elastography, an improved form of compression optical coherence e...