The mechanical forces that living cells experience represent an important framework in the determination of a range of intricate cellular functions and processes. Current insight into cell mechanics is typically provided by in vitro measurement systems; for example, atomic force microscopy (AFM) measurements are performed on cells in culture or, at best, on freshly excised tissue. Optical techniques, such as Brillouin microscopy and optical elastography, have been used for ex vivo and in situ imaging, recently achieving cellular-scale resolution. The utility of these techniques in cell mechanics lies in quick, three-dimensional and label-free mechanical imaging. Translation of these techniques toward minimally invasive in vivo imaging would...
Cellular-scale imaging of the mechanical properties of tissue has helped to reveal the origins of di...
We incorporate for the first time optical coherence elastography (OCE) into a needle probe and demon...
Cellular-scale imaging of the mechanical properties of tissue has helped to reveal the origins of di...
In this paper, we describe a technique capable of visualizing mechanical properties at the cellular ...
Optical elastography, the use of optics to characterize and map the mechanical properties of biologi...
Optical elastography, the use of optics to characterize and map the mechanical properties of biologi...
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...
Biomechanical properties are important for living tissues and cells. They are indicators of function...
We incorporate for the first time optical coherence elastography (OCE) into a needle probe and demon...
Visualizing stiffness within the local tissue environment at the cellular and subcellular level prom...
We incorporate for the first time optical coherence elastography (OCE) into a needle probe and demon...
Visualizing stiffness within the local tissue environment at the cellular and subcellular level prom...
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...
Cellular-scale imaging of the mechanical properties of tissue has helped to reveal the origins of di...
We incorporate for the first time optical coherence elastography (OCE) into a needle probe and demon...
Cellular-scale imaging of the mechanical properties of tissue has helped to reveal the origins of di...
In this paper, we describe a technique capable of visualizing mechanical properties at the cellular ...
Optical elastography, the use of optics to characterize and map the mechanical properties of biologi...
Optical elastography, the use of optics to characterize and map the mechanical properties of biologi...
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...
Biomechanical properties are important for living tissues and cells. They are indicators of function...
We incorporate for the first time optical coherence elastography (OCE) into a needle probe and demon...
Visualizing stiffness within the local tissue environment at the cellular and subcellular level prom...
We incorporate for the first time optical coherence elastography (OCE) into a needle probe and demon...
Visualizing stiffness within the local tissue environment at the cellular and subcellular level prom...
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...
Cellular-scale imaging of the mechanical properties of tissue has helped to reveal the origins of di...
We incorporate for the first time optical coherence elastography (OCE) into a needle probe and demon...
Cellular-scale imaging of the mechanical properties of tissue has helped to reveal the origins of di...