Current measurements of the biomechanical properties of cells require physical contact with cells or lack subcellular resolution. Here we developed a label-free microscopy technique based on Brillouin light scattering that is capable of measuring an intracellular longitudinal modulus with optical resolution. The 3D Brillouin maps we obtained of cells in 2D and 3D microenvironments revealed mechanical changes due to cytoskeletal modulation and cell-volume regulation.National Institutes of Health (U.S.) (Grants P41-EB015903 and R33 CA174550-01)National Science Foundation (U.S.) (Grant CBET-0853773
Altered cellular biomechanics have been implicated as key photogenic triggers in age-related disease...
Biofabrication of three-dimensional (3D) in vitro neural cell models that closely mimic the central ...
Abstract: We present Brillouin microscopy, an all-optical imaging modality to map mechanical propert...
Current measurements of the biomechanical properties of cells require physical contact with cells or...
Cells sense and respond to external physical forces and substrate rigidity by regulating their cell ...
The mechanical phenotype of the living cell is critical for survival following deformations due to c...
Quantitative measurements of physical parameters become increasingly important for understanding bio...
Many important biological functions and processes are reflected in cell and tissue mechanical proper...
Biomechanics studies how biomaterials deform subjected to external loads. Most techniques used in bi...
Extracellular matrices (ECMs) are central to the advent of multicellular life, and their mechanical ...
Biological systems are first of all physical systems whose function (or malfunction) is also determi...
Quantitative measurements of physical parameters become increasingly important for understanding bio...
In recent decades, mechanobiology has emerged as a novel perspective in the context of basic biomedi...
Brillouin microscopy measures compressibility, but is being increasingly used to assess stiffness of...
The role and importance of mechanical properties of cells and tissues in cellular function, developm...
Altered cellular biomechanics have been implicated as key photogenic triggers in age-related disease...
Biofabrication of three-dimensional (3D) in vitro neural cell models that closely mimic the central ...
Abstract: We present Brillouin microscopy, an all-optical imaging modality to map mechanical propert...
Current measurements of the biomechanical properties of cells require physical contact with cells or...
Cells sense and respond to external physical forces and substrate rigidity by regulating their cell ...
The mechanical phenotype of the living cell is critical for survival following deformations due to c...
Quantitative measurements of physical parameters become increasingly important for understanding bio...
Many important biological functions and processes are reflected in cell and tissue mechanical proper...
Biomechanics studies how biomaterials deform subjected to external loads. Most techniques used in bi...
Extracellular matrices (ECMs) are central to the advent of multicellular life, and their mechanical ...
Biological systems are first of all physical systems whose function (or malfunction) is also determi...
Quantitative measurements of physical parameters become increasingly important for understanding bio...
In recent decades, mechanobiology has emerged as a novel perspective in the context of basic biomedi...
Brillouin microscopy measures compressibility, but is being increasingly used to assess stiffness of...
The role and importance of mechanical properties of cells and tissues in cellular function, developm...
Altered cellular biomechanics have been implicated as key photogenic triggers in age-related disease...
Biofabrication of three-dimensional (3D) in vitro neural cell models that closely mimic the central ...
Abstract: We present Brillouin microscopy, an all-optical imaging modality to map mechanical propert...