Publication | Open Access
Spatiotemporally Super-Resolved Volumetric Traction Force Microscopy
57
Citations
16
References
2019
Year
EngineeringMicroscopyCytoskeletonBiomedical EngineeringTraction Force MicroscopySoft MatterCell MechanicsSuper-resolution MicroscopyMicroscopy MethodBiomechanicsMatrix BiologyLight MicroscopyBiophysicsMechanobiologyCell BiomechanicsCell BiologyBiomedical SciencesMechanical ForcesBiomedical ImagingScanning Force MicroscopyMedicine
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measurements are essential to understanding the role of biomechanics in cell regulation and function. Traction force microscopy remains the most broadly applied force probing technology but typically restricts itself to single-plane two-dimensional quantifications with limited spatiotemporal resolution. Here, we introduce an enhanced force measurement technique combining 3D super-resolution fluorescence structural illumination microscopy and traction force microscopy (3D-SIM-TFM) offering increased spatiotemporal resolution, opening-up unprecedented insights into physiological three-dimensional force production in living cells.
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