Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution and accuracy of force reconstruction of the well-established technique of traction force microscopy (TFM) using STED microscopy. The increased spatial resolution of STED-TFM (STFM) allows a greater than 5-fold higher sampling of the forces generated by the cell than conventional TFM, accessing the nano instead of the micron scale. This improvement is highlighted by computer simulations and an activating RBL cell model system
Quantifying small, rapidly evolving forces generated by cells is a major challenge for the understan...
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measur...
ABSTRACT Cell adhesion and migration crucially depend on the transmission of actomyosin-generated fo...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Cells continuously exert or respond to mechanical force. Measurement of these nanoscale forces is a ...
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measur...
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measur...
Animal cells continuously sense and respond to mechanical force. Quantifying these forces remains a ...
Quantifying small, rapidly evolving forces generated by cells is a major challenge for the understan...
Animal cells continuously sense and respond to mechanical force. Quantifying these forces remains a ...
Quantifying small, rapidly evolving forces generated by cells is a major challenge for the understan...
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measur...
ABSTRACT Cell adhesion and migration crucially depend on the transmission of actomyosin-generated fo...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Measuring small forces is a major challenge in cell biology. Here we improve the spatial resolution ...
Cells continuously exert or respond to mechanical force. Measurement of these nanoscale forces is a ...
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measur...
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measur...
Animal cells continuously sense and respond to mechanical force. Quantifying these forces remains a ...
Quantifying small, rapidly evolving forces generated by cells is a major challenge for the understan...
Animal cells continuously sense and respond to mechanical force. Quantifying these forces remains a ...
Quantifying small, rapidly evolving forces generated by cells is a major challenge for the understan...
Quantification of mechanical forces is a major challenge across biomedical sciences. Yet such measur...
ABSTRACT Cell adhesion and migration crucially depend on the transmission of actomyosin-generated fo...