The accurate determination of cellular forces using Traction Force Microscopy at increasingly small focal attachments to the extracellular environment presents an important yet substantial technical challenge. In these measurements, uncertainty regarding accuracy is prominent since experimental calibration frameworks at this size scale are fraught with errors – denying a gold standard against which accuracy of TFM methods can be judged. Therefore, we have developed a simulation platform for generating synthetic traction images that can be used as a benchmark to quantify the influence of critical experimental parameters and the associated errors. Using this approach, we show that TFM accuracy can be improved >35% compared to the standard app...
Cellular mechanics play a crucial role in tissue homeostasis and are often misregulated in disease. ...
Animal cells continuously sense and respond to mechanical force. Quantifying these forces remains a ...
Traction Force Microscopy (TFM) is a powerful approach for quantifying cell-material interactions th...
ABSTRACT Cell adhesion and migration crucially depend on the transmission of actomyosin-generated fo...
AbstractCell adhesion and migration crucially depend on the transmission of actomyosin-generated for...
Deformation measurement is a key process in traction force microscopy (TFM). Conventionally, particl...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
Traction Force Microscopy (TFM) has become a well-established technique to assay the biophysical for...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
<div><p>Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions fr...
<div><p>Traction force microscopy (TFM) is commonly used to estimate cells' traction forces from the...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
<div><p>Traction force microscopy (TFM) is a quantitative technique for measuring cellular traction ...
Measuring cell-generated forces by Traction Force Microscopy (TFM) has become a standard tool in cel...
Cellular mechanics play a crucial role in tissue homeostasis and are often misregulated in disease. ...
Animal cells continuously sense and respond to mechanical force. Quantifying these forces remains a ...
Traction Force Microscopy (TFM) is a powerful approach for quantifying cell-material interactions th...
ABSTRACT Cell adhesion and migration crucially depend on the transmission of actomyosin-generated fo...
AbstractCell adhesion and migration crucially depend on the transmission of actomyosin-generated for...
Deformation measurement is a key process in traction force microscopy (TFM). Conventionally, particl...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
Traction Force Microscopy (TFM) has become a well-established technique to assay the biophysical for...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
<div><p>Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions fr...
<div><p>Traction force microscopy (TFM) is commonly used to estimate cells' traction forces from the...
Traction Force Microscopy (TFM) is a widespread method used to recover cellular tractions from the d...
<div><p>Traction force microscopy (TFM) is a quantitative technique for measuring cellular traction ...
Measuring cell-generated forces by Traction Force Microscopy (TFM) has become a standard tool in cel...
Cellular mechanics play a crucial role in tissue homeostasis and are often misregulated in disease. ...
Animal cells continuously sense and respond to mechanical force. Quantifying these forces remains a ...
Traction Force Microscopy (TFM) is a powerful approach for quantifying cell-material interactions th...