The mechanical phenotype or 'mechanotype' of cells is emerging as a potential biomarker for cell types ranging from pluripotent stem cells to cancer cells. Using a microfluidic device, cell mechanotype can be rapidly analyzed by measuring the time required for cells to deform as they flow through constricted channels. While cells typically exhibit deformation timescales, or transit times, on the order of milliseconds to tens of seconds, transit times can span several orders of magnitude and vary from day to day within a population of single cells; this makes it challenging to characterize different cell samples based on transit time data. Here we investigate how variability in transit time measurements depends on both experimental f...
We describe a method for quantifying the mechanical properties of cells in suspension with a microfl...
Understanding cellular heterogeneity is a crucial part of modern biomedical research as well as medi...
Understanding cellular heterogeneity is a crucial part of modern biomedical research as well as medi...
Mechanical properties of cells have been shown to have a significant role in disease, as in many ins...
Mechanical properties of cells have been shown to have a significant role in disease, as in many ins...
Cells are complex, viscoelastic materials that undergo changes in their mechanical phenotype, or ‘me...
Cells are complex, viscoelastic materials that undergo changes in their mechanical phenotype, or ‘me...
We report a novel microfluidic platform to measure the stiffness of a single cell by evaluating its ...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
The mechanical properties of cells change with their differentiation, chronological age, and maligna...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
We describe a method for quantifying the mechanical properties of cells in suspension with a microfl...
Mechanical properties of cells can serve as a label-free marker of cell state and function and their...
We describe a method for quantifying the mechanical properties of cells in suspension with a microfl...
Understanding cellular heterogeneity is a crucial part of modern biomedical research as well as medi...
Understanding cellular heterogeneity is a crucial part of modern biomedical research as well as medi...
Mechanical properties of cells have been shown to have a significant role in disease, as in many ins...
Mechanical properties of cells have been shown to have a significant role in disease, as in many ins...
Cells are complex, viscoelastic materials that undergo changes in their mechanical phenotype, or ‘me...
Cells are complex, viscoelastic materials that undergo changes in their mechanical phenotype, or ‘me...
We report a novel microfluidic platform to measure the stiffness of a single cell by evaluating its ...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
The mechanical properties of cells change with their differentiation, chronological age, and maligna...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
We introduce a simple micro-fluidic device containing an actuated flexible membrane, which allows th...
We describe a method for quantifying the mechanical properties of cells in suspension with a microfl...
Mechanical properties of cells can serve as a label-free marker of cell state and function and their...
We describe a method for quantifying the mechanical properties of cells in suspension with a microfl...
Understanding cellular heterogeneity is a crucial part of modern biomedical research as well as medi...
Understanding cellular heterogeneity is a crucial part of modern biomedical research as well as medi...