The progression of breast cancer is known to be affected by stromal cells within the local microenvironment. Here we study the effect of stromal fibroblasts on the in-place motions (motility) of mammary epithelial cells within organoids in 3D co-culture, inferred from the speckle fluctuation spectrum using optical coherence tomography (OCT). In contrast to Brownian motion, mammary cell motions exhibit an inverse power-law fluctuation spectrum. We introduce two complementary metrics for quantifying fluctuation spectra: the power-law exponent and a novel definition of the motility amplitude, both of which are signal- and position-independent. We find that the power-law exponent and motility amplitude are positively (p<0.001) and negatively (p...
The mammary gland extracellular matrix (ECM) is comprised of biopolymers, primarily collagen I, that...
The mammary gland extracellular matrix (ECM) is comprised of biopolymers, primarily collagen I, that...
The tumor microenvironment consists of stromal cells and extracellular factors that evolve in parall...
The progression of breast cancer is known to be affected by stromal cells within the local microenvi...
Background: An understanding of how the mammary gland responds to toxicant and drug exposures can sh...
Visualization 1 Originally published in Optica on 20 October 2015 (optica-2-10-877
Visualization 2 Originally published in Optica on 20 October 2015 (optica-2-10-877
3D paper-based cultures (PBCs) are easy-to-use and provide a biologically representative microenviro...
The human mammary gland is a complex and heterogeneous organ, where the interactions between mammary...
The human mammary gland is a complex and heterogeneous organ, where the interactions between mammary...
The human mammary gland is a complex and heterogeneous organ, where the interactions between mammary...
<div><p>The human mammary gland is a complex and heterogeneous organ, where the interactions between...
We propose a method for differentiating classes of light scatterers based upon their temporal and po...
We propose a method for differentiating classes of light scatterers based upon their temporal and po...
Three-dimensional cell-based tissue models have been increasingly useful in the fields of tissue eng...
The mammary gland extracellular matrix (ECM) is comprised of biopolymers, primarily collagen I, that...
The mammary gland extracellular matrix (ECM) is comprised of biopolymers, primarily collagen I, that...
The tumor microenvironment consists of stromal cells and extracellular factors that evolve in parall...
The progression of breast cancer is known to be affected by stromal cells within the local microenvi...
Background: An understanding of how the mammary gland responds to toxicant and drug exposures can sh...
Visualization 1 Originally published in Optica on 20 October 2015 (optica-2-10-877
Visualization 2 Originally published in Optica on 20 October 2015 (optica-2-10-877
3D paper-based cultures (PBCs) are easy-to-use and provide a biologically representative microenviro...
The human mammary gland is a complex and heterogeneous organ, where the interactions between mammary...
The human mammary gland is a complex and heterogeneous organ, where the interactions between mammary...
The human mammary gland is a complex and heterogeneous organ, where the interactions between mammary...
<div><p>The human mammary gland is a complex and heterogeneous organ, where the interactions between...
We propose a method for differentiating classes of light scatterers based upon their temporal and po...
We propose a method for differentiating classes of light scatterers based upon their temporal and po...
Three-dimensional cell-based tissue models have been increasingly useful in the fields of tissue eng...
The mammary gland extracellular matrix (ECM) is comprised of biopolymers, primarily collagen I, that...
The mammary gland extracellular matrix (ECM) is comprised of biopolymers, primarily collagen I, that...
The tumor microenvironment consists of stromal cells and extracellular factors that evolve in parall...