AbstractCells are not directly accessible in vivo and therefore their mechanical properties cannot be measured by methods that require a direct contact between probe and cell. Here, we introduce a novel in vivo assay based on particle tracking microrheology whereby the extent and time-lag dependence of the mean squared displacements of thermally excited nanoparticles embedded within the cytoplasm of developing embryos reflect local viscoelastic properties. As a proof of principle, we probe local viscoelastic properties of the cytoplasm of developing Caenorhabditis elegans embryos. Our results indicate that unlike differentiated cells, the cytoplasm of these embryos does not exhibit measurable elasticity, but is highly viscous. Furthermore, ...
Elucidating the factors that direct the spatio-temporal organization of evolving tissues is one of t...
Mechanical constraints have a high impact on development processes, and there is a need for new tool...
AbstractBiochemical signaling pathways in developmental processes have been extensively studied, yet...
AbstractCells are not directly accessible in vivo and therefore their mechanical properties cannot b...
In order to generate cellular diversity in developing organisms while simultaneously maintaining the...
Elucidating the factors that direct the spatio-temporal organization of evolving tissues is one of t...
AbstractIn early development, Drosophila melanogaster embryos form a syncytium, i.e., multiplying nu...
A multitude of cellular and subcellular processes with pathological relevance depend critically on t...
This work is licensed under a Creative Commons Attribution 4.0 International License.The material pr...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
Some researchers probe the mechanics of cells by perturbing them from the outside, such as using an ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...
The process of a single cell evolving into a complex organism results from a series of coordinated m...
During development, cell-generated forces induce tissue-scale deformations to shape the organism [1,...
AbstractEmbryonic and adult fibroblasts can be returned to pluripotency by the expression of reprogr...
Elucidating the factors that direct the spatio-temporal organization of evolving tissues is one of t...
Mechanical constraints have a high impact on development processes, and there is a need for new tool...
AbstractBiochemical signaling pathways in developmental processes have been extensively studied, yet...
AbstractCells are not directly accessible in vivo and therefore their mechanical properties cannot b...
In order to generate cellular diversity in developing organisms while simultaneously maintaining the...
Elucidating the factors that direct the spatio-temporal organization of evolving tissues is one of t...
AbstractIn early development, Drosophila melanogaster embryos form a syncytium, i.e., multiplying nu...
A multitude of cellular and subcellular processes with pathological relevance depend critically on t...
This work is licensed under a Creative Commons Attribution 4.0 International License.The material pr...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
Some researchers probe the mechanics of cells by perturbing them from the outside, such as using an ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Cata...
The process of a single cell evolving into a complex organism results from a series of coordinated m...
During development, cell-generated forces induce tissue-scale deformations to shape the organism [1,...
AbstractEmbryonic and adult fibroblasts can be returned to pluripotency by the expression of reprogr...
Elucidating the factors that direct the spatio-temporal organization of evolving tissues is one of t...
Mechanical constraints have a high impact on development processes, and there is a need for new tool...
AbstractBiochemical signaling pathways in developmental processes have been extensively studied, yet...