Cell migration on microlanes represents a suitable and simple platform for the exploration of the molecular mechanisms underlying cell cytoskeleton dynamics. Here, we report on the quasi-periodic movement of cells confined in stripe-shaped microlanes. We observe persistent polarized cell shapes and directed pole-to-pole motion within the microlanes. Cells depolarize at one end of a given microlane, followed by delayed repolarization towards the opposite end. We analyze cell motility via the spatial velocity distribution, the velocity frequency spectrum and the reversal time as a measure for depolarization and spontaneous repolarization of cells at the microlane ends. The frequent encounters of a boundary in the stripe geometry provides a ro...
The interdisciplinary field of theoretical biophysics integrates knowledge from physics, biology, ch...
<div><p>The collective dynamics of multicellular systems arise from the interplay of a few fundament...
AbstractCell migration plays a pivotal role in many physiologically important processes such as embr...
Cell migration on microlanes represents a suitable and simple platform for the exploration of the mo...
We extend a model for the morphology and dynamics of a crawling eukaryotic cell to describe cells on...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
International audienceDirectional cell locomotion requires symmetry breaking between the front and r...
Quantification and discrimination of pharmaceutical and disease-related effects on cell migration re...
Cell migration in confining physiological environments relies on the concerted dynamics of several c...
We present a simple mechanism of cell motility in a confined geometry, inspired by recent ...
Abstract. We present a simple mechanism of cell motility in a confined geometry, inspired by recent ...
Abstract. We present a simple mechanism of cell motility in a confined geometry, inspired by recent ...
Cellular movement is a complex dynamic process, resulting from the interaction of multiple elements ...
A cell's ability to move allows it to efficiently follow nutrient gradients and enables complex proc...
The interdisciplinary field of theoretical biophysics integrates knowledge from physics, biology, ch...
<div><p>The collective dynamics of multicellular systems arise from the interplay of a few fundament...
AbstractCell migration plays a pivotal role in many physiologically important processes such as embr...
Cell migration on microlanes represents a suitable and simple platform for the exploration of the mo...
We extend a model for the morphology and dynamics of a crawling eukaryotic cell to describe cells on...
Cell migration is astoundingly diverse. Molecular signatures, cell-cell interactions, and environmen...
International audienceDirectional cell locomotion requires symmetry breaking between the front and r...
Quantification and discrimination of pharmaceutical and disease-related effects on cell migration re...
Cell migration in confining physiological environments relies on the concerted dynamics of several c...
We present a simple mechanism of cell motility in a confined geometry, inspired by recent ...
Abstract. We present a simple mechanism of cell motility in a confined geometry, inspired by recent ...
Abstract. We present a simple mechanism of cell motility in a confined geometry, inspired by recent ...
Cellular movement is a complex dynamic process, resulting from the interaction of multiple elements ...
A cell's ability to move allows it to efficiently follow nutrient gradients and enables complex proc...
The interdisciplinary field of theoretical biophysics integrates knowledge from physics, biology, ch...
<div><p>The collective dynamics of multicellular systems arise from the interplay of a few fundament...
AbstractCell migration plays a pivotal role in many physiologically important processes such as embr...