A number of novel experimental and theoretical results have recently been obtained on active soft matter, demonstrating the various interesting universal and anomalous features of this kind of driven systems. Here we consider the adhesion difference-driven segregation of actively moving units, a fundamental but still poorly explored aspect of collective motility. In particular, we propose a model in which particles have a tendency to adhere through a mechanism which makes them both stay in touch and synchronize their direction of motion-but the interaction is limited to particles of the same kind. The calculations corresponding to the related differential equations can be made in parallel, thus a powerful GPU card allows large scale simulat...
Many natural and industrial processes rely on constrained transport, such as proteins moving through...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...
Certain malignant cancer cells form clusters in a chemoattractant gradient, which can spontaneously ...
Abstract –Spontaneous segregation of run-and-tumble particles with different velocities in mi-crocha...
A self-propelled particle model is introduced to study cell sorting occurring in some living organis...
Self-propelled particles are used to simulate cell aggregates in a model considering homogeneous adh...
The perplexing and intriguing world of biological systems has inaugurated a new research field in st...
Cell migration is essential to cell segregation, playing a central role in tissue formation, wound h...
We study numerically the phases and dynamics of a dense collection of self-propelled particles with ...
Studies of active matter, from molecular assemblies to animal groups, have revealed two broad classe...
Motivated by experiments on cell segregation, we present a twospecies model of interacting particles...
Collective dynamics is something that can be found in nature on macro and micro scale. Since the 90s...
Cell sorting, whereby a heterogeneous cell mixture segregates and forms distinct homogeneous tissues...
Demixing can occur in systems of two or more particle species that experience different driving forc...
Abstract. Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in...
Many natural and industrial processes rely on constrained transport, such as proteins moving through...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...
Certain malignant cancer cells form clusters in a chemoattractant gradient, which can spontaneously ...
Abstract –Spontaneous segregation of run-and-tumble particles with different velocities in mi-crocha...
A self-propelled particle model is introduced to study cell sorting occurring in some living organis...
Self-propelled particles are used to simulate cell aggregates in a model considering homogeneous adh...
The perplexing and intriguing world of biological systems has inaugurated a new research field in st...
Cell migration is essential to cell segregation, playing a central role in tissue formation, wound h...
We study numerically the phases and dynamics of a dense collection of self-propelled particles with ...
Studies of active matter, from molecular assemblies to animal groups, have revealed two broad classe...
Motivated by experiments on cell segregation, we present a twospecies model of interacting particles...
Collective dynamics is something that can be found in nature on macro and micro scale. Since the 90s...
Cell sorting, whereby a heterogeneous cell mixture segregates and forms distinct homogeneous tissues...
Demixing can occur in systems of two or more particle species that experience different driving forc...
Abstract. Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in...
Many natural and industrial processes rely on constrained transport, such as proteins moving through...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...
Certain malignant cancer cells form clusters in a chemoattractant gradient, which can spontaneously ...