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相关论文: Anomalous elasticity of cellular tissue vertex mod…

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The development of traction-force microscopy, in the past two decades, has created the unprecedented opportunity of performing direct mechanical measurements on living cells as they adhere or crawl on uniform or micro-patterned substrates.…

生物物理 · 物理学 2019-10-25 Luca Giomi

In this paper we present a discrete model governing the deformation of a convex regular polygon subjected not to cross a given flat rigid surface, on which it initially lies in correspondence of one point only. First, we set up the model in…

偏微分方程分析 · 数学 2022-05-10 Paolo Piersanti , Kristen White , Bogdan Dragnea , Roger Temam

We developed a physics-based analytical model to describe the nonlinear mechanical response of aspirated elastic shells. By representing the elastic energy through a stretching modulus, $K$, and a dimensionless ratio, $\delta$, capturing…

软凝聚态物质 · 物理学 2025-05-01 Kazutoshi Masuda , Miho Yanagisawa

Wrinkling is the phenomenon of out-of-plane deformation patterns in thin walled structures, as a result of a local compressive (internal) loads in combination with a large membrane stiffness and a small but non-zero bending stiffness.…

数值分析 · 数学 2025-03-20 H. M. Verhelst , M. Möller , J. H. Den Besten

Tissue fluidity regulates many critical biological processes, including embryonic development, wound healing, and cancer metastasis. In confluent epithelia, where cell packing fraction is effectively fixed, the prevailing paradigm…

生物物理 · 物理学 2026-03-09 Pradip K. Bera , Anh Q. Nguyen , Molly McCord , Dapeng Bi , Jacob Notbohm

In this paper homogenization of a mathematical model for plant tissue biomechanics is presented. The microscopic model constitutes a strongly coupled system of reaction-diffusion-convection equations for chemical processes in plant cells,…

偏微分方程分析 · 数学 2017-08-24 Andrey Piatnitski , Mariya Ptashnyk

An elastic membrane that is forced to reside in a container smaller than its natural size will deform and, upon further volume reduction, eventually crumple. The crumpled state is characterized by the localization of energy in a complex…

材料科学 · 物理学 2011-03-30 Paula Mellado , Shengfeng Cheng , Andres Concha

We study interactions between biological cells that apply anisotropic active mechanical forces on an elastic substrate. We model the cells as thin discs that along their perimeters apply radial, but angle-dependent forces on the substrate.…

软凝聚态物质 · 物理学 2019-03-28 Roman Golkov , Yair Shokef

We use a three-dimensional formulation of the cell vertex model to describe the mechanical properties of a confluent planar monolayer of prismatic cells. Treating cell height as a degree of freedom, we reduce the model to a two-dimensional…

生物物理 · 物理学 2025-08-29 Natasha Cowley , Sarah Woolner , Oliver E. Jensen

Tissue dynamics and collective cell motion are crucial biological processes. Their biological machinery is mostly known, and simulation models such as the "active vertex model" (AVM) exist and yield reasonable agreement with experimental…

软凝聚态物质 · 物理学 2023-11-16 Gloria Triguero-Platero , Falko Ziebert , Luis L. Bonilla

In this paper homogenization of a mathematical model for biomechanics of a plant tissue with randomly distributed cells is considered. Mechanical properties of a plant tissue are modelled by a strongly coupled system of…

偏微分方程分析 · 数学 2020-10-28 Andrey Piatnitski , Mariya Ptashnyk

Many organisms have an elastic skeleton that consists of a closed shell of epithelial cells that is filled with fluid, and can actively regulate both elastic forces in the shell and hydrostatic pressure inside it. In this work we introduce…

软凝聚态物质 · 物理学 2023-10-13 Ajoy Maji , Yitzhak Rabin

Live cells have ambiguous mechanical properties. They were often described as either elastic solids or viscoelastic fluids and have recently been classified as soft glassy materials characterized by weak power-law rheology. Nonlinear…

软凝聚态物质 · 物理学 2013-05-30 Lars Wolff , Klaus Kroy

An important open question in the modeling of biological tissues is how to identify the right scale for coarse-graining, or equivalently, the right number of degrees of freedom. For confluent biological tissues, both vertex and Voronoi…

组织与器官 · 定量生物学 2023-06-08 Elizabeth Lawson-Keister , Tao Zhang , M. Lisa Manning

Cell migration is important in many biological processes, including embryonic development, cancer metastasis, and wound healing. In these tissues, a cell's motion is often strongly constrained by its neighbors, leading to glassy dynamics.…

生物物理 · 物理学 2016-01-20 Dapeng Bi , J. H. Lopez , J. M. Schwarz , M. Lisa Manning

The framework of this article is cell motility modeling. Approximating cells as rigid spheres we take into account for both non-penetration and adhesions forces. Adhesions are modeled as a memory-like microscopic elastic forces. This leads…

偏微分方程分析 · 数学 2025-08-15 Thierno Mamadou Balde , Vuk Milisic

During growth, tissue expands and deforms. Given its elastic properties, stresses emerge in an expanding and deforming tissue. Cell rearrangements can dissipate these stresses and numerous experiments confirm the viscoelastic properties of…

组织与器官 · 定量生物学 2017-10-20 M. D. Peters , D. Iber

The microscopic structure of a plant cell wall is given by cellulose microfibrils embedded in a cell wall matrix. In this paper we consider a microscopic model for interactions between viscoelastic deformations of a plant cell wall and…

偏微分方程分析 · 数学 2016-01-01 Mariya Ptashnyk , Brian Seguin

Embryonic tissues deform across broad spatial and temporal scales and relax stress through active rearrangements. A quantitative link between cell-scale activity, spatial forcing, and emergent tissue-scale mechanics remains incomplete.…

生物物理 · 物理学 2025-12-18 Sahil Islam , Mohd. Suhail Rizvi , Anupam Gupta

Mechanical cues from the extracellular microenvironment play a central role in regulating the structure, function and fate of living cells. Nevertheless, the precise nature of the mechanisms and processes underlying this crucial cellular…

生物物理 · 物理学 2015-06-23 Ariel Livne , Eran Bouchbinder , Benjamin Geiger