activity
20242026
most citedInheritance Entropy: A Model-Independent Method to Probe the Hereditary Structure of Cell Lineage Trees

1 citations · 1 across the 1 of their papers we have counts for

collaborators

5 papers

physics.bio-ph20261 cited

Inheritance Entropy: A Model-Independent Method to Probe the Hereditary Structure of Cell Lineage Trees

Alessandro Allegrezza, Riccardo Beschi, Domenico Caudo +14

Human bone marrow stromal cells (BMSC) include skeletal stem cells with ground-breaking therapeutic potential. However, BMSC colonies have very heterogeneous in vivo behaviour, due…

q-bio.CB2025

Lineage topology, replication kinetics and cell cycle synchronization reveal regulated growth dynamics in human bone marrow stromal cell colonies

Alessandro Allegrezza, Riccardo Beschi, Domenico Caudo +14

Bone marrow stromal cells (BMSC) -- which include skeletal stem cells -- are a promising tool in regenerative medicine. However, their heterogeneous and unpredictable in vivo behav…

physics.comp-ph2025

Behavior of the scaling correlation functions under severe subsampling

Sabrina Camargo, Nahuel Zamponi, Daniel A. Martin +4

Scale-invariance is a ubiquitous observation in the dynamics of large distributed complex systems. The computation of its scaling exponents, which provide clues on its origin, is o…

cond-mat.stat-mech2024

The Inertial Spin Model of flocking with position-dependent forces

Sebastián Carruitero, Alejo Costa Duran, Giulia Pisegna +2

We propose an extension to the ISM of flocking and swarming. The model has been introduced to explain certain dynamic features of swarming (second sound, a lower than expected dyna…

cond-mat.stat-mech2024

Discrete Laplacian thermostat for flocks and swarms: the fully conserved Inertial Spin Model

Andrea Cavagna, Javier Cristín, Irene Giardina +2

Experiments on bird flocks and midge swarms reveal that these natural systems are well described by an active theory in which conservation laws play a crucial role. By building a s…