activity
20162024
most citedPruning to Increase Taylor Dispersion in Physarum polycephalum Networks

44 citations · 44 across the 5 of their papers we have counts for

collaborators

5 papers

cond-mat.soft2024

Artificial Chemotaxis under Electrodiffusiophoresis

Carlos A. Silvera Batista, Kun Wang, Hannah Blake +2

Diffusiophoretic motion induced by gradients of dissolved species has enabled the manipulation of colloids over large distances, spanning hundreds of microns. Nonetheless, studies…

cond-mat.soft2023

Hopping and crawling DNA-coated colloids

Jeana Aojie Zheng, Miranda Holmes-Cerfon, David J. Pine +1

Understanding the motion of particles with ligand-receptors is important for biomedical applications and material design. Yet, even among a single design, the prototypical DNA-coat…

cond-mat.soft2023

Vascular adaptation model from force balance: Physarum polycephalum as a case study

Sophie Marbach, Noah Ziethen, Karen Alim

Understanding vascular adaptation, namely what drives veins to shrink or grow, is key for the self-organization of flow networks and their optimization. From the top-down principle…

cond-mat.soft2023

Ionic fluctuations in finite volumes: fractional noise and hyperuniformity

Thê Hoang Ngoc Minh, Benjamin Rotenberg, Sophie Marbach

Observing finite regions of a bigger system is a common experience, from microscopy to molecular simulations. In the latter especially, there is ongoing interest in predicting ther…

physics.bio-ph201644 cited

Pruning to Increase Taylor Dispersion in Physarum polycephalum Networks

Sophie Marbach, Karen Alim, Natalie Andrew +2

How do the topology and geometry of a tubular network affect the spread of particles within fluid flows? We investigate patterns of effective dispersion in the hierarchical, biolog…