3 papers
q-bio.CB2026
How nature discovers rare Turing islands: exploration by common limit cycles
Seyoon Kim, Antonio Matas-Gil, Robert G. Endres
Turing patterns are a cornerstone of biological self-organization, yet their emergence typically requires finely tuned parameters occupying narrow regions of high-dimensional space…
physics.bio-ph2025
From Toggle to Tuning: Controlling Turing Patterns in Gene Circuits
Antonio Matas-Gil, Robert G. Endres
Controlling spatial patterns in synthetic biological systems remains challenging due to poor parameter robustness and limited experimental tunability. We introduce two complementar…
q-bio.MN2024
Optimal network sizes for most robust Turing patterns
Hazlam S. Ahmad Shaberi, Aibek Kappassov, Antonio Matas-Gil +1
Many cellular patterns exhibit a reaction-diffusion component, suggesting that Turing instability may contribute to pattern formation. However, biological gene-regulatory pathways…