most citedFlow spatial structure determines pattern instabilities in nonlocal models of population dynamics

3 citations · 5 across the 4 of their papers we have counts for

collaborators

5 papers

q-bio.PE2025

Self-organized vegetation patterns promote persistence of plant-pollinator mutualisms under environmental stress

Matheus Bongestab, David Pinto-Ramos, Ricardo Martinez-Garcia

Mutualisms are key for structuring ecological communities, but they are sensitive to environmental change and fluctuations in population size. Consequently, how mutualisms achieve…

q-bio.PE20252 cited

How spatial patterns can lead to less resilient ecosystems

David Pinto-Ramos, Ricardo Martinez-Garcia

Several theoretical models predict that spatial patterning increases ecosystem resilience. However, these predictions rely on simplifying assumptions, such as assuming isotropic an…

q-bio.PE2025

Spatial competition and repulsion: pattern formation and the role of movement

Cristóbal López, Eduardo H. Colombo, Emilio Hernández-García +1

This chapter investigates some mechanisms behind pattern formation driven by competitive-only or repelling interactions, and explores how these patterns are influenced by different…

q-bio.PE2024

Spatial moment dynamics and biomass density equations provide complementary, yet limited, descriptions of pattern formation in individual-based simulations

Anudeep Surendran, David Pinto-Ramos, Rafael Menezes +1

Spatial patterning is common in ecological systems and has been extensively studied via different modeling approaches. Individual-based models (IBMs) accurately describe nonlinear…

q-bio.PE20243 cited

Flow spatial structure determines pattern instabilities in nonlocal models of population dynamics

Nathan O. Silvano, João Valeriano, Emilio Hernández-García +2

We investigate how environmental flows influence spatial pattern formation and population dynamics using two nonlocal models of population dynamics, which we couple to two differen…