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Autori principali: Colombo, E. H., Menon, L., Hernandez-Garcia, E., Anteneodo, C.
Natura: Preprint
Pubblicazione: 2026
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Accesso online:https://arxiv.org/abs/2605.30974
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author Colombo, E. H.
Menon, L.
Hernandez-Garcia, E.
Anteneodo, C.
author_facet Colombo, E. H.
Menon, L.
Hernandez-Garcia, E.
Anteneodo, C.
contents Habitat loss driven by climate and anthropogenic pressures alters patch morphology, with critical consequences for population persistence. Geometric and mechanistic metrics are commonly used to quantify degradation, yet their respective limitations remain poorly understood. Here, we address this gap using a reaction-diffusion framework for population growth and dispersal in a viable patch embedded in a hostile environment. We compare geometric descriptors of patch shape with a mechanistic metric derived from population growth near the extinction threshold. Along degradation trajectories, we find that geometric metrics systematically overestimate persistence, suggesting moderate and decelerating impacts, whereas mechanistic indicators reveal rapid, accelerating approaches to extinction. These results highlight fundamental limitations of geometric approaches and underscore the need for mechanistic assessments when evaluating biodiversity loss in complex landscapes.
format Preprint
id arxiv_https___arxiv_org_abs_2605_30974
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Morphological routes to extinction: A mechanistic assessment of habitat loss
Colombo, E. H.
Menon, L.
Hernandez-Garcia, E.
Anteneodo, C.
Populations and Evolution
Habitat loss driven by climate and anthropogenic pressures alters patch morphology, with critical consequences for population persistence. Geometric and mechanistic metrics are commonly used to quantify degradation, yet their respective limitations remain poorly understood. Here, we address this gap using a reaction-diffusion framework for population growth and dispersal in a viable patch embedded in a hostile environment. We compare geometric descriptors of patch shape with a mechanistic metric derived from population growth near the extinction threshold. Along degradation trajectories, we find that geometric metrics systematically overestimate persistence, suggesting moderate and decelerating impacts, whereas mechanistic indicators reveal rapid, accelerating approaches to extinction. These results highlight fundamental limitations of geometric approaches and underscore the need for mechanistic assessments when evaluating biodiversity loss in complex landscapes.
title Morphological routes to extinction: A mechanistic assessment of habitat loss
topic Populations and Evolution
url https://arxiv.org/abs/2605.30974