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Vidal-Cordasco, M.

Publications and source records attributed to Vidal-Cordasco, M..

3 recordsLinked to original sources

Sulfur isotopes in hunted ungulates reveal Palaeolithic human mobility patterns in Northern Iberia

This research addresses a central question in Palaeolithic research: how hunter-gatherer mobility was structured across space and time in the Cantabrian Region (northern Iberia), which has human occupation evidence spanning from the Middle Pleistocene through the Holocene. A multidisciplinary framework integrating primarily {delta}3S isotope values, combined with {delta}{superscript 1}3C and {delta}{superscript 1}N, palaeoproteomics, Bayesian age modelling, palaeoclimatic reconstruction, isoscape mapping, and ecological diversity was developed. A total of 905 animal bone collagen samples, with evidence of anthropogenic modifications, from 16 key archaeological sites from the Mousterian to Mesolithic (Marine Isotopic Stage 5 to 1, between 100-7 ka BP) were analysed, permitting the reconstruction of spatial patterns of resource exploitation and human mobility. The {delta}3S isotope values show weak, inconsistent relationships with climatic proxies, suggesting that sulfur signatures are primarily driven by geographic and ecological factors rather than climate. Strong spatial trends are observed, with higher {delta}3S values in coastal zones and lower values inland. Diachronic trends reveal marked shifts in human mobility: smaller ranges during the Mousterian, increasing mobility through the Chatelperronian and especially the Aurignacian, followed by reduced mobility in the Gravettian and Solutrean, and renewed territorial expansion during the Magdalenian and, likely, the Azilian. In contrast, the Mesolithic is characterised by decreased mobility and thus increased territoriality in both coastal and inland contexts. Faunal isotope values and isoscape predictions reveal that some animals were acquired beyond local foraging ranges during the Palaeolithic, particularly in inland regions with lower {delta}3S values. Isotopic niche analyses indicate partial interspecific overlap consistent with ecological flexibility. Macromammal and micromammal diversity exhibit contrasting patterns, with a significant negative correlation in Simpson and Shannon indices. Macromammal diversity correlates negatively with {delta}3S values, linking increased hunting diversity to expanded catchment areas and longer-distance foraging, whereas micromammal diversity shows positive correlations with {delta}3S, {delta}{superscript 1}3C and {delta}{superscript 1}N reflecting stronger climatic influence. Overall, these results demonstrate that hunter-gatherer behaviour in northern Iberia during the Middle and Late Palaeolithic was highly dynamic, combining logistical and residential strategies that shifted in response to changing environmental conditions, resource distributions and cultural adaptations.

ecology↗

Inter-band connectivity and climate shaped Neanderthal extinction and Homo sapiens dispersal.

To what extent Neanderthal extinction was triggered by climate change or the arrival and dispersal of Homo sapiens, and by which mechanisms, remains unresolved. Here, based on how climate-driven changes affected habitat favourability for primary and secondary consumers and Net Primary Productivity, we estimate carrying capacity, herbivore biomass and intra-guild predation pressure during the time Neanderthals and H. sapiens lived in Europe (55-30 ka BP). These spatially explicit estimates were incorporated into an agent-based model simulating human demographic dynamics under various scenarios. Results indicate that carrying capacity changes cannot explain Neanderthal extinction at a continental scale, though they are essential to understanding spatiotemporal distribution patterns of both human species. Conversely, the arrival of H. sapiens increased Neanderthal extinction likelihood without requiring a selective advantage. Due to the successive demographic expansions and contractions, group connectivity emerges as the key factor shaping population stability in both species. These findings support that Neanderthal disappearance and H. sapiens dispersals were interconnected demographic processes.

ecology↗

Novel dynamics of human-carnivore interactions linked to the arrival of Homo sapiens in Europe

Upon the arrival of H. sapiens in Europe, the abundance and diversity of secondary consumers progressively diminished. The factors contributing to this increased human pressure and its potential association with Neanderthal extinction remain unknown. This study identifies biotic and abiotic effects on the structure and assembly of secondary consumers at the European scale during Marine Isotope Stage 3 by integrating analyses of their geographic ranges, co-occurrence patterns, and generalized mixed models. Results show that during the replacement of Neanderthals by Homo sapiens, the range of secondary consumers contracted and their co-occurrence frequency increased, leading to new intra-guild interaction dynamics. Additionally, H. sapiens occupied a larger portion of the secondary consumers fundamental niche. Climate change, the demographic decline of keystone species, and the broader niche breadth of H. sapiens reduced the interconnectivity of the co-occurrence network among secondary consumers, shaping novel dynamics of human-carnivore interactions in Europe.

ecology↗