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"Martin, Laurent"
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Cultural history in France : local debates, global perspectives
\"This volume, which gathers contributions presented at the annual conferences of l'Association pour le dâeveloppement de l'histoire culturelle (ADHC), questions the subjects and boundaries of cultural history in France -- with regard to neighboring approaches such as cultural studies, media studies, and gender studies -- to elaborate a 'social history of representations.' Historians, philosophers and sociologists address a large variety of topics and methodological proposals. Definitions, objects and actors, memories and cultural transfers: this book depicts the major questions that underlie the historical debate at the beginning of the 21st century\"-- Provided by publisher.
A simple model for arbitrary pollution effects on rotating free-surface flows
by
Faugaret, Antoine
,
Martin Witkowski, Laurent
,
Fraigneau, Yann
in
Approximation
,
Aspect ratio
,
Axisymmetric flow
2022
In an experimental context, the contamination of an air–liquid interface by ambient pollutants can strongly affect the dynamics and the stability of a given flow. In some configurations, the interfacial flow can even be blocked by surface tension effects. A cylindrical free-surface flow driven by a slow rotating disc is considered here as a generic example of such effects and is investigated both experimentally and numerically. We suggest here a simple numerical model, without any superficial transport of the pollutants, adaptable into any code for single-phase flows. For the stationary axisymmetric base flow, the radial velocity at the interface is set to zero whereas the usual stress-free boundary conditions are retained for the perturbations. The model does not feature any free parameter. For a geometrical aspect ratio of 1/4, known to display ambiguous behaviour regarding stability thresholds, the modal selection as well as a nonlinear stability island found in the experiments are well reproduced by the model, both qualitatively and quantitatively. The robustness of the model has also been validated by replacing the radial velocity profile by a more accurate experimental fit, with very little influence on the stability results.
Journal Article
The Beatles in comics
\"In ten years of existence and only eight years of recording history, John Lennon, Paul McCartney, George Harrison and Ringo Starr recorded twelve albums, composed more than 200 songs and revolutionized the world of music. Hundreds of books have explored this mythical group but The Beatles in Comics proposes an altogether different discovery. Through this volume, you'll be able to relive their greatest successes but also discover often overlooked anecdotes. From the Quarrymen to the split-up, through Beatlemania, here's the story of the Beatles told in a new light, through comics and fascinating fact-filled chapters.\"--Page 4 of cover.
Living in fear: How experience shapes caribou responses to predation risk
by
Derguy, Laurie
,
Leblond, Mathieu
,
St‐Laurent, Martin‐Hugues
in
Animals
,
antipredator behavior
,
Bears
2025
Wild prey can reduce predation risk by avoiding areas used by their predators. As they get older, individuals should be able to fine‐tune this avoidance based on their increased experience with predation risk. Such learning mechanisms are expected to play a key role in how individuals cope with risk during their life, particularly in altered landscapes where human disturbances have created habitat conditions distinct from those of the past. We studied the role of experience on the avoidance of risky areas by boreal caribou (Rangifer tarandus caribou) in a system where they are under high predation pressure from gray wolves (Canis lupus) and black bears (Ursus americanus). Using telemetry data collected on 28 caribou, 31 wolves, and 12 bears, we investigated whether caribou adjusted their level of predator avoidance with passing monitoring years, a proxy of increasing experience. We observed an increase in the avoidance of areas suitable to wolves (during two study periods) and bears (during all study periods) with passing years. Periods during which caribou did not adjust their behavior toward wolves (winter and calving) were characterized by persistent—potentially innate—avoidance. Our results suggest that, in most circumstances, caribou became more efficient at avoiding areas selected by their predators as they gained experience. Future work should attempt to demonstrate whether such tactics are heritable; if so, our results would suggest that, given time, caribou living in disturbed environments would have the potential to adapt to changing levels of risk. This would give hope for the conservation of caribou, a species at risk in Canada, provided levels of risk do not surpass the limits of their behavioral plasticity.
Journal Article
Modeling multispecies predator–prey dynamics: predicting the outcomes of conservation actions for woodland caribou
by
Johnson, Chris J.
,
St‐Laurent, Martin‐Hugues
,
Mumma, Matthew A.
in
adaptive management
,
adults
,
Alces alces
2019
Woodland caribou is a Threatened or Endangered subspecies across much of Canada. In many cases, these caribou are declining because of human‐mediated predation in the form of apparent competition. Provincial and federal agencies have employed a number of conservation actions to arrest the decline, but insufficient time and limited replication make it difficult to test the efficacy of those activities. We built a three‐species population model that served as a tool to integrate current knowledge, explore uncertainties, and assess activities focused on the recovery of caribou. We applied the model to interconnected populations of caribou, moose, and wolves at two locations in Canada (Chinchaga [British Columbia], Charlevoix [Québec]) and explored the efficacy of conservation actions unique to each population: predator control, restoration of linear features, reduction of habitat for moose, supplementation, maternal pens, and predator exclosures. Results confirmed that caribou at these two locations faced different recovery challenges, dictated by specific population dynamics and threats. Wolf predation, enhanced by seismic lines and resource roads, was responsible for the decline of the simulated Chinchaga population. The most cost‐effective recovery actions for that population were long‐term lethal wolf control (λ1–50 = 1.014,$25,665/caribou), a large‐scale predator exclosure (λ1–50 = 1.015, $ 170,767/caribou), and the aggressive restoration of linear features (λ1–50 = 1.002,$531,675/caribou). In contrast, simulations suggested that calf predation by black bears, a fixed source of mortality in the model, limited the growth of the Charlevoix population. Assuming high survival of adult caribou and poor recruitment of juveniles, a maternal pen was the most effective action for the recovery of those caribou (λ1–50 = 1.004, $ 148,473/caribou). Short‐term population supplementation provided only a temporary increase in abundance (λ1–50 = 0.994, $62,143/caribou). The model was limited by ecological and data uncertainties, but served as an effective platform for representing and testing our understanding of the complex interspecific interactions that underlie the recovery of woodland caribou.
Journal Article
Testing the precision and sensitivity of density estimates obtained with a camera‐trap method revealed limitations and opportunities
by
Pettigrew, Pascal
,
St‐Laurent, Martin‐Hugues
,
Sigouin, Daniel
in
Animal populations
,
Bayesian analysis
,
Bears
2021
The use of camera traps in ecology helps affordably address questions about the distribution and density of cryptic and mobile species. The random encounter model (REM) is a camera‐trap method that has been developed to estimate population densities using unmarked individuals. However, few studies have evaluated its reliability in the field, especially considering that this method relies on parameters obtained from collared animals (i.e., average speed, in km/h), which can be difficult to acquire at low cost and effort. Our objectives were to (1) assess the reliability of this camera‐trap method and (2) evaluate the influence of parameters coming from different populations on density estimates. We estimated a reference density of black bears (Ursus americanus) in Forillon National Park (Québec, Canada) using a spatial capture–recapture estimator based on hair‐snag stations. We calculated average speed using telemetry data acquired from four different bear populations located outside our study area and estimated densities using the REM. The reference density, determined with a Bayesian spatial capture–recapture model, was 2.87 individuals/10km2 [95% CI: 2.41–3.45], which was slightly lower (although not significatively different) than the different densities estimated using REM (ranging from 4.06–5.38 bears/10km2 depending on the average speed value used). Average speed values obtained from different populations had minor impacts on REM estimates when the difference in average speed between populations was low. Bias in speed values for slow‐moving species had more influence on REM density estimates than for fast‐moving species. We pointed out that a potential overestimation of density occurs when average speed is underestimated, that is, using GPS telemetry locations with large fix‐rate intervals. Our study suggests that REM could be an affordable alternative to conventional spatial capture–recapture, but highlights the need for further research to control for potential bias associated with speed values determined using GPS telemetry data. We tested the reliability of the Random Encounter Model, a camera‐trap method, to estimate black bear densities in the same study area where we were conducting a hair‐snagging sampling with a traditional spatial capture–recapture model. We also tested the influence of a parameter (average speed) imported from other bear populations that is required to calculate the densities with this camera‐trap estimator. We conclude that the Random Encounter Model can be an affordable alternative to conventional spatial capture–recapture for black bears.
Journal Article
Caribou avoiding wolves face increased predation by bears — Caught between Scylla and Charybdis
by
Dussault, Christian
,
Leblond, Mathieu
,
St-Laurent, Martin-Hugues
in
Animal behavior
,
Animal populations
,
anthropogenic activities
2016
1. Prey may trade off resource acquisition with mortality risk by using various habitat selection strategies. Empirical assessments have shown that the functional and numerical responses of predators to human disturbances are variable, yet spatial changes in prédation risk by two predators have seldom been studied for prey occurring in human-modified landscapes. Using the boreal caribou Rangifer tarandus caribou — grey wolf Canis lupus — black bear Ursus americanus system in eastern Canada, we investigated whether responses of prey towards one predator could concomitantly increase risk of predation from another predator exhibiting a different foraging tactic. 2. We investigated trade-offs made by solitary caribou females and mothers accompanied by their calf during the period of highest calf vulnerability and compared the behaviour of mothers that would eventually lose their calf to predation to that of mothers whose calf survived until the following year. We modelled habitat selection using different metrics of forage based on field measurements and digital maps and developed empirical models of predation risk and prey behaviour using GPS data collected on both predators and prey. 3. Mothers accompanied by their calf seemed to compromise foraging opportunities for safety, as opposed to solitary females who showed no particular avoidance of areas used by predators. Although caribou mothers adopted selection strategies that could have protected their offspring from wolves, females that eventually lost their calf to prédation selected for vegetative associations that were favourable to bears. 4. Synthesis and applications. We determined that mothers that most strongly avoided suitable wolf habitat were also those that most strongly selected suitable bear habitat, suggesting that by using antipredator strategies aimed at reducing predation risk from wolves, caribou exposed their offspring to increased predation risk from bears. This result is of paramount conservation value as bears were responsible for 94% of caribou calf kills in this system. In the short term, conservation efforts for boreal caribou may benefit from the management of bear populations by means of liberal hunting regulations or predator control. In the long term, however, these actions should be used in conjunction with the protection of potential calving areas away from cutblocks and roads.
Journal Article
Many places called home: the adaptive value of seasonal adjustments in range fidelity
by
Lafontaine, Alexandre
,
St-Laurent, Martin-Hugues
,
Fortin, Daniel
in
adults
,
Animal species
,
Animals
2017
1. The vast majority of animal species display range fidelity, a space-use behaviour enhancing familiarity with local habitat features. While the fitness benefits of this behaviour have been demonstrated in a variety of taxa, some species or populations rather display infidelity, displacing their home range over time. Others, such as many ungulate species, show seasonal adjustments in their range fidelity to accommodate changes in the dominance of limiting factors or in the distribution of resources. 2. Few empirical studies have explored the adaptive value of seasonal adjustments in range fidelity. Using boreal populations of woodland caribou (Rangifer tarandus caribou) as a biological model, we evaluated how range fidelity impacted individual performance during two seasons where juvenile and adult survival are limited by different prédation pressures. 3. Between 2004 and 2013, we monitored the survival, reproductive success, habitat selection and range fidelity of female caribou in the boreal forest of eastern Canada. Using resource selection functions, we assessed how seasonal range fidelity was linked to two fitness correlates: calf survival in summer and adult female survival in winter. 4. Females displayed season-specific space use tactics: they selected previously used areas during calving and summer, but tended to shift their winter range from 1 year to the next. During calving and summer, range fidelity yielded relatively high fitness benefits, as females that did not lose their calf displayed stronger fidelity than females that did. In winter, however, adult survival was negatively linked to range fidelity, as females that survived selected areas further away from their seasonal range of the previous year than females that died. 5. We provide one of the first evidences that making seasonal adjustments in range fidelity can be an adaptive behaviour influencing the spatial distribution of a threatened species. Assessing the seasonal nature of range fidelity tactics may improve our predictions of space use and associated fitness implications for species displaying this behaviour.
Journal Article
Trophic niche partitioning between two prey and their incidental predators revealed various threats for an endangered species
by
Pelletier, Fanie
,
St‐Laurent, Martin‐Hugues
,
Rioux, Ève
in
Alces americanus
,
apparent competition
,
Bayesian analysis
2022
Documenting trophic niche partitioning and resource use within a community is critical to evaluate underlying mechanisms of coexistence, competition, or predation. Detailed knowledge about foraging is essential as it may influence the vital rates, which, in turn, can affect trophic relationships between species, and population dynamics. The aims of this study were to evaluate resource and trophic niche partitioning in summer/autumn between the endangered Atlantic‐Gaspésie caribou (Rangifer tarandus caribou) population, moose (Alces americanus) and their incidental predators, the black bear (Ursus americanus) and coyote (Canis latrans), and to quantify the extent to which these predators consumed caribou. Bayesian isotopic analysis showed a small overlap in trophic niche for the two sympatric ungulates suggesting a low potential for resource competition. Our results also revealed that caribou occupied a larger isotopic niche area than moose, suggesting a greater diversity of resources used by caribou. Not surprisingly, coyotes consumed mainly deer (Odocoileus virginianus), moose, snowshoe hare (Lepus americanus), and occasionally caribou, while bears consumed mainly vegetation and, to a lesser extent, moose and caribou. As coyotes and bears also feed on plant species, we documented trophic niche overlap between caribou and their predators, as searching for similar resources can force them to use the same habitats and thus increase the encounter rate and, ultimately, mortality risk for caribou. Although the decline in the Gaspésie caribou population is mostly driven by habitat‐mediated predation, we found evidence that the low level of resource competition with moose, added to the shared resources with incidental predators, mainly bears, may contribute to jeopardize the recovery of this endangered caribou population. Highlighting the trophic interaction between species is needed to establish efficient conservation and management strategies to insure the persistence of endangered populations. The comparison of trophic niches of species sharing the same habitat or resources is fundamental to evaluate the mechanisms of coexistence or competition and eventually predict the consequences of ecosystem changes in the community. We have reconstructed the trophic niches of two ungulate prey, moose and Atlantic‐Gaspésie caribou, and of two incidental predators, coyote and black bear, living in sympatry in a protected area surrounded by intensively disturbed habitats. Using stable isotopes, we showed a small overlap in dietary niche for the two sympatric ungulates, suggesting a low potential for resource competition. However, we highlighted a trophic niche overlap between caribou and their predators, which can increase the encounter rate and associated mortality risk for caribou, an endangered species according to the Canadian Species at Risk Act.
Journal Article
Unlocking secrets of microbial ecotoxicology: recent achievements and future challenges
by
Gallois, Nicolas
,
Martins, Jean
,
Palacios, Carmen
in
Agriculture & agronomie
,
Agriculture & agronomy
,
Applied Microbiology and Biotechnology
2023
Abstract
Environmental pollution is one of the main challenges faced by humanity. By their ubiquity and vast range of metabolic capabilities, microorganisms are affected by pollution with consequences on their host organisms and on the functioning of their environment. They also play key roles in the fate of pollutants through the degradation, transformation, and transfer of organic or inorganic compounds. Thus, they are crucial for the development of nature-based solutions to reduce pollution and of bio-based solutions for environmental risk assessment of chemicals. At the intersection between microbial ecology, toxicology, and biogeochemistry, microbial ecotoxicology is a fast-expanding research area aiming to decipher the interactions between pollutants and microorganisms. This perspective paper gives an overview of the main research challenges identified by the Ecotoxicomic network within the emerging One Health framework and in the light of ongoing interest in biological approaches to environmental remediation and of the current state of the art in microbial ecology. We highlight prevailing knowledge gaps and pitfalls in exploring complex interactions among microorganisms and their environment in the context of chemical pollution and pinpoint areas of research where future efforts are needed.
Overview of the main research challenges at different scales for microbial ecotoxicology as identified by the Ecotoxicomic network in the light of the current state of the art.
Journal Article