- Preprint Article
- 10.22541/au.176659914.45397561/v1
Système électrocinétique à argile structurée pour l’agrégation et la capture des microplastiques
- Dec 24, 2025
- Jules Henissart-Miquel
Publications from 2021 to 2026
Showing 10 of 158 papers
Système électrocinétique à argile structurée pour l’agrégation et la capture des microplastiques
Oxygen supersaturation has negligible effects on warming tolerance across diverse aquatic ectotherms
Under the midday sun, when photosynthesizers are producing oxygen, shallow aquatic ecosystems can become supersaturated with oxygen (>100% air saturation) while they simultaneously peak in water temperature. It has been suggested that oxygen supersaturation could protect water-breathing animals from mortality during heatwaves because of the potential role of oxygen in governing thermal tolerance. Here, we conducted a circumglobal assessment of the effects of ecologically relevant oxygen supersaturation (150%, hyperoxia) on warming tolerance (here, measured using critical thermal maximum, CTmax) in 14 aquatic ectotherms from diverse marine and freshwater environments (10 fishes, four decapod crustaceans), in a series of 24 experiments that included 147 CTmax trials and 1,451 animals using two warming rates (0.3°C min−1 and 1°C h−1). In 10 of 14 species, there was no effect of oxygen supersaturation relative to normoxic controls. In four species (two tropical reef fishes and two marine decapod crustaceans), we found mixed evidence for effects of oxygen saturation, with most of the effects being small (ca. 0.2°C–0.3°C). Thus, contrary to predictions, we conclude that oxygen supersaturation is unlikely to protect most water-breathers from heatwaves and therefore few species distribution models or climate risk assessments will benefit from incorporating oxygen supersaturation.
Read moreCannabidiol in Sports: A Brazilian Perspective.
This Viewpoint examines the emerging role of cannabidiol (CBD) in sports medicine, with a particular emphasis on its potential to support athlete health through indirect mechanisms. Rather than acting as a direct performance enhancer, CBD may contribute to improved readiness for training and competition by promoting better sleep, alleviating anxiety, and accelerating recovery. We also discuss challenges for antidoping compliance, including product contamination and regulatory gaps in Brazil, and highlight CBD's promise as a safer alternative to opioids for pain management in athletes.
Read moreMarine animal forest formed by gorgonians <i>Subergorgia</i> on near‐shore mesophotic ecosystems in Reunion Island
Abstract Mesophotic coral ecosystems (MCEs), occurring between 30 and 150 m depth, are increasingly recognized for their ecological importance, yet they remain underexplored, particularly in the southwestern Indian Ocean. During benthic surveys conducted at depths ranging from 15 to 75 m off northwestern Reunion Island, we documented a dense and extensive marine animal forest (MAF) dominated by large arborescent octocorals Subergorgia cf. suberosa. This monospecific community formed a complex three‐dimensional habitat spanning a substantial area at mesophotic depths over the northwestern abrupt slopes of Reunion Island. Colonies reached over 1.5 m in height, providing structural habitat for diverse fish and macroinvertebrate assemblages. A total of 53 fish species from 22 families were recorded in association with this MAF, alongside numerous epibionts and understory anthozoans. Despite its ecological value, this habitat faces significant anthropogenic pressures, particularly from fishing activities. Nearly 25% of photographed S. cf. suberosa colonies were entangled in fishing lines, with visible damage including tissue necrosis and polyp loss affecting up to 47% of colonies. These impacts, along with sedimentation from runoff, raise concerns for the long‐term persistence of this mesophotic habitat‐forming community, as long‐lived, slow‐growing organisms like gorgonians may be more impacted by these types of disturbances and take longer to recover than fast‐growing organisms. Our findings represent the first quantitative assessment of Subergorgia dominance and associated biodiversity in this region and highlight its role as a potential refuge for shallow reef taxa. The ecological significance, spatial extent, and fragility of this MAF underscore the urgent need for spatially replicated surveys, targeted conservation strategies, and regulation of damaging activities such as fishing. We advocate for increased research efforts focused on mesophotic habitats, with particular attention to the population dynamics and ecological functions of large gorgonians, to better understand the role of MCEs in reef resilience under accelerating environmental changes.
Read moreEvaluation of an in-jail and post-release comprehensive treatment model for opioid use disorder in Massachusetts.
Towards an integrated approach with local communities to ensure sustainable and ethical use of marine genetic resources - The case of cone snails in French Polynesia
Our contribution will present the methods and results of the first international project (POLYCONE, supported by the Belmont Forum, CRA Ocean) in sustainability science, aimed at establishing a sustainable, fair and ethical management plan for marine cones in French Polynesia. After four years of interdisciplinary work and dialogue with local communities and authorities, we will present the levers and obstacles to the sustainable use and fair retribution of genetic resources, focusing on socio-ecological governance as a transformative and effective solution for ecosystems, non-human populations and the human societies that depend on them.This analytical feedback could enlighten other territories and communities, particularly island ones, on the front line of global change, where the sciences of sustainability and transformation have much to contribute by linking nature and culture through the thread of knowledge and enlightened, ethical public decision-making and collective action around the commons.The question of how to define communities, their political role and the legal and ethical pluralism between local, national and international statutes (Nagoya Protocol and The Access and Benefit-sharing on Genetic Resources) will be particularly discussed in the case of French over-seas territories. This contribution reports on the international collaboration within the POLYCONE project and interactions with the International Research Netwok APOLMER on Ocean governance and resource management (CNRS-Sciences Po, Univ. Hawaii and Ottawa, CNRS research units) in strong interaction with the Chaire Outre-mer (Sciences Po - CEVIPOF), while itself questioning the role of science and scientists in (post)colonial territories subject facing the impacts of global change in marine ans coastal environments.
Read moreInvasive macroalgae shape chemical and microbial waterscapes on coral reefs
Over the past decades, human impacts have changed the structure of tropical benthic reef communities towards coral depletion and macroalgal proliferation. However, how these changes have modified chemical and microbial waterscapes is poorly known. Here, we assessed how the experimental removal of macroalgal assemblages influences the chemical and microbial composition of two reef boundary layers, the benthic and the momentum. Chemical and microbial waterscapes were spatially structured, both horizontally and vertically, according to macroalgal dominance and boundary layers. Microbes associated with reef degradation were enriched in the boundary layers surrounding macroalgal-dominated substrata. Dominant macroalgae were surrounded by a distinct chemical pool of diverse lipid classes (e.g., diterpenoids and glycerolipids) and labile organic matter (e.g., organooxygen compounds), which diffused from algal tissues to boundary layers according to their polarity. Finally, our results highlighted strong co-variations between specific algal-derived metabolites and planktonic microbes, giving insight into their roles in coral reef functioning and resilience.
Read moreScleractinian Coral Skeletons as Natural Archives of Global Change: A Cross-Disciplinary Investigation
Coral reef fish density at a tourist destination responded rapidly to COVID-19 restrictions.
Throughout the world, anthropogenic pressure on natural ecosystems is intensifying, notably through urbanisation, economic development, and tourism. Coral reefs have become exposed to stressors related to tourism. To reveal the impact of human activities on fish communities, we used COVID-19-related social restrictions in 2021. In French Polynesia, from February to December 2021, there was a series of restrictions on local activities and international tourism. We assessed the response of fish populations in terms of changes in the species richness and density of fish in the lagoon of Bora-Bora (French Polynesia). We selected sites with varying human pressures-some dedicated to tourism activities, others affected by boat traffic, and control sites with little human presence. Underwater visual surveys demonstrated that fish density and richness differed spatially and temporally. They were lowest on sites affected by boat traffic regardless of pandemic-related restrictions, and when activities were authorised; they were highest during lockdowns. Adult fish density increased threefold on sites usually affected by boat traffic during lockdowns and increased 2.7-fold on eco-tourism sites during international travel bans. Human activities are major drivers of fish density and species richness spatially across the lagoon of Bora-Bora but also temporally across pandemic-related restrictions, with dynamic responses to different restrictions. These results highlight the opportunity provided by pauses in human activities to assess their impact on the environment and confirm the need for sustainable lagoon management in Bora-Bora and similar coral reef settings affected by tourism and boat traffic.
Read more3D microscopic reconstruction of pearls using combined optical microscopy and photogrammetry
In this study, we introduce an affordable and accessible method that combines optical microscopy and photogrammetry to reconstruct 3D models of Tahitian pearls. We present a novel device designed for acquiring microscopic images around a sphere using translational displacement stages and outline our method for reconstructing these images. We successfully created 3D models of two individual pearl rings, each representing 6.3% of the pearl’s surface. Additionally, we generated a combined model representing 10.3% of the pearl’s surface. This showcases the potential for reconstructing entire pearls with appropriate instrumentation. We emphasize that our approach extends beyond pearls and spherical objects and can be adapted for various object types using appropriate acquisition devices. We provide a proof of concept demonstrating the feasibility of 3D photogrammetry using optical microscopy. Consequently, our method offers a practical and cost-effective alternative for generating 3D models at a microscopic scale, particularly when detailed internal structure information is unnecessary.
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