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Antoine Barreaux

@antoinebarreaux.bsky.social
249 followers 420 following 17 posts

Researcher in epidemiology and mathematical modeling of vector-borne diseases @CIRAD @ICIPE. My goal is to improve animal and global health by integrating translational and basic science in control programs and to inform policy.

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Reposted by Antoine Barreaux
Cirad @cirad.bsky.social · 02/07/2026
Over 700 000 people a year die from diseases transmitted by vectors such as mosquitoes & tsetse flies. A study by #CIRAD, @ird-fr.bsky.social 🇫🇷, #ICIPE 🇰🇪, #StellenboschUniversity 🇿🇦, #IRED & #PNLTHA 🇹🇩, & #CIRDES 🇧🇫 presents a new framework for assessing elimination of such vectors. 👉 urls.fr/Yc5s7W
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Reposted by Antoine Barreaux
Cirad @cirad.bsky.social · 07/05/2026
🎙️ Le premier épisode de la saison 8️⃣ de "Nourrir le vivant", le #podcast du #Cirad est en ligne ! Dans "C'est quoi, le pastoralisme ?", Véronique Ancey, scientifique au Cirad, vous invite à explorer les fondements du #pastoralisme. #IYRP2026 @selmetumr.bsky.social @faoenfrancais.bsky.social
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Antoine Barreaux @antoinebarreaux.bsky.social · 27/06/2026
1/ It is my pleasure to share our new six-steps modeling framework published in PNAS for confirming the elimination of vectors of diseases: www.pnas.org/doi/10.1073/... @cirad.bsky.social @icipeb.bsky.social @ird-fr.bsky.social @lstmnews.bsky.social
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Antoine Barreaux @antoinebarreaux.bsky.social · 24/06/2026
Have a look at our latest paper and exciting framework with fantastic control and soon elimination of tsetse by our Chad colleagues!
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Reposted by Antoine Barreaux
kinetoplastids papers @kinetoplastpapers.bsky.social · 24/06/2026
Modeling framework to demonstrate elimination of a vector population: Tsetse elimination in Chad pubmed.ncbi.nlm.nih.gov/42335234/
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Reposted by Antoine Barreaux
Bloodsucking Parasites @bloodsparasites.bsky.social · 14/05/2026
From static thresholds to dynamic waves: How biological memory destabilizes malaria transmission Potential bioRxivpreprint
dlvr.it
From static thresholds to dynamic waves: How biological memory destabilizes malaria transmission Potential
The basic reproduction number R0 is central to malaria epidemiology, yet it is typically treated as a static quantity derived under memoryless assumptions for mosquito demography. In natural systems, however, mosquito populations are shaped by delayed processes such as larval development and density-dependent feedback, introducing biological memory into vector dynamics. We develop a minimal delay-based framework that incorporates this memory into the Ross-Macdonald model by describing adult mosquito abundance with a retarded differential equation. This formulation induces a time-dependent transmission potential R0(t). Using complex analysis and the argument principle, we derive an explicit stability threshold (r - ){tau} = {pi}2 , which separates stable from oscillatory transmission regimes. Near this threshold, delayed feedback produces slow relaxation times and sustained transient oscillations, implying that transmission potential may vary intrinsically even in the absence of external forcing. To account for ecological variability, we extend this deterministic condition into a probabilistic framework and define the stability probability as Pstab = P((r - ){tau} < {pi}/2). Numerical simulations and global sensitivity analysis show that recruitment and developmental delays are the primary drivers of instability, while adult mortality has a weaker stabilizing effect. These results indicate that malaria interventions may influence not only the magnitude of malaria transmission but also its dynamical stability. By linking delay dynamics, transmission theory, and uncertainty quantification, this framework provides a basis for stability-aware modeling and interpretation of malaria transmission under ecological variability.
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Reposted by Antoine Barreaux
Bloodsucking Parasites @bloodsparasites.bsky.social · 15/05/2026
From static thresholds to dynamic waves: How biological memory destabilizes malaria transmission Potential bioRxivpreprint
dlvr.it
From static thresholds to dynamic waves: How biological memory destabilizes malaria transmission Potential
The basic reproduction number R0 is central to malaria epidemiology, yet it is typically treated as a static quantity derived under memoryless assumptions for mosquito demography. In natural systems, however, mosquito populations are shaped by delayed processes such as larval development and density-dependent feedback, introducing biological memory into vector dynamics. We develop a minimal delay-based framework that incorporates this memory into the Ross-Macdonald model by describing adult mosquito abundance with a retarded differential equation. This formulation induces a time-dependent transmission potential R0(t). Using complex analysis and the argument principle, we derive an explicit stability threshold (r - ){tau} = {pi}2 , which separates stable from oscillatory transmission regimes. Near this threshold, delayed feedback produces slow relaxation times and sustained transient oscillations, implying that transmission potential may vary intrinsically even in the absence of external forcing. To account for ecological variability, we extend this deterministic condition into a probabilistic framework and define the stability probability as Pstab = P((r - ){tau} < {pi}/2). Numerical simulations and global sensitivity analysis show that recruitment and developmental delays are the primary drivers of instability, while adult mortality has a weaker stabilizing effect. These results indicate that malaria interventions may influence not only the magnitude of malaria transmission but also its dynamical stability. By linking delay dynamics, transmission theory, and uncertainty quantification, this framework provides a basis for stability-aware modeling and interpretation of malaria transmission under ecological variability.
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Reposted by Antoine Barreaux
bioRxiv Ecology @biorxiv-ecology.bsky.social · 14/05/2026
From static thresholds to dynamic waves: How biological memory destabilizes malaria transmission Potential www.biorxiv.org/content/10.64898/20…
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Reposted by Antoine Barreaux
bioRxivpreprint @biorxivpreprint.bsky.social · 14/05/2026
From static thresholds to dynamic waves: How biological memory destabilizes malaria transmission Potential www.biorxiv.org/content/10.64898/20…
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Reposted by Antoine Barreaux
Global Health EDCTP3 @globalhealthedctp3.bsky.social · 02/03/2026
📢 Save the date for the EDCTP Forum 2027, to take place in Madrid from 5-9 April 2027! Get ready to share knowledge and join cutting-edge sessions on #GlobalHealth @isciiisalud.bsky.social, @cienciagob.bsky.social, @sanidad.gob.es 👉 More: link.europa.eu/T9Xjnf #EDCTPForum2027
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Reposted by Antoine Barreaux
Giuliano Cecchi @giulianocecchi.bsky.social · 03/12/2025
Comment mieux cartographier, cibler et contrôler la #Trypanosomose animale en Afrique ? Un nouveau document d’opinion de @fao.org explore comment les données et la modélisation des maladies peuvent transformer la lutte contre ce fléau. ➡️ Lire la publication : openknowledge.fao.org/handle/20.50...
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Antoine Barreaux @antoinebarreaux.bsky.social · 21/10/2025
scholarships.icipe.org/calls/61 Hi All join us at #Icipe in Kenya with #Cirad cosupervision and within the RMRN EA project to work on #agroecology, #agroforestry, #biodiversity and insects from #pollinators to #vectors
scholarships.icipe.org
ICIPE Scholarships portal
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Reposted by Antoine Barreaux
Giuliano Cecchi @giulianocecchi.bsky.social · 29/09/2025
#ReadingNow | New paper modelling distribution of #tsetse flies, vectors of animal #trypanosomosis in #Kenya. 👉: doi.org/10.1186/s130... Kenyan atlas of tsetse and trypanosomosis: doi.org/10.1186/s130... Continental atlas: doi.org/10.4060/cd20... @cirad.bsky.social @globalvectorhub.bsky.social
Two pages from the paper, with FAO and icipe logos
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Antoine Barreaux @antoinebarreaux.bsky.social · 16/09/2025
Glad to present our #IMPACTING project coordinated by #CIRAD and scientific lead by ICIPE at the 37th #ISCTRC conference, Nairobi, Kenya. Come and learn more about it! Thanks a lot to #AU-IBAR and Kenttec for an amazing event. #tsetse #vector-borne-diseases #modeling #climate-change
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Antoine Barreaux @antoinebarreaux.bsky.social · 05/09/2025
Learn more about our exciting new project lead by FAO and @giulianocecchi.bsky.social with @cirad.bsky.social and @ird-fr.bsky.social on #trypanosomiasis (AAT) control at the continental scale with exciting #modeling to come!!
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Giuliano Cecchi @giulianocecchi.bsky.social · 05/09/2025
#ReadingNow New paper on Disease Intelligence & Modelling for Progressive Control of Animal #Trypanosomosis in #Africa. 📘 Read paper: bit.ly/3HX1FWc 📘 Tsetse atlas: doi.org/10.4060/cd20... 📰 Project DIMCAT: bit.ly/41q5x8q @cirad.bsky.social @ird-fr.bsky.social @uni-of-warwick.bsky.social
Three pages of the publication
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Reposted by Antoine Barreaux
Trends in Parasitology @cp-trendsparasitol.bsky.social · 07/08/2025
Drs G. Cecchi, N. Ngari, M. Paone, J. de Gier, S. Onyango, A. Barreaux, S. Thévenon, P. Solano, A. Kaye, W. Tennant, M.J. Tildesley & L. Halos discuss disease intelligence & #modelling for progressive control of #animal #trypanosomosis in #Africa. #Atlases authors.elsevier.com/a/1lY-a5Eb1x...
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Antoine Barreaux @antoinebarreaux.bsky.social · 17/06/2025
📢 PhD Opportunity – Join Us at INTERTRYP (CIRAD)! 🌍🧪 🔬 Mathematical modeling of vector-borne diseases 📆 Apply before: July 15, 2025 📍 More info & apply: umr-intertryp.cirad.fr/en/news/2025...
umr-intertryp.cirad.fr
PhD Contract Offer at INTERTRYP (Cirad) on the mathematical modeling of vector-borne diseases / 2025 - Intertryp Joint Research Unit
As a PhD student in mathematical modeling and epidemiology, you will contribute to an international, interdisciplinary project investigating how climate and environmental changes affect vector-borne d...
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Antoine Barreaux @antoinebarreaux.bsky.social · 03/06/2025
Venez travailler avec nous à l'UMR INTERTRYP sur les MTNs / Come work with us on NTDs at INTERTRYP, deadline to apply for that IRD tenure track position is 02/07/2025 www.ird.fr/sites/ird_fr... www.ird.fr/sites/ird_fr...
ird.fr
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Reposted by Antoine Barreaux
Lynda Delph @ldelph.bsky.social · 13/12/2024
Here's my favorite from this semester - a meme about why we grow old and die.
A cartoon of a Trojan horse at the gates, with the horse appearing to be "advantages effects early in life", while hiding "deleterious effects late in life in its belly". Selection and antagonistic pleiotropy are also listed.
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AleX Caron @bactouch.bsky.social · 08/12/2024
#COHESA project Special Issue on #OneHealth snapshots in 12 African countries institutionalisation status + Synthesis article @cirad.bsky.social @ilri-cgiar.bsky.social www.cabidigitallibrary.org/journal/ohcs...
cabidigitallibrary.org
One Health Cases - Special Issue: One Health for COHESA | CABI Digital Library
One Health Cases is a curated collection of real-life examples of One Health in practice, stressing the interconnections between humans, animals, plants, ecosystems, and their shared environment in a ...
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Reposted by Antoine Barreaux
Michael Landis @landismj.bsky.social · 19/11/2024
Here's a starter pack for early career researchers in evolutionary biology. I prioritized the most-junior folks, and this list quickly filled up with undergrads, grad students, and postdocs. Might do another list later, but I'm tired. Have fun everyone! 🐒 #evobio go.bsky.app/MzND7nX
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Neeltje Boogert @neeltjeboogert.bsky.social · 05/12/2024
Come do a PhD with Sinead English @englishse.bsky.social , Dan Padfield @padpadpadpad.bsky.social and me on Gulls! GPS- and Bluetooth-tracking! Microbiomes & AMR acquisition & transmission! Human-wildlife conflict & mitigation! should be fun :-)
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Antoine Barreaux @antoinebarreaux.bsky.social · 05/12/2024
Dear all, I finally moved from twitter. I am looking forward to find back the exchanges and excitment about science a good platform to communicate can provide. I am a researcher in epidemiology and mathematical modeling for @cirad.bsky.social based in Kenya and a visiting scientist at @Icipe. 1/4
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