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Hadrien Oliveri

@hadrienoliveri.bsky.social
317 followers 230 following 38 posts

Applied mathematician | Group Leader at MPIPZ @mpipz.bsky.social | holiveri.github.io/website

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Reposted by Hadrien Oliveri
The Conversation France @france.theconversation.com · 30/09/2026
Comment les arbres ajustent activement leur posture pour rester le plus droits possible
dlvr.it
Comment les arbres ajustent activement leur posture pour rester le plus droits possible
Les arbres perçoivent leur courbure et la rectifient activement grâce à un bois spécial dit « bois de tension », de manière analogue au contrôle postural des animaux.
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Hadrien Oliveri @hadrienoliveri.bsky.social · 29/09/2026
Beautiful work 🧠
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Hadrien Oliveri @hadrienoliveri.bsky.social · 28/09/2026
💥
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Reposted by Hadrien Oliveri
Meroz Lab @merozlab.bsky.social · 24/09/2026
🌱🪩 Optical illusions in plants? New paper @pnas.org: Nonlinear distributed sensing of light patterns leads to perceptual distortions in plants, or any distributed system tinyurl.com/5x79sxaj 📽️ opposing lights cancel, plant grows toward weaker light 🤩 R Kempinski, @amirporat.bsky.social, M Rivière
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Oxford Mathematics @oxfordmathematics.bsky.social · 24/09/2026
There are two compelling reasons to join us as a Hooke/Titchmarsh Research Fellow. You'll be part of a cohort of leading researchers on fellowships with whom you can share ideas. But as importantly you'll be free to pursue an independent research programme of your own. www.maths.ox.ac.uk/node/82502
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Reposted by Hadrien Oliveri
Sainsbury Laboratory Cambridge University (SLCU) @slcuplants.bsky.social · 22/09/2026
And if this looks like fun research that you would like to be involved in, @mc-caillaud.bsky.social has 2 postdoc positions. Applications close: 1 November 2026
Promotional slide with images from plant science research in Marie-Cécile Caillaud's research team. Two postdoc positions in Marie-Cécile Caillaud's research team at 
RDP - ENS Lyon. Applications close 1 November 2026. Starting date Jan 2027 onwards.
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Oxford Mathematics @oxfordmathematics.bsky.social · 21/09/2026
Challenging times. Join a research group working on rough path theory, machine learning and generative AI and related fields, part of a wider multi-university research group from Imperial College London, University College London and Oxford Mathematics. Role details: www.maths.ox.ac.uk/node/82495
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Alain Goriely @alaingoriely.bsky.social · 18/09/2026
Tim Gowers in 2006. Maybe not a 100 years but close enough.
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Oxford Mathematics @oxfordmathematics.bsky.social · 17/09/2026
For over 2,000 years scholars have marvelled at the Parthenon in Athens. The audacity, the beauty. And the architectural genius of the Greeks to introduce curves to correct optical illusions. Brilliant. Except they didn't. Here's @alaingoriely.bsky.social More: www.theguardian.com/science/2026...
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Reposted by Hadrien Oliveri
Max Planck Institute for Plant Breeding Research @mpipz.bsky.social · 16/09/2026
📣We are #hiring Join the Department of Comparative Development and Genetics @mpipz.bsky.social to work on mechanisms underlying plant development & diversity in a Research Support role.🌿Apply now #plantsci 👉https://jobs.mpipz.mpg.de/jobposting/36d653f86928d4c47af6b4d32debc67692b34a7d0?ref=homepage
Jobdescription
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Alain Goriely @alaingoriely.bsky.social · 16/09/2026
It all started with the lecture I gave at Gresham!
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Hadrien Oliveri @hadrienoliveri.bsky.social · 16/09/2026
Often, it takes a mathematician to see what no one else sees. Sometimes it takes one to see that what everyone “sees” isn’t there. Another eye-opening read from @alaingoriely.bsky.social 🏛️
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Somerville College, Oxford @somervillecollege.bsky.social · 02/09/2026
How did 24 rabbits nearly destroy a continent? Our Former Junior Research Fellow Joel Alves @joel-alves.bsky.social addresses this question for the BBC Ideas series, in a fascinating video, made in collaboration with Oxford's Social Sciences Division!
bbc.co.uk
The 24 rabbits that invaded Australia
How one of the greatest environmental disasters in history was unleashed by the unintentional actions of one man - Thomas Austin.
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Pau Formosa-Jordan @pauformosa.bsky.social · 25/08/2026
Our article “Time-dependent bistability leads to critical slowing down during floral transition in Arabidopsis” is now published in @natcomms.nature.com. Link: rdcu.be/fBZ3S. What an exciting collaboration with the Coupland lab! @mpipz.bsky.social @ceplas.bsky.social #PlantDevelopment #criticality
Top: Waddington/quasi-potential landscape cartoon illustrating a bistable transition. Bottom: Scheme of a simplified regulatory network underlying floral transition at the Arabidopsis shoot apical meristem. Adapted from Rodríguez-Maroto, Wang et al. (2026). Link: https://rdcu.be/fBZ3S
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Alain Goriely @alaingoriely.bsky.social · 20/08/2026
Derek is the best
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Oxford Mathematics @oxfordmathematics.bsky.social · 08/08/2026
Roger Penrose is 95 today. The fire still burns bright.
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Teva Vernoux @tevavernoux.bsky.social · 30/07/2026
Together with @plantophagy.bsky.social, we have an opened postdoc position for a young scientist that graduated after 01/01/2025, see ad attached
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Alain Goriely @alaingoriely.bsky.social · 29/07/2026
📢 We’re hiring in APPLIED MATHEMATICS at the OXFORD UNIVERSITY Mathematical Institute. We seek candidates using modern theoretical and computational methods to study physical, biological, medical and information sciences. Deadline: 28 Sept. Info: www.maths.ox.ac.uk/node/81913 #AppliedMath
maths.ox.ac.uk
Associate Professor (or Professorship) in Applied Mathematics | Mathematical Institute
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Alain Goriely @alaingoriely.bsky.social · 03/07/2026
Great collaboration with Milan and Stanford finally out. We introduce a whole-brain multiphysics model coupling amyloid-β dynamics and cerebral blood flow, showing how vascular hypoperfusion can trigger and sustain Alzheimer’s disease pathology. 🧠 authors.elsevier.com/sd/article/S...
authors.elsevier.com
A whole-brain model of amyloid beta accumulation and cerebral hypoperfusion in Alzheimer’s disease
Accumulation of amyloid beta proteins is a defining feature of Alzheimer’s disease, and is usually accompanied by cerebrovascular pathology. Evidence …
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Joel Marthelot @joelmarthelot.bsky.social · 13/06/2026
Fresh off the press! Jeongeun and Yoël’s work on the lightning-fast actuation of the Venus flytrap. 🪴⚡ No muscles. No nerves. So what powers the trap? Cutting the trap suppresses its mechanical amplifier, the snap-through instability, and reveals the active motion. www.science.org/doi/10.1126/...
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Science Magazine @science.org · 11/06/2026
New research in Science reveals that the Venus flytrap's snap is triggered by a rapid softening of the epidermal cell walls, uncovering the physical mechanism behind this remarkable movement. Learn more in this week's issue: scim.ag/4fXQ9sn
A Venus flytrap (Dionaea muscipula) leaf closes around a trapped fly. Photo: Alex Hyde/NPL/Minden Pictures
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Alain Goriely @alaingoriely.bsky.social · 10/06/2026
Does water and soft matter matter for active matter? A small but mighty matter.
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Christoffer G. Alexandersen @cgalexandersen.bsky.social · 10/06/2026
🧠 New paper out in 𝘉𝘳𝘢𝘪𝘯 Why does tau pathology often begin in the entorhinal cortex in Alzheimer’s disease? We show that brain-wide gradients of neuronal activity and amyloid-β may make this region particularly vulnerable to tau pathology. academic.oup.com/brain/articl...
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Alain Goriely @alaingoriely.bsky.social · 15/05/2026
I am looking for a Post-doc in Oxford to work with me on morphogenesis at the cellular scale, with particular emphasis on growth processes and their mechanical and dynamical consequences. Please circulate my.corehr.com/pls/uoxrecru... This bristle is created by a single cell! Let's model it.
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Hadrien Oliveri @hadrienoliveri.bsky.social · 10/06/2026
🚨 Paper: Active matter physics views living systems as open, out of equilibrium, and emergent. In a perspective on plant morphogenesis 🌱we discuss how such features arise from tissue hydromechanics, and how to model them. Thank you for your attention to this active matter. shorturl.at/IKKRt
cambridge.org
Towards a hydromechanical theory of plant active matter | Quantitative Plant Biology | Cambridge Core
Towards a hydromechanical theory of plant active matter
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Reposted by Hadrien Oliveri
Meroz Lab @merozlab.bsky.social · 24/04/2026
Plants are everywhere 🌳 but rarely thought of as computing. New review (preprint 🪩 lnkd.in/d5KwzzPN): plants sense, compute, and move without a brain - via growth, combining physical computation, embodied intelligence & functional noise. A physics view of decentralized behavior in living matter 🌱
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Alain Goriely @alaingoriely.bsky.social · 17/04/2026
A new twist on an old problem. Great paper.
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Hadrien Oliveri @hadrienoliveri.bsky.social · 09/04/2026
Hot off the press 🚨 Epidemic spreading between regions is often modelled on a network 🕸️ But how do we describe this process properly? Here, we show how to build a linear transport operator at the network scale, by coarse-graining local advection-reaction-diffusion within edges. shorturl.at/0tAN8
shorturl.at
A multiscale theory for network advection- reaction-diffusion - Journal of Mathematical Biology
Mathematical network models are extremely useful to capture complex propagation processes between different regions (nodes), e.g. the spread of an infectious agent between different countries, or the transport and replication of toxic proteins across different brain regions in neurodegenerative diseases. In these models, transport is modelled at the macroscale through an operator, the so-called graph Laplacian, based on the edge properties and topology, capturing the fluxes between different nodes of the network. However, this phenomenological approach fails to take into account the physical processes taking place, at the microscale, within the edge. A fundamental problem is then to obtain a transport operator from mechanistic principles based on the underlying transport process. Using advection-reaction-diffusion as a generic mechanism for inter-nodal exchanges, we derive a multiscale network transport model and derive the corresponding linear transport operator at the macroscale from first principles. This effective graph Laplacian is fully determined by the transport mechanisms along the edges at the microscale. We show that this operator correctly captures the transport, and we study its scaling properties with respect to edge length.
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Reposted by Hadrien Oliveri
Meroz Lab @merozlab.bsky.social · 03/04/2026
Preprint 🌱 Plants build nonlinear vectorial representations of light patterns! Surprising results: Opposing cues cancel, so plants grow towards a weaker tie-breaker light. Plants respond to sum of transduced signals, not physical sum of light: optical “illusions”! 🪩 tinyurl.com/44f83xh8
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Alain Goriely @alaingoriely.bsky.social · 23/03/2026
As part of this grant I will be looking soon for a Post-doc in Oxford to model nano-morphogenesis. Please RT and contact me directly if it is a good match for you.
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Oxford Mathematics @oxfordmathematics.bsky.social · 17/03/2026
Topological data analysis is ever changing shape. We're looking for researchers to join the team to work in applied topology for data science with links to geometry and systems biology. Find out more: lnkd.in/eHJ5zJpY
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Oxford Mathematics @oxfordmathematics.bsky.social · 13/03/2026
1 April 2026 is Sophie Germain's 250th birthday. Sophie made major contributions to mathematics, from number theory to elasticity theory. This lecture by Fields Medallist James Maynard is part of an afternoon dedicated to Sophie's work. Find out more: www.maths.ox.ac.uk/node/80642
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Pierre Haas @lepuslapis.bsky.social · 03/03/2026
This is a fantastic #biophysics job opportunity to join us in Dresden @mpipks.bsky.social! Apply by the 3rd of April!
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Alain Goriely @alaingoriely.bsky.social · 19/02/2026
By capturing the balance between aggregate formation and cellular clearance, our model explains decades of stability before sudden runaway dynamics, and offers a framework to predict disease onset and therapeutic efficacy. Mostly driven by Matthew Cotton and Georg Meisl doi.org/10.1063/5.03...
doi.org
A universal phase-plane model for in vivo protein aggregation
Neurodegenerative diseases are driven by the accumulation of protein aggregates in the brain of affected individuals. The aggregation behavior in vitro is well
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Hadrien Oliveri @hadrienoliveri.bsky.social · 07/02/2026
0️⃣1️⃣1️⃣2️⃣3️⃣5️⃣8️⃣🌺🥬🌱🌀 @alaingoriely.bsky.social on the Shape of Plants @greshamcollege.bsky.social (featuring our work with @christhorogood.bsky.social on Nepenthes at the end www.pnas.org/doi/10.1073/...) www.gresham.ac.uk/watch-now/sh...
gresham.ac.uk
The Shape of Plants: Why Plants Love Mathematics and Mathematicians Love Plants
Looking at the plant world, one discovers beautiful and fascinating structures in the shape and arrangement of leaves, stems, and roots. Some are simple and symmetric, other features are arranged in e...
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Hadrien Oliveri @hadrienoliveri.bsky.social · 07/02/2026
🪐
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Hadrien Oliveri @hadrienoliveri.bsky.social · 05/02/2026
;-]
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Pierre Haas @lepuslapis.bsky.social · 02/02/2026
The ELBE #postdoc #fellowship is a fantastic opportunity to join us in Dresden @mpipks.bsky.social @mpi-cbg.de. Apply now!
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Max Planck Institute of Molecular Cell Biology and Genetics @mpi-cbg.de · 28/01/2026
The spring call for the ELBE Postdoctoral Fellows Program is open now: www.csbdresden.de/join-us/as-a.... Join the @csbdresden.bsky.social for a fully funded fellowship. @mpi-cbg.de @mpipks.bsky.social
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arXiv physics.bio-ph Biological Physics @physicsbioph-bot.bsky.social · 09/09/2025
Hadrien Oliveri, Emilia Cozzolino, Alain Goriely: A multiscale theory for network advection-reaction-diffusion arxiv.org/abs/2509.06546 arxiv.org/pdf/2509.06546 arxiv.org/html/2509.06546
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Anja Geitmann @geitmannlab.bsky.social · 07/01/2026
OPPORTUNITY: McGill Plant Science is looking for an expert in plant pathology, plant breeding, or horticulture in the context of the Canada Impact+ Research Chairs Program (senior established researcher). Contact: www.mcgill.ca/plant/contact Program: lnkd.in/eavfNu7e Please re-post.
lnkd.in
LinkedIn
This link will take you to a page that’s not on LinkedIn
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Science Étonnante @scienceetonnante.com · 09/01/2026
Nouvelle vidéo ! FRONDE GRAVITATIONNELLE, SINGULARITÉS & POINTS DE LAGRANGE. On s’intéresse à quelques subtilités de la gravité newtonienne dans l’espace, et notamment le fait singulier qu’elle permet de se rendre à l’infini…en un temps fini ! Ca se passe par ici: youtu.be/xNuHtbrKwBY
youtu.be
Fronde gravitationnelle, Singularités et Points de Lagrange
YouTube video by ScienceEtonnante
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Hadrien Oliveri @hadrienoliveri.bsky.social · 22/01/2026
Job alert🚨I am advertising a 2-year postdoctoral position to work on the mathematics of plant morphogenesis @mpipz.bsky.social. Candidates with interests in mathematical modelling, mechanics, or biophysics are strongly encouraged to apply. 🌱Reposts are appreciated! jobs.mpipz.mpg.de/jobposting/4...
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Alain Goriely @alaingoriely.bsky.social · 21/01/2026
In a sarcastic book (Histoire de l’Astronomie du dix-huitième siècle) published in 1827, Joseph Delambre writes about mathematicians: "Les géomètres, qui ne calculent rien, s’imaginent qu’un problème est résolu quand ils l’ont renfermé dans une formule dont personne ne veut faire usage."
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London Mathematical Society @londmathsoc.bsky.social · 21/01/2026
Register for the LMS/@ima-maths.bsky.social Crighton Award Lecture on 13 May at The Royal Society. . The lecture will be given by Alain Goriely (@oxfordmathematics.bsky.social), winner of the 2025 award for his contributions to the public understanding of maths. ➡️ www.lms.ac.uk/events/lms-i...
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Christoffer G. Alexandersen @cgalexandersen.bsky.social · 18/01/2026
❗🧠 New review in IEEE RBME How network math models are reshaping how we think about neurodegenerative disease, from brain dynamics to disease progression "Network models of neurodegeneration: bridging neuronal dynamics and disease progression" ieeexplore.ieee.org/document/113...
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Max Planck Institute for Plant Breeding Research @mpipz.bsky.social · 29/12/2025
We are #hiring! Join Miltos Tsiantis’s lab within the IMPRS @mpipz.bsky.social to identify genes driving root sucker formation in crucifer plants — combining evolution & genetics. 📆 Deadline: Jan 5, 2026 ✏️ Apply via: gradschool.mpipz.mpg.de ℹ️ More info: mpipz.mpg.de/imprs
A Banner that shows the open call for the international PhD program on interdisciplinary Plant Biology in Cologne Germany between University of Cologne and Max Planck Institute for Plant Breeding Research. A button reads "apply now!".
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Gresham College @greshamcollege.bsky.social · 27/12/2025
In-person tickets open: The Shape of Shells 🐚 gres.hm/shape-shells Seashells, built by molluscs layer by layer, follow simple mathematical rules that create beautiful self-similar forms. Prof Alain Goriely* explains how we get various shapes, spines & wrinkles *also of Oxford Mathematics
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Juan Alonso-Serra @jalonsos.bsky.social · 16/12/2025
I’m very happy to share that next year I’m launching the Meristem Hydraulics Group. We will be at the @umeaplantsciencecentre.se (Sweden) & the University of Helsinki (Finland) @helsinki.fi Here is a brief description of our research interests: www.upsc.se/juan_alonso_... #PlantSciences
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University of Oxford @ox.ac.uk · 15/12/2025
Where on earth is the best laboratory to demonstrate the beauty of fluid dynamics? Actually, it’s not on Earth. Here is the story of the soft cell. Read more ⬇️ www.maths.ox.ac.uk/node/74308 @oxfordmathematics.bsky.social | Axiom Space | NASA
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