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Jinghui Liu

@liujinghui.bsky.social
108 followers 103 following 5 posts

ELBE & Marie Curie postdoc CSBD/MPI-CBG/MPI-PKS | MIT physics PhD 22’ | Peking Univ physics undergrad 16’

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Jinghui Liu @liujinghui.bsky.social · 07/09/2026
Excited to be presenting this project at Barcelona tomorrow! # 3rd Biology for Physics virtual.oxfordabstracts.com/event/76857/...
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Reposted by Jinghui Liu
Pierre Haas @lepuslapis.bsky.social · 17/06/2025
Now #published @cp-cellsystems.bsky.social: "Impossible ecologies: Interaction networks and stability of coexistence in ecological communities" doi.org/10.1016/j.cels.2025.101297! With @yumeng0806.bsky.social, @szhorvat.bsky.social, Carl Modes @mpipks.bsky.social @mpi-cbg.de @csbdresden.bsky.social.
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Jinghui Liu @liujinghui.bsky.social · 11/04/2025
REPOSTING a recent work to announce a start on Bluesky :) 🌐 If you are looking for Friday readings— www.nature.com/articles/s41... an article I and Tom Burkart (@physicsoflifelmu.bsky.social) wrote, featured as a @natphys.nature.com research briefing! From my PhD in @fakhrilab.bsky.social at MIT!
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Jinghui Liu @liujinghui.bsky.social · 09/04/2025
Very excited about the new avenue!! The physics of bioelectrical signalling in tissues, and the molecular mechanism it employs to ensure correct organ regeneration. Check here: www.biorxiv.org/content/10.1... Stay tuned for more from us in the coming future!!
biorxiv.org
Injury-induced electrochemical coupling triggers regenerative cell proliferation
Organ injury triggers non-neuronal electric currents essential for regeneration. Yet, the mechanisms by which electrical signals are generated, sensed and transmitted upon damage to promote organ grow...
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Jinghui Liu @liujinghui.bsky.social · 09/04/2025
Super proud of our collab!!
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Reposted by Jinghui Liu
Erwin Frey @physicsoflifelmu.bsky.social · 06/04/2025
Looking for a reading snack? Our work is featured as a @NaturePhysics research briefing: www.nature.com/articles/s41...
nature.com
Optical control of an excitable enzyme circuit for engineering dynamic cell shapes - Nature Physics
Light-switchable enzymes hold great promise for mediating molecular activations in living cells, yet their full potential in realizing versatile controls in nonlinear networks remains unexplored. Now,...
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SynBioBeta @synbiobeta.bsky.social · 03/04/2025
Researchers led by Erwin Frey (LMU Munich) and Nikta Fakhri (MIT) discovered how to reshape living cells with light, revealing key mechanisms behind cell morphogenesis. read article: www.synbiobeta.com/read/lighten... #SyntheticBiology #Optogenetics #ScienceNews
synbiobeta.com
Lighten Up: How Scientists Are Twisting Cells at Will - SynBioBeta
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Reposted by Jinghui Liu
Erwin Frey @physicsoflifelmu.bsky.social · 31/03/2025
We may not have really squared the circle — but we came close! 😉 In our @NaturePhysics paper w/ @fakhrilab.bsky.social, light-triggered membrane excitability enables programmable shapes — a step toward engineering living matter. 🔗 www.nature.com/articles/s41... #biophysics #syntheticcell #softmatter
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Jinghui Liu @liujinghui.bsky.social · 03/04/2025
Congrats Rita!!
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Reposted by Jinghui Liu
Erwin Frey @physicsoflifelmu.bsky.social · 17/03/2025
🚀 The Frey Group is now on Bluesky! 🌐 We explore statistical physics, biophysics, and nonequilibrium systems. From active matter to self-organization in biology, we uncover fundamental principles of complex systems. #Physics #Biophysics #ActiveMatter #ComplexSystems #TheoreticalPhysics
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Reposted by Jinghui Liu
Altmetric @altmetric.com · 18/11/2024
We strongly suggest that academic publishers and other platforms that host research rapidly implement a Share to Bluesky button for their articles. Here's how: docs.bsky.app/docs/advance... #AcademicSky #HigherEd #Altmetrics
docs.bsky.app
Action Intent Links | Bluesky
Authors, websites, and apps can use action intent links to implement "Share on Bluesky" buttons, or similar in-app actions. Logged-in users will be directed to the corresponding action view in the Blu...
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