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WashU Ciliopathy Research Group

@wu-ciliopathygroup.bsky.social
855 followers 2.7K following 48 posts

A multidisciplinary team of investigators at Washington University in St Louis that perform fundamental, translational, and clinical research on human ciliopathies.

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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 07/09/2026
Our group was well represented at the @embo.org #Centrosome conference in Lausanne. An excellent meeting all around! @jenntrosome.bsky.social @dutcherlab.bsky.social @mahjoublab.bsky.social
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 12/06/2026
Bravo and thank you to Riley, Mavrick and Conard for the generous gift! 🙏 You're in great hands with the @horanilab.bsky.social !!
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 02/05/2026
Major congratulations to Steve Brody (@brodylab.bsky.social) for his election to the Association of American Physicians (AAP). A well deserved honor for an incredible physician-scientist 👏👏 Yet another 🏅 for #cilia and #ciliopathy research!
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EuroCilia2027 @eurocilia.bsky.social · 30/04/2026
🚨 Deadline Extended! 🚨 The Cilia 2027 Best Image Competition is now open until May 7, 2026. Got a striking microscopy image? This is your chance to have it showcased at #Cilia2027 🦠🏆 Submit now and share your science through art! #MicroscopyContest #ScienceArt #CellBiology #BioImaging
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 29/04/2026
Congratulations to our very own Susan Dutcher @dutcherlab.bsky.social for being elected to the National Academy of Sciences! A truly remarkable achievement for an amazing scientist. And a huge 🏆 for #cilia research! @nasonline.org @washugenetics.bsky.social @washu.edu
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EuroCilia2027 @eurocilia.bsky.social · 23/04/2026
One week to go! ⏳ Don’t wait until the final hour—get those entries in now! Check the original post below for all the details. 👇 #Cilia #Cilia2027 #SciArt #Microscopy
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Rockefeller University Press @rupress.org · 23/04/2026
Bénédicte Durand discusses Shan Wang, Xin Liang et al.’s new study in @jcb.org (doi.org/10.1083/jcb....) which describes how the motor protein Kif19A shapes the tips of fly mechanosensory #cilia. rupress.org/jcb/article-...
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Cédric Pourroy @cepourroy.bsky.social · 15/04/2026
CenSpark story is now published in @natchembio.nature.com. We engineered a dual-ligand fluorescent probe to selectively "light up" centrioles & cilia. Massive thank to Pierre Gönczy, @lreymond.bsky.social and @ghatzopoulos.bsky.social for the guidance. Check it out 👉: doi.org/10.1038/s415...
doi.org
Development of the fluorescent probe CenSpark for labeling centrioles and cilia - Nature Chemical Biology
CenSpark is a dual-ligand fluorescent probe binding simultaneously inner and outer microtubule sites, a configuration unique to doublet and triplet microtubules, enabling selective live imaging of cen...
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Noelle Dwyer @noelledwyerphd.bsky.social · 16/04/2026
Our preprint about Togaram1 mouse knockout brain phenotypes is on bioRxiv! This is a model of Joubert Syndrome ciliopathy caused by loss of Togaram1 (aka Crescerin1 aka FAM179B). Primary #cilia defects in neural stem cells. Neurogenesis, mitotis, apoptosis, morphogenesis phenotypes! #cellbio
mouse embryo with small brain and small eye
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Digital Brain @yourdigitalbrain.bsky.social · 20/04/2026
Stentors are fascinating trumpet-shaped protozoa that can be seen with the naked eye. Their synchronized cilia create water currents to capture food effortlessly.
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 24/04/2026
😍
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PLOS Biology @plosbiology.org · 23/04/2026
Calling all #cilia researchers. Our new Community Page presents CiliaKB, a manually curated #KnowledgeBase that serves as a one-stop platform for researchers to rapidly access mechanistic #data and mine for translational clues about cilia. 🧪 #CellBiology
plos.io
CiliaKB: A comprehensive knowledge base for cilia-associated genes
Cilia dysfunction is implicated in a range of disorders. This Community Page presents CiliaKB, a manually curated knowledge base that serves as a one-stop platform for researchers to rapidly access…
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dutcherlab.bsky.social @dutcherlab.bsky.social · 23/01/2026
The House voted yesterday on the conferenced appropriations bill (H.R. 7148), passing it by a vote of 341 in favor and 88 against. This 954-page bill includes funding for NIH, CDC, and other federal science agencies. The NIH’s overall budget increased by 0.6% compared to FY25.
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dutcherlab.bsky.social @dutcherlab.bsky.social · 23/01/2026
Unfortunately, the CDC budget was reduced by 15.8%. Write your senator as they vote next week on the bill
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Moe Mahjoub @mahjoublab.bsky.social · 22/01/2026
Listen to me folks. We all agree that this SCIENCV thing sucks. Extra work for no reason. So let's all agree not to nitpick about things on the Biosketch when it's our turn to review grants. Be a good reviewer and let's not screw ourselves. Yes, I'm talking to YOU!
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 21/01/2026
Mark your calendar for the best #cilia conference out there! 👇 Our very own Susan @dutcherlab.bsky.social is presenting one of the keynotes!! 🙌
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Moe Mahjoub @mahjoublab.bsky.social · 19/12/2025
Happy #FluorescenceFriday 🔬 all! Is that the Eye of Sauron? No, it's a developing mouse oocyte (beautiful cells to image btw). But what are those filaments inside the cell? Stay tuned 😉
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Moe Mahjoub @mahjoublab.bsky.social · 07/12/2025
Bummed to miss #ASCB this year (one of my fav meetings), but the lab is well represented! Stop by poster B169 today and Maneesha will tell you all about her work on basal bodies and cilia homeostasis in multiciliated cells 👇 #CellBio2025
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 04/12/2025
Another great review for lovers of #centrioles and #centrosomes, this one from our group members @ericabiven.bsky.social and @jenntrosome.bsky.social 👇😍 www.sciencedirect.com/science/arti...
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HoraniLab @horanilab.bsky.social · 20/11/2025
I am excited to share our latest preprint describing comparative transciptomic analysis between primary ciliary dyskinesia and cystic fibrosis. The more we understand the pathways driving disease the better equipped we are to find a cure. www.biorxiv.org/content/10.1...
biorxiv.org
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 19/11/2025
WashU is in the house! Susan and Moe in action at the CSH Asia conference on #cilia and #centrosomes in Suzhou, China.
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 19/11/2025
WashU speakers on the schedule today! #CSHAsia
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 18/11/2025
Big news from our group! 👏👏
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 04/11/2025
Checkout the new preprint from @horanilab.bsky.social 👇
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Rui Zhang @ruizhangmt.bsky.social · 31/10/2025
Happy Halloween everyone! 🎃
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Cytoskeleton Journal @cytoskeljournal.bsky.social · 08/10/2025
#Actin and #cilia fans, we have a #FREE ACCESS #Review #article available for you in #CYTOSKELETON! The Role of #Microfilaments in Cilia Formation and Function. Read it here for FREE: onlinelibrary.wiley.com/doi/full/10....
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Piali Sengupta @senguptalab.bsky.social · 16/10/2025
Despite the mess, we are grateful to be funded, have exciting science happening, and have an opening for a postdoc! If you are interested in sensory biology and esp in cilia, thermosensation, or interoception, and would like to join an interactive & supportive group - please email. Please RT 🙏
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Jess Holz @jessholz.bsky.social · 11/10/2025
Polychaete larva cilia currents in timelapse. #sciart #microscopy #plankton
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University of Exeter @exeter.ac.uk · 16/10/2025
New research has unravelled the mystery of how microscopic cilia choreograph their “Mexican wave”, enabling marine creatures to swim. Cilia are tiny, hair-like protrusions found in many organisms. Yet despite decades of research, the mechanisms of cilia coordination remained disputed.
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Marie Zelená @mariezelena.bsky.social · 10/10/2025
Our collaboration with @mbonhivers.bsky.social is now out in @plosbiology.org! 🎉Using U-ExM, we mapped the formation of the flagellar pocket collar in T. brucei. Huge thanks to everyone involved — one step closer to #PhDone! #ExM #oneringtorulethemall #Bilbo1 #trypanosoma #protistsonsky
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HoraniLab @horanilab.bsky.social · 26/09/2025
I am excited to share the new PCD diagnostic guidelines. A great collaboration with PCD experts from all over the world. publications.ersnet.org/content/erj/...
publications.ersnet.org
European Respiratory Society and American Thoracic Society guidelines for the diagnosis of Primary Ciliary Dyskinesia
Primary ciliary dyskinesia (PCD) is caused by pathogenetic variants in >55 genes. PCD is associated with early-onset chronic wet cough and rhinosinusitis, laterality defects, middle ear disease, and reduced fertility. The clinical presentation is heterogeneous, and diagnosis often relies on multiple tests. The American Thoracic Society (ATS) and European Respiratory Society (ERS) have previously developed separate guidelines for diagnosis. Here, ERS and ATS members systematically reviewed the literature on diagnostic tools used in practice and developed unified evidence-based guidelines for PCD diagnosis using GRADE (Grading of Recommendations, Assessment, Development and Evaluations) methodology, and a transparent process of decision-making using Evidence-to-Decision (EtD) frameworks. The Task Force panel formulated three PICO (Patients, Intervention, Comparison, Outcomes) questions and three narrative questions. The accuracies of high-speed video microscopy (HSVM), immunofluorescence (IF), and nasal nitric oxide (nNO) were compared to a reference test of transmission electron microscopy (TEM) and/or genetics. The panel gives strong recommendation for use of HSVM, IF, and nNO as adjunct tests to TEM and/or genetics for PCD diagnosis. However, no adjunct test is suitable as a standalone test to diagnose PCD and no single adjunct or reference test is suitable to exclude PCD. Pursuing a genetic diagnosis is encouraged due to the implication on management. The panel emphasizes that tests should meet a minimum standard and proposes evaluation of patients at a referral centre experienced in diagnosis. The pretest probability based on symptoms should be considered when interpreting results.
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Moe Mahjoub @mahjoublab.bsky.social · 26/08/2025
It's another NOA day! So happy and relieved to finally get this. What started out as a crazy idea pitched to the @wu-ciliopathygroup.bsky.social team a couple of years ago is now a fully funded project. Major thanks to NHLBI for continuing to fund our work on motile ciliopathies 🙏
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Mill_lab @cilialab.bsky.social · 29/07/2025
Peak #SummerFun- our amazing line-up for our 52nd @bscb-official.bsky.social @gensocuk.bsky.social @ukcilianetwork.bsky.social e-symposium 19/08/2025 15:00-17:45 is now live! Join us for all things #cilia & #centrosomes- free & open to all. Register for here- www.eventbrite.co.uk/e/1220921258...
eventbrite.co.uk
BSCB GenSoc UK Cilia and Centrosome Network e-Symposia Series
BSCB GenSoc UK Cilia and Centrosome Network e-Symposia Series
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WashU Ciliopathy Research Group @wu-ciliopathygroup.bsky.social · 29/07/2025
We'll be there 👌 #Cilia2027
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Amber Stratman @astratman.bsky.social · 15/07/2025
Excited to be involved with this work driven by @dremilygoldberg.bsky.social and her team! Read the preprint now! "Neutrophil TLR2 signaling promotes lipid accumulation and vascular plaque growth"
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Philippe Bastin's Lab @bastinlab.bsky.social · 17/07/2025
The nucleus is fantastic, but can it beat #cilia and #flagella 😉 here stained for tubulin (magenta) with an intraflagellar transport train (green) after #expansion microscopy and #STED or shown by classic TEM. JCS @jcellsci.bsky.social found the solution and is featuring both! 😍
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Mia Konjikusic, PhD @konjikusicmia.bsky.social · 19/07/2025
‼️🚨Preprint alert! 🚨‼️ Excited to have some of my first works as a postdoc, and first corresponding author (!!), on biorxiv! This was a fun side quest of a project marrying a few things I deeply love, development, cilia, and hormones in the pituitary! Happy reading! www.biorxiv.org/content/10.1...
biorxiv.org
Primary cilia and BBS4 are required for postnatal pituitary development
Primary cilia orchestrate several signaling pathways, and their disruption results in pleiotropic disorders called ciliopathies. Bardet Beidl syndrome (BBS), one such ciliopathy, provides insights int...
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Journal of Cell Biology @jcb.org · 27/06/2025
Juhi Narula and Sarah Wignall (@sadiewignall.bsky.social) identify a new role for the conserved kinase PLK-1 in suppressing centrosome maturation in oocytes, which surprisingly is opposite to its role in mitosis. rupress.org/jcb/article/... #CellCycle #Genetics #Cytoskeleton #Development
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Journal of Cell Science @jcellsci.bsky.social · 08/07/2025
Manolo Rios, Jeffrey Woodruff and colleagues use purified human proteins to define the minimal modules for centrosome scaffold assembly and microtubule aster nucleation. journals.biologists.com/jcs/article/...
Figure showing microtubule-nucleating activity of CDK5RAP2 scaffolds with γ-TuRCs.
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I-75 Scientist @flscitriguy.bsky.social · 14/07/2025
in vivo BioID (iBioID) labeling of primary cilia in neurons on mice and identifying new signaling pathways in them. Cool new work from Sarah Goatz's lab. www.jneurosci.org/content/earl...
jneurosci.org
Identification of new ciliary signaling pathways in the brain and insights into neurological disorders
Primary cilia are conserved sensory hubs essential for signaling transduction and embryonic development. Ciliary dysfunction causes a variety of developmental syndromes with neurological features and ...
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BehavEcolPapers @behavecolpapers.bsky.social · 15/07/2025
Cilia in the #brain display region-dependent oscillations of length and orientation @PLOSBiology.org
dlvr.it
Cilia in the #brain display region-dependent oscillations of length and orientation
by Roudabeh Vakil Monfared, Sherif Abdelkarim, Pieter Derdeyn, Kiki Chen, Hanting Wu, Kenneth Leong, Tiffany Chang, Justine Lee, Sara Versales, Surya M. Nauli, Kevin Beier, Pierre Baldi, Amal Alachkar In this study, we conducted high-throughput spatiotemporal analysis of primary cilia length and orientation across 22 mouse brain regions. We developed automated image analysis algorithms, which enabled us to examine over 10 million individual cilia, generating the largest spatiotemporal atlas of cilia. We found that cilia length and orientation display substantial variations across different brain regions and exhibit fluctuations over a 24-h period, with region-specific peaks during light-dark phases. Our analysis revealed unique orientation patterns of cilia, suggesting that cilia orientation within the brain is not random but follows specific patterns. Using BioCycle, we identified rhythmic fluctuations in cilia length across five brain regions: the nucleus accumbens core, somatosensory cortex, and the dorsomedial, ventromedial, and arcuate hypothalamic nuclei. Our findings present novel insights into the brain cilia dynamics, and highlight the need for further investigation into cilia’s role in the brain’s response to environmental changes and regulation of oscillatory physiological processes.
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John Wallingford @jbwallingford.bsky.social · 01/07/2025
Cilia Alert! So excited to finally have this paper on the CPLANE complex out in @natcomms.nature.com! We show that RSG1 is a human ciliopathy protein and links CPLANE to the transition zone. 1/n www.nature.com/articles/s41...
nature.com
The human ciliopathy protein RSG1 links the CPLANE complex to transition zone architecture - Nature Communications
The CPLANE complex is essential for ciliogenesis, and mutations to all but one subunit have been associated with ciliopathies. Here they identify three familial mutations in the final subunit, RSG1, t...
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Development @dev-journal.bsky.social · 03/07/2025
Issue 12 is complete! On the cover: Multiciliated Xenopus embryonic epidermis, highlighting its motile cilia, stained for acetylated alpha-tubulin (cilia; magenta), polyglycylated tubulin (cilia; cyan) and phalloidin (actin; green). See Teerikorpi et al. journals.biologists.com/dev/article-...
Multiciliated Xenopus embryonic epidermis, highlighting its motile cilia, stained for acetylated alpha-tubulin (cilia; magenta), polyglycylated tubulin (cilia; cyan) and phalloidin (actin; green). Image credit: Micaela Lasser. See Research Report by Teerikorpi et al.
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Mill_lab @cilialab.bsky.social · 07/07/2025
📣 Cilia Lab is growing 📣 - we have 2️⃣ open positions at @uoe-igc.bsky.social @edinburgh-uni.bsky.social for talented and motivated researchers interested in disease modelling & genetic therapies which target #RareRespiratoryDiseases at their root cause. 🧪🧪#ciliopathies #PrimaryCiliaryDyskinesia 1/4
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Nicastro Lab @nicastrolab.bsky.social · 08/07/2025
🎉 Congrats to Yanhe, Kangkang, @amirtavakoli.bsky.social, Long & co-authors for revealing the atomic structure of RS3, a Giga-sized complex in motile cilia! A tour de force in #cryoET, #cryoEM, #proteomics & modeling. Out now in Nat Struct Mol Biol! doi.org/10.1038/s415... @CellUtsw
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Bui Lab @McGill @builab.bsky.social · 11/07/2025
Our newest paper is now online in Current Biology. In short, we identified 7 proteins in the tip of the cilia and found SPEF1 is a seam-binding protein and important for cilia stability. Great work from my postdoc Thibault Legal and everyone involved! www.sciencedirect.com/science/arti...
sciencedirect.com
Structure of the ciliary tip central pair reveals the unique role of the microtubule-seam binding protein SPEF1
Motile cilia are unique organelles with the ability to move autonomously. The force generated by beating cilia propels cells and moves fluids. The cil…
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PLOS Biology @plosbiology.org · 14/07/2025
Spatiotemporal analysis of >10 million #PrimaryCilia in 22 mouse #brain regions shows that #cilia have region-specific length & orientation patterns. #Circadian rhythms of cilia length suggest a role for cilia in the brain’s response to environmental changes @plosbiology.org 🧪 plos.io/4lWnfbQ
Top left: Schematic Representation: (Top Left) Mice were perfused and harvested at two-hour intervals over a 24-h period. The harvested mice were then sectioned coronally. (Bottom Left) Coronal brain sections at different brain levels. (Top Middle) The ciliary base was defined as the origin of the coordinate system, and the tip of the cilia was labeled. Cilia length was measured from the base to the tips, and the circular angle was determined. (Bottom Middle) The brain section of the mice was divided into left and right hemispheres. For cilia found in the right hemisphere, a counter-clockwise coordinate system was used to determine the circular angle (Right). For cilia found in the left hemisphere, a clockwise coordinate system was used (Left). (Top Right) An example of the angle measurement from cilia found in the right hemisphere. Bottom left: Representative images of immunofluorescence staining showing cilia labeled with the ADCY3 antibody (red) and the basal body (cilia base) labeled with the centrin 1 antibody (green). Right: Brain Regions analyzed for cilia length and angle.
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Kirsty Wan @micromotility.bsky.social · 14/07/2025
Excited to share that we have received significant funding from the @wellcometrust.bsky.social for a new interdisciplinary consortium project on #cilia coordination and function across scales and organisms! 🎉🥂@lsiexeter.bsky.social news.exeter.ac.uk/living-syste...
news.exeter.ac.uk
Multi-million project to ‘crack the code’ of cilia – tiny structures with big impact on human health
An international team of researchers, led by the University of Exeter, have been awarded a Wellcome Discovery Award grant of almost £5 million to investigate one of the body’s most fascinating microsc...
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Elizabeth Beston @elizabethbeston.bsky.social · 11/06/2025
The movement of the cilia on this Bryozoa coronate larva is simply mesmerising! See in comments to see it in slo-mo! 🦑 #plankton
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Mill_lab @cilialab.bsky.social · 13/06/2025
We had a fabulous day of #cilia and #centrosome science today @ukcilianetwork.bsky.social Spring Meeting which brought folks from all over Europe! @micromotility.bsky.social kicked off our #maths #modelling #biophysics session- interface of exciting science! Great turnout… mind buzzing.
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