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Communications Biology

@commsbio.nature.com
6.1K followers 488 following 1.2K posts

An open-access @natureportfolio.bsky.social journal publishing high quality primary research, reviews and commentary in all areas of the biological sciences since 2018. www.nature.com/commsbio

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Communications Biology @commsbio.nature.com · 13h
curious about what a day in the life of a full-time professional editor looks like? Our colleague, Sabrya, from @natcellbio.nature.com shares an inside peak from the SN London office 👇
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Communications Biology @commsbio.nature.com · 25/09/2026
With Women’s brain health collection, we invite submissions focusing on women’s brain health. Topics include, but are not limited to pregnancy and maternal brain health, menopause, women’s brain aging, the role of sex or gender in neurological and psychiatric disorders www.nature.com/collections/...
nature.com
Women’s brain health
With this Collection, editors invite primary, translational, and clinical research submissions focusing on women’s brain health.
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Communications Biology @commsbio.nature.com · 25/09/2026
Mechanistic characterization of oyster CD96 sheds light on the role of this invertebrate immune checkpoint and its downstream ERK-metabolic-epigenetic regulatory axis in the context of microbial-induced inflammatory regulation www.nature.com/articles/s42...
nature.com
Invertebrate CD96 inhibits metabolic epigenetic regulatory axis upon sensing microbes to suppress inflammation - Communications Biology
Mechanistic characterization of oyster CD96 sheds light on the role of this invertebrate immune checkpoint and its downstream ERK-metabolic-epigenetic regulatory axis in the context of microbial-induc...
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Communications Biology @commsbio.nature.com · 24/09/2026
In our joint Collection with Nature Communications and npj Structural Biology, we welcome submissions that use structural, biochemical, and biophysical approaches to uncover the molecular basis of fertility and reproduction. More details 👇 www.nature.com/collections/...
nature.com
Form, force, and fertility
This joint Collection between Nature Communications and Communications Biology welcomes submissions of primary research, reviews/ perspectives that ...
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Communications Biology @commsbio.nature.com · 24/09/2026
How do phage genes influence interactions with antiphage defense systems❓👇 A genome-wide knockout screen of bacteriophage DruSM1 identifies genes that counter diverse bacterial defense systems, revealing how phages adapt to bacterial diversity kotarokiga.bsky.social www.nature.com/articles/s42...
nature.com
Phage genomes are enriched with genes to overcome diverse bacterial immune systems - Communications Biology
A genome-wide knockout screen of bacteriophage DruSM1 identifies genes that counter diverse bacterial defense systems, revealing how phages adapt to bacterial diversity.
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Communications Biology @commsbio.nature.com · 24/09/2026
Plant cell wall degrading enzymes (PCWDEs) track feeding ecology across weevils, revealing how horizontal gene transfer and gene family turnover contribute to dietary specialization. @kaltenpoth-lab.bsky.social www.nature.com/articles/s42...
nature.com
Evolutionary dynamics of plant cell wall-degrading enzymes reflects feeding ecology in weevils - Communications Biology
Plant cell wall degrading enzymes (PCWDEs) track feeding ecology across weevils, revealing how horizontal gene transfer and gene family turnover contribute to dietary specialization.
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Communications Biology @commsbio.nature.com · 23/09/2026
Regulation of Pyruvate Dehydrogenase Kinase (Pdk4) offers mechanistic insights into enhancing stemness of aging intestinal stem cells via switching metabolic fuel preference and increased mitochondrial oxygen consumption rate www.nature.com/articles/s42...
nature.com
Mitochondrial oxidation of carbohydrate fuel driven by pyruvate dehydrogenase rescues stemness of aging intestinal stem cells - Communications Biology
Regulation of Pyruvate Dehydrogenase Kinase (Pdk4) offers mechanistic insights into enhancing stemness of aging intestinal stem cells via switching metabolic fuel preference and increased mitochondria...
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Communications Biology @commsbio.nature.com · 23/09/2026
Behavioural analyses of mixed shoals reveal how habituation shapes collective behaviour in fish. Differences in local interaction rules drive central positioning, stronger coordination, and follower behaviour in non-habituated individuals. www.nature.com/articles/s42...
nature.com
Habituation determines spatial position in Hyphessobrycon herbertaxelrodi shoals through altered rules of interaction - Communications Biology
Behavioral analyses of mixed shoals reveal how habituation shapes collective behavior in fish. Differences in local interaction rules drive central positioning, stronger coordination, and follower beh...
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Communications Biology @commsbio.nature.com · 23/09/2026
A long-term citizen science project in Kanagawa Prefecture, Japan, reveals that from 1979 to 2017, distribution ranges contracted in 44.8% and expanded in 36.9% of all 1,864 native vascular plant species occurring in the prefecture. @chihiro-myotoishi.bsky.social www.nature.com/articles/s42...
nature.com
Citizen science reveals patterns of distributional decline and expansion across 1864 native vascular plant species in Kanagawa, Japan - Communications Biology
A long-term citizen science project in Kanagawa Prefecture, Japan, reveals that from 1979 to 2017, distribution ranges contracted in 44.8% and expanded in 36.9% of all 1,864 native vascular plant spec...
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Communications Biology @commsbio.nature.com · 22/09/2026
⚠️📣Our Cancer Cell Atlases 2026 collection invites submissions that expand the current catalogue of cancer cell atlases using state-of-the-art omics techniques and algorithms. More details 👇 www.nature.com/collections/...
nature.com
Cancer Cell Atlases 2026
This cross-journal collection invites submissions that expand the current catalogue of cancer cell atlases using state-of-the-art omics techniques and ...
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Communications Biology @commsbio.nature.com · 22/09/2026
In mice, the cytoplasmic poly(A) polymerase TENT5C and LARP4B cooperatively protect and re-extend globin mRNA poly(A) tails during terminal erythropoiesis, sustaining hemoglobin production. Deficiency of either factor results in microcytic anemia. @iimcb.bsky.social www.nature.com/articles/s42...
nature.com
Efficient globin production during terminal erythropoiesis in mice depends on the cooperative action of TENT5C poly(A) polymerase and LARP4B - Communications Biology
In mice, the cytoplasmic poly(A) polymerase TENT5C and RNA-binding protein LARP4B cooperatively protect and re-extend globin mRNA poly(A) tails during terminal erythropoiesis, sustaining hemoglobin pr...
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Reposted by Communications Biology
Evgenii Protasov @evgenii-protasov.bsky.social · 22/09/2026
The colorless dictyochophyte Ciliophrys sp. Baltic has lost a plastid but hosts a bacterial endosymbiont #microbiology #endosymbionts #plastids #MicroSky #ProtistsOnSky @commsbio.nature.com www.nature.com/articles/s42...
nature.com
The colorless dictyochophyte Ciliophrys sp. Baltic has lost a plastid but hosts a bacterial endosymbiont - Communications Biology
A study reveals an independent case of plastid loss and a metabolic partnership with a bacterial endosymbiont in an understudied lineage of non-photosynthetic ochrophytes.
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Communications Biology @commsbio.nature.com · 21/09/2026
📣Call for papers 🧠🔀 Our Functional Connectivity in Psychiatric Disorders collection welcomes papers that advance our understanding of functional connectivity across psychiatric disorders, from fundamental circuit mechanisms to clinical applications. More details 👇 www.nature.com/collections/...
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Reposted by Communications Biology
Jérôme OLLIER @jeromeollier.bsky.social · 18/09/2026
Deep Sea hydrothermal vent habitats support gravid Antarctic krill - @commsbio.nature.com www.nature.com/articles/s42...
nature.com
Deep Sea hydrothermal vent habitats support gravid Antarctic krill - Communications Biology
Deep-sea observations, molecular, and geochemical analyses of Antarctic krill at hydrothermal vents reveal that gravid females use active vent habitats and exhibit signs of chemosynthetic feeding.
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Reposted by Communications Biology
Martin Mikl @martinmikl.bsky.social · 17/09/2026
New paper from our lab, now out in @commsbio.nature.com: Can we make Shiftless a more effective inhibitor of programmed ribosomal frameshifting (PRF)? doi.org/10.1038/s420...
doi.org
Functional dissection of Shiftless identifies features enhancing ribosomal frameshifting inhibition - Communications Biology
The authors develop a high-throughput platform to quantify programmed ribosomal frameshifting inhibition by large libraries of protein variants. They identify residues essential for the activity of th...
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Communications Biology @commsbio.nature.com · 21/09/2026
Satellite observations reveal five newly identified emperor penguin colony sites suggesting that colonies are dynamic relocating over long distances in response to changing ice conditions @ptfretwell.bsky.social @bas.ac.uk www.nature.com/articles/s42...
nature.com
Dynamic emperor penguin colonies - Communications Biology
Satellite observations reveal five newly identified emperor penguin colony sites, suggesting that colonies are dynamic, relocating over long distances in response to changing ice conditions and reshap...
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Communications Biology @commsbio.nature.com · 21/09/2026
Bayesian hierarchical modeling of cross-platform DNA methylation data enables detection of tissue-specific and cancer-associated signatures in MeDIP-seq measurements of bulk and cell-free DNA @keegankorthauer.bsky.social www.nature.com/articles/s42...
nature.com
Cross-platform Bayesian deconvolution of MeDIP-seq reveals tissue-specific and cancer-associated methylation signatures - Communications Biology
Bayesian hierarchical modeling of cross-platform DNA methylation data enables detection of tissue-specific and cancer-associated signatures in MeDIP-seq measurements of bulk and cell-free DNA.
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Communications Biology @commsbio.nature.com · 18/09/2026
Deep sea observations, molecular, and geochemical analyses of Antarctic #krill at hydrothermal vents reveal that gravid females use active vent habitats and exhibit signs chemosynthetic feeding. @schmidtocean.bsky.social @osuceoas.bsky.social Read the paper: doi.org/10.1038/s42003-026-10780-1
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Communications Biology @commsbio.nature.com · 17/09/2026
🐧Emperor penguin colonies can relocate in response to environmental change. Satellite imagery revealed five West Antarctic colonies that moved, often following sea ice shifts or ice shelf calving, highlighting adaptive colony-site selection and resilience to climate impacts: doi.org/10.1038/s420...
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Communications Biology @commsbio.nature.com · 16/09/2026
🚨Why do tissues become more vulnerable with age? Researchers review how senescent cells influence their environment, spread damage, and disrupt immune balance, and discuss emerging strategies to reduce their harmful effects and support healthy aging. Read more: doi.org/10.1038/s420...
doi.org
The vicious cycle of SASP and inflammaging promotes aging and age-related diseases - Communications Biology
A review presents a three-dimensional framework integrating the duality, vicious cycle, and tissue specificity of SASP and inflammaging, providing new insights into aging mechanisms and senescence-tar...
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Communications Biology @commsbio.nature.com · 16/09/2026
💡A new study sheds light on the complex process of DNA repair. The findings reveal how chromatin remodeling and DNA replication machinery coordinate to fix broken DNA strands, helping preserve genome integrity and cellular health. doi.org/10.1038/s420...
doi.org
ISWI/CHRAC orchestrates sequential chromatin-remodeling activities by mobilizing DNA polymerase ε for homologous recombination - Communications Biology
CHRAC17, a key coordinator of chromatin remoder and DNA polymerase ε (Polε), orchestrates sequential chromatin remodeling, nucleosome assembly and sliding, to promote RAD51-mediated HR and mobilize Po...
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Communications Biology @commsbio.nature.com · 14/09/2026
🧠 How does the brain process information amid all its natural activity? This study shows that some measures of neural “variability” may actually reflect signal strength, and introduces a new way to track how clearly brain signals can be decoded: doi.org/10.1038/s420...
doi.org
On variability in local field potentials - Communications Biology
Parto-Dezfouli et al. analyze variability in LFP and EEG signals. They find that the previously used across-trial variability is almost identical to within-trial variability, i.e., the usual power met...
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Communications Biology @commsbio.nature.com · 14/09/2026
💪 A new resource maps the many cell types that make up skeletal muscles, highlighting how they work together to keep muscles functioning. The study also compares popular research methods to help scientists get a more accurate picture. Read the Review here: doi.org/10.1038/s420...
doi.org
A who’s who of cell types in skeletal muscle - Communications Biology
In this Review, the authors present distinguishing features for 62 cell types found in skeletal muscle and discuss how each cell type contributes to skeletal muscle function.
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Communications Biology @commsbio.nature.com · 14/09/2026
🐒 What helped primates evolve bigger, more complex brains? A new study compares tree shrews and primates, revealing shared developmental pathways and key genetic differences that may have shaped the origins of advanced brain function: doi.org/10.1038/s420...
doi.org
Transcriptome of fetal cortex of tree shrew underlying the emergence of outer subventricular zone - Communications Biology
The authors generated gene expression profiles for each cortical layer of the tree shrew, especially of OSVZ. Cross-species comparative analyses revealed that cell cycle- and ECM-associated pathways a...
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Reposted by Communications Biology
Ko Matsui @komatsui.bsky.social · 11/09/2026
Excited to share our article in @commsbio.nature.com Takahashi Y, Ikoma Y, Matsui K* (2026) Energy paradox in REM sleep: balancing supply and consumption in brain metabolism. Communications Biology doi.org/10.1038/s420... bsky.app/profile/koma...
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Communications Biology @commsbio.nature.com · 11/09/2026
🌱🧬A new protoplast-based platform enables transient transformation and proof-of-concept CRISPR/Cas12a-mediated #genome editing in European #beech, a key but recalcitrant forest tree species. Learn more in this new article in Communications Biology doi.org/10.1038/s420...
doi.org
Genetic transformation and CRISPR/Cas12a-mediated gene editing of European beech (Fagus sylvatica L.) employing a transient protoplast system - Communications Biology
A new protoplast-based platform enables transient transformation and proof-of-concept CRISPR/Cas12a-mediated genome editing in European beech, a key but recalcitrant forest tree species.
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Communications Biology @commsbio.nature.com · 11/09/2026
🧬🦠 A high-throughput platform to quantify programmed ribosomal #frameshifting inhibition identified residues essential for the activity of the human PRF inhibitor Shiftless and mutations that enhance inhibition of #HIV gag-pol frameshifting. Find more in this article 👇 doi.org/10.1038/s420...
doi.org
Functional dissection of Shiftless identifies features enhancing ribosomal frameshifting inhibition - Communications Biology
The authors develop a high-throughput platform to quantify programmed ribosomal frameshifting inhibition by large libraries of protein variants. They identify residues essential for the activity of th...
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Communications Biology @commsbio.nature.com · 10/09/2026
🐦🎶Repeated social separation drives premature maturation of perineuronal nets in the vocal motor pathway of zebra #finches and impairs song learning, highlighting the impact of early life social #stress on vocal circuitry functional organization Check 👉 go.sn.pub/7rkqlv @bradleypedro.bsky.social
doi.org
Social separation stress accelerates vocal motor circuit maturation and impairs song learning in zebra finches (Taeniopygia guttata) - Communications Biology
Repeated, short bouts of social separation during the critical period drives premature maturation of perineuronal nets in the vocal motor pathway of zebra finches and impairs vocal imitation, highligh...
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Communications Biology @commsbio.nature.com · 10/09/2026
📢🧬Our editor Nilanjan Banerjee is at the 23rd Horizons in Molecular Biology meeting at MPI-NAT in Göttingen this week! If you want to discuss your work or have any questions regarding editorial processes, find Nilanjan at the conference 👥
Nilanjan Banerjee, PhD
Associate Editor
Communications Biology
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Communications Biology @commsbio.nature.com · 09/09/2026
🧠A computational framework applies a Vision Transformer-based autoencoder to generate unsupervised learning-derived image phenotypes based on T1-weighted brain MRI scans to identify 63 loci, including 24 loci not detected by CNN-based methods. Article ⬇️ doi.org/10.1038/s420... @tianxia97.bsky.social
doi.org
Vision transformer autoencoders captures local and non-local features in brain imaging to reveal novel genetic associations - Communications Biology
A computational framework applies a Vision Transformer (ViT)-based autoencoder to generate unsupervised learning-derived image phenotypes (ViT-UDIPs) based on T1-weighted brain MRI scans from a subset...
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Communications Biology @commsbio.nature.com · 09/09/2026
BRD2, via its ET tail, impairs iPSC generation in early reprogramming by maintaining the somatic transcription, especially, the somatic matrisome program, and by suppressing lipid biosynthesis. #Lipid deficiency is a barrier to reprogramming. Article ⬇️ doi.org/10.1038/s420... @kejinhu.bsky.social
doi.org
BRD2 impedes iPSC reprogramming by regulating lipid biosynthesis and the matrisome via its ET tail - Communications Biology
BRD2, via its ET tail, impairs iPSC generation in early reprogramming by maintaining the somatic transcription, especially, the somatic matrisome program, and by suppressing lipid biosynthesis. Lipid ...
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Communications Biology @commsbio.nature.com · 08/09/2026
📢🧠Our editor Wei Wen will be at the Annual Meeting of Chinese Neuroscience Society (#CNS2026) this week! If you are around and want to know more about the editorial process or just say hi, meet Wei at the conference 👥
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Communications Biology @commsbio.nature.com · 08/09/2026
💡In this 'Behind the Paper' post, Maria Salazar-Roa explains how the identity of breast #cancer cells can be stabilized by modulating what they become to restrict their plasticity @ucm.es communities.springernature.com/posts/stabil...
communities.springernature.com
Stabilizing cancer cell identity by changing what cells can become
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Communications Biology @commsbio.nature.com · 08/09/2026
🫀This new article in Communications Biology shows that #cardiomyocytes derived from tetraploid iPSCs established by cell fusion recapitulate characteristics of post-mitotic cardiomyocytes more precisely than conventional diploid iPSC derived cardiomyocytes. Find more ⬇️ doi.org/10.1038/s420...
doi.org
Derivation of human post-mitotic cardiomyocytes from tetraploid iPSCs - Communications Biology
Cardiomyocytes derived from tetraploid iPSCs established by cell fusion recapitulate characteristics of post-mitotic cardiomyocytes more precisely than conventional diploid iPSC derived cardiomyocytes...
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Reposted by Communications Biology
evehrogers.bsky.social @evehrogers.bsky.social · 07/09/2026
Next up in Shanghai ⤵️ A site visit and publishing talk at Fudan University, kindly hosted by @commsbio.nature.com editorial board member, Dr Dan Zhou, demystifying the editorial role and its processes 👩‍💻
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Reposted by Communications Biology
evehrogers.bsky.social @evehrogers.bsky.social · 04/09/2026
First stop! 🇨🇳 Fantastic to visit the Springer Nature Shanghai office and finally meet many colleagues from @natureportfolio.nature.com in person 🥳 Especially nice to see Wei and Mengtan from @commsbio.nature.com
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Communications Biology @commsbio.nature.com · 04/09/2026
🧬🍬 Last but not least, Dr. Yasuhiko Kizuka is joining our editorial board in the Biochemistry section! They bring expertise in glycobiology, glycosyltransferases, biochemistry, protein structure, and more. We're excited to have them on board! 🔬
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Communications Biology @commsbio.nature.com · 04/09/2026
📣Announcing Dr Nancy Odurowah Duah-Quashie to our editorial board in the Immunology & Infectious Disease section! We're thrilled to have her expertise in malaria, plasmodium, parasites, artemisinin-based combination therapy and more.🦠🦟
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Communications Biology @commsbio.nature.com · 04/09/2026
😊 Welcome Dr. Xinhui Wang to our editorial board in the Physiology & Metabolism section! Dr. Wang brings expertise in using epidemiological methods and gene modified mouse models to explore the role and regulatory mechanism of trace elements in the pathophysiological process of chronic diseases. 🧬
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Communications Biology @commsbio.nature.com · 04/09/2026
(1/2) Take a look at this week's Editor's Pick from Communications Biology on @researchgate.bsky.social !📖 We have articles covering: ⭐ Use of phylogenomics and skull-based deep learning to uncover hidden species diversity among talpid moles in the sky islands of southwestern China. 🐹🧬
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Communications Biology @commsbio.nature.com · 04/09/2026
📣New collection alert! 🧠🔀 Our Neural Mechanisms of Cognitive Flexibility collection welcomes papers that investigate cognitive flexibility across multiple levels of analysis in health or disease. Guest edited by Drs. Zenas Chao & Jacqueline Gottlieb More details 👇 www.nature.com/collections/...
nature.com
Neural Mechanisms of Cognitive Flexibility
In this Collection, we invite submissions that investigate the neural mechanisms underlying cognitive flexibility across multiple levels of analysis in health ...
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Reposted by Communications Biology
Felix Klaassen @felixklaassen.bsky.social · 04/09/2026
I am excited to share that the final study of my PhD is out in @commsbio.nature.com: Defensive cardiac states sharpen neural value representations during decision making doi.org/10.1038/s420... With Bob Bramson, Jan-Mathijs Schoffelen, @devoogdld.bsky.social and @epanlab.bsky.social 1/5
doi.org
Defensive cardiac states sharpen neural value representations during decision making - Communications Biology
Decoding neural threat-reward information using high-precision MEG in humans shows that defensive cardiac states sharpen low-frequency value representations in dorsal anterior cingulate cortex during ...
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Communications Biology @commsbio.nature.com · 04/09/2026
Are you attending next week's Cold Spring Harbour Asia meeting on #CancerImmunotherapy? Our Deputy Editor, @evehrogers.bsky.social, will be attending and would love to connect with you at the conference if so!
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Communications Biology @commsbio.nature.com · 03/09/2026
🧠 Dr. Yonatan Sanz-Perl is joining our editorial board in the Cognitive & Computational Neuroscience section! He brings expertise in whole-brain dynamics, computational modelling, dynamical systems, neuroimaging, fMRI, and more. We look forward to working with you!
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Communications Biology @commsbio.nature.com · 03/09/2026
😊 We are also thrilled to welcome Dr. Xing Liu to our editorial board in the Biochemistry section! Dr. Liu brings uses biochemical, cell biological, proteomic, and biophysical approaches to investigate dynamic protein regulation in mammalian and plant systems. Welcome! 🧬🔬
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Communications Biology @commsbio.nature.com · 03/09/2026
📣🧬 The next editorial board member joining us in the Cell & Molecular Biology section is Dr Marina Trombetta-Lima! We're thrilled to have their expertise in advanced human in vitro models, gene and epigenetic editing, organoids and more.🧫
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Communications Biology @commsbio.nature.com · 03/09/2026
🧫🔬 Call for Papers: Our Collection "In Vitro Systems" invites submissions that advance the development, validation, and application of in vitro systems across biological and biomedical research. 🔗 Learn more: www.nature.com/collections/...
nature.com
In Vitro Systems
The Editors at Communications Biology now invite submissions that advance the development, validation, and application of in vitro systems across biological ...
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Communications Biology @commsbio.nature.com · 03/09/2026
🧠Decoding neural threat-reward information using high-precision MEG in humans shows that defensive cardiac states sharpen low-frequency value representations in dorsal anterior cingulate cortex during decision making under threat. PDF ↪️ www.nature.com/articles/s42...
nature.com
Defensive cardiac states sharpen neural value representations during decision making - Communications Biology
Decoding neural threat-reward information using high-precision MEG in humans shows that defensive cardiac states sharpen low-frequency value representations in dorsal anterior cingulate cortex during ...
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Communications Biology @commsbio.nature.com · 02/09/2026
🎉 Dr Jennifer Botha is joining our Ecology & Evolution board! Dr Botha brings expertise in mass extinctions, Permo-Triassic mass extinction, End-Triassic mass extinction and Osteohistology. Welcome aboard! 🦴🦕
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Communications Biology @commsbio.nature.com · 02/09/2026
🧠 Next up, we are very happy to have Dr Trevor Chong join as our newest Cognitive & Computational Neuroscience Editorial Board Member! Dr Chong brings expertise in learning, memory, decision-making, motivation, reward, effort and curiosity.
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