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Ana Martínez Gómez

@brainbyana.bsky.social
106 followers 192 following 155 posts

PhD student 🐸 Nerea Moreno Lab at the @ucm.es #Neurogenesis #EvoDevo #Neuroscience #DevBio #Evolution #Xenopus

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Ana Martínez Gómez @brainbyana.bsky.social · 04/09/2026
Vacation is over! But I’m back with some science 🧠🌊 At the Gijón/Xixón Aquarium and Biopark, I got to see shark and ray eggs! 🦈🥚 #Science #MarineBiology #Neuroscience #Sharks #Rays #DevBio #EvoDevo Ray egg case 🌊
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Ana Martínez Gómez @brainbyana.bsky.social · 16/07/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience #LabLife
PHOTO 1: Dorsal/Cranial view.
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Ana Martínez Gómez @brainbyana.bsky.social · 13/07/2026
#FENS2026 done! 🧠✨ So thankful for this amazing experience and for my supervisors @loretamedinah.bsky.social & @edesfilis.bsky.social for their support. Until next time! 👋
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Ana Martínez Gómez @brainbyana.bsky.social · 02/07/2026
#FENS2026 🧠 Here we go! I'll be presenting the work I developed at @loretamedinah.bsky.social & @edesfilis.bsky.social lab (IRBLleida-UdL). 📄 "Expression of FOXP2 in Otp and non-Otp neurons of the medial extended amygdala" 📍 BCN | 📅 July 7 | ⏰ 14:00-15:30
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Anh Hoang Le, PhD 🏳️‍🌈🏴󠁧󠁢󠁳󠁣󠁴󠁿🇻🇳 @anhhle2702.bsky.social · 26/06/2026
Working with complex systems makes even the most mundane thing fascinating. This is cortical reaction in 🐸 embryos. Upon fertilisation, ions are released and draw water in thru osmosis, making zygotes float and orient according to gravity. Do you see the waves?👀 not quite #fluorescencefriday #devbio
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Alex Pollen @brainevodevo.bsky.social · 23/01/2026
1/ Our new study, led by Jingwen Ding, examines the role of transcription factors during human neurogenesis to identify gene regulatory networks influencing cell fate, maturation, and subtype specification www.nature.com/articles/s41...
nature.com
Dissecting gene regulatory networks governing human cortical cell fate - Nature
Systematic screening of transcription factors reveals conserved mechanisms governing cortical radial glia lineage progression across primates and provides a framework for functional dissecti...
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Sasha | Kai Dao 🔬 @kaidaoscience.bsky.social · 19/06/2026
8 hours. That’s all fish need to heal wounds 🐟⏱️ Why are they so fast compared to humans? I break down the science of rapid regeneration in a microscopy story 🔬 Watch here: youtu.be/Mt9f61adaP0 #FluorescenceFriday #Microscopy
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Ana Martínez Gómez @brainbyana.bsky.social · 05/06/2026
🐸 First results from my PhD project are here! 🧠 "Early Tetrapod Pallial Neurogenesis Revealed in Xenopus laevis: Implications for the Evolutionary Origins of the Cerebral Cortex". Professor Nerea Moreno will be presenting our poster during the Thursday session at #EuroEvoDevo2026.
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Peter Ly @peterlylab.bsky.social · 19/05/2026
Excited to share our latest paper! We found that large pieces of the human genome can transfer between cells upon direct contact, endowing recipient cells with heritable phenotypic changes. @cp-cell.bsky.social (1/7) www.cell.com/cell/fulltex...
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loretamedinah.bsky.social @loretamedinah.bsky.social · 13/04/2026
Very happy to see our paper on postnatal plasticity in the amygdala of juvenile swine published, with Júlia Freixes and Ester Desfilis @edesfilis.bsky.social and myself as coauthors: link.springer.com/article/10.1...
link.springer.com
Postnatal plasticity in the paralaminar nucleus of the pallial amygdala in juvenile swine brain - Brain Structure and Function
Brain Structure and Function - The aim of this study was to investigate the presence of immature cells and their phenotype in the pallial amygdala of juvenile swine brains by way of...
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Ana Martínez Gómez @brainbyana.bsky.social · 07/04/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience #LabLife
PHOTO 1: Dorsal/Cranial view.
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Ana Martínez Gómez @brainbyana.bsky.social · 04/03/2026
✨ Life in motion ✨ 💙 The beating heart of a Xenopus laevis larva at stage 46. #Xenopus #EvoDevo #DevBio #Science #Neuroscience
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Society for Developmental Biology @socdevbio.bsky.social · 14/02/2026
Before there’s a heartbeat, there’s this little glowing heart in the neural tube 💕 Chicken neural crest cells in magenta. 📸Image by Rocío Márquez, Strobl-Mazzulla Lab @pstrobl.bsky.social #FluorescentFriday #SciValentine
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Ana Martínez Gómez @brainbyana.bsky.social · 26/02/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience
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allen institute @alleninstitute.org · 09/02/2026
New to using Jupyter notebooks for the Allen Brain Cell Atlas? Join us on Feb. 11 for a beginner-friendly webinar focusing on installation, set-up, and common questions. Register for the meeting link and recording: alleninstitute-org.zoom.us/webinar/…
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Ana Martínez Gómez @brainbyana.bsky.social · 09/02/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience
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Ana Martínez Gómez @brainbyana.bsky.social · 03/02/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience
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Ana Martínez Gómez @brainbyana.bsky.social · 20/01/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience
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Ana Martínez Gómez @brainbyana.bsky.social · 19/01/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience
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Cells & Development @cellsdev.bsky.social · 17/01/2026
A very curious paper from the De Robertis lab shows how Cerberus - a growth factor that inhibits Wnt signalling, and IGF - a growth factor that activates MAPK signalling, can synergistically induce a new head (aka ectopic archencephalic differentiation) in Xenopus embryos. doi.org/10.1016/j.cd...
Fig. 1. IGF2 and Cerberus mRNAs cooperate in ectopic head induction in Xenopus embryos.

Embryos were microinjected into the ventral marginal zone of a single blastomere at the 4- to 8-cell stage. (A) Uninjected control sibling at early tailbud stage (n = 81). (B) A single ventral injection of IGF2 mRNA caused a small ectopic head protrusion with a pigmented cement gland on the belly (n = 86, 68 % with ectopic structures). (C) Cerberus mRNA induced a secondary head-like structure (n = 78, 94 % with ectopic heads). (D) Co-injection of IGF2 and Cerberus mRNAs induced a large ectopic head with an expanded cement gland (n = 90, 98 % with ectopic heads). (E–H) Panoramic views of control and injected embryos. Injected mRNA doses per embryo were: Cerberus, 100 pg; IGF2, 2 ng. Results from two experiments. Scale bars are 500 μm (A-D) and 2 mm (E-H).Fig. 6. Dominant-negative IGF receptor 1 blocked ectopic head formation by Cerberus mRNA in single ventral injections.

(A) Control embryo at stage 24 injected with LacZ (100 pg) mRNA but not stained for β-galactosidase (n = 50). (B) DN-IGFR (600 pg) and LacZ injected embryos (n = 20, all normal). (C) Cerberus (100 pg) injected embryos with ectopic heads (n = 56, 96 % ectopic heads). (D) DN-IGFR blocked Cerberus ectopic heads (n = 33, 88 % with no ectopic structures, 12 % with small cement glands). (E–F) LacZ staining for (A–D). Scale bar, 500 μm.
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Ana Martínez Gómez @brainbyana.bsky.social · 15/01/2026
🐸⭐ Follow the development of Xenopus laevis embryos with me! Read below 👇 #Xenopus #EvoDevo #DevBio #Science #Neuroscience
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Amy Engevik @amyengevik.bsky.social · 06/01/2026
First #MicroscopyMonday of 2026 deserves some festive cells.
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Ana Martínez Gómez @brainbyana.bsky.social · 19/12/2025
Merry Christmas & Happy New Year !! ✨🎄 In my family, Christmas means handmade canelons. Bones festes!
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FocalPlane @focalplane.bsky.social · 19/12/2025
We’ve highlighted some wonderful images and researchers in our ‘Featured image’ series in 2025. To celebrate, we’re inviting you to vote for your favourite in our image competition! #FluorescenceFriday Check them out here: focalplane.biologists.com/2025/12/19/v...
focalplane.biologists.com
Vote for your favourite 'Featured image' from 2025 - FocalPlane
Vote for your favourite 'Featured image' from 2025 - News
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SfN Journals @sfnjournals.bsky.social · 10/12/2025
#SnapshotsinNeuroscience | Featured on the #eNeuro blog from Lustig et al., a whole mount view of a young mouse brain with all cortical layer 5 neurons expressing dystonia-related gene Klhl14, highlighted in green. Photo Credit: Alexander Lammers blog.eneuro.org/2025/11/snapshots_k…
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Naomi Moris @nmoris.bsky.social · 16/12/2025
Lovely little pre-Christmas present to see this out @natcellbio.nature.com! Some 🔥 new results in here since the biorvix incl (1) a new RARE-GFP reporter ✳️🙌, (2) additional NMP quantification 🔢, (3) no neural tube patterning on RA inhibition 🙅 etc. Enjoy! 😍 www.nature.com/articles/s41...
nature.com
Modelling co-development between the somites and neural tube in human trunk-like structures - Nature Cell Biology
Makwana, Tilley et al. generate human stem cell-based trunk-like structures approximating Carnegie stage 13–14 of development. They use them to model and study the development of the thoracic and lumbar trunk.
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Ana Martínez Gómez @brainbyana.bsky.social · 16/12/2025
🚨🧠 New in Nature: “TSC tunes progenitor balance and upper-layer neuron generation in neocortex”. Read below 👇 DOI: doi.org/10.1038/s415... #DevBio #EvoDevo #Neuroscience #Science #CorticalDevelopment #RadialGlia #Neocortex #Neurogenesis
doi.org
TSC tunes progenitor balance and upper-layer neuron generation in neocortex - Nature
The balance between radial progenitors and intermediate precursors to generate upper-layer neurons during the development and evolution of the cerebral cortex is mediated by members of the tuberous sc...
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Nature @nature.com · 15/12/2025
The Sun’s fiery surface, a tattooed tardigrade, rare red lightning and more - these are the best science images from 2025, chosen by Nature's Photo Team Check them out: go.nature.com/3MANqs5
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Ana Martínez Gómez @brainbyana.bsky.social · 10/12/2025
🦎🧬 New in Evolution & Development: “Is Telomere Length Optimized in Hatchling Sand Lizards?” Read below 👇 DOI: doi.org/10.1111/ede.... #Telomeres #Evolution #Ecology #Reptiles #Aging #Science #Genomics #MolecularBiology
doi.org
Is Telomere Length Optimized in Hatchling Sand Lizards?
The graphical abstract image depicts the complex interplay of factors driving telomere dynamics (with permission from Dr. Chris Friesen).
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Ana Martínez Gómez @brainbyana.bsky.social · 03/12/2025
🚨🧬 New in Nat Genetics: “Cell-type- and locus-specific epigenetic editing of memory expression”. Read below 👇 DOI: doi.org/10.1038/s415... #Neuroscience #Epigenetics #Memory #BrainResearch #CRISPR #dCas9 #Science #Genomics
doi.org
Cell-type- and locus-specific epigenetic editing of memory expression - Nature Genetics
CRISPR-based epigenetic editing is used in a cell-type-specific, locus-restricted and temporally controllable manner in the adult mouse brain to modulate memory expression.
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Zebrafish Rock! @zebrafishrock.bsky.social · 30/11/2025
One-day-old transgenic zebrafish embryo. Credit to Dr. Kazuhide Shaun Okuda. #ZebrafishZunday 🧪
Side view of a transgenic zebrafish embryo that expresses a fluorescent protein that marks the the vasculature and hatching gland (magenta). In green marks the muscle, eye and parts of the brain. For more info, see ($) https://www.nature.com/articles/s41556-021-00784-w
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Ana Martínez Gómez @brainbyana.bsky.social · 24/11/2025
🚨✨ New paper: “Selection and transmission of the gut microbiome alone can shift mammalian behaviour”. DOI: doi.org/10.1038/s414... Read below 👇 #Microbiome #Evolution #MouseModel #Behavior #Neurobiology #EvoDevo #Neuroscience
doi.org
Selection and transmission of the gut microbiome alone can shift mammalian behavior - Nature Communications
Here, the authors present evidence that the gut microbiome alone, without changes in the host genome, can shape how animals respond to selection, identifying a bacterium and its metabolite that indepe...
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International Society of Developmental Biology @isdb.bsky.social · 12/11/2025
Meis2 is a transcriptional factor involved in neurodevelopment. This paper characterises its distribution in the developing brain of Xenopus leavis. Check it out!
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Ana Martínez Gómez @brainbyana.bsky.social · 10/11/2025
🚨✨🐸 Very excited to share the latest work I’m part of: “Developmental and adult expression of the Meis2 transcription factor in the CNS of Xenopus laevis”. Read below 👇 DOI: doi.org/10.3389/fnan... #Neurogenesis #BrainDevelopment #Neuroscience #EvoDevo #DevBio #Xenopus
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Ana Martínez Gómez @brainbyana.bsky.social · 09/11/2025
❄️🏔️ Waiting for winter to paint the mountains again. 📸 Vysoké Tatry, Slovakia 🐻 👉 December of 2024
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Staci Bilbo @sbilbo.bsky.social · 07/11/2025
my first #FluorescenceFriday post! Mouse hippocampus showing microglia, a lysosomal marker (CD68), and Aggrecan, a perineuronal net component. 😍 Image by Dr. Julia Dziabis!
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Society for Developmental Biology @socdevbio.bsky.social · 03/11/2025
🐸 Xenopus laevis 💚 The frog that shaped modern developmental biology! ✨ Xenopus embryos have revealed how the body axis forms, cells choose their fate, and tissues self-organize during early development 📹 Video by Bioquest Sudio and Xenbase #ModelMonday #DevBio
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Ana Martínez Gómez @brainbyana.bsky.social · 31/10/2025
🚨🕊️ New paper: “Homing and feral pigeons differ in hippocampal formation neuron size: a Golgi study”. Read below 👇 DOI: doi.org/10.1007/s004... #Neuroscience #BrainEvolution #EvoDevo #Hippocampus #Brain #Neuroanatomy #AvianBrain
doi.org
Homing and feral pigeons differ in hippocampal formation neuron size: a Golgi study - Brain Structure and Function
Artificial selection for behavioural traits can significantly affect the anatomy of brain regions related to the behaviour under selection. The homing pigeon (Columba livia) is a prime example of how ...
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Society for Developmental Biology @socdevbio.bsky.social · 28/10/2025
Ascidians (Ciona intestinalis)🪸Our distant chordate cousins! 🌊 Simple sea squirts that reveal how vertebrate body plans evolved 🧬 A key model for notochord formation, neural induction, and cell lineage mapping 📸 Video by MBL Embryology 2019 #ModelMonday #DevBio #EvoDevo
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the Node @the-node.bsky.social · 22/10/2025
👃Sniffing out olfactory neurogenesis New ‘Show and tell’ post on the Node from Sriivatsan G Rajan and Ankur Saxena @saxenalab.bsky.social: thenode.biologists.com/sniffing-out... #zebrafish #devbio #neurogenesis
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Society for Developmental Biology @socdevbio.bsky.social · 22/10/2025
🏆 First Prize – DevBio Art Contest 🖼️
“A Model Meeting” by Karla Akari Garcia Inspired by The Quaker Meeting, this watercolor honors animal research models, from mouse to axolotl, that have advanced developmental biology 🎨 A tribute to science’s often unsung heroes. #DevBioArt
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Ana Martínez Gómez @brainbyana.bsky.social · 21/10/2025
🚨 Recent paper: “Wnt7b Promotes Axon Differentiation and Extension by Regulating JNK-Mediated Cytoskeletal Dynamics”. DOI: doi.org/10.1007/s110... Let’s break down what they found 👇 #Neuroscience #Wnt #AxonGrowth #Cytoskeleton #Neurodevelopment #Science
doi.org
Wnt7b Promotes Axon Differentiation and Extension by Regulating JNK-Mediated Cytoskeletal Dynamics - Neurochemical Research
Neuronal polarization and axon growth are critical processes underlying neuronal differentiation and maturation. Wnt proteins have been implicated as key regulators of neuronal development; however, t...
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Ana Martínez Gómez @brainbyana.bsky.social · 14/10/2025
🐢 A closer look at a developing Trachemys scripta embryo. ✨ The very start of a turtle’s journey ✨ 📸 Ana Martínez Gómez (@brainbyana.bsky.social) #Embryology #EvoDevo #TurtleEmbryo #Science #DevelopmentalBiology #SciencePhotography
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loretamedinah.bsky.social @loretamedinah.bsky.social · 07/10/2025
Happy to share our new article with Júlia Freixes, Fatma Abdel-Rahman, Roberto Nebbia and @edesfilis.bsky.social on postnatal plasticity in olfactory areas of the juvenile swine, published in Brain, Structure and Function link.springer.com/article/10.1...
link.springer.com
Postnatal plasticity in the olfactory system of the juvenile swine brain - Brain Structure and Function
Swine have an excellent sense of smell and highly complex olfactory brain structures, which play a crucial role in their complex social interactions. In other mammals the olfactory system is known to exhibit significant plasticity, even during adulthood. The aim of this study was to investigate postnatal plasticity in olfactory areas of juvenile swine brains by studying immature cells immunoreactive for the microtubule-associated protein doublecortin (DCX). Using immunofluorescence, we studied DCX coexpression with the cell proliferation marker Ki-67, and different neuronal markers. Our results show the existence of numerous DCX + cells throughout the olfactory pallial areas. In some of them, we found DCX+/Ki-67 + coexpressing cells, suggesting that they were proliferating. Some of these proliferating cells were grouped in tangentially-oriented migratory-like chains, forming the rostral migratory stream to anterior olfactory area and olfactory bulb. Moreover, chains of DCX + cells were found in the external capsule and white matter adjacent to the temporal horn of the ventricle. Chains of DCX + cells were observed crossing the internal layers of the piriform and entorhinal cortices. In layer II of these cortices, DCX + cells of varying maturity degrees and neuronal phenotypes (including NeuN expression) were present. This suggests the existence of multiple migratory streams along the anteroposterior axis. Most DCX + immature cells in the migratory chains and in the anterior olfactory area, piriform and entorhinal cortices expressed the transcription factor Brn2 (Pou3f2), suggesting the incorporation of new glutamatergic neurons in these areas. Together, these results highlight the interest of swine to study the role of postnatal brain plasticity and their potential for regeneration in large, gyrencephalic brains.
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Ana Martínez Gómez @brainbyana.bsky.social · 07/10/2025
Let's talk about circular RNA!! 🧬🧬 Read the review: “Molecular mechanisms of circular RNA translation” DOI: doi.org/10.1038/s122... #MolecularBiology #Genomics #Science #Transcriptomics #RNAbiology #GeneExpression
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Ana Martínez Gómez @brainbyana.bsky.social · 02/10/2025
🚨 New in J. Comp. Neurology: "Larger Fish Have Larger Brains With More Neurons Across but Not Within Cohorts Raised in Different Growth Conditions" 🐟🧠 DOI: doi.org/10.1002/cne.... #Neuroscience #BrainEvolution #ComparativeNeurobiology #Fish #Plasticity
doi.org
Larger Fish Have Larger Brains With More Neurons Across but Not Within Cohorts Raised in Different Growth Conditions
Teles et al. propose a model of brain evolution that explains how come fish with larger bodies have larger brains with more neurons across cohorts raised in different growth conditions, while individ....
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Nature Podcast @naturepodcast.bsky.social · 01/10/2025
This week on the pod: 🦠 How ancient viruses drive modern human development 🧬 How heat can fuel DNA computers go.nature.com/42QSI7W
go.nature.com
Ancient viral DNA helps human embryos develop
Hear the biggest stories from the world of science | 01 October 2025
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Laurent Formery @laurentformery.bsky.social · 26/09/2025
Sea urchin metamorphosis is maybe one of the most radical event in developmental biology. In just about an hour, these little pluteus larvae completely reorganize their entire body plan. Very happy that this video got awarded an honorable mention by #NikonSmallWorld 😃
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Ana Martínez Gómez @brainbyana.bsky.social · 24/09/2025
Xenopus laevis embryos 🐸✨ Photo taken by me 📸 #DevBio #Xenopus #Science #FrogEmbryos
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Ana Martínez Gómez @brainbyana.bsky.social · 22/09/2025
🚨 Nat Neuroscience: CRISPR screening by AAV episome-sequencing (CrAAVe-seq): a scalable cell-type-specific in vivo platform uncovers neuronal essential genes. DOI: doi.org/10.1038/s415... #CRISPR #GeneEditing #Neuroscience #Genetics #MolecularBiology #CellBiology
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