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Development of the early fetal human thalamus: from a protomap to emergent thalamic nuclei
Published 2025-02-01Get full text
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Microplastics: A threat to Fetoplacental unit and Reproductive systems
Published 2025-06-01Get full text
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Mediator kinase inhibition suppresses hyperactive interferon signaling in Down syndrome
Published 2025-02-01Get full text
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Compound lactic acid bacteria enhance the aerobic stability of Sesbania cannabina and corn mixed silage
Published 2025-02-01Get full text
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Valproic acid targets IDH1 mutants through alteration of lipid metabolism
Published 2024-08-01Get full text
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Multiphasic allometry: the reality and significance of ontogenetic shifts in the body-mass scaling of metabolic rate
Published 2024-11-01“…Ontogenetic metabolic allometry should be given a more central (general) place in the field of developmental biology.…”
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Unlocking biological complexity: the role of machine learning in integrative multi-omics
Published 2024-11-01Get full text
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Cervical heterotopic heart transplantation in mice using a novel suture technique
Published 2025-02-01Get full text
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The demographic history of the wild crop relative Brachypodium distachyon is shaped by distinct past and present ecological niches
Published 2023-09-01“…Closely related to economically important crops, the grass Brachypodium distachyon has been originally established as a pivotal species for grass genomics but more recently flourished as a model for developmental biology. Grasses encompass more than 10,000 species and cover more than 40% of the world land area from tropical to temperate regions. …”
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Exploring the functional role of POU5F1 using CRISPR RNP electroporation of zygote (CRISPR-EZ) in buffaloes
Published 2023-11-01“… POU5F1, a key transcription factor, plays a pivotal role in maintaining pluripotency and cellular differentiation, making it of immense interest in developmental biology and animal husbandry. In the present study, we employ state-of-the-art CRIS-PR ribonucleoprotein (RNP) electroporation of zygotes (CRIS-PR-EZ) methodology to precisely manipulate the POU5F1 gene in buffalo zygotes for exploring the phenotypic and functional outcomes of embryonic development. …”
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