Stem cell-derived mouse embryos develop within an extra-embryonic yolk sac to form anterior brain regions and a beating heart
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Mouse-embryo model derived exclusively from embryonic stem cells undergo neurulation and heart development
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Monica Tambalo et al.
Isolation disrupts social interactions and destabilizes brain development in bumblebees
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Niveda Udaykumar
Pseudo-dynamic analysis of heart tube formation in the mouse reveals strong regional variability and early left-right asymmetry
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Yen Tran
Rapid redistribution and extensive binding of NANOG and GATA6 at shared regulatory elements underlie specification of divergent cell fates
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María Mariner-Faulí
Extracellular mechanical forces drive endocardial cell volume decrease during cardiac valve morphogenesis
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Julia Grzymkowski
Semaphorin3f as an intrinsic regulator of chamber-specific heart development
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Yen Tran
YAP1 Regulates the Self-organized Fate Patterning of hESCs-Derived Gastruloids
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Srivatsava Viswanadha
Gastruloids as in vitro models of embryonic blood development with spatial and temporal resolution
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Anna Meier
Reconstructing human early embryogenesis in vitro with pluripotent stem cells
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Martin Estermann
Resident Cardiac Macrophages Mediate Adaptive Myocardial Remodeling
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Laura Alonso-Herranz
Redundant mechanisms driven independently by RUNX1 and GATA2 for haematopoietic development
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Tim Petzold
Lactate Accelerates Mouse ES Cell Differentiation Towards the XEN Lineage
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Nozomu Takata