In 2D gastruloids, colony size determines pattern symmetry, mesodermal pattern area follows a near-linear power-law scaling with colony area, and growth switches from power-law expansion to exponential arrest, captured by a reactive-boundary Turing model.
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Self-organization drives symmetry-breaking, scaling, and critical growth transitions in stem cell-derived organoids
In 2D gastruloids, colony size determines pattern symmetry, mesodermal pattern area follows a near-linear power-law scaling with colony area, and growth switches from power-law expansion to exponential arrest, captured by a reactive-boundary Turing model.