92 citations
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December 2012 in “Current opinion in genetics & development” This review covers the recent advances in understanding how Turing models may explain various morphogenetic processes, but it reports no new experimental findings.
26 citations
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January 2019 in “Experimental Dermatology” This study developed an in vitro system to analyze human skin progenitor cells' ability to form hair peg-like structures, providing insights for engineering hair follicle organoids.
8 citations
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May 2024 in “PLoS Biology” This study on feather pattern formation in chicken skin found that inhibiting gap junctional intercellular communication can lead to the emergence of new feather buds in specific spatial patterns, suggesting that GJIC may facilitate Turing-type periodic patterning by propagating inhibitory signals over long distances.
April 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that gap junctional communication influences feather patterning by modulating Turing-type activator-inhibitor systems in chicken skin, suggesting its role in propagating inhibitory signals crucial for pattern formation.
January 2026 in “AppliedMath” This study explored a mechanism for making Turing pattern formations more predictable and robust by isolating pattern modes to prevent their sensitivity to initial conditions, which can lead to different outcomes from minor initial changes.