3 citations
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June 2024 in “iScience” In this theoretical study, axolotl spinal cord regeneration was modeled using a reaction-diffusion process, suggesting that the control of regenerative response relies on cell sensitivity to the signal and its diffusion characteristics, laying groundwork for identifying the signaling mechanism.
August 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” In this theoretical study, the authors developed a computational model to explore whether a reaction-diffusion process could explain the signal inducing axolotl spinal cord regeneration, proposing that regeneration control depends on cell sensitivity to the signal and its diffusion characteristics.
112 citations
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January 2004 in “The International journal of developmental biology” This study found that feather patterning is primarily self-organizing and dynamic, relying on both genetic and epigenetic controls, with implications for similar processes like fingerprints and pigmentation.
20 citations
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November 2019 in “Current Opinion in Systems Biology” This review discusses how recent studies use models and experiments to understand immune system signaling, but it reports no new clinical findings; the authors suggest strategies for improving these models.
88 citations
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July 2008 in “Development” This study shows that BMP2 and BMP7 play complex, necessary roles in feather development by regulating dermal condensation formation, with BMP7 acting early as a chemoattractant and BMP2 halting cell migration.