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.
January 2001 in “Zhongguo linchuang jiepouxue zazhi” This study found that transplanted human hair keratin may help reduce damage and promote function recovery in spinal cord injuries in rats.
228 citations
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September 2012 in “Trends in Neurosciences” This review examines the role of nerves in regeneration across various species and discusses their importance as components in the progenitor cell niche, reporting no new clinical results.
1 citations
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November 2017 This chapter reviews classic regeneration models in planarian worms and amphibian limbs, focusing on the role of stem cells, and reports no new experimental results.