Pages that link to "Q28250620"
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The following pages link to Cells keep a memory of their tissue origin during axolotl limb regeneration (Q28250620):
Displaying 50 items.
- Specific NuRD components are required for fin regeneration in zebrafish (Q21245369) (← links)
- Maintaining embryonic stem cell pluripotency with Wnt signaling (Q24635897) (← links)
- On Having No Head: Cognition throughout Biological Systems (Q26738277) (← links)
- The relationship between growth and pattern formation (Q26738615) (← links)
- Regeneration and repair of human digits and limbs: fact and fiction (Q26738620) (← links)
- Target morphology and cell memory: a model of regenerative pattern formation (Q26764980) (← links)
- Epigenetics and Shared Molecular Processes in the Regeneration of Complex Structures (Q26774948) (← links)
- Piwi and potency: PIWI proteins in animal stem cells and regeneration (Q26823327) (← links)
- Mature and Juvenile Tissue Models of Regeneration in Small Fish Species (Q26824303) (← links)
- Specialized progenitors and regeneration (Q26829049) (← links)
- Cutaneous wound healing: recruiting developmental pathways for regeneration (Q27004417) (← links)
- Origin of cardiomyocytes in the adult heart (Q27023325) (← links)
- 25th anniversary article: supramolecular materials for regenerative medicine (Q27024177) (← links)
- Implication of two different regeneration systems in limb regeneration (Q27025133) (← links)
- Positional information is reprogrammed in blastema cells of the regenerating limb of the axolotl (Ambystoma mexicanum) (Q27304376) (← links)
- A novel validation algorithm allows for automated cell tracking and the extraction of biologically meaningful parameters (Q27313407) (← links)
- MARCKS-like protein is an initiating molecule in axolotl appendage regeneration (Q27314777) (← links)
- A developmentally regulated switch from stem cells to dedifferentiation for limb muscle regeneration in newts (Q27323052) (← links)
- In vivo cell and tissue dynamics underlying zebrafish fin fold regeneration (Q27330090) (← links)
- Built to rebuild: in search of organizing principles in plant regeneration (Q27691818) (← links)
- Human regeneration: An achievable goal or a dream? (Q28072510) (← links)
- Go ahead, grow a head! A planarian's guide to anterior regeneration (Q28073913) (← links)
- De novo assembly of plant body plan: a step ahead of Deadpool (Q28080179) (← links)
- Injuries to appendage extremities and digit tips: A clinical and cellular update (Q28081016) (← links)
- Re-membering the body: applications of computational neuroscience to the top-down control of regeneration of limbs and other complex organs (Q28084675) (← links)
- The axolotl limb blastema: cellular and molecular mechanisms driving blastema formation and limb regeneration in tetrapods (Q28084759) (← links)
- Dedifferentiation, Transdifferentiation, and Proliferation: Mechanisms Underlying Cardiac Muscle Regeneration in Zebrafish (Q28085274) (← links)
- Skin shedding and tissue regeneration in African spiny mice (Acomys) (Q28275914) (← links)
- An orphan gene is necessary for preaxial digit formation during salamander limb development (Q28597457) (← links)
- The role of stem cells in limb regeneration (Q28602131) (← links)
- Anatomy of the pectoral and forelimb muscles of wildtype and green fluorescent protein-transgenic axolotls and comparison with other tetrapods including humans: a basis for regenerative, evolutionary and developmental studies (Q28710438) (← links)
- Echinoderms: potential model systems for studies on muscle regeneration (Q28749458) (← links)
- Visualization of retinoic acid signaling in transgenic axolotls during limb development and regeneration (Q30518096) (← links)
- High resolution three‐dimensional imaging: Evidence for cell cycle reentry in regenerating skeletal muscle (Q30524734) (← links)
- From cineradiography to biorobots: an approach for designing robots to emulate and study animal locomotion. (Q30782855) (← links)
- Proteomic analysis of blastema formation in regenerating axolotl limbs (Q30931073) (← links)
- Regeneration and reprogramming compared (Q33525370) (← links)
- Regeneration review reprise (Q33541705) (← links)
- The homeobox transcription factor Barx2 regulates plasticity of young primary myofibers (Q33640066) (← links)
- The careg element reveals a common regulation of regeneration in the zebrafish myocardium and fin. (Q33640167) (← links)
- A Tissue-Mapped Axolotl De Novo Transcriptome Enables Identification of Limb Regeneration Factors (Q33641794) (← links)
- Dedifferentiation of committed epithelial cells into stem cells in vivo (Q33670193) (← links)
- Gene expression following induction of regeneration in Drosophila wing imaginal discs. Expression profile of regenerating wing discs. (Q33682829) (← links)
- A tongue for all seasons: extreme phenotypic flexibility in salamandrid newts. (Q33683073) (← links)
- Keeping at arm's length during regeneration (Q33737135) (← links)
- Clonal tracing of Sox9 liver progenitors in mouse oval cell injury (Q33831544) (← links)
- Gecko CD59 Is Implicated in Proximodistal Identity during Tail Regeneration (Q33862536) (← links)
- Deep proteomics of the Xenopus laevis egg using an mRNA-derived reference database (Q33875651) (← links)
- Clonal analysis reveals nerve-dependent and independent roles on mammalian hind limb tissue maintenance and regeneration. (Q33919731) (← links)
- The regenerative capacity of the zebrafish caudal fin is not affected by repeated amputations (Q33987943) (← links)