Survey of the differences between regenerative and non-regenerative animals.
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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 studiesApplication of local gene induction by infrared laser-mediated microscope and temperature stimulator to amphibian regeneration study.The "Stars and Stripes" Metaphor for Animal Regeneration-Elucidating Two Fundamental Strategies along a Continuum.Tuning cell fate: from insights to vertebrate regenerationRoles of Hippo signaling pathway in size control of organ regeneration.Functional joint regeneration is achieved using reintegration mechanism in Xenopus laevis.Nature's Electric Potential: A Systematic Review of the Role of Bioelectricity in Wound Healing and Regenerative Processes in Animals, Humans, and Plants.Reintegration of the regenerated and the remaining tissues during joint regeneration in the newt Cynops pyrrhogaster.The molecular logic for planarian regeneration along the anterior-posterior axis.Transcription activator-like effector nucleases efficiently disrupt the target gene in Iberian ribbed newts (Pleurodeles waltl), an experimental model animal for regeneration.Is salamander hindlimb regeneration similar to that of the forelimb? Anatomical and morphogenetic analysis of hindlimb muscle regeneration in GFP-transgenic axolotls as a basis for regenerative and developmental studies.Molecular genetic system for regenerative studies using newts.Assessing the effects of a sequestered germline on interdomain lateral gene transfer in Metazoa.Cells from subcutaneous tissues contribute to scarless skin regeneration in Xenopus laevis froglets.Usefulness of multiple chalk-based food colorings for inducing better gene silencing by feeding RNA interference in planarians.Is salamander limb regeneration really perfect? Anatomical and morphogenetic analysis of forelimb muscle regeneration in GFP-transgenic axolotls as a basis for regenerative, developmental, and evolutionary studies.Development of fore- and hindlimb muscles in frogs: morphogenesis, homeotic transformations, digit reduction, and the forelimb-hindlimb enigma.Spatio-temporal neural stem cell behavior leads to both perfect and imperfect structural brain regeneration in adult newts.Ion implanted dielectric elastomer circuits
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Survey of the differences between regenerative and non-regenerative animals.
description
article científic
@ca
article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
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artigo científico
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artigo científico
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artikel ilmiah
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artikull shkencor
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artículo científico
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name
Survey of the differences between regenerative and non-regenerative animals.
@en
Survey of the differences between regenerative and non-regenerative animals.
@nl
type
label
Survey of the differences between regenerative and non-regenerative animals.
@en
Survey of the differences between regenerative and non-regenerative animals.
@nl
prefLabel
Survey of the differences between regenerative and non-regenerative animals.
@en
Survey of the differences between regenerative and non-regenerative animals.
@nl
P2860
P1476
Survey of the differences between regenerative and non-regenerative animals
@en
P2093
Kiyokazu Agata
Takeshi Inoue
P2860
P304
P356
10.1111/J.1440-169X.2011.01323.X
P577
2012-02-20T00:00:00Z