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  1. The Boundaries of Development.Lucie Laplane - 2011 - Biological Theory 6 (1):1-3.
    The tacit standard view that development ends once reproductive capacity is acquired (reproductive boundary, or ‘‘RB,’’ thesis) has recently been challenged by biologists and philosophers of biology arguing that development continues until death (death boundary, or ‘‘DB,’’ thesis). The relevance of these two theses is difficult to assess because the fact that there is no precise definition of development makes the determination of its temporal boundaries problematic. Taking into account this difficulty, this article tries to develop a new species-dependent perspective (...)
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  • Regeneration and Development in Animals.Michel Vervoort - 2011 - Biological Theory 6 (1):25-35.
    Regeneration capabilities are found in most or all animals. Whether regeneration is part of the development of an animal or a distinct phenomenon independent of development is a debatable question. If we consider regeneration as a process belonging to development, similarly to embryogenesis or metamorphosis, the existence of regenerative capabilities in adults can be seen as an argument in favor of the theory that development continues throughout the life of animals. Here I perform a comparative analysis of regeneration versus “classical” (...)
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  • Regeneration: Thomas Hunt Morgan’s Window into Development. [REVIEW]Mary Evelyn Sunderland - 2010 - Journal of the History of Biology 43 (2):325 - 361.
    Early in his career Thomas Hunt Morgan was interested in embryology and dedicated his research to studying organisms that could regenerate. Widely regarded as a regeneration expert, Morgan was invited to deliver a series of lectures on the topic that he developed into a book, Regeneration (1901). In addition to presenting experimental work that he had conducted and supervised, Morgan also synthesized and critiqued a great deal of work by his peers and predecessors. This essay probes into the history of (...)
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  • Regeneration: Thomas Hunt Morgan’s Window into Development.Mary Evelyn Sunderland - 2010 - Journal of the History of Biology 43 (2):325-361.
    Early in his career Thomas Hunt Morgan was interested in embryology and dedicated his research to studying organisms that could regenerate. Widely regarded as a regeneration expert, Morgan was invited to deliver a series of lectures on the topic that he developed into a book, Regeneration. In addition to presenting experimental work that he had conducted and supervised, Morgan also synthesized and critiqued a great deal of work by his peers and predecessors. This essay probes into the history of regeneration (...)
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  • The power of regeneration and the stem‐cell kingdom: freshwater planarians (Platyhelminthes).Emili Saló - 2006 - Bioessays 28 (5):546-559.
    The great powers of regeneration shown by freshwater planarians, capable of regenerating a complete organism from any tiny body fragment, have attracted the interest of scientists throughout history. In 1814, Dalyell concluded that planarians could “almost be called immortal under the edge of the knife”. Equally impressive is the developmental plasticity of these platyhelminthes, including continuous growth and fission (asexual reproduction) in well‐fed organisms, and shrinkage (degrowth) during prolonged starvation. The source of their morphological plasticity and regenerative capability is a (...)
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  • The Boundaries of Development.Thomas Pradeu, Lucie Laplane, Michel Morange, Antonine Nicoglou & Michel Vervoort - 2011 - Biological Theory 6 (1):1 - 3.
    This special issue of Biological Theory is focused on development; it raises the problem of the temporal and spatial boundaries of development. From a temporal point of view, when does development start and stop? From a spatial point of view, what is it exactly that "develops", and is it possible to delineate clearly the developing entity? This issue explores the possible answers to these questions, and thus sheds light on the definition of development itself.
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  • The Link between Autotomy and CNS Regeneration: Echinoderms as Non‐Model Species for Regenerative Biology.Maria Byrne - 2020 - Bioessays 42 (3):1900219.
    Achieving regeneration of the central nervous system (CNS) is a major challenge for regenerative medicine. The inability of mammals to regrow a severed CNS contrasts with the amazing regenerative powers of their deuterostome kin, the echinoderms. Rapid CNS regeneration from a specialized autotomy plane in echinoderms presents a highly tractable and suitable non‐model system for regenerative biology and evolution. Starfish arm autotomy triggers mass cell migration and local proliferation, facilitating rapid CNS regeneration. Many regeneration events in nature are preceded by (...)
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