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Titlebook: New Principles in Developmental Processes; Hisato Kondoh,Atsushi Kuroiwa Book 2014 Springer Japan 2014 cell competition.embryogenesis.hete

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發(fā)表于 2025-3-21 19:28:59 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱New Principles in Developmental Processes
編輯Hisato Kondoh,Atsushi Kuroiwa
視頻videohttp://file.papertrans.cn/666/665677/665677.mp4
概述Unique state-of-the-art discussion of developmental principles.Deliberately chosen topics clearly emphasize the new principles in developmental processes.Authored by new generation of developmental bi
圖書封面Titlebook: New Principles in Developmental Processes;  Hisato Kondoh,Atsushi Kuroiwa Book 2014 Springer Japan 2014 cell competition.embryogenesis.hete
描述During the last decade, modern technologies have made a revolutionary change in developmental biology. The molecular and cellular processes in live embryos can now be visualized thanks to technologies using fluorescent proteins. The whole genome information of a wide range of animal species has now become available, confirming the common principles that operate in every species. These and other advances in our understanding of the developmental processes during embryogenesis and tissue regeneration have put forward new principles. Those new principles will also be important in the stem cell biology, branched from developmental biology, in order to generate a particular tissue by manipulating stem cells. This book is planned to introduce these new principles to readers who are working in developmental biology and/or stem cell biology fields, with an emphasis on genetic and cellular processes.??
出版日期Book 2014
關(guān)鍵詞cell competition; embryogenesis; heterologous tissue; stem cells; tissue regeneration
版次1
doihttps://doi.org/10.1007/978-4-431-54634-4
isbn_softcover978-4-431-56222-1
isbn_ebook978-4-431-54634-4
copyrightSpringer Japan 2014
The information of publication is updating

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Cell Competition: The Struggle for Existence in Multicellular Communitiesby tissue growth, which is strongly influenced by local homeostatic cell–cell interactions. Studies during the past several years have shown that cells in multicellular communities compete with each other for their existence; cells with higher fitness (“winners”) survive and eliminate cells with low
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Regulation of Axial Stem Cells Deriving Neural and Mesodermal Tissues During Posterior Axial Elongattudies have demonstrated that the posterior neural plate and posterior paraxial mesoderm are generated from bipotential stem cells, the axial stem cells, which reside in the caudal lateral epiblast of gastrulating embryos. The fate of axial stem cells, neural or mesodermal lineages, depends on the c
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Interaction of Epithelial Cells and Basement Membrane in the Regulation of EMT Exemplified in Chickemation of complex organs and in tissue repair during animal development. After EMT, cells acquire migratory and invasive properties, which can contribute to organ fibrosis and cancer metastasis. However, the precise cellular mechanisms that govern EMT in various in vivo contexts are poorly understoo
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