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Titlebook: Assembly of the Vasculature and Its Regulation; Robert J. Tomanek Book 2002 Birkh?user Boston 2002 biology.brain.cell.cell biology.central

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發(fā)表于 2025-3-21 20:01:43 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱(chēng)Assembly of the Vasculature and Its Regulation
影響因子2023Robert J. Tomanek
視頻videohttp://file.papertrans.cn/164/163218/163218.mp4
學(xué)科分類(lèi)Cardiovascular Molecular Morphogenesis
圖書(shū)封面Titlebook: Assembly of the Vasculature and Its Regulation;  Robert J. Tomanek Book 2002 Birkh?user Boston 2002 biology.brain.cell.cell biology.central
影響因子The overall scope of this new series will be to evolve an understanding of the genetic basis of (1) how early mesoderm commits to cells of a heart lineage that progressively and irreversibly assemble into a segmented, primary heart tube that can be remodeled into a four-chambered organ, and (2) how blood vessels are derived and assembled both in the heart and in the body. Our central aim is to establish a four-dimensional, spatiotemporal foundation for the heart and blood vessels that can be genetically dissected for function and mechanism. Since Robert DeHaan‘s seminal chapter "Morphogenesis of the Vertebrate Heart" published in Organogenesis (Holt Rinehart & Winston, NY) in 1965, there have been surprisingly few books devoted to the subject of cardiovascular mor- phogenesis, despite the enormous growth of interest that occurred nationally and internationally. Most writings on the subject have been scholarly compilations of the proceedings of major national or international symposia or multiauthored volumes, often without a specific theme. What is missing are the unifying concepts that can make sense out of a burgeoning database of facts. The Editorial Board of this new series bel
Pindex Book 2002
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The Role of Vascular Endothelial Growth Factors and Their Receptors During Embryonic Vascular Develstablish the primordia of large body vessels, which become interconnected to the extraembryonic vasculature at the two-somite stage. The morphogenesis of the early vasculature has been described in a series of comprehensive articles (.;.;.,.;.;.;.;.; .; .;.,.).
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The Ties That Bind: Emerging Concepts About the Structure and Function of Angiopoietins and Their Rprise a unique family of proteins, the first member of which was cloned only a few years ago (.;.;.). All the angiopoietins are highly homologous to each other; angiopoietin-1 (Ang1) and angiopoietin-2 (Ang2) are —60% identical in their amino acid sequence; angiopoietin-3 and -4 (Ang3 and 4) show —5
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Extracellular Matrix in the Regulation of Angiogenesis, the central contention that growing tumors require blood flow to provide nutrients and remove metabolic wastes is well accepted, intriguing new studies suggest that the mechanisms by which tumors obtain this blood flow may differ. For example, recent studies by Holash and colleagues (.) have sugges
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Development and Differentiation of Vascular Smooth Muscle, maturation and to stimulate mesenchymal cell differentiation and matrix production. The exchange of signals between endothelial cells and mesenchymal cells that is initiated during vascular development continues throughout life to ensure that changing target tissue demands for perfusion are coupled
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