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    Molecular Mechanism of Congenital Heart Disease and Pulmonary Hypertension

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    Contributor(s)
    Nakanishi, Toshio (editor)
    Baldwin, H. Scott (editor)
    Fineman, Jeffrey R. (editor)
    Yamagishi, Hiroyuki (editor)
    Language
    English
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    Abstract
    This open access book focuses on the molecular mechanism of congenital heart disease and pulmonary hypertension, offering new insights into the development of pulmonary circulation and the ductus arteriosus. It describes in detail the molecular mechanisms involved in the development and morphogenesis of the heart, lungs and ductus arteriosus, covering a range of topics such as gene functions, growth factors, transcription factors and cellular interactions, as well as stem cell engineering technologies. The book also presents recent advances in our understanding of the molecular mechanism of lung development, pulmonary hypertension and molecular regulation of the ductus arteriosus. As such, it is an ideal resource for physicians, scientists and investigators interested in the latest findings on the origins of congenital heart disease and potential future therapies involving pulmonary circulation/hypertension and the ductus arteriosus.
    URI
    http://library.oapen.org/handle/20.500.12657/39568
    Keywords
    Cardiology; Pediatrics; Internal Medicine; Pulmonary circulation; Ductus arteriosus; Molecular mechanisms; Cellular interactions; Stem cell engineering; Heart; Lung; Open access; Cardiovascular medicine; Paediatric medicine
    DOI
    10.1007/978-981-15-1185-1
    Publisher
    Springer Nature
    Publisher website
    https://www.springernature.com/gp/products/books
    Publication date and place
    Singapore, 2020
    Imprint
    Springer
    Classification
    Cardiovascular medicine
    Paediatric medicine
    Pages
    405
    Rights
    http://creativecommons.org/licenses/by/4.0/
    • Imported or submitted locally

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    License

    • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

    Credits

    • logo EU
    • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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