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Etiology and Morphogenesis of Congenital Heart Disease

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Cover of 'Etiology and Morphogenesis of Congenital Heart Disease'

Table of Contents

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    Book Overview
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    Chapter 1 Reprogramming Approaches to Cardiovascular Disease: From Developmental Biology to Regenerative Medicine
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    Chapter 2 The Arterial Epicardium: A Developmental Approach to Cardiac Disease and Repair
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    Chapter 3 Cell Sheet Tissue Engineering for Heart Failure
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    Chapter 4 Future Treatment of Heart Failure Using Human iPSC-Derived Cardiomyocytes
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    Chapter 5 Congenital Heart Disease: In Search of Remedial Etiologies
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    Chapter 6 Left-Right Asymmetry and Human Heterotaxy Syndrome
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    Chapter 7 Roles of Motile and Immotile Cilia in Left-Right Symmetry Breaking
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    Chapter 8 Role of Cilia and Left-Right Patterning in Congenital Heart Disease
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    Chapter 9 Pulmonary Arterial Hypertension in Patients with Heterotaxy/Polysplenia Syndrome
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    Chapter 10 Single-Cell Expression Analyses of Embryonic Cardiac Progenitor Cells
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    Chapter 11 Meis1 Regulates Postnatal Cardiomyocyte Cell Cycle Arrest
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    Chapter 12 Intercellular Signaling in Cardiac Development and Disease: The NOTCH pathway
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    Chapter 13 The Epicardium in Ventricular Septation During Evolution and Development
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    Chapter 14 S1P-S1p2 Signaling in Cardiac Precursor Cells Migration
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    Chapter 15 Myogenic Progenitor Cell Differentiation Is Dependent on Modulation of Mitochondrial Biogenesis through Autophagy
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    Chapter 16 The Role of the Thyroid in the Developing Heart
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    Chapter 17 Atrioventricular Valve Abnormalities: From Molecular Mechanisms Underlying Morphogenesis to Clinical Perspective
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    Chapter 18 Molecular Mechanisms of Heart Valve Development and Disease
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    Chapter 19 A Novel Role for Endocardium in Perinatal Valve Development: Lessons Learned from Tissue-Specific Gene Deletion of the Tie1 Receptor Tyrosine Kinase
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    Chapter 20 The Role of the Epicardium in the Formation of the Cardiac Valves in the Mouse
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    Chapter 21 TMEM100: A Novel Intracellular Transmembrane Protein Essential for Vascular Development and Cardiac Morphogenesis
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    Chapter 22 The Role of Cell Autonomous Signaling by BMP in Endocardial Cushion Cells in AV Valvuloseptal Morphogenesis
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    Chapter 23 Properties of Cardiac Progenitor Cells in the Second Heart Field
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    Chapter 24 Nodal Signaling and Congenital Heart Defects
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    Chapter 25 Utilizing Zebrafish to Understand Second Heart Field Development
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    Chapter 26 A History and Interaction of Outflow Progenitor Cells Implicated in “Takao Syndrome”
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    Chapter 27 The Loss of Foxc2 Expression in the Outflow Tract Links the Interrupted Arch in the Conditional Foxc2 Knockout Mouse
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    Chapter 28 Modification of Cardiac Phenotype in Tbx1 Hypomorphic Mice
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    Chapter 29 Extracellular Matrix Remodeling in Vascular Development and Disease
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    Chapter 30 The “Cardiac Neural Crest” Concept Revisited
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    Chapter 31 Roles of Endothelial Hrt Genes for Vascular Development
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    Chapter 32 Inositol Trisphosphate Receptors in the Vascular Development
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    Chapter 33 Tissue Remodeling in Vascular Wall in Kawasaki Disease-Related Vasculitis Model Mice
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    Chapter 34 Progerin Expression during Normal Closure of the Human Ductus Arteriosus: A Case of Premature Ageing?
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    Chapter 35 The Multiple Roles of Prostaglandin E2 in the Regulation of the Ductus Arteriosus
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    Chapter 36 Developmental Differences in the Maturation of Sarcoplasmic Reticulum and Contractile Proteins in Large Blood Vessels Influence Their Contractility
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    Chapter 37 Fetal and Neonatal Ductus Arteriosus Is Regulated with ATP-Sensitive Potassium Channel
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    Chapter 38 Regulation of Vertebrate Conduction System Development
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    Chapter 39 Cardiac Pacemaker Development from a Tertiary Heart Field
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    Chapter 40 Endothelin Receptor Type A-Expressing Cell Population in the Inflow Tract Contributes to Chamber Formation
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    Chapter 41 Specific Isolation of HCN4-Positive Cardiac Pacemaking Cells Derived from Embryonic Stem Cells
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    Chapter 42 Combinatorial Functions of Transcription Factors and Epigenetic Factors in Heart Development and Disease
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    Chapter 43 Pcgf5 Contributes to PRC1 (Polycomb Repressive Complex 1) in Developing Cardiac Cells
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    Chapter 44 Noncoding RNAs in Cardiovascular Disease
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    Chapter 45 Human Pluripotent Stem Cells to Model Congenital Heart Disease
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    Chapter 46 Engineered Cardiac Tissues Generated from Immature Cardiac and Stem Cell-Derived Cells: Multiple Approaches and Outcomes
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    Chapter 47 Dissecting the Left Heart Hypoplasia by Pluripotent Stem Cells
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    Chapter 48 Lentiviral Gene Transfer to iPS Cells: Toward the Cardiomyocyte Differentiation of Pompe Disease-Specific iPS Cells
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    Chapter 49 Molecular Analysis of Long-Term Cultured Cardiac Stem Cells for Cardiac Regeneration
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    Chapter 50 Minor Contribution of Cardiac Progenitor Cells in Neonatal Heart Regeneration
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    Chapter 51 Genetic Discovery for Congenital Heart Defects
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    Chapter 52 Evidence That Deletion of ETS-1, a Gene in the Jacobsen Syndrome (11q-) Cardiac Critical Region, Causes Congenital Heart Defects through Impaired Cardiac Neural Crest Cell Function
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    Chapter 53 Notch Signaling in Aortic Valve Development and Disease
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    Chapter 54 To Detect and Explore Mechanism of CITED2 Mutation and Methylation in Children with Congenital Heart Disease
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Title
Etiology and Morphogenesis of Congenital Heart Disease
Published by
Springer Japan, January 2016
DOI 10.1007/978-4-431-54628-3
Pubmed ID
ISBNs
978-4-43-154627-6, 978-4-43-154628-3
Authors

Toshio Nakanishi, Prof. Dr. Roger R. Markwald, MD H.Scott Baldwin, Dr. Bradley B. Keller, MD Deepak Srivastava, Prof. Hiroyuki Yamagishi

Editors

Toshio Nakanishi, Roger R. Markwald, H.Scott Baldwin, Bradley B. Keller, Deepack Srivastava, Hiroyuki Yamagishi

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 173 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 173 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 31 18%
Researcher 29 17%
Student > Master 21 12%
Student > Bachelor 15 9%
Student > Doctoral Student 11 6%
Other 31 18%
Unknown 35 20%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 50 29%
Medicine and Dentistry 33 19%
Agricultural and Biological Sciences 15 9%
Engineering 14 8%
Pharmacology, Toxicology and Pharmaceutical Science 5 3%
Other 18 10%
Unknown 38 22%