Mechanical aspects of cardiac development.
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Summary
Mechanisms and modeling strategies are discussed for the morphogenetic processes of cardiac tube formation, cardiac looping, myocardial trabeculation, septation, valve formation, and muscle-fiber alignment.
- Type
- review
- Published
- 1998-03-01
- Cited by
- 96
- References
- 38
- Access
- Open access
- OpenAlex
- https://openalex.org/W1986810526
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:45829709
Keywords
Heart development, Cardiac valve, Cardiac muscle, Cardiology, Computer science
References
- Looping of chick embryo hearts in vitro.
- Connective tissue morphogenesis by fibroblast traction. I. Tissue culture observations.
- Developmental Cardiology: Morphogenesis and Function
- Etiology and morphogenesis of congenital heart disease
- The mechanical basis of morphogenesis. I. Epithelial folding and invagination.
- Laminar structure of the heart: ventricular myocyte arrangement and connective tissue architecture in the dog.
- Hemodynamic factors in the development of the chick embryo heart
- Growth of the heart in health and disease
- Mechanical effects of looping in the embryonic chick heart.
- A mechanical model for the formation of vascular networks in vitro
- Biomechanics of Growth, Remodeling, and Morphogenesis
- A series of normal stages in the development of the chick embryo. 1951.
- Regional mitotic activity in the precardiac mesoderm and differentiating heart tube in the chick embryo.
- Degradation of hyaluronic acid does not prevent looping of the mammalian heart in situ.
- On the reaction of the endocardium to the blood stream in the embryonic heart, with special reference to the endocardial thickenings in the atrioventricular canal and the bulbus cordis
- Early cardiac morphogenesis is independent of function.
- Myocardial cell shape change as a mechanism of embryonic heart looping.
- The development of the arterial outflow tract in the chick embryo heart
- Endocardial cell arrangement: Role of hemodynamics
- A nonliner poroelastic model for the trabecular embryonic heart.
Cited by
- The helical ventricular myocardial band of Torrent-Guasp.
- Formation of the Heart and Its Regulation
- Distribution of Sca-1+ cardiac progenitor cells in the healthy and the post-MI heart
- Electrical and mechanical stimulation of cardiac cells and tissue constructs
- Role of Mechanical Strain on the Cardiomyogenic Differentiation of Periodontal Ligament Derived Stem Cells
- Molecular mechanism of ventricular trabeculation/compaction and the pathogenesis of the left ventricular noncompaction cardiomyopathy (LVNC)
- An epigenetic model for pigment patterning based on mechanical and cellular interactions.
- Gap junctional regulation of pressure, fluid force, and electrical fields in the epigenetics of cardiac morphogenesis and remodeling.
- Mechanics and function in heart morphogenesis
- High‐resolution in vivo imaging of the cross‐sectional deformations of contracting embryonic heart loops using optical coherence tomography
- Fetal Growth Restriction Results in Remodeled and Less Efficient Hearts in Children
- The effects of hemodynamic force on embryonic development
- Computational model for the transition from peristaltic to pulsatile flow in the embryonic heart tube.
- Stretch-induced changes in heart rate and rhythm: clinical observations, experiments and mathematical models.
- Cardiac looping in the chick embryo: A morphological review with special reference to terminological and biomechanical aspects of the looping process
- Reference guide to the stages of chick heart embryology
- Patterns of Muscular Strain in the Embryonic Heart Wall
- Mechanical regulation of cardiac development
- Circulatory physiology in the developing embryo
- In vivo biofluid dynamic imaging in the developing zebrafish.
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