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An ex-ovo Chicken Embryo Culture System Suitable for Imaging and Microsurgery Applications
Published on: October 23, 2010
Reference guide to the stages of chick heart embryology
1Department of Pediatrics, Division of Pediatric Cardiology, University of Minnesota School of Medicine, Minneapolis, MN 55455, USA. marti198@umn.edu
Insights
This review details chick heart development, mapping key embryonic cell contributions and processes like looping and septation against Hamburger and Hamilton stages.
Area of Science:
- Developmental Biology
- Cardiovascular Research
Background:
- Chick heart development involves contributions from splanchnic mesoderm, cardiac neural crest, and proepicardium.
- Key processes include heart tube fusion, looping, septation, and vascularization.
- Complex aspects like innervation, pacemaking, valves, and apoptosis are crucial.
Framework:
- Utilizes the Hamburger and Hamilton (HH) staging system for precise developmental timing.
- Provides a comprehensive reference guide for chick heart development stages.
- Integrates temporal and spatial perspectives of cardiac developmental events.
Implementation:
- Focuses on providing a reference guide for researchers new to chick heart development.
- Aims to inform researchers working on genes expressed in the developing heart.
- Offers a global perspective on overlapping cardiac developmental events.
Implications:
- Facilitates understanding of chick heart development for new researchers.
- Serves as a benchtop companion to molecular cardiac development reviews.
- Enhances research on genes involved in cardiac formation and function.
Abstract:
Cardiac progenitors of the splanchnic mesoderm (primary and secondary heart field), cardiac neural crest, and the proepicardium are the major embryonic contributors to chick heart development. Their contribution to cardiac development occurs with precise timing and regulation during such processes as primary heart tube fusion, cardiac looping and accretion, cardiac septation, and the development of the coronary vasculature. Heart development is even more complex if one follows the development of the cardiac innervation, cardiac pacemaking and conduction system, endocardial cushions, valves, and even the importance of apoptosis for proper cardiac formation. This review is meant to provide a reference guide (Table 1) on the developmental timing according to the staging of Hamburger and Hamilton (1951) (HH) of these important topics in heart development for those individuals new to a chick heart research laboratory. Even individuals outside of the heart field, who are working on a gene that is also expressed in the heart, will gain information on what to look for during chick heart development. This reference guide provides complete and easy reference to the stages involved in heart development, as well as a global perspective of how these cardiac developmental events overlap temporally and spatially, making it a good bench top companion to the many recently written in-depth cardiac reviews of the molecular aspects of cardiac development.
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