Journal of Rare Cardiovascular Diseases

ISSN: 2299-3711 (Print) e-ISSN: 2300-5505 (Online)

Morphological and histological characteristics of heart in adult domestic rabbit (Oryctolagus Cuniculus)

1Al- Mustaqbal University College, Iraq
2Department of physiology, Ilkhchi branch, Islamic Azad University, Iran
1Al- Mustaqbal University College, Iraq
2Department of physiology, Ilkhchi branch, Islamic Azad University, Iran

Full Text:

Abstract

The heart is a vital muscular organ responsible for pumping blood throughout the circulatory system. This study investigates the morphological, morphometric, and histological development of the heart during prenatal and postnatal stages in rabbits. For the prenatal analysis, ten rabbit fetuses were collected from pregnant local-breed does, while ten healthy adult rabbits (Oryctolagus cuniculus) were examined postnatally. Histological observations revealed that cardiac differentiation begins between the 9th and 10th days of gestation, with the formation of a smooth-walled heart loop comprising the myocardial mantle, cardiac jelly, and endocardium. During embryogenesis, the heart undergoes distinct morphological transformations, including heart tube formation, looping, chamber development, and septation. Postnatally, the heart assumes a cone shape, pinkish coloration, and is positioned in the mediastinum, tilted toward the left, between the lungs and anterior to the diaphragm, spanning from the 3rd to 5th intercostal spaces. Histological examination of the heart wall showed three layers: endocardium, myocardium, and epicardium. The pericardium consists of parietal and visceral layers; the former comprises dense connective tissue fused with the fibrous pericardium, while the latter is closely bound to the myocardium and covered with a simple epithelial layer. The myocardium, the thickest layer, contains cardiac muscle fibers embedded in connective tissue with nerve bundles, lymphatics, and capillaries. The endocardium is a thin inner layer composed of endothelial, subendothelial, and subendocardial components. These findings provide a comprehensive understanding of heart development in rabbits and serve as a valuable reference for comparative and developmental cardiovascular studies.

key word
histology, morphological, adult, rabbit, heart, study

References

  1. Hammady, Maha, et al. “Detailed insights into heart histology and cardiomyocyte molecular architecture.” Alexandria Journal of Science and Technology (2024): 61-78.

  2. Ghonimi, Wael, et al. “Gross and microanatomical studies on the moderator bands (septomarginal trabecula) in the heart of mature Dromedary camel (Camelus dromedarius).” Journal of Advanced Veterinary and Animal Research 1.2 (2014): 24-31.

  3. Ivanova, V. V., et al. “The rat heart in the prenatal and postnatal periods of ontogenesis.” Russian Journal of Developmental Biology 52 (2021): 287-300.

  4. DiVincenti Jr, Louis, Robin Westcott, and Candice Lee. “Sheep (Ovis aries) as a model for cardiovascular surgery and management before, during, and after cardiopulmonary bypass.” Journal of the American Association for Laboratory Animal Science 53.5 (2014): 439-448.

  5. Ali, Mostafa R. “Ventricular myocardial sheet.” Al-Kindy College Medical Journal 14.1 (2018): 50-57.

  6. Kloesel, Benjamin, James A. DiNardo, and Simon C. Body. “Cardiac embryology and molecular mechanisms of congenital heart disease: a primer for anesthesiologists.” Anesthesia & Analgesia 123.3 (2016): 551-569.

  7. Gálfiová, P., Polák, Š., Mikušová, R., Gažová, A., Kosnáč, D., Barczi, T., Kyselovič, J., & Varga, I. (2017). The three-dimensional fine structure of the human heart: a scanning electron microscopic atlas for research and education. Biologia, 72(12), 1521-1528.

  8. Eifler, Tim, Peter Schneider, and Jan Hartlap. “Dependence of cosmic shear covariances on cosmology-Impact on parameter estimation.” Astronomy & Astrophysics 502.3 (2009): 721-731.

  9. Sahu, S. K., et al. “External morphogenesis of heart in pre-natal non-descript sheep (Ovis aries).” Indian Journal of Veterinary Anatomy 34.2 (2023): 106-109.

  10. Mathur, M., et al. “Tricuspid valve leaflet strains in the beating ovine heart.” Biomechanics and Modeling in Mechanobiology 18 (2019): 1351-1361.

  11. Thonhboon, Lamai, et al. “Heart histology of the four chambers in the Spotted scat, Scatophagus argus, during the juvenile stage.” Suranaree Journal of Science & Technology 23.4 (2016): 429-433.

  12. Dai, Yidan, et al. “Anatomy of the coronary arteries in fetal pigs: comparison with human anatomy.” Anatomical Science International 95 (2020): 265-276.

  13. Gabriel, George C., et al. “Cardiovascular development and congenital heart disease modeling in the pig.” Journal of the American Heart Association 10.14 (2021): e021631.

  14. Emam, M. A., & Abugherin, B. (2019). Histological study on the heart ventricle of Egyptian bovines (Bos aegyptiacus). Open Veterinary Journal, 9(4), 281–286-281–286.

  15. Ryu, S., Yamamoto, S., Andersen, C. R., Nakazawa, K., Miyake, F., & James, T. N. (2009). Intramural Purkinje cell network of sheep ventricles as the terminal pathway of conduction system. The Anatomical Record: Advances in Integrative Anatomy and Evolutionary Biology: Advances in Integrative Anatomy and Evolutionary Biology, 292(1), 12-22.