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Published on: December 28, 2016
Anatomical and Embryological Development of the Chick Cerebrum in Different Embryonic Periods
Muhammet Lutfi Selcuk1, Fatma Kayikci2
1Faculty of Health Sciences, Department of Physiotherapy and Rehabilitation, Karamanaoglu Mehmetbey University, Karaman, Turkey.
Insights
This study tracked chick cerebrum development during incubation. Most brain measurements significantly increased, providing valuable data for future neurotoxicity research.
Area of Science:
- Developmental biology
- Neuroscience
- Comparative anatomy
Background:
- The chick cerebrum's development is crucial for understanding avian brain evolution.
- Detailed morphometric data during embryonic stages are limited.
Purpose of the Study:
- To analyze the embryological and morphometric development of the chick cerebrum.
- To establish reference data for chick brain anatomy during key incubation periods.
Main Methods:
- Used 24 Babcock White Leghorn chicks at 10, 13, 16, and 21 days of incubation.
- Performed histological procedures, including staining with Crossmon's triple stain and Klüver-Barrera methods.
- Utilized ImageJ software and stereological methods for morphometric analysis and brain volume calculation.
Main Results:
- All measured cerebral parameters, excluding third ventricle width, showed statistically significant increases (p < 0.05).
- Detailed anatomical and histological changes in brain parts were observed across embryonic periods.
Conclusions:
- The study provides significant new morphometric data on chick cerebrum development.
- Findings enhance understanding of avian brain anatomy and offer reference data for toxicity studies.
Abstract:
The objective of this study is to assess the embryological and morphometric development of the chick cerebrum during specific incubation periods. The cerebrums of 24 Babcock White Leghorn chicks, six each from the 10th, 13th, 16th and 21st days of the incubation period, were used in the study. After removing the heads of fixed embryos from the upper edge of the atlas, the brains were taken out of the cranial cavity. Morphometric measurements were performed on the removed brains, and paraffin blocks were prepared following the routine histological procedure. Sections 5 µm thick were taken from the blocks, with an additional 10 µm thick section taken every 50th section. The slides were then stained using Crossmon's triple stain and Klüver-Barrera staining methods and photographed. The sectional images were transferred to the ImageJ programme, brain volume was calculated using stereological methods, and histological measurements were performed. The development of brain parts in selected embryonic periods was examined in detail, focusing on anatomical and histological aspects. According to the results, it was determined that all measured parameters, except the third ventricle width, increased and were statistically significant (p < 0.05). It is believed that the findings of this study will enhance the understanding of the region's anatomy. The new morphometric data can serve as reference data in neurotoxicity and embryotoxicity studies.
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