Department of Animal Reproduction, Anatomy and Genomics, University of Agriculture in Kraków, 24/28 Mickiewicza Ave., 30-059, Cracow, Poland.
Department of Poultry Breeding, National Research Institute of Animal Production, 32-083, Balice, Poland.
Sci Rep. 2023 Sep 4;13(1):14512. doi: 10.1038/s41598-023-41806-x.
The presented study focuses on assessing the effect of caponization on the densitometric, osteometric, geometric and biomechanical parameters of tibial bones in crossbred chickens. The study was carried out on 96 hybrids between Yellowleg Partridge hens (Ż-33) and Rhode Island Red cockerels (R-11) aged 16 weeks, 20 weeks and 24 weeks. Birds were randomly assigned to 2 groups-the control group (n = 48; which consisted of intact roosters) and the experimental group (n = 48, which consisted of individuals subjected to caponization at the age of 8 weeks). The caponization had no effect on the densitometric, osteometric and geometric parameters (except the horizontal internal diameter of 16-week-old individuals) of tibia bone, as well as the content of calcium (Ca), phosphorus (P) and the Ca/P ratio in the bone mineral fraction in all analyzed age groups of animals. However, it contributes to a lower percentage of ash in the bones of capons at 20 and 24 weeks of age compared to cockerels. On the contrary, some mechanical and material parameters show the negative effect of caponization. Ultimate load and bending moment decreased in capons in all of the analyzed age groups of animals and yield load, stiffness and ultimate stress also decreased but only in the group of 20-week-old and 24-week-old individuals. This can contribute to the weakening of the capon bones, and in the perspective of prolonged maintenance to their deformation and even fracture.
本研究旨在评估去势对杂交肉鸡胫骨骨密度、骨计量学、几何和生物力学参数的影响。该研究在 16、20 和 24 周龄的黄腿鹧鸪母鸡(Ż-33)和罗得岛红公鸡(R-11)杂交后代中进行,共 96 只。将鸟类随机分为 2 组:对照组(n=48;由未去势公鸡组成)和实验组(n=48,由 8 周龄去势个体组成)。去势对胫骨骨的密度、骨计量学和几何参数(16 周龄个体的水平内径除外)以及所有分析的动物年龄组的骨矿物质中钙(Ca)、磷(P)和 Ca/P 比值均无影响。然而,它会导致 20 周龄和 24 周龄公鸡的骨骼中灰分百分比低于公鸡。相反,一些机械和材料参数显示去势的负面影响。在所有分析的动物年龄组中,公鸡的极限载荷和弯矩均降低,屈服载荷、刚度和极限应力也降低,但仅在 20 周龄和 24 周龄组中降低。这可能导致公鸡骨骼变弱,从长远来看,会导致其变形甚至骨折。