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Influence of age and housing systems on properties of tibia and humerus of Lohmann White hens(1): Bone properties of laying hens in commercial housing systems

机译:年龄和住房系统对罗姆曼白氏菌胫骨及肱骨性质的影响(1):商用房屋系统中母鸡骨质性质

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This study was aimed at analyzing bone properties of Lohmann White hens in different commercial housing systems at various points throughout production. Pullets reared in conventional cages (CC) were either continued in CC or moved to enriched colony cages (EN) at 19 weeks. Pullets reared in cage-free aviaries (AV) were moved to AV hen houses. Bone samples were collected from 60 hens at each of 18 and 72 wk and 30 hens at 26 and 56 wk from each housing system. Left tibiae and humeri were broken under uniform bending to analyze mechanical properties. Cortical geometry was analyzed using digital calipers at the fracture site. Contralateral tibiae and humeri were used for measurement of ash percentage. AV pullets' humeri had 41% greater cortical areas, and tibiae had 19% greater cortical areas than the CC pullets (P 0.05). Average humeri diameter was greater in AV pullets than in CC pullets (P 0.05), whereas the tibiae outer dimensions were similar. Aviary pullet bones had greater stiffness (31 and 7% greater for tibiae and humeri, respectively) and second moment of inertia (43 and 13% greater for tibiae and humeri, respectively) than CC pullets (P 0.05). The differences between bones of AV and CC hens persisted throughout the laying cycle. Moving CC pullets to EN resulted in decreased endosteal resorption in humeri, evident by a 7.5% greater cortical area in the EN hens (P 0.05). Whole-bone breaking strength did not change with age. Stiffness increased with age, while energy to failure decreased in both the tibiae and humeri. These results indicated that tibiae and humeri of laying hens become stiffer but lose toughness and become brittle with age. Furthermore, AV and EN systems can bring positive changes in mechanical and structural properties that are more pronounced in the humerus than the tibia.
机译:该研究旨在分析在整个生产的各个点的不同商业住房系统中的Lohmann白母鸡的骨骼性质。在常规笼子(CC)中饲养的牵扣在CC中继续或在19周内移动到富集的菌落笼(EN)。在无笼鸟田(AV)中饲养的毛皮搬迁到AV鸡舍。从每个壳体系统中从18和72周的每一个和30母鸡的60母鸡收集骨样品。在均匀弯曲下左胫骨和休默生被破坏以分析机械性能。使用数字卡钳在裂缝部位进行皮质几何。对侧胫骨和肱骨用于测量灰分百分比。 AV Pullets的Humeri具有41%的皮质区域,胫骨具有19%的皮质区域,比CC牵引(P <0.05)。在AV牵胎中的平均湿度直径比在CC剥离中更大(P <0.05),而胫骨外部尺寸相似。鸟笼拔管骨骼分别具有比CC牵引(P <0.05)的第二矩(分别为胫骨和肱三头和肱三头和肱三头和肱三头和肱三头和肱三头和肱骨43%越大)。 AV和CC母鸡之间的差异在整个铺设周期中持续存在。将CC胶片移动到EN中导致Humeri的内骨膜吸收降低,在en Hens中的7.5%皮质区域明显(P <0.05)。全骨破碎的力量随着年龄而改变。僵硬随着年龄的增长而增加,而胫骨和哈米尔都会减少失败的能量。这些结果表明,Tibiae和Humeri的铺设母鸡变得更加暴躁但失去韧性,随着年龄的增长而变得脆弱。此外,AV和EN系统可以带来肱骨在肱骨上比胫骨更加明显的正面变化。

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