首页> 美国卫生研究院文献>Frontiers in Veterinary Science >Limited Associations between Keel Bone Damage and Bone Properties Measured with Computer Tomography Three-Point Bending Test and Analysis of Minerals in Swiss Laying Hens
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Limited Associations between Keel Bone Damage and Bone Properties Measured with Computer Tomography Three-Point Bending Test and Analysis of Minerals in Swiss Laying Hens

机译:用计算机断层扫描三点弯曲试验和瑞士产蛋鸡的矿物质分析测量龙骨骨损伤与骨特性之间的有限关联

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摘要

Keel bone damage is a wide-spread welfare problem in laying hens. It is unclear so far whether bone quality relates to keel bone damage. The goal of the present study was to detect possible associations between keel bone damage and bone properties of intact and damaged keel bones and of tibias in end-of-lay hens raised in loose housing systems. Bones were palpated and examined by peripheral quantitative computer tomography (PQCT), a three-point bending test, and analyses of bone ash. Contrary to our expectations, PQCT revealed higher cortical and trabecular contents in fractured than in intact keel bones. This might be due to structural bone repair after fractures. Density measurements of cortical and trabecular tissues of keel bones did not differ between individuals with and without fractures. In the three-point bending test of the tibias, ultimate shear strength was significantly higher in birds with intact vs. fractured keel bones. Likewise, birds with intact or slightly deviated keel bones had higher mineral and calcium contents of the keel bone than birds with fractured keel bones. Calcium content in keel bones was correlated with calcium content in tibias. Although there were some associations between bone traits related to bone strength and keel bone damage, other factors such as stochastic events related to housing such as falls and collisions seem to be at least as important for the prevalence of keel bone damage.
机译:龙骨损坏是蛋鸡普遍存在的福利问题。到目前为止,尚不清楚骨骼质量是否与龙骨损伤有关。本研究的目的是检测在松散的饲养系统中饲养的产蛋母鸡的龙骨破坏与完整和受损龙骨以及胫骨的骨特性之间的可能联系。触诊骨骼并通过外围定量计算机断层扫描(PQCT),三点弯曲测试和骨灰分析进行检查。与我们的预期相反,PQCT显示骨折后的皮质和小梁含量高于完整的龙骨。这可能是由于骨折后的结构性骨修复。在有或没有骨折的个体之间,龙骨的皮质和小梁组织的密度测量没有差异。在胫骨的三点弯曲测试中,完整的禽类与骨折的龙骨相比,极限抗剪强度要高得多。同样,龙骨完整或稍有偏离的禽类比龙骨骨折的禽类具有更高的矿物质和钙含量。龙骨中的钙含量与胫骨中的钙含量相关。尽管与骨骼强度和龙骨损坏相关的骨骼特征之间存在某些关联,但是其他因素(例如与房屋有关的随机事件,例如跌倒和碰撞)对于龙骨损坏的发生率似乎至少同样重要。

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