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首页> 外文期刊>Crop and Pasture Science >Forelimb bone growth and mineral maturation as potential indices of skeletal maturity in sheep
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Forelimb bone growth and mineral maturation as potential indices of skeletal maturity in sheep

机译:前肢骨生长和矿物质成熟是绵羊骨骼成熟的潜在指标

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The aim of this study was to characterise the allometric growth and bone mineral maturation of forelimb bones in sheep throughout the growth phase. Forelimb bones (scapula to proximal phalanx) were measured in 84 Merino sheep from similar genetic stock of approximately 12, 32, 64, 84, 116, and 168 weeks of age, with approximately equal numbers of wethers and ewes in each age cohort (n = 14). Sheep were selected for divergence of size, body weight, and condition, in order that the effects of age and body size could be assessed independently. Bone magnesium was measured in the metacarpal and humerus. Results demonstrate the highly coordinated, allometric nature of linear bone growth within the ovine forelimb, though allometric growth patterns differed from those previously published for bone weights. We propose that estimates of maturity proportion (M) based on relative limb bone length or limb proportions may present significant advantages over weight- or composition-based maturity indices, or qualitative variables such as dental eruption or USDA-type maturity scores. Sex differences in growth gradients were minimal, although the higher variability and greater gender divergence of metacarpal bone length casts doubt on the use of its growth plate (breakjoint) to indicate maturity. Bone magnesium content was found to decrease rapidly during the growth period and may represent a useful independent estimate of physiological maturity.
机译:这项研究的目的是表征整个生长阶段绵羊前肢骨骼的异形生长和骨骼矿物质成熟。在大约12、32、64、84、116和168周龄的相似遗传种群中,在84头美利奴绵羊中测量了前肢骨(肩cap骨至近端指骨),每个年龄组的母羊和母羊的数量均相等(n = 14)。选择绵羊的大小,体重和状况的差异,以便可以独立评估年龄和体重的影响。在掌骨和肱骨中测量骨镁。结果证明了羊前肢内线性骨生长的高度协调,异速生长特性,尽管异速生长模式与先前公布的骨骼重量不同。我们建议,基于相对肢体骨长或肢体比例的成熟度比例(M)估计可能会比基于体重或成分的成熟度指标或定性变量(例如牙齿萌出或USDA型成熟度评分)具有明显优势。尽管掌骨骨长度的更高变异性和更大的性别差异使生长梯度的性别差异微乎其微,但人们对使用其生长板(断节)来表示成熟表示怀疑。发现骨骼镁含量在生长期迅速下降,可能代表了生理成熟度的有用独立估计。

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