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鸡胫跗骨的组成、皮质结构和力学性能:生长速率的影响

Composition, cortical structure and mechanical properties of chicken tibiotarsi: effect of growth rate.

作者信息

Leterrier C, Nys Y

机构信息

INRA, Station de Recherches Avicoles, Nouzilly, France.

出版信息

Br Poult Sci. 1992 Dec;33(5):925-39. doi: 10.1080/00071669208417536.

Abstract
  1. Comparisons of tibial growth in slowly (X) and rapidly (F) growing chicks were carried out weekly until the birds weighed 500 g. 2. Bone volume and percentage of ash per dry weight increased with age and were similar at equal body weights between crossbreeds. In birds of the same age, the ratio of tibial dry weight to hydrated weight was greater in crossbreed X as compared with crossbreed F. Consequently, the tibial density and the mineral content per volume were higher, at equal body weights, in crossbreed X. 3. Cortical cross-sectional area was greater in crossbreed F at the different ages, but was similar in both crossbreeds at equal body weights. A peripheral active zone of greater porosity was predominantly characterised by radial fibrolamellar tissue in fast growing birds and covered a larger area in crossbreed F than in crossbreed X. 4. Biomechanical properties of the tibiotarsi were evaluated in a three-point flexure test. The area moment of inertia was equal at similar body weights in both crossbreeds, but the yield or maximal forces and stiffness of tibiotarsi were lower in the rapidly growing crossbreed F compared with crossbreed X. 5. It is concluded that an increased rate of growth is associated with a lower mineral density and higher porosity of the tibial cortices resulting in reduced bending resistance.
摘要
  1. 对生长缓慢(X)和生长快速(F)的雏鸡的胫骨生长情况进行每周一次的比较,直至鸡的体重达到500克。2. 骨体积和每干重的灰分百分比随年龄增加,在相同体重的杂交品种之间相似。在相同年龄的鸡中,杂交品种X的胫骨干重与湿重之比高于杂交品种F。因此,在相同体重下,杂交品种X的胫骨密度和每体积的矿物质含量更高。3. 在不同年龄时,杂交品种F的皮质横截面积更大,但在相同体重时,两个杂交品种的皮质横截面积相似。在快速生长的鸡中,孔隙率更高的外周活跃区主要由放射状纤维层状组织构成,且杂交品种F中的该区域面积比杂交品种X中的更大。4. 在三点弯曲试验中评估胫跗骨的生物力学性能。在相似体重时,两个杂交品种的截面惯性矩相等,但与杂交品种X相比,快速生长的杂交品种F的胫跗骨屈服力或最大力以及刚度更低。5. 得出的结论是,生长速率的增加与胫骨皮质较低的矿物质密度和较高的孔隙率相关,从而导致抗弯曲能力降低。

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