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固定对肉仔鸡胫骨和腓肠肌腱生物力学特性的影响。

Effects of immobilization on the biomechanical properties of the broiler tibia and gastrocnemius tendon.

作者信息

Foutz T, Ratterman A, Halper J

机构信息

Faculty of Engineering, University of Georgia, Athens 30602, USA.

出版信息

Poult Sci. 2007 May;86(5):931-6. doi: 10.1093/ps/86.5.931.

Abstract

Researchers have provided much insight into the various factors that influence the incidence of musculoskeletal problems in the poultry industry. However, a better understanding of the mechanobiology of broiler bone and tendon can have a positive effect on the welfare of the production bird and assist in the development of improved production practices. This study investigated the mechanical adaptability responses due to disuse on the biomechanical properties of the broiler tibia and gastrocnemius tendon. Beginning at 3 wk of age, broilers were placed in a harness system designed to eliminate load bearing of the leg. After 2 wk of this treatment, the average values for body mass and shank length of the birds were 58 and 85% of the values for the controls, respectively. The treatment reduced the mineral content of the tibia by approximately 50%, tibia structural strength by 40%, and tibia material strength by 8%. The structural strength and toughness of the gastrocnemius tendon were reduced by 10 and 30%, respectively, whereas the material strength, material toughness, and material stiffness of the tendon increased by approximately 75, 65, and 70%, respectively.

摘要

研究人员已深入了解了影响家禽业肌肉骨骼问题发生率的各种因素。然而,更好地理解肉鸡骨骼和肌腱的机械生物学,可对生产禽类的福利产生积极影响,并有助于改进生产实践的发展。本研究调查了因废用对肉鸡胫骨和腓肠肌腱生物力学特性产生的机械适应性反应。从3周龄开始,将肉鸡置于旨在消除腿部承重的吊带系统中。经过2周的这种处理后,禽类的体重和胫长平均值分别为对照组的58%和85%。该处理使胫骨的矿物质含量降低了约50%,胫骨结构强度降低了40%,胫骨材料强度降低了8%。腓肠肌腱的结构强度和韧性分别降低了10%和30%,而肌腱的材料强度、材料韧性和材料刚度分别增加了约75%、65%和70%。

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