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小跑和额外负重对掌骨发育的影响。

Influence of trotting and supplemental weight on metacarpal bone development.

作者信息

Nielsen B D, O'Connor C I, Rosenstein D S, Schott H C, Clayton H M

机构信息

Department of Animal Science, Michigan State University, East Lansing 48824-1225, USA.

出版信息

Equine Vet J Suppl. 2002 Sep(34):236-40. doi: 10.1111/j.2042-3306.2002.tb05425.x.

DOI:10.1111/j.2042-3306.2002.tb05425.x
PMID:12405693
Abstract

The use of weight-training to alter bone strength has not been investigated in horses. Recognising that bone responds to loading, we studied the effect of carrying weight on bone development during training. Seventeen horses were divided into 3 groups: controls exercised counterclockwise in a free-flow exerciser; the weight group performed the same exercise carrying progressively increasing weight up to 45 kg and the weight supplement group also received a myo-anabolic supplement. Radiographic equivalence measure of bone mineral content of zones of the third metacarpi (MCIII) was determined on 4 occasions: baseline (Day 108), pre-conditioning following 108 days stall confinement (Day 0), mid-conditioning (Day 39) and end-conditioning (Day 78). Stall confinement resulted in loss of mineral in lateral and medial cortices of both MCIII. During conditioning, weight-carrying increased mineral deposition in lateral and medial cortices of MCIII of the left (inside) leg compared with controls. In the right leg, controls had lower mineral content of the lateral cortex at Day 39 than weight-carrying horses but no differences between treatments were recorded at Day 78. Markers of bone metabolism did not change from baseline to pre-conditioning, but increased from Day 0 to 39 and 78 for all groups. This study demonstrates the benefits to bone mineral deposition in the third metacarpi of carrying weight when trained at low speeds and re-emphasises the potential for bone loss when not given sufficient exercise.

摘要

尚未对马匹使用负重训练来改变骨骼强度进行研究。鉴于骨骼对负荷有反应,我们研究了训练期间负重对骨骼发育的影响。17匹马被分为3组:对照组在自由流动式训练器中逆时针运动;负重组进行相同运动,逐渐增加负重至45千克,负重补充组还接受了一种肌合成代谢补充剂。在4个时间点测定第三掌骨(MCIII)区域骨矿物质含量的射线等效测量值:基线(第108天)、108天厩舍饲养后的预处理(第0天)、中期训练(第39天)和末期训练(第78天)。厩舍饲养导致两侧MCIII的外侧和内侧皮质矿物质流失。在训练期间,与对照组相比,负重增加了左(内侧)腿MCIII外侧和内侧皮质的矿物质沉积。在右腿中,第39天时对照组外侧皮质的矿物质含量低于负重马匹,但在第78天时各处理组之间未记录到差异。骨代谢标志物从基线到预处理没有变化,但所有组从第0天到第39天和第78天均增加。这项研究表明,低速训练时负重对第三掌骨的骨矿物质沉积有益,并再次强调了缺乏足够运动时骨质流失的可能性。

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