赛马掌骨软骨下骨适应、微损伤与修复的数学模型。

IF 3.5 2区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Michael Pan, Fatemeh Malekipour, Peter Pivonka, Ashleigh V Morrice-West, Jennifer A Flegg, R Chris Whitton, Peta L Hitchens
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引用次数: 0

摘要

纯种马远端肢体骨折主要是由于高强度训练造成的骨微损伤的积累而发生的。第三掌骨外侧髁软骨下骨适应的数学模型能够近似于纯种赛马在训练或休息时的现有数据。为了改进以前的模型,我们增加了动态吸收率和微损伤积累和修复过程。我们的常微分方程模型模拟了骨适应和微损伤积累的耦合过程,并对训练和休息中的赛马数据进行了校准。我们的模型的敏感性分析表明,关节载荷和每天覆盖的距离是预测训练期间积累的微损伤的最重要参数。我们还使用该模型来比较当马匹从休息期进入训练时逐渐增加的训练计划的影响,以及比赛适合马匹的维持工作量对骨骼适应的影响。我们发现高速训练是造成骨骼损伤的主要原因。此外,对于参加比赛训练的马来说,在典型的澳大利亚比赛中,骨骼修复的估计速度无法抵消损伤积累的速度,这突出了训练后定期休息的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A mathematical model of metacarpal subchondral bone adaptation, microdamage and repair in racehorses.

A mathematical model of metacarpal subchondral bone adaptation, microdamage and repair in racehorses.

A mathematical model of metacarpal subchondral bone adaptation, microdamage and repair in racehorses.

A mathematical model of metacarpal subchondral bone adaptation, microdamage and repair in racehorses.

Fractures of the distal limb in Thoroughbred racehorses primarily occur because of accumulation of bone microdamage from high-intensity training. Mathematical models of subchondral bone adaptation of the third metacarpal lateral condyles are capable of approximating existing data for Thoroughbred racehorses in training or at rest. To improve upon previous models, we added a dynamic resorption rate and microdamage accumulation and repair processes. Our ordinary differential equation model simulates the coupled processes of bone adaptation and microdamage accumulation, and is calibrated to data on racehorses in training and rest. Sensitivity analyses of our model suggest that joint loads and distances covered per day are among the most significant parameters for predicting microdamage accumulated during training. We also use the model to compare the impact of incrementally increasing training programmes as horses enter training from a period of rest, and maintenance workloads of horses that are race fit on bone adaptation. We find that high-speed training accounts for the majority of damage to the bone. Furthermore, for horses in race training, the estimated rates of bone repair are unable to offset the rate of damage accumulation under a typical Australian racing campaign, highlighting the need for regular rest from training.

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来源期刊
Journal of The Royal Society Interface
Journal of The Royal Society Interface 综合性期刊-综合性期刊
CiteScore
7.10
自引率
2.60%
发文量
234
审稿时长
2.5 months
期刊介绍: J. R. Soc. Interface welcomes articles of high quality research at the interface of the physical and life sciences. It provides a high-quality forum to publish rapidly and interact across this boundary in two main ways: J. R. Soc. Interface publishes research applying chemistry, engineering, materials science, mathematics and physics to the biological and medical sciences; it also highlights discoveries in the life sciences of relevance to the physical sciences. Both sides of the interface are considered equally and it is one of the only journals to cover this exciting new territory. J. R. Soc. Interface welcomes contributions on a diverse range of topics, including but not limited to; biocomplexity, bioengineering, bioinformatics, biomaterials, biomechanics, bionanoscience, biophysics, chemical biology, computer science (as applied to the life sciences), medical physics, synthetic biology, systems biology, theoretical biology and tissue engineering.
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