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评估犬后肢功能肌肉解剖结构的可扩展性。

Evaluation of functional muscle anatomy scalability in the canine hind limb.

机构信息

Faculty of Veterinary Medicine, Department of Medical Imaging of Domestic Animals and Orthopaedics of Small Animals, Ghent University, Merelbeke, Belgium.

Human Movement Biomechanics Research Group, Faculty of Movement and Rehabilitation Sciences, KU Leuven, Leuven, Belgium.

出版信息

Anat Histol Embryol. 2021 May;50(3):637-644. doi: 10.1111/ahe.12666. Epub 2021 Mar 16.

Abstract

In contrast to other mammals, the large variation in dog sizes is not accompanied by any significant genetic re-organization. In order to study the relationship between body mass, limb length and the functional anatomical muscle parameters of the canine hind limb, a large dataset comprising of muscle masses, optimal muscle fibre lengths and physiological cross-sectional area's (PCSA) were acquired for twenty-five muscles in ten dogs of sizes varying between 20 kg and 52 kg. The potential of body mass and limb length for reliably scaling individual muscle masses, optimal muscle fibre lengths and PCSA's were examined. For the majority of the muscles of the canine hind limb, neither body mass nor limb length were reliable scaling parameter for either muscle masses, PCSA's and optimal fibre length. These results indicate the need of a breed-specific approach to musculoskeletal modelling in future canine musculoskeletal research.

摘要

与其他哺乳动物相比,狗体型的巨大差异并没有伴随着任何显著的遗传重组。为了研究犬后肢的体重、肢体长度和功能解剖肌肉参数之间的关系,我们为十只体型在 20 公斤至 52 公斤之间的狗采集了一个包含 25 块肌肉的大量数据集,包括肌肉质量、最佳肌纤维长度和生理横截面积 (PCSA)。我们研究了体重和肢体长度对个体肌肉质量、最佳肌纤维长度和 PCSA 可靠缩放的潜力。对于犬后肢的大多数肌肉来说,无论是体重还是肢体长度,都不是肌肉质量、PCSA 和最佳纤维长度的可靠缩放参数。这些结果表明,未来犬类肌肉骨骼研究中需要采用特定品种的方法来进行肌肉骨骼建模。

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