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Dietary consistency and plasticity of masseter fiber architecture in postweaning rabbits

机译:断奶后兔咬肌纤维结构的膳食一致性和可塑性

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Dietary consistency has been shown to influence cross-sectional area and fiber type composition of the masticatory muscles. However, little is known about the effects of dietary consistency on masticatory muscle fiber architecture. In this study, we explore the effects of dietary consistency on the internal architecture of rabbit masseter muscle. Because activity patterns of the rabbit chewing muscles show inter- and intramuscular heterogeneity, we evaluate if alterations in fiber architecture are homogeneous across various portions of the superficial masseter muscle. We compared masseter muscle fiber architecture between two groups of weanling rabbits raised on different diets for 105 days. One group was raised on a diet of ground rabbit pellets to model underuse of the masticatory complex, while the other group was fed a diet of intact pellets and hay blocks to model an overuse diet. In all portions of the superficial masseter, physiological cross-sectional areas (PCSAs) are greater in the overuse compared to underuse diet rabbits. Thus, the mechanical demands for larger muscle and bite forces associated with early and prolonged exposure to a tough diet are met by an increase in PCSA of the superficial masseter. The larger PCSA is due entirely to increased muscle mass, as the two rabbit groups show no differences in either fiber length or angle of pirmation. Thus, increasing pirmation angle is not a necessary biomechanical solution to improving muscle and bite force during growth. The change in PCSA but not fiber length suggests that variation in dietary consistency has an impact on maximum force production but not necessarily on excursion or contraction velocity.
机译:膳食的稠度已显示会影响咀嚼肌的横截面积和纤维类型组成。然而,关于饮食一致性对咀嚼肌纤维结构的影响知之甚少。在这项研究中,我们探讨了饮食一致性对兔咬肌肌肉内部结构的影响。因为兔子咀嚼肌的活动模式显示出肌间和肌内异质性,所以我们评估了在浅部咬肌的各个部分中纤维结构的变化是否均匀。我们比较了在105天的不同饮食饲养的两组断奶兔子之间的咬肌肌纤维结构。一组饲喂磨碎的兔子颗粒饲料,以模拟咀嚼复合物的使用不足,而另一组饲喂完整颗粒饲料和干草块的饲料,以模拟过度使用的饲料。与未使用饮食的兔子相比,在过度使用的浅部咬肌的所有部位,生理横截面积(PCSA)都更大。因此,通过增加浅表咬肌的PCSA,可以满足与早期和长期暴露于强硬饮食相关的更大肌肉和咬合力的机械需求。较大的PCSA完全归因于肌肉质量的增加,因为两组兔子的纤维长度或or裂角度均无差异。因此,增加旋转角度不是改善生长过程中肌肉和咬合力的必要生物力学解决方案。 PCSA的变化而非纤维长度的变化表明,膳食稠度的变化会影响最大力量的产生,但不一定会影响偏移或收缩速度。

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