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首页> 外文期刊>European journal of orthodontics >The masticatory system under varying functional load. Part 1: Structural adaptation of rabbit jaw muscles to reduced masticatory load.
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The masticatory system under varying functional load. Part 1: Structural adaptation of rabbit jaw muscles to reduced masticatory load.

机译:功能变化的咀嚼系统。第1部分:兔下颌肌肉的结构适应以减少咀嚼负荷。

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Skeletal muscle fibres can change their myosin heavy-chain (MyHC) isoform and cross-sectional area, which determine their contraction velocity and maximum force generation, respectively, to adapt to varying functional loads. In general, reduced muscle activity induces transition towards faster fibres and a decrease in fibre cross-sectional area. In order to investigate the effect of a reduction in masticatory load on three functionally different jaw muscles, the MyHC composition and the corresponding cross-sectional area of fibres were determined in the superficial masseter, superficial temporalis, and digastric muscles of male juvenile New Zealand White rabbits that had been raised on a soft diet (n=8) from 8 to 20 weeks of age and in those of normal diet controls (n=8). Differences between groups were tested for statistical significance using a Mann-Whitney rank sum test. The proportion and cross-sectional area of fibres co-expressing MyHC-I and MyHC-cardiac alpha were significantly smaller in the masseter muscles of the animals that had been fed soft food than in those of the controls. In contrast, the proportions and cross-sectional areas of the various fibre types in the temporalis and digastric muscles did not differ significantly between the groups. The results suggest that reducing the masticatory load during development affects the contraction velocity and maximum force generation of the jaw-closing muscles that are primarily responsible for force generation during chewing. These muscles adapt structurally to the reduced functional load with changes in the MyHC composition and cross-sectional area mainly within their slow fibre compartment.
机译:骨骼肌纤维可以改变其肌球蛋白重链(MyHC)同工型和横截面积,从而分别确定其收缩速度和最大力量产生,以适应变化的功能负荷。通常,减少的肌肉活动会导致向更快的纤维过渡,并减少纤维横截面积。为了研究减轻咀嚼负荷对三种功能不同的下颌肌肉的影响,在新西兰少年男性的浅部咬肌,颞浅肌和胃腹肌中测定了MyHC组成和相应的纤维横截面积在8到20周龄时以软饮食(n = 8)饲养的兔子和正常饮食对照组(n = 8)饲养的兔子。使用Mann-Whitney秩和检验检验组之间的差异的统计学显着性。在饲喂软性食物的动物的咬肌中,共表达MyHC-1和MyHC-cardiacα的纤维的比例和截面积明显小于对照组。相比之下,各组颞叶和腹肌中各种纤维类型的比例和截面积没有显着差异。结果表明,在发育过程中减少咀嚼负荷会影响下颌闭合肌肉的收缩速度和最大力量生成,而下颌闭合肌肉主要是在咀嚼过程中产生力量。这些肌肉在结构上适应MyHC组成和横截面积变化的功能负荷降低,这些变化主要发生在其缓慢的纤维腔室内。

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