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Masticatory biomechanics and masseter fiber-type plasticity

机译:咀嚼生物力学和咬肌纤维型可塑性

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Compared to force-resisting elements of the mammalian feeding apparatus, data on jaw-muscle plasticity are less common. This hinders our understanding of the role of force-producing structures in craniofacial development and integration. Thus, we investigated fiber-type abundance and cross-sectional area in the masseter muscle of growing rabbits subjected to diet-induced variation in masticatory stresses. Three loading cohorts were obtained as weanlings and raised until adult on different diets. Immediately following euthanasia, left-sided masseters were dissected away, weighed, and then divided into anterior, intermediate and posterior sections for fiber-type immunohistochemistry. These data were compared to mandibular proportions and biomineralization from the same subjects. Results indicate that growing mammals fed a tougher, fracture-resistant diet develop: absolutely and relatively lower numbers of Type I jaw-muscle fibers; absolutely larger fiber cross-sectional areas; and relative increases in the amount of Type II fibers. These analyses indicate that an early postweaning dietary shift can induce significant variation in muscle fiber types. Such norms of reaction are comparable to those observed in bony elements. Functionally, the processing of fracture-resistant foods results in jaw adductors potentially characterized by faster contraction times and higher force production capabilities, which may influence the frequency and amplitude of forces experienced by oral tissues.
机译:与哺乳动物喂养装置的抗力元件相比,下颌肌肉可塑性的数据较少见。这阻碍了我们对力产生结构在颅面发展和融合中的作用的理解。因此,我们研究了在饮食引起咀嚼压力变化的生长中兔子的咬肌中纤维类型的丰度和横截面积。以断奶的方式获得三个负荷群,并以不同的饮食饲养直至成年。安乐死后,立即切开左侧咬肌,称重,然后分为前,中和后切片,用于纤维型免疫组织化学。将这些数据与同一受试者的下颌比例和生物矿化进行比较。结果表明,饲喂更坚韧,抗骨折饮食的生长中哺乳动物会发育:绝对数量和相对较少的I型下颌肌肉纤维;绝对大的纤维截面积; II型纤维的数量相对增加。这些分析表明,断奶后早期的饮食变化会引起肌肉纤维类型的显着变化。这种反应规范与骨元素中观察到的规范相当。从功能上讲,抗骨折食品的加工会导致下颌内收肌潜在地具有更快的收缩时间和更高的力量产生能力,这可能会影响口腔组织承受的力量的频率和幅度。

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