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Muscle-induced loading as an important source of variation in craniofacial skeletal shape

机译:肌肉引起的负荷是颅面骨骼形状变化的重要来源

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摘要

The shape of the craniofacial skeleton is constantly changing through ontogeny, and reflects a balance between developmental patterning and mechanical-load induced remodeling. Muscles are a major contributor to producing the mechanical environment that is crucial for “normal” skull development. Here we use an F5 hybrid population of Lake Malawi cichlids to characterize the strength and types of associations between craniofacial bones and muscles. We focus on four bones/bone complexes, with different developmental origins, alongside four muscles with distinct functions. We used micro-computed tomography to extract 3D information on bones and muscles. 3D geometric morphometrics and volumetric measurements were used to characterize bone and muscle shape, respectively. Linear regressions were performed to test for associations between bone shape and muscle volume. We identified three types of associations between muscles and bones: weak, strong direct (i.e., muscles insert directly onto bone), and strong indirect (i.e., bone is influenced by muscles without a direct connection). In addition, we show that whereas the shape of some bones are relatively robust to muscle-induced mechanical stimulus, others appear to be highly sensitive to muscular input. Our results imply that the roles for muscular input on skeletal shape extend beyond specific points of origin or insertion, and hold significant potential to influence broader patterns of craniofacial geometry. Thus, changes in the loading environment, either as a normal course of ontogeny or if an organism is exposed to a novel environment, may have predicable effects on skeletal shape via near and far-ranging effects of muscular loading.
机译:颅面骨架的形状在个体发育过程中不断变化,并反映了发育模式和机械负荷引起的重塑之间的平衡。肌肉是产生对“正常”头骨发育至关重要的机械环境的主要因素。在这里,我们使用马拉维湖丽鱼科植物的F5杂种种群来表征颅面骨骼和肌肉之间的强度和关联类型。我们专注于具有不同发育起源的四个骨骼/骨骼复合物,以及具有不同功能的四个肌肉。我们使用微计算机断层扫描提取有关骨骼和肌肉的3D信息。 3D几何形态计量学和体积测量分别用于表征骨骼和肌肉形状。进行线性回归以测试骨骼形状和肌肉体积之间的关联。我们确定了肌肉与骨骼之间的三种关联类型:弱,强直接(即肌肉直接插入到骨骼上)和强间接(即骨骼受没有直接连接的肌肉影响)。此外,我们显示,尽管某些骨骼的形状对肌肉诱发的机械刺激相对健壮,但其他骨骼似乎对肌肉输入高度敏感。我们的研究结果表明,肌肉输入对骨骼形状的作用超出了特定的起源或插入点,并且具有影响颅面几何形状更广泛模式的巨大潜力。因此,无论是正常的个体发育过程,还是生物体处于新的环境中,负荷环境的变化都可能通过肌肉负荷的远近影响对骨骼形态产生可预测的影响。

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