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首页> 外文期刊>American Journal of Physical Anthropology >Ontogenetic changes to muscle architectural properties within the jaw-adductor musculature of Macaca fascicularis
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Ontogenetic changes to muscle architectural properties within the jaw-adductor musculature of Macaca fascicularis

机译:Macaca Fascicularis颌骨肌肉肌肉肌肉建筑性质的植物构建性能

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Objectives: Changes to soft- and hard-tissue components of the masticatory complex during development can impact functional performance by altering muscle excursion potential, maximum muscle forces, and the efficiency of force transfer to specific bitepoints. Within Macaca fascicularis, older individuals exploit larger, more mechanically resistant food items and more frequently utilize wide-gape jaw postures. We therefore predict that key architectural and biomechanical variables will scale during ontogeny to maximize bite force and gape potential within older, larger-bodied individuals. Materials and methods: We analyzed 26 specimens of M. fascicularis, representing a full developmental spectrum. The temporalis, superficial masseter, and deep masseter were dissected to determine muscle mass, fiber length, and physiologic cross-sectional area (PCSA). Lever-arm lengths were also measured for each muscle, alongside the height of the temporomandibular joint (TMJ) and basicranial length. These variables were scaled against two biomechanical variables (jaw length and condyle-molar length) to determine relative developmental changes within these parameters. Results: During ontogeny, muscle mass, fiber length, and PCSA scaled with positive allometry relative to jaw length and condyle-molar length within all muscles. TMJ height also scaled with positive allometry, while muscle lever arms scaled with isometry relative to jaw length and with positive allometry (temporalis) or isometry (superficial and deep masseter) relative to condylemolar length. Conclusion: Larger individuals demonstrate adaptations during development towards maximizing gape potential and bite force potential at both an anterior and posterior bitepoint. These data provide anatomical evidence to support field observations of dietary and behavioral differences between juvenile and adult M. fascicularis.
机译:目的:在开发过程中咀嚼复合物的软和组织成分的变化会通过改变肌肉偏移电位,最大肌肉力和力转移到特定比特素的效率来影响功能性能。在猕猴属筋膜体内,老年人利用较大,更具机械抗性的食物,更频繁地利用宽阔的颚姿势。因此,我们预测,关键的架构和生物力学变量将在血细胞期间缩放,以最大化老年人更大的身体内的咬合力和胶卷潜力。材料和方法:我们分析了26种M. Fascicularis标本,代表了一个完整的发育谱。不沉积颞骨,浅表肌瘤和深层肌肉以确定肌肉质量,纤维长度和生理横截面积(PCSA)。每个肌肉还测量杠杆臂长度,以及颞下颌关节(TMJ)和碱性长度的高度。这些变量缩放到两个生物力学变量(钳口长度和髁突长)以确定这些参数内的相对发育变化。结果:在组织发生,肌肉质量,纤维长度和PCSA,相对于所有肌肉内的钳口长度和髁突长度缩放。 TMJ高度也呈阳性输,而肌肉杠杆臂相对于钳口长度和阳性同样(颞下)或等距相对于髁突长度的肌肉杠杆臂缩放。结论:较大的个人在开发过程中展示适应,以便在前后和后部位点处最大化Gape潜力和咬伤力潜力。这些数据提供了解剖证据,以支持幼年和成人M. Fascularis之间的膳食和行为差异的现场探测。

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