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Experimental study of the influence of senescence in the biomechanical properties of the temporal tendon and deep temporal fascia based on uniaxial tension tests

机译:基于单轴拉伸试验的衰老对颞肌腱和深颞筋膜生物力学特性影响的实验研究

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摘要

The present study focuses on the determination of human temporal tendons and deep temporal fascia biomechanical behavior. The tensile and shear loads generated by the temporal muscle are transmitted to the masticatory system by the temporal tendons and muscle fascia. Establishing these connective tissues' biomechanical properties will help to develop proper finite element-based simulations of the human masticatory system, which will allow better understanding of diseases affecting the temporomandibular joint.The tissues were harvested from 8 male fresh cadavers, who were subjected to uniaxial tension tests. Available literature states that different connective tissues undergo identical biochemical, cellular and mechanical changes during senescence. Several mechanical phenomena occur during maturation, resulting in stiffer, stronger and more stable connective tissues, although less flexible. Based on this evidence, the present study suggests that older temporal tendon and fascia samples are stiffer than younger ones. We also found significant higher secant moduli with increasing age.
机译:本研究的重点是确定人类颞肌腱和深颞筋膜的生物力学行为。颞肌产生的拉伸和剪切负荷通过颞肌腱和肌肉筋膜传递到咀嚼系统。建立这些结缔组织的生物力学特性将有助于开发基于有限元的人体咀嚼系统模拟,这将使人们更好地了解影响颞下颌关节的疾病。这些组织是从八只新鲜的尸体中收获的,这些尸体均经过了单轴张力测试。现有文献指出,不同的结缔组织在衰老过程中会经历相同的生化,细胞和机械变化。在成熟过程中会发生几种机械现象,尽管不那么柔韧性,但会导致更结实,更坚固和更稳定的结缔组织。基于这一证据,本研究表明,颞肌腱和筋膜标本比年轻的硬。我们还发现随着年龄的增长,割线模量明显更高。

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