The functional significance of morphological variation of the human mandible and masticatory muscles.

W A Weijs
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Abstract

A review is given of what is known about the functional significance of variation of the morphology of the human mandible and jaw muscles. First, the mandible is a lever transferring muscular forces to the teeth. The angle between corpus and ramus and the width of the ramus are particularly relevant in this respect as they determine the mechanical advantage of the lever system and the capacity for sagittal (open-close) movement. The stability of the mandible in asymmetric bites is especially affected by the ratio between the intermolar and intercondylar distances. The repertoire of bite forces that can be generated at any tooth and the loading pattern of the temporomandibular joint are strongly dependent on the relative size of the masseter, temporalis and medial pterygoid muscles. Second, executing its function as a lever, the mandible is subjected to shearing, bending and torsional forces. The bony parts harbouring the teeth, joints and muscle attachments serve to counter these forces; additional strength is needed in three areas i.e. in the symphysis, the condylar neck and in the transition area between corpus and ramus. In human populations there are clear-cut patterns of correlation between some facial skeletal traits, jaw joint morphology and strength and line of action of the jaw muscles. As a result, facial morphologies can be distinguished with marked differences in mechanical performance of their masticatory apparatus. It is suggested that they emerge as a result of diverging environmental influences during postnatal growth.

人下颌骨和咀嚼肌形态变异的功能意义。
回顾了已知的关于人类下颌骨和下颌肌肉形态变异的功能意义。首先,下颌骨是将肌肉力量传递给牙齿的杠杆。体和分支之间的角度以及分支的宽度在这方面特别相关,因为它们决定了杠杆系统的机械优势和矢状(开闭)运动的能力。不对称咬合下颌骨的稳定性尤其受磨牙间和髁间距离之比的影响。可在任何牙齿产生的咬合力和颞下颌关节的负荷模式在很大程度上取决于咬肌、颞肌和内侧翼状肌的相对大小。其次,执行其作为杠杆的功能,下颌骨承受剪切,弯曲和扭转力。包含牙齿、关节和肌肉附着物的骨骼部分用来对抗这些力量;三个区域需要额外的力量,即联合、髁突颈和体支之间的过渡区域。在人类种群中,某些面部骨骼特征、下颌关节形态和下颌肌肉的力量和活动线之间存在明确的相关模式。因此,面部形态可以通过其咀嚼器官的机械性能的显着差异来区分。这表明,它们的出现是由于出生后生长过程中不同环境影响的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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