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Variation of Neck Muscle Strength Along the Human Cervical Spine

机译:沿人颈椎颈部肌肉力量的变异

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The aim of this study was to describe and explain the variation of neck muscle strength along the cervical spine. A three-dimensional model of the head-neck complex was developed to test the hypothesis that the moment-generating capacity of the neck musculature is lower in the upper cervical spine than in the lower cervical spine. The model calculations suggest that the neck muscles can protect the lower cervical spine from injury during extension and lateral bending. The maximum flexor moment developed in the lower cervical spine was 2 times higher than that developed in the upper spine. The model also predicted that the neck musculature is 30% stronger in the lower cervical spine during lateral bending. Peak compressive forces (up to 3 times body weight) were higher in the lower cervical spine. These results are consistent with the clinical finding that extension loading of the neck often leads to injuries in the upper cervical spine. Analysis of the model results showed that neck flexor strength was greater in the lower cervical spine because of the relatively large size of the sternocleidomastoid muscle. The hyoid muscles developed significant flexor moments about the joints of the upper cervical spine, as these muscles had relatively large flexor moment arms; however, this effect was offset by the action of the sternocleidomastoid, which exerted a large extensor moment in the upper spine. Lateral bending strength of the neck muscles was governed by geometry (i.e., moment arms) rather than by muscle size.
机译:本研究的目的是描述和解释沿颈椎的颈部肌肉力量的变化。开发了头颈络合物的三维模型,以测试颈部肌肉的矩产生能力低于下颈椎的颈部肌肉的时刻发电能力。模型计算表明,颈部肌肉可以在延伸和横向弯曲期间保护下颈椎免受损伤。下颈椎开发的最大屈肌矩比上脊柱中发育的最大挠度力矩高2倍。该模型还预测,在横向弯曲期间,颈部肌肉组织在下颈椎中的较强较强。下颈椎峰值压缩力(最多3倍体重)较高。这些结果与临床发现一致,即颈部的延长载荷通常导致上部颈椎损伤。模型结果的分析表明,由于胸骨细胞肌瘤肌肉相对大的尺寸相对大,颈椎在颈部挠度强度大。百果肌肉产生了关于上颈椎的关节的显着屈肌矩,因为这些肌肉具有相对较大的屈肌力矩臂;然而,这种效果被胸骨皮肌瘤的作用抵消,其在上脊柱中施加着大的延伸力矩。颈部肌肉的横向弯曲强度由几何(即时刻臂)而不是通过肌肉尺寸来控制。

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