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首页> 外文期刊>Journal of Biomechanics >Spinal constraint modulates head instantaneous center of rotation and dictates head angular motion
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Spinal constraint modulates head instantaneous center of rotation and dictates head angular motion

机译:脊柱约束调制头部瞬时旋转中心,并指示头角运动

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The head is kinematically constrained to the torso through the spine and thus, the spine dictates the amount of output head angular motion expected from an input impact. Here, we investigate the spinal kinematic constraint by analyzing the head instantaneous center of rotation (HICOR) with respect to the torso in head/neck sagittal extension and coronal lateral flexion during mild loads applied to 10 subjects. We found the mean HICOR location was near the C5-C6 intervertebral joint in sagittal extension, and T2-T3 intervertebral joint in coronal lateral flexion. Using the impulse-momentum relationship normalized by subject mass and neck length, we developed a non-dimensional analytical ratio between output angular velocity and input linear impulse as a function of HICOR location. The ratio was 0.65 and 0.50 in sagittal extension and coronal lateral flexion respectively, implying 30% greater angular velocities in sagittal extension given an equivalent impulse. Scaling to subject physiology also predicts larger required impulses given greater subject mass and neck length to achieve equivalent angular velocities, which was observed experimentally. Furthermore, the HICOR has greater motion in sagittal extension than coronal lateral flexion, suggesting the head and spine can be represented with a single inverted pendulum in coronal lateral flexion, but requires a more complex representation in sagittal extension. The upper cervical spine has substantial compliance in sagittal extension, and may be responsible for the complex motion and greater extension angular velocities. In analyzing the HICOR, we can gain intuition regarding the neck's role in dictating head motion during external loading. (C) 2018 Elsevier Ltd. All rights reserved.
机译:头部通过脊柱运动地被视为躯干,因此,脊柱决定了从输入冲击中预期的输出头角运动的量。在这里,我们通过在施加到10个受试者的温和载荷期间分析头部/颈部矢状延伸和冠状横向屈曲的躯干来调查脊柱运动约束。我们发现平均特色的位置在矢状延伸中的C5-C6椎关接近C5-C6椎间关节,以及冠状侧屈曲的T2-T3椎关接头。利用受主题质量和颈部长度标准化的脉冲动量关系,我们在输出角速度和输入线性脉冲之间形成了非尺寸分析比作为Hicor位置的功能。在矢状延伸和冠状横向屈曲中,该比例分别为0.65和0.50,暗示赋予等效脉冲的矢状延伸角度增加了30%。缩放到受试者生理学还预测了较大的所需脉冲,以获得更大的受试者质量和颈部长度,以实现实验观察的等效角速度。此外,皮革在矢状延伸中具有比冠状横向屈曲更大的运动,表明头部和脊柱可以用冠状横向屈曲的单个倒置摆,但需要在矢状延伸中更复杂的表示。上部颈椎在矢状延伸方面具有很大的顺应性,并且可以负责复杂的运动和更大的延伸角速度。在分析皮客时,我们可以在外部装载过程中获得关于颈部在口头运动中的作用的直觉。 (c)2018年elestvier有限公司保留所有权利。

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