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In-vivo spinal cord deformation in flexion

机译:屈曲中的体内脊髓变形

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Traumatic mechanical loading of the head-neck complex results cervical spinal cord injury when the distortion of the cord is sufficient to produce functional or structural failure of the cord's neural and/or vascular components. Characterizing cervical spinal cord deformation during physiological loading conditions is an important step to defining a comprehensive injury threshold associated with acute spinal cord injury. In this study, in vivo quasi- static deformation of the cervical spinal cord during flexion of the neck in human volunteers was measured using magnetic resonance (MR) imaging of motion with spatial modulation of magnetization (SPAMM). A custom-designed device was built to guide the motion of the neck and enhance more reproducibility. the SPAMM pulse sequence labeled the tissue with a series of parallel tagging lines. A single- shot gradient-recalled-echo sequence was used to acquire the mid-sagittal image of the cervical spine. A comparison of the tagged line pattern in each MR reference and deformed image pair revealed the distortion of the spinal cord. The results showed the cervical spinal cord elongates during head flexion. The elongation experienced by the spinal cord varies linearly with head flexion, with the posterior surface of the cord stretching more than the anterior surface. The maximal elongation of the cord is about 12 percent of its original length.
机译:头颈复杂结果颈脊髓损伤时的帘线的失真是足以产生帘线的神经和/或血管成分的功能性或结构失效的创伤性的机械负荷。期间生理负荷条件表征颈髓变形是限定与急性脊髓损伤相关的损伤全面阈值的一个重要步骤。在这项研究中,在人类志愿者颈部的屈曲期间颈髓的体内准静态变形使用运动的磁共振(MR)成像与磁化空间调制(SPAMM)进行测定。定制设计的设备的建立是为了引导颈部的运动,提高更多的再现性。所述SPAMM脉冲序列标记的组织的一系列平行线标记。一种单一镜头梯度回顾回波序列被用于获取颈椎的中间矢状图像。在每个MR参考和变形图像对所标记的线图案的比较揭示了脊髓的失真。结果头屈曲期间显示颈髓伸长。由脊髓经受的伸长与头部屈曲线性变化,随着线比前表面的拉伸更多的后表面。帘线的最大伸长为约其初始长度的12%。

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