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基于磁共振成像的准静态情况下相对颅脑运动的评估。

Assessment of relative brain-skull motion in quasistatic circumstances by magnetic resonance imaging.

机构信息

Division of Experimental Neurosurgery and Neuroanatomy, Katholieke Universiteit Leuven, Celestijnenlaan 300, Box 2419, 3001 Heverlee, Belgium.

出版信息

J Neurotrauma. 2012 Sep;29(13):2305-17. doi: 10.1089/neu.2011.2271. Epub 2012 Aug 3.

DOI:10.1089/neu.2011.2271
PMID:22663153
Abstract

Brain-skull relative motion plays a pivotal role in the etiology of traumatic brain injury (TBI). The present study aims to assess brain-skull relative motion in quasistatic circumstances, and to correlate cortical regions with high motion amplitudes with sites prone to cerebral contusions. The study includes 30 healthy volunteers scanned using a clinical 3-T MR scanner in four different head positions. Through image processing and 3D model registration, pairwise comparisons were performed to calculate the brain shift between sagittal and coronal head positional change. Next, local brain deformation was evaluated by comparison between cortical and ventricular amplitudes. Finally, the influence of age, sex, and skull geometry on the cortical and ventricular motion was investigated. The results describe complex brain shift patterns, with high regional and inter-individual variations, outweighing age and sex patterns. Regions with maximum motion amplitudes were identified at the inferolateral aspects of the frontal and temporal lobes, congruent with predilection sites for contusions. No significant influences of age and sex on the cortical shift amplitudes were detected. The 3D cortical deviations varied from -7.86 mm to +5.71 mm for the sagittal head movement, and from -11.46 mm to +7.30 mm for head movement in the coronal plane, for a 95% confidence interval. The present study contributes to a better understanding of the mechanopathogenesis of frontotemporal contusions, and is useful for the optimization of finite-element head models and neurosurgical navigation procedures. Moreover, our results prove that in vivo MRI allows for accurate assessment of brain-skull relative motion in quasistatic conditions.

摘要

颅脑相对运动在创伤性脑损伤(TBI)的发病机制中起着关键作用。本研究旨在评估准静态情况下的颅脑相对运动,并将高运动幅度的皮质区与易发生脑挫裂伤的部位相关联。该研究纳入了 30 名健康志愿者,他们在四种不同的头部位置使用临床 3T MR 扫描仪进行了扫描。通过图像处理和 3D 模型配准,进行了成对比较,以计算矢状位和冠状位头部位置变化之间的脑移位。接下来,通过比较皮质和脑室幅度来评估局部脑变形。最后,研究了年龄、性别和颅骨几何形状对皮质和脑室运动的影响。结果描述了复杂的脑移位模式,具有高度的区域性和个体间差异,超过了年龄和性别模式。最大运动幅度的区域位于额颞叶的下外侧,与挫伤的易患部位一致。未检测到年龄和性别对皮质移位幅度有显著影响。3D 皮质偏差在矢状位头部运动时从-7.86mm 到+5.71mm 不等,在冠状面头部运动时从-11.46mm 到+7.30mm 不等,置信区间为 95%。本研究有助于更好地理解额颞部挫裂伤的机械发病机制,对优化有限元头部模型和神经外科导航程序很有用。此外,我们的结果证明,体内 MRI 可以准确评估准静态条件下的颅脑相对运动。

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