利用弥散张量成像研究缺血性中风后猴脑白质和灰质的改变。

Chun-Xia Li, Yuguang Meng, Yumei Yan, Doty Kempf, Leonard Howell, Frank Tong, Xiaodong Zhang
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引用次数: 0

摘要

背景:以往研究对脑卒中病变的调查主要集中在灰质(GM),而对急性脑卒中时白质(WM)的变性研究不足。本研究利用弥散张量成像(DTI)对猴子缺血闭塞后大脑中 GM 和 WM 的变化进行了研究:方法:采用介入方法诱导恒河猴(n=6)永久性大脑中动脉闭塞(pMCAO)。在闭塞后的超急性期(2-6 小时)、48 小时和 96 小时,在临床 3T 上进行了连续 DTI 分析。选择病变区域的 GM 和 WM 感兴趣区域进行数据分析:结果:在超急性卒中期间,WM 的平均弥散率(MD)、径向弥散率(RD)和轴向弥散率(AD)大幅下降,与 GM 中的情况相似。在超急性期,GM 和 WM 中未见明显的分数各向异性(FA)变化,直到中风后 48 小时,才观察到明显的纤维损失。96小时后,MD、AD和RD出现假正常化。中风后 8 小时、48 小时和 96 小时,缺血区域的 WM 和 GM 出现病理变化。中风后 6 小时,WM 的 MD、AD 和 RD 的相对变化与梗死体积呈负相关:本研究利用 DTI 揭示了急性脑卒中期间猴脑灰质和白质的微观结构变化。初步结果表明,轴向和径向弥散度(AD 和 RD)可能是评估超急性脑卒中期间白质特定微结构变化的敏感替代标记物。
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Investigation of white matter and grey matter alteration in the monkey brain following ischemic stroke by using diffusion tensor imaging.

Background: Investigation of stroke lesion has mostly focused on grey matter (GM) in previous studies and white matter (WM) degeneration during acute stroke is understudied. In the present study, monkeys were utilized to investigate the alterations of GM and WM in the brain following ischemic occlusion using diffusion tensor imaging (DTI).

Methods: Permanent middle cerebral artery occlusion (pMCAO) was induced in rhesus monkeys (n=6) with an interventional approach. Serial DTI was conducted on a clinical 3T in the hyperacute phase (2-6 hours), 48, and 96 hours post occlusion. Regions of interest in GM and WM of lesion areas were selected for data analysis.

Results: Mean diffusivity (MD), radial diffusivity (RD), and axial Diffusivity (AD) in WM decreased substantially during hyperacute stroke, as similar as those seen in GM. No obvious fractional anasotropy (FA) changes were seen in GM and WM during hyper acute phase. until 48 hours post stroke when significant fiber losses were oberved also. Pseudo-normalization of MD, AD, and RD was seen at 96 hours. Pathological changes of WM and GM were observed in ischemic areas at 8, 48, and 96 hours post stroke. Relative changes of MD, AD and RD of WM were correlated negatively with infarction volumes at 6 hours post stroke.

Conclusion: The present study revealed the microstructural changes in gray matter and white matter of monkey brains during acute stroke by using DTI. The preliminary results suggest axial and radial diffusivity (AD and RD) may be sensitive surrogate markers to assess specific microstructural changes in white matter during hyper-acute stroke.

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