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自发性颅内低血压的不同糖质液动力学。

Different Glymphatic Kinetics in Spontaneous Intracranial Hypotension.

机构信息

From the Departments of Neuroradiology (H.U., I.E.D.K., C.Z., L.B., E.K., A.R., N.L.), Medical Center-University of Freiburg, Freiburg, Germany

From the Departments of Neuroradiology (H.U., I.E.D.K., C.Z., L.B., E.K., A.R., N.L.), Medical Center-University of Freiburg, Freiburg, Germany.

出版信息

AJNR Am J Neuroradiol. 2024 Oct 3;45(10):1605-1612. doi: 10.3174/ajnr.A8365.

Abstract

BACKGROUND AND PURPOSE

The glymphatic (glia-lymphatic) system is a paravascular pathway for the clearance of waste metabolites including amyloid β from the brain. Serial T1 relaxation time measurements after the intrathecal injection of gadolinium-based contrast agents facilitate the analysis of the temporal dynamics that may be different in patients with spontaneous intracranial hypotension (SIH) and those without SIH.

MATERIALS AND METHODS

3D T1-weighted magnetization-prepared 2 rapid gradient echo sequences were acquired in 4 patients with SIH with proved CSF leaks and 12 patients without SIH before, 2-4, 6-8, and 24-48 hours after intrathecal gadobutrol injection. MR scans were warped to the Montreal Neurological Institute space and serial scans were coregistered. T1 relaxation times were measured in predefined ROIs including the subarachnoid space, cortex, white matter, and cervical lymph nodes.

RESULTS

In the subarachnoid space and cortex, T1 relaxation times decreased after 2-4 and 6-8 hours before they increased again. In contrast, in the white matter of the temporal lobe T1 relaxation time still decreased after 24-48 hours. There was a striking difference in patients with SIH who did not show a clear contrast distribution within the brain parenchyma.

CONCLUSIONS

T1 relaxation time curves are compatible with a convective flow driven by arterial pulsations via paravascular spaces surrounding penetrating arteries into the brain's interstitial fluid in the deep white matter. Different curves in patients with SIH and those without SIH indicate that the CSF pressure also impacts the temporal kinetics of the glymphatic system.

摘要

背景与目的

糖液(神经胶质-淋巴)系统是一种血管周围途径,可清除大脑中的废物代谢产物,包括淀粉样β。在鞘内注射钆基对比剂后进行序列 T1 弛豫时间测量,有助于分析自发性颅内低血压(SIH)患者和无 SIH 患者之间可能存在差异的时间动力学。

材料与方法

对 4 例经证实有脑脊液漏的 SIH 患者和 12 例无 SIH 的患者进行研究,在鞘内注射钆布醇前、后 2-4、6-8 和 24-48 小时采集 3D T1 加权磁化准备 2 快速梯度回波序列。将 MR 扫描变形到蒙特利尔神经学研究所空间,并对序列扫描进行配准。在包括蛛网膜下腔、皮质、白质和颈淋巴结在内的预定义 ROI 中测量 T1 弛豫时间。

结果

在蛛网膜下腔和皮质中,T1 弛豫时间在 2-4 小时和 6-8 小时后降低,然后再次升高。相比之下,颞叶白质中的 T1 弛豫时间在 24-48 小时后仍在下降。在 SIH 患者中存在明显差异,他们的脑实质内没有明显的对比分布。

结论

T1 弛豫时间曲线与动脉搏动通过穿透动脉周围的脉管空间驱动的对流一致,进入脑间质液在深部白质中。SIH 患者和无 SIH 患者的曲线不同,表明 CSF 压力也会影响糖液系统的时间动力学。

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