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磁共振成像显示的颅内和脊髓脑脊液循环的搏动特性

On the pulsatile nature of intracranial and spinal CSF-circulation demonstrated by MR imaging.

作者信息

Greitz D, Franck A, Nordell B

机构信息

Department of Neuroradiology, Karolinska Hospital, Stockholm, Sweden.

出版信息

Acta Radiol. 1993 Jul;34(4):321-8.

PMID:8318291
Abstract

Cerebrospinal fluid (CSF) flow was studied in 24 healthy volunteers using gated MR phase imaging. The subarachnoid space (SAS) was divided into 5 compartments depending on the magnitude of the pulsatile CSF flows: a high velocity compartment in the area of the brain stem and spinal cord, 2 slow ones at the upper and lower extremes of the SAS, and finally 2 intermediate velocity compartments in between. The main pulsatile spinal flow channel had a meandering pattern. The extraventricular CSF-circulation can be explained by pulsatile CSF flow without the necessity of assuming existence of a net flow. A successive time offset during the cardiac cycle has been found in the fronto-occipital direction of the interplay between the arterial expansion, brain expansion, volume changes of the CSF spaces and of the veins. It is proposed to name this time offset the intracranial "volume wave" (VoW).

摘要

使用门控磁共振相位成像技术对24名健康志愿者的脑脊液(CSF)流动进行了研究。根据搏动性脑脊液流动的大小,蛛网膜下腔(SAS)被分为5个区域:脑干和脊髓区域的一个高速区域,SAS上下两端的2个缓慢区域,以及其间的2个中等速度区域。主要的搏动性脊髓流动通道呈蜿蜒状。脑室外脑脊液循环可以用搏动性脑脊液流动来解释,而无需假定存在净流动。在心动周期中,在动脉扩张、脑扩张、脑脊液间隙和静脉的容积变化之间的相互作用的额枕方向上发现了连续的时间偏移。建议将这种时间偏移命名为颅内“容积波”(VoW)。

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