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利用磁共振成像对正常脑脊液动力学进行时空评估。

Temporal and spatial assessment of normal cerebrospinal fluid dynamics with MR imaging.

作者信息

Henry-Feugeas M C, Idy-Peretti I, Blanchet B, Hassine D, Zannoli G, Schouman-Claeys E

机构信息

Department of Radiology, Raymond Poincaré Hospital, Garches, France.

出版信息

Magn Reson Imaging. 1993;11(8):1107-18. doi: 10.1016/0730-725x(93)90238-9.

Abstract

The purpose of this study was to measure normal cerebrospinal fluid (CSF) pulsations within the intracranial and upper cervical subarachnoid spaces and the ventricular system. Phase contrast cine MR sequences were performed in sagittal and axial planes on 13 volunteers with flow encoding in the craniocaudal direction. CSF pulsations displayed considerable variations in healthy subjects, depending both on measurements localization and subjects, with CSF peak velocities ranging from 0 to 7 cm/s. In the subarachnoid spaces, the highest velocities occurred in the anterior location and increased from the cerebellar pontine angle cisterns towards the lower cervical spaces. In the ventricular system, the highest velocities occurred through the aqueduct of Sylvius. CSF flow within the third ventricle seemed to reflect a circular motion. There was a caudal net CSF flow in the aqueduct whereas in the upper cervical spaces net CSF flow was caudal anteriorly and cranial laterally. Velocity profiles of CSF pulsations demonstrated arterial morphology. After the R wave, caudal systolic motion was first observed in the posterior subarachnoid spaces, soon after in the anterior subarachnoid spaces and later in the ventricular system. Considering the morphology of CSF pathways, three successively initiated phenomena may explain the temporal course of CSF motion: the systolic expansion of the main arteries at the base of the brain, the systolic expansion of the cerebrospinal axis and, finally, the systolic expansion of the choroid plexuses.

摘要

本研究的目的是测量颅内和上颈段蛛网膜下腔以及脑室系统内正常脑脊液(CSF)的搏动。对13名志愿者在矢状面和轴位面上进行了相位对比电影磁共振序列检查,流动编码方向为头足方向。健康受试者的脑脊液搏动表现出相当大的差异,这取决于测量部位和受试者个体,脑脊液峰值速度范围为0至7厘米/秒。在蛛网膜下腔,最高速度出现在前部位置,并从小脑桥脑角池向下颈段空间逐渐增加。在脑室系统中,最高速度出现在中脑导水管处。第三脑室内的脑脊液流动似乎呈现出圆周运动。中脑导水管内有脑脊液尾向净流动,而上颈段空间的脑脊液净流动是尾向前侧和头向外侧。脑脊液搏动的速度剖面显示出动脉形态。在R波之后,首先在后蛛网膜下腔观察到尾向收缩运动,随后在前蛛网膜下腔观察到,最后在脑室系统观察到。考虑到脑脊液通路的形态,三种相继启动的现象可能解释脑脊液运动的时间进程:脑底部主要动脉的收缩期扩张、脑脊液轴的收缩期扩张,以及最后脉络丛的收缩期扩张。

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