MR Physics Group, Department of Radiology, Landesklinikum St. Poelten, Austria.
Neuroimage. 2010 May 15;51(1):42-52. doi: 10.1016/j.neuroimage.2010.01.110. Epub 2010 Feb 10.
The patterns of cerebrospinal fluid (CSF) flow within the human ventricular system are still not fully understood in all their complexity. Knowledge is based on either the interpretation of CSF flow curves or computational simulations. Both approaches only provide an incomplete insight into the spatial and temporal dynamics of CSF flow. Time-resolved three-dimensional magnetic resonance velocity mapping has previously been used to investigate normal and pathologic blood flow patterns in the human vascular system. Here we used this technique to study the spatial and temporal dynamics of CSF flow in the ventricular system of 40 normal volunteers. Classification of the patterns of CSF flow based on calculation of three-dimensional particle path lines over the cardiac cycle revealed one uniform flow pattern for the lateral ventricles, three categories for the third and two categories for the fourth ventricle. We found no significant aging effects on either the presence of a specific CSF flow pattern or on CSF flow velocities. Our results provide the first detailed demonstration of the patterns of CSF flow within the human ventricular system.
人类脑室系统中的脑脊液(CSF)流动模式在其复杂性方面仍未被完全理解。知识基于 CSF 流动曲线的解释或计算模拟。这两种方法都只能提供对 CSF 流动的空间和时间动态的不完整了解。时间分辨三维磁共振速度映射以前曾用于研究人类血管系统中正常和病理血流模式。在这里,我们使用该技术研究了 40 名正常志愿者脑室系统中 CSF 流动的空间和时间动态。基于在心动周期上计算三维粒子路径线对 CSF 流动模式进行分类,发现侧脑室呈现出一种统一的流动模式,第三脑室有三种分类,第四脑室有两种分类。我们没有发现特定 CSF 流动模式的存在或 CSF 流速存在明显的老化效应。我们的结果首次详细展示了人类脑室系统中的 CSF 流动模式。