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Cerebrospinal Fluid Flow in the Normal and Hydrocephalic Human Brain

机译:正常和脑积水人脑中的脑脊液流量

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Advances in magnetic resonance (MR) imaging techniques enable the accurate measurements of cerebrospinal fluid (CSF) flow in the human brain. In addition, image reconstruction tools facilitate the collection of patient-specific brain geometry data such as the exact dimensions of the ventricular and subarachnoidal spaces (SAS) as well as the computer-aided reconstruction of the CSF-filled spaces. The solution of the conservation of CSF mass and momentum balances over a finite computational mesh obtained from the MR images predict the patients' CSF flow and pressure field. Advanced image reconstruction tools used in conjunction with first principles of fluid mechanics allow an accurate verification of the CSF flow patters for individual patients. This paper presents a detailed analysis of pulsatile CSF flow and pressure dynamics in a normal and hydrocephalic patient. Experimental CSF flow measurements and computational results of flow and pressure fields in the ventricular system, the SAS and brain parenchyma are presented. The pulsating CSF motion is explored in normal and pathological conditions of communicating hydrocephalus. This paper predicts small transmantle pressure differences between lateral ventricles and SASs (~10 Pa). The transmantle pressure between ventricles and SAS remains small even in the hydrocephalic patient (~30 Pa), but the ICP pulsatility increases by a factor of four. The computational fluid dynamics (CFD) results of the predicted CSF flow velocities are in good agreement with Cine MRI measurements. Differences between the predicted and observed CSF flow velocities in the prepontine area point towards complex brain-CSF interactions. The paper presents the complete computational model to predict the pulsatile CSF flow in the cranial cavity
机译:磁共振成像技术的进步使人脑中脑脊液(CSF)流量的精确测量成为可能。此外,图像重建工具还有助于收集患者特定的大脑几何数据,例如脑室和蛛网膜下腔(SAS)的确切尺寸以及CSF填充空间的计算机辅助重建。通过从MR图像获得的有限计算网格上的CSF质量和动量平衡守恒的解决方案可以预测患者的CSF流量和压力场。先进的图像重建工具与流体力学的第一原理结合使用,可以准确验证各个患者的CSF流量模式。本文对正常和脑积水患者的搏动性CSF流量和压力动态进行了详细分析。介绍了脑脊液的实验性CSF流量测量以及心室系统,SAS和脑实质中的流场和压力场的计算结果。在正常的和病理性的脑积水沟通中探究了脉动CSF运动。本文预测侧脑室和SAS之间的跨膜压差较小(〜10 Pa)。即使在脑积水患者中(〜30 Pa),心室和SAS之间的穿膜压力仍然很小,但是ICP脉动增加了四倍。预测的CSF流速的计算流体动力学(CFD)结果与Cine MRI测量结果非常吻合。在脑桥前区域的预测和观察到的脑脊液流速之间的差异指向复杂的脑脑脊液相互作用。本文提出了完整的计算模型来预测颅腔内脉动性CSF流量

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