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大脑导水管内振荡流的实验研究。

An experimental investigation of oscillatory flow in the cerebral aqueduct.

作者信息

Sincomb S, Moral-Pulido F, Campos O, Martínez-Bazán C, Haughton V, Sánchez A L

机构信息

Department of Aerospace and Mechanical Engineering, University of California, San Diego, La Jolla, 92093-0411, CA, USA.

Department of Mechanical and Mining Engineering, University of Jaen, Jaen, 23071, Spain.

出版信息

Eur J Mech B Fluids. 2024 May-Jun;105:180-191. doi: 10.1016/j.euromechflu.2024.01.010. Epub 2024 Jan 23.

Abstract

This study aims at clarifying the relation between the oscillatory flow of cerebrospinal fluid (CSF) in the cerebral aqueduct, a narrow conduit connecting the third and fourth ventricles, and the corresponding interventricular pressure difference. Dimensional analysis is used in designing an anatomically correct scaled model of the aqueduct flow, with physical similarity maintained by adjusting the flow frequency and the properties of the working fluid. The time-varying pressure difference across the aqueduct corresponding to a given oscillatory flow rate is measured in parametric ranges covering the range of flow conditions commonly encountered in healthy subjects. Parametric dependences are delineated for the time-averaged pressure fluctuations and for the phase lag between the transaqueductal pressure difference and the flow rate, both having clinical relevance. The results are validated through comparisons with predictions obtained with a previously derived computational model. The parametric quantification in this study enables the derivation of a simple formula for the relation between the transaqueductal pressure and the stroke volume. This relationship can be useful in the quantification of transmantle pressure differences based on non-invasive magnetic-resonance-velocimetry measurements of aqueduct flow for investigation of CSF-related disorders.

摘要

本研究旨在阐明脑导水管(连接第三脑室和第四脑室的狭窄管道)中脑脊液(CSF)的振荡流动与相应的脑室内压差之间的关系。在设计符合解剖学的脑导水管流动比例模型时采用了量纲分析,通过调整流动频率和工作流体的特性来保持物理相似性。在涵盖健康受试者常见流动条件范围的参数范围内,测量了与给定振荡流速相对应的脑导水管两端随时间变化的压差。描绘了时间平均压力波动以及脑导水管压差与流速之间的相位滞后的参数依赖性,二者均具有临床相关性。通过与先前推导的计算模型所获得的预测结果进行比较来验证结果。本研究中的参数量化能够推导出一个关于脑导水管压力与每搏量之间关系的简单公式。这种关系对于基于脑导水管流动的无创磁共振测速测量来量化跨脑实质压差以研究脑脊液相关疾病可能是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45c6/11105671/163390f518b9/nihms-1991608-f0001.jpg

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