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高压性脑积水:一种新型分析建模方法。

High-pressure hydrocephalus: a novel analytical modeling approach.

作者信息

Fard Pooria Jafari Moghaddam, Tajvidi Mohammad Reza, Gharibzadeh Shahriar

机构信息

Neuromuscular Systems Laboratory, Faculty of Biomedical Engineering, Amirkabir University of Technology, Iran.

出版信息

J Theor Biol. 2007 Oct 7;248(3):401-10. doi: 10.1016/j.jtbi.2007.06.006. Epub 2007 Jun 12.

Abstract

Hydrocephalus is an abnormal accumulation of cerebrospinal fluid (CSF) within ventricles and subarachnoid space (SAS) as a result of disturbances in secretion or absorption procedures. It is believed that arachnoid villi cells, which are microscopic projections of pia-arachnoid mater that extend into venous channels in sagittal sinus, are the main sites for CSF absorption, but it is tempting to speculate that a significant portion of CSF is removed from the SAS by nasal lymphatic vessels around olfactory nerve. Thus, in this paper, we propose an analytical model of CSF-lymphatic-blood circulation, in which these two output pathways for CSF absorption have been considered. Mathematical relations governing the pressures in different interacting compartments of the brain are considered. In addition, for increasing the similarity of our model to the physiological conditions, the bulk flow mechanism, which is supposed to occur during CSF absorption, has been considered in our model. We used our model to simulate hydrocephalus. The results indicate that the lymphatic disorders have more considerable effect in decreasing CSF absorption, compared to the disturbances in arachnoid villi cells. Based on our modeling, we believe that disorders in lymphatic pathway may be a cause of high-pressure hydrocephalus. Surely experimental studies are required to validate our hypothesis.

摘要

脑积水是由于脑脊液分泌或吸收过程紊乱,导致脑室和蛛网膜下腔(SAS)内脑脊液(CSF)异常积聚。据信,蛛网膜绒毛细胞是软脑膜-蛛网膜的微观突起,延伸至矢状窦的静脉通道,是脑脊液吸收的主要部位,但有人推测,相当一部分脑脊液是通过嗅神经周围的鼻淋巴管从蛛网膜下腔清除的。因此,在本文中,我们提出了一种脑脊液-淋巴-血液循环的分析模型,其中考虑了这两种脑脊液吸收的输出途径。考虑了控制大脑不同相互作用腔室压力的数学关系。此外,为了使我们的模型更接近生理条件,我们的模型中考虑了脑脊液吸收过程中可能发生的大量流动机制。我们用我们的模型模拟脑积水。结果表明,与蛛网膜绒毛细胞紊乱相比,淋巴系统紊乱对减少脑脊液吸收的影响更大。基于我们的模型,我们认为淋巴通路紊乱可能是高压脑积水的一个原因。当然,需要进行实验研究来验证我们的假设。

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